Поиск
Озвучить текст Озвучить книгу
Изменить режим чтения
Изменить размер шрифта
Оглавление
Для озвучивания и цитирования книги перейдите в режим постраничного просмотра.

Список литературы

1. Брико Н.И. и др. Клинические рекомендации. Профилактика инфекций области хирургического вмешательства. «Ремедиум. Н. Новгород, 2018. Т. 2018. 72 с. 2. Berriós-Torres S.I. и др. Centers for disease control and prevention guideline for the prevention of surgical site infection, 2017 // JAMA Surg. 2017. Т. 152, № 8. С. 784–791. 3. Centers for Disease and Control. CDC/NHSN Surveillance Definitions for Specific Types of Infections: Surveillance Definitions // Cdc. 2020. № January. С. 1–36. 4. Божкова С.А. и др. Профиль резистентности возбудителей как основа выбора эффективного антибиотика при стафилококковых инфекциях протезированных суставов // Травматология и ортопедия России. 2013. Т. 15, № 2. С. 115–123. 5. Божкова С.А. и др. Неблагоприятные тенденции в этиологии ортопедической инфекции: результаты 6-летнего мониторинга структуры и резистентности ведущих возбудителей // Травматология и ортопедия России. 2018. Т. 24, № 4. С. 20–31. 6. Zimmerli W. Clinical presentation and treatment of orthopaedic implant-associated infection // J. Intern. Med. 2014. Т. 276, № 2. С. 111–119. 7. Божкова С.А. и др. Ортопедическая имплантат-ассоциированная инфекция: ведущие возбудители, локальная резистентность и рекомендации по антибактериальной терапии // Травматология и ортопедия России. 2013. Т. 4, № 70. С. 5–15. 8. Barberán J. REVIEW Management of infections of osteoarticular prosthesis // Clin Microbiol Infect. 2006. Т. 12. 93–101 с. 9. Zimmerli W., Clauss M. Periprosthetic Joint Infection after Total Hip and Knee Arthroplasty // Bone Jt. Infect. From Microbiol. to Diagnostics Treat. 2015. С. 131–150. 10. Garzoni C., Kelley W.L. Return of the Trojan horse: intracellular phenotype switching and immune evasion by Staphylococcus aureus. // EMBO Mol. Med. 2011. Т. 3, № 3. С. 115–117. 11. Abad L. и др. Evaluation of the ability of linezolid and tedizolid to eradicate intraosteoblastic and biofilm-embedded Staphylococcus aureus in the bone and joint infection setting // J. Antimicrob. Chemother. 2019. Т. 74, № 3. С. 625–632. 12. Lora-Tamayo J. и др. High doses of daptomycin (10 mg/kg/d) plus rifampin for the treatment of staphylococcal prosthetic joint infection managed with implant retention: A comparative study // Diagn. Microbiol. Infect. Dis. Elsevier Inc., 2014. Т. 80, № 1. С. 66–71. 13. Fagotti L. и др. Risk Factors and Treatment Options for Failure of a Two-Stage Exchange // Curr. Rev. Musculoskelet. Med. Current Reviews in Musculoskeletal Medicine, 2018. Т. 11, № 3. С. 420–427. 14. Bozhkova S. и др. Failure of the first step of two-stage revision due to polymicrobial prosthetic joint infection of the hip // J. Orthop. Traumatol. Springer-Verlag Italia s.r.l., 2016. Т. 17, № 4. С. 369–376. 15. Bonnevialle P. и др. Early surgical site infection in adult appendicular skeleton trauma surgery: A multicenter prospective series // Orthop. Traumatol. Surg. Res. 2012. Т. 98, № 6. С. 684–689. 16. Romanò C.L. и др. ICS classification system of infected osteosynthesis: Long-term results // Injury. Elsevier Ltd, 2018. Т. 49, № 3. С. 564–569. 17. Kavanagh N. и др. Staphylococcal osteomyelitis: Disease progression, treatment challenges, and future directions // Clinical Microbiology Reviews. American Society for Microbiology, 2018. Т. 31, № 2. 18. Zhang Y.H. и др. Tumor necrosis factor-α (TNF) stimulates RANKL-induced osteoclastogenesis via coupling of TNF type 1 receptor and RANK signaling pathways // J. Biol. Chem. J Biol Chem, 2001. Т. 276, № 1. С. 563–568. 19. Bene N., Li X., Nandi S. Factors affecting failure of irrigation and debridement with liner exchange in total knee arthroplasty infection // Knee. Elsevier B.V., 2018. Т. 25, № 5. С. 932–938. КР417 62 20. Tikhilov R. и др. Risk factors and a prognostic model of hip periprosthetic infection recurrence after surgical treatment using articulating and non-articulating spacers // Int. Orthop. 2016. Т. 40, № 7. 21. Винклер Т. и др. Классификация и алгоритм диагностики и лечения перипротезной инфекции тазобедренного сустава // Травматология и ортопедия России. 2016. Т. 1, № 1. С. 33–45. 22. Ливенцов В.Н. и др. Трудноизлечимая перипротезная инфекция тазобедренного сустава: результаты санирующих операций // Травматология и ортопедия России. 2019. Т. 25, № 4. С. 88–97. 23. Shirwaiker R.A. и др. A Clinical Perspective on Musculoskeletal Infection Treatment Strategies and Challenges // J. Am. Acad. Orthop. Surg. 2015. Т. 23, № Sup.1. С. S44–S54. 24. Birt M.C. и др. Osteomyelitis: Recent advances in pathophysiology and therapeutic strategies // J. Orthop. Prof. PK Surendran Memorial Education Foundation, 2017. Т. 14, № 1. С. 45–52. 25. Orthopaedic Trauma Association: Open Fracture Study Group. A new classification scheme for open fractures // J Orthop Trauma. 2010. Т. 24, № 8. С. 457–464. 26. Rightmire E., Zurakowski D., Vrahas M. Acute infections after fracture repair: Management with hardware in place // Clin. Orthop. Relat. Res. Springer New York, 2008. Т. 466, № 2. С. 466–472. 27. Parkkinen M. и др. Risk factors for deep infection following plate fixation of proximal tibial fractures // J. Bone Jt. Surg. - Am. Vol. Lippincott Williams and Wilkins, 2016. Т. 98, № 15. С. 1292–1297. 28. Bonnevialle P. Operative treatment of early infection after internal fixation of limb fractures (exclusive of severe open fractures) // Orthopaedics and Traumatology: Surgery and Research. Elsevier Masson SAS, 2017. Т. 103, № 1. С. S67–S73. 29. Шубняков И.И. и др. Что изменилось в структуре ревизионного эндопротезирования тазобедренного сустава в последние годы? // Травматология и ортопедия России. 2019. Т. 25, № 4. С. 9–27. 30. Материалы второй международной согласительной конференции по лечению скелетно-мышечной инфекции / под ред. пер. с англ. ; под общ. ред. Р.М. Тихилова, И.И. Шубнякова С.А.Б. СПб.: РНИИТО им. Р.Р.Вредена, 2019. 310 с. 31. Артюх В.А. и др. Диагностика и лечение перипротезной инфекции тазобедренного сустава // Руководство по хирургии тазобедренного сустава. 2-е изд. / под ред. Тихилова Р.М., Шубнякова И.И. СПб: РНИИТО им.Р.Р.Вредена, 2015. С. 208–256. 32. Куляба Т.А. и др. Лечение инфекционных осложнений после эндопротезирования коленного сустава // Первичное тотальное эндопротезирование коленного сустава / под ред. Куляба Т.А., Корнилова Н.Н. Киев: Основа, 2019. С. 425–486. 33. Kurtz S.M. и др. Economic burden of periprosthetic joint infection in the united states // J. Arthroplasty. Elsevier B.V., 2012. Т. 27, № 8 SUPPL. С. 61-65.e1. 34. Florschutz A. V и др. Surgical site infection risk factors and risk stratification // J Am Acad Orthop Surg. 2015. Т. 23, № Suppl. С. S8–S11. 35. Kunutsor S. и др. Systematic review of risk prediction scores for surgical site infection or periprosthetic joint infection following joint arthroplasty // Epidemiol Infect. 2017. № 145. С. 1738–1749. 36. Li C., Renz N., Trampuz A. Management of periprosthetic joint infection // Hip Pelvis. 2018. Т. 30, № 2. С. 139–146. 37. Tsukayama D.T., Estrada R., Gustilo R.B. Infection after total hip arthroplasty: A study of the treatment of one hundred and six infections // J. Bone Jt. Surg. - Ser. A. 1996. Т. 78, № 4. С. 512–523. 38. McPherson E. и др. Periprosthetic total hip infection: outcomes using a staging system // Clin Orthop Relat Res. 2002. Т. Oct, № 403. С. 8–15. 39. Metsemakers W.J. и др. Fracture-related infection: A consensus on definition from an КР417 63 international expert group // Injury. Elsevier Ltd, 2018. Т. 49, № 3. С. 505–510. 40. Borens O., Helmy N. Infected osteosynthesis // Chirurg. Springer Verlag, 2016. Т. 87, № 10. С. 822–830. 41. Kleber C., Schaser K.D., Trampuz A. Komplikationsmanagement bei infizierter Osteosynthese: Therapiealgorithmus bei periimplantären Infektionen // Chirurg. Springer Verlag, 2015. Т. 86, № 10. С. 925–934. 42. Zimmerli W., Sendi P. Orthopaedic biofilm infections // APMIS. 2017. Т. 125, № 4. 43. Romanò C.L. и др. Bone and joint infections in adults: A comprehensive classification proposal // Eur. Orthop. Traumatol. 2011. Т. 1, № 6. С. 207–217. 44. Cierny G., Mader J.T., Penninck J.J. A clinical staging system for adult osteomyelitis. // Clin. Orthop. Relat. Res. Clin Orthop Relat Res, 2003. № 414. С. 7–24. 45. Metsemakers W.J. и др. Infection after fracture fixation: Current surgical and microbiological concepts // Injury. Elsevier Ltd, 2018. Т. 49, № 3. С. 511–522. 46. Trampuz A., Zimmerli W. Diagnosis and treatment of implantassociated septic arthritis and osteomyelitis // Curr Infect Dis Rep. 2008. Т. 10, № 5. С. 394–403. 47. Cuérel C. и др. Clinical and epidemiological differences between implant-associated and implant-free orthopaedic infections // Eur. J. Orthop. Surg. Traumatol. Springer-Verlag France, 2017. Т. 27, № 2. С. 229–231. 48. Парвизи Д., Торстен Г. Материалы Второй международной согласительной конференции по скелетно-мышечной инфекции /. РНИИТО им. / под ред. Тихилов Р.М., Божкова С.А., Шубняков И.И. СПб. :, 2019. 314 с. 49. Артюх В.А., Божкова С. Клинические рекомендации. Лечение параэндопротезной инфекции тазобедренного сустава. Санкт-Петербург, 2013. 40 с. 50. Metsemakers W.J. и др. Fracture-related infection: A consensus on definition from an international expert group // Injury. Elsevier Ltd, 2018. Т. 49, № 3. С. 505–510. 51. Parvizi J. и др. The 2018 Definition of Periprosthetic Hip and Knee Infection: An Evidence-Based and Validated Criteria // J. Arthroplasty. Churchill Livingstone Inc., 2018. Т. 33, № 5. С. 1309-1314.e2. 52. Thakore R. V. и др. Surgical site infection in orthopedic trauma: A case-control study evaluating risk factors and cost // J. Clin. Orthop. Trauma. Elsevier, 2015. Т. 6, № 4. С. 220–226. 53. Morgenstern M. и др. International survey among orthopaedic trauma surgeons: Lack of a definition of fracture-related infection // Injury. Elsevier Ltd, 2018. Т. 49, № 3. С. 491–496. 54. Тихилов Р.М., Божкова С.А., Артюх В.А. Перипротезная инфекция в области крупных суставов конечностей // Ортопедия. Клинические рекомендации / под ред. акад. РАН Миронова С.П. Москва, 2018. С. 719–746. 55. Osmon D.R. и др. Diagnosis and management of prosthetic joint infection: Clinical practice guidelines by the infectious diseases Society of America // Clin. Infect. Dis. 2013. Т. 56, № 1. С. 1–25. 56. Seymour C.W. и др. Assessment of clinical criteria for sepsis for the third international consensus definitions for sepsis and septic shock (sepsis-3) // JAMA - J. Am. Med. Assoc. American Medical Association, 2016. Т. 315, № 8. С. 762–774. 57. Котельников Г.П., Миронов С.П., Мирошниченко В.Ф. Травматология и ортопедия: учебник. ГОЭТАР-Мед. Москва, 2009. 400 с. 58. Signore A. и др. Consensus document for the diagnosis of prosthetic joint infections: a joint paper by the EANM, EBJIS, and ESR (with ESCMID endorsement) // Eur. J. Nucl. Med. Mol. Imaging. Springer Berlin Heidelberg, 2019. Т. 46, № 4. С. 971–988. 59. Romano L.C. и др. The W . A . I . O . T . Definition of High-Grade and Low-Grade Peri-Prosthetic Joint Infection // J. Clin. Med. 2019. Т. 8, № 650. С. 1–13. 60. McNally M. и др. The EBJIS definition of periprosthetic joint infection: A practical guide for clinicians // Bone Jt. J. 2021. Т. 103, № 1. С. 18–25. 61. Berbari E. и др. Inflammatory blood laboratory levels as markers of prosthetic joint КР417 64 infection: A systematic review and meta-analysis // Journal of Bone and Joint Surgery - Series A. Journal of Bone and Joint Surgery Inc., 2010. Т. 92, № 11. С. 2102–2109. 62. Wang S. и др. Evaluating the use of serum inflammatory markers for preoperative diagnosis of infection in patients with nonunions // Biomed Res. Int. Hindawi, 2017. Т. 2017. С. 10–14. 63. Alijanipour P., Bakhshi H., Parvizi J. Diagnosis of periprosthetic joint infection: The threshold for serological markers // Clinical Orthopaedics and Related Research. Springer New York LLC, 2013. Т. 471, № 10. С. 3186–3195. 64. Spangehl M.J. и др. Prospective analysis of preoperative and intraoperative investigations for the diagnosis of infection at the sites of two hundred and two revision total hip arthroplasties // J. Bone Joint Surg. Am. J Bone Joint Surg Am, 1999. Т. 81, № 5. С. 672–683. 65. Bosch P. и др. Limited Predictive Value of Serum Inflammatory Markers for Diagnosing Fracture-Related Infections: results of a large retrospective multicenter cohort study // J. Bone Jt. Infect. Ivyspring International Publisher, 2018. Т. 3, № 3. С. 130–137. 66. Omar M. и др. Synovial C-reactive protein as a marker for chronic periprosthetic infection in total hip arthroplasty // Bone Jt. J. British Editorial Society of Bone and Joint Surgery, 2015. Т. 97-B, № 2. С. 173–176. 67. Ettinger M. и др. Circulating Biomarkers for Discrimination Between Aseptic Joint Failure, Low-Grade Infection, and High-Grade Septic Failure. 2015. 68. Drago L. и др. Procalcitonin, c–reactive protein, interleukin–6, and soluble intercellular adhesion molecule–1 as markers of postoperative orthopaedic joint prosthesis infections // Int J Immunopathol Pharmacol. 2011. № 24. С. 433–440. 69. Yoon J.R., Yang S.H., Shin Y.S.. Diagnostic accuracy of interleukin–6 and procalcitonin in patients with periprosthetic joint infection: a systematic review and meta–analysis // Int Orthop. 2018. Т. 42. С. 1213–1226. 70. Yuan K. и др. Comparison of Procalcitonin and C-Reactive Protein for the Diagnosis of Periprosthetic Joint Infection before Revision Total Hip Arthroplasty // Surg. Infect. (Larchmt). 2015. Т. 16, № 2. С. 146–150. 71. Xu H. и др. Plasma Fibrin Degradation Product and D-Dimer Are of Limited Value for Diagnosing Periprosthetic Joint Infection // J. Arthroplasty. Churchill Livingstone Inc., 2019. Т. 34, № 10. С. 2454–2460. 72. Shahi A. и др. Serum D-Dimer Test Is Promising for the Diagnosis of Periprosthetic Joint Infection and Timing of Reimplantation // J. Bone Jt. Surg. - Am. Vol. 2017. Т. 99, № 17. С. 1419–1427. 73. Aggarwal V.K. и др. Swab cultures are not as effective as tissue cultures for diagnosis of periprosthetic joint infection // Clinical Orthopaedics and Related Research. Springer New York LLC, 2013. Т. 471, № 10. С. 3196–3203. 74. Drago L. и др. The World Association against Infection in Orthopaedics and Trauma ( WAIOT ) procedures for Microbiological Sampling and Processing for Periprosthetic Joint Infections ( PJIs ) and other // J. Clin. Med. 2019. Т. 8, № 933. С. 1–16. 75. Declercq P. и др. Preoperative joint aspiration culture results and causative pathogens in total hip and knee prosthesis infections: mind the gap // Acta Clin. Belg. Acta Clin Belg, 2020. Т. 75, № 4. С. 284–292. 76. Cipriano C.A. и др. Serum and synovial fluid analysis for diagnosing chronic periprosthetic infection in patients with inflammatory arthritis // J Bone Jt. Surg Am. 2012. Т. 94, № 7. С. 594–600. 77. Nilsdotter-Augustinsson A. и др. Inflammatory response in 85 patients with loosened hip prostheses: a prospective study comparing inflammatory markers in patients with aseptic and septic prosthetic loosening // Acta Orthop. 2007. Т. 78, № 5. С. 629–639. 78. Schinsky, M.F. и др. Perioperative testing for joint infection in patients undergoing revision total hip arthroplasty // J Bone Jt. Surg Am. 2008. Т. 90, № 9. С. 1869–1875. КР417 65 79. Zmistowsky B. и др. Periprosthetic joint infection diagnosis: a complete understanding of white blood cell count and differential // J Arthroplast. 2012. Т. 27, № 9. С. 1589–1593. 80. Vasoo S. и др. Evaluation of the film array blood culture ID panel on biofilms dislodged from explanted arthroplasties for prosthetic joint infection diagnosis // J Clin Microbiol. 2015. Т. 53, № 8. С. 2790–2792. 81. Tande A.J., Patel R. Prosthetic joint infection // Clin. Microbiol. Rev. 2014. Т. 27, № 2. С. 302–345. 82. Atkins B.L. и др. Prospective evaluation of criteria for microbiological diagnosis of prosthetic-joint infection at revision arthroplasty // J Clin Microbiol. 1998. Т. 36, № 10. С. 2932–2939. 83. Cazanave C. и др. Rapid molecular microbiologic diagnosis of prosthetic joint infection // J Clin Microbiol. 2013. Т. 51, № 7. С. 2280–2287. 84. Esteban J. и др. Evaluation of quantitative analysis of cultures from sonicated retrieved orthopedic implants in diagnosis of orthopedic infection // J Clin Microbiol. 2008. Т. 46, № 2. С. 488–492. 85. Frangiamore S. и др. Alfa-defensin accuracy to diagnose periprosthetic joint infection - best available test? // J Arthroplast. 2016. Т. 31, № 2. С. 456–460. 86. Janz V. и др. Improved identification of polymicrobial infection in total knee arthroplasty through sonicate fluid cultures // Arch Orthop Trauma Surg. 2015. Т. 135, № 10. С. 1453–1457. 87. Minassian A. и др. Use of an automated blood culture system (BD BACTEC) for the diagnosis of prosthetic joint infections: easy and fast // BMC Infect Dis. 2014. Т. 14. С. 233. 88. Tomas X. и др. Accuracy of CT-guided joint aspiration in patients with suspected infection status post-total hip arthroplasty // Skelet Radiol. 2011. Т. 40, № 1. С. 57–64. 89. Hindle P., Davidson E., Biant L.C. Septic arthritis of the knee: the use and effect of antibiotics prior to diagnostic aspiration // Ann R Coll Surg Engl. 2012. Т. 94, № 5. С. 351–355. 90. Hoell S. и др. Interleukin-6 in two-stage revision arthroplasty: what is the threshold value to exclude persistent infection before re-implantation? // Bone Jt. J. 2015. Т. 97-B, № 1. С. 71–75. 91. Trampuz A. и др. Sonication of removed hip and knee prostheses for diagnosis of infection // N. Engl. J. Med. Massachussetts Medical Society, 2007. Т. 357, № 7. С. 654–663. 92. Trampuz A. и др. Sonication of explanted prosthetic components in bags for diagnosis of prosthetic joint infection is associated with risk of contamination // J. Clin. Microbiol. 2006. Т. 44, № 2. С. 628–631. 93. Suda A.J. и др. Diagnosis of periprosthetic joint infection using alpha-defensin test or multiplex-PCR: ideal diagnostic test still not found // Int. Orthop. Springer Verlag, 2017. Т. 41, № 7. С. 1307–1313. 94. Morgenstern C. и др. Synovial fluid multiplex PCR is superior to culture for detection of low-virulent pathogens causing periprosthetic joint infection // Diagn. Microbiol. Infect. Dis. Elsevier Inc., 2018. Т. 90, № 2. С. 115–119. 95. Bingham J. и др. The Alpha Defensin-1 Biomarker Assay can be Used to Evaluate the Potentially Infected Total Joint Arthroplasty // Clin. Orthop. Relat. Res. Springer New York LLC, 2014. Т. 472, № 12. С. 4006–4009. 96. Lenski M., Scherer M.A. Synovial IL-6 AS inflammatory marker in periprosthetic joint infections // J. Arthroplasty. Churchill Livingstone Inc., 2014. Т. 29, № 6. С. 1105–1109. 97. Deirmengian C. и др. Combined measurement of synovial fluid a-defensin and C-reactive protein levels: Highly accurate for diagnosing periprosthetic joint infection // J. Bone Jt. Surg. - Am. Vol. Journal of Bone and Joint Surgery Inc., 2014. Т. 96, № 17. С. 1439–1445. 98. Deirmengian C. и др. Diagnosing Periprosthetic Joint Infection: Has the Era of the Biomarker Arrived? // Clin. Orthop. Relat. Res. Springer New York LLC, 2014. Т. 472, № 11. С. 3254–3262. 99. Achermann Y. и др. Improved Diagnosis of Periprosthetic Joint Infection by Multiplex PCR of Sonication Fluid from Removed Implants // J. Clin. Microbiol. 2010. Т. 48, № 4. С. 1208–1214. 100. Wetters N.G. и др. Leukocyte esterase reagent strips for the rapid diagnosis of periprosthetic joint infection // J. Arthroplasty. 2012. Т. 27, № 8 SUPPL. С. 8–11. 101. Goswami K., Parvizi J., Maxwell Courtney P. Current Recommendations for the Diagnosis of Acute and Chronic PJI for Hip and Knee—Cell Counts, Alpha-Defensin, Leukocyte Esterase, Next-generation Sequencing // Current Reviews in Musculoskeletal Medicine. Humana Press Inc., 2018. Т. 11, № 3. С. 428–438. 102. Lee Y.S. и др. Synovial fluid biomarkers for the diagnosis of periprosthetic joint infection : A systematic review and meta-Analysis // J. Bone Jt. Surg. - Am. Vol. 2017. Т. 99, № 24. 103. Carli A. V. и др. Diagnostic Accuracy of Serum, Synovial, and Tissue Testing for Chronic Periprosthetic Joint Infection after Hip and Knee Replacements: A Systematic Review // J. Bone Jt. Surg. - Am. Vol. 2019. Т. 101, № 7. 104. Frangiamore S.J. и др. Synovial fluid interleukin-6 as a predictor of periprosthetic shoulder infection // J. Bone Jt. Surg. - Am. Vol. Journal of Bone and Joint Surgery Inc., 2015. Т. 97, № 1. С. 63–70. 105. Карбышева С.Б. и др. D-лактат – маркер бактериального воспаления нативных и протезированных суставов // Травматология и ортопедия России. 2017. Т. 23, № 2. С. 6–14. 106. Karbysheva S. и др. New Methods in the Diagnosis of Prosthetic Joint Infection // Traumatol. Orthop. Russ. 2019. Т. 25, № 4. С. 56–63. 107. De Vecchi E. и др. Alpha defensin, leukocyte esterase, C-reactive protein, and leukocyte count in synovial fluid for pre-operative diagnosis of periprosthetic infection. // Int. J. Immunopathol. Pharmacol. SAGE Publications Inc., 2018. Т. 32. С. 2058738418806072. 108. Parvizi J. и др. Mark B. Coventry award // Clinical Orthopaedics and Related Research. Springer New York LLC, 2012. Т. 470, № 1. С. 54–60. 109. Weigelt L. и др. Alpha-defensin lateral flow test does not appear to be useful in predicting shoulder periprosthetic joint infections // Int. Orthop. Springer Science and Business Media LLC, 2020. 110. Onsea J. и др. Accuracy of Tissue and Sonication Fluid Sampling for the Diagnosis of Fracture-Related Infection: A Systematic Review and Critical Appraisal // J. Bone Jt. Infect. Copernicus GmbH, 2018. Т. 3, № 4. С. 173–181. 111. McNally M. и др. Definition and diagnosis of fracture-related infection. // EFORT open Rev. British Editorial Society of Bone and Joint Surgery, 2020. Т. 5, № 10. С. 614–619. 112. Govaert G.A.M. и др. Diagnosing Fracture-Related Infection: Current Concepts and Recommendations // J. Orthop. Trauma. Lippincott Williams and Wilkins, 2020. Т. 34, № 1. С. 8–17. 113. Burns T.C. и др. Microbiology and injury characteristics in severe open tibia fractures from combat // J. Trauma Acute Care Surg. J Trauma Acute Care Surg, 2012. Т. 72, № 4. С. 1062–1067. 114. Li C. и др. Twenty common errors in the diagnosis and treatment of periprosthetic joint infection // Int. Orthop. Springer, 2020. Т. 44, № 1. С. 3–14. 115. Zimmerli W. Clinical presentation and treatment of orthopaedic implant-associated infection // Journal of Internal Medicine. Blackwell Publishing Ltd, 2014. Т. 276, № 2. С. 111–119. 116. Boettner F. и др. The Rule of Histology in the Diagnosis of Periprosthetic Infection: Specific Granulocyte Counting Methods and New Immunohistologic Staining Techniques may Increase the Diagnostic Value // Open Orthop. J. 2017. Т. 10, № 1. С. 457–465. 117. Morgenstern M. и др. The value of quantitative histology in the diagnosis of fracture-related infection // Bone Jt. J. 2018. Т. 100B, № 7. С. 966–972. 118. Omar M. и др. Higher sensitivity of swab polymerase chain reaction compared with tissue КР417 67 cultures for diagnosing periprosthetic joint infection. // J. Orthop. Surg. (Hong Kong). SAGE Publications Ltd, 2018. Т. 26, № 1. С. 2309499018765296. 119. Bémer P. и др. How many samples and how many culture media to diagnose a prosthetic joint infection: A clinical and microbiological prospective multicenter study // J. Clin. Microbiol. American Society for Microbiology, 2016. Т. 54, № 2. С. 385–391. 120. Peel T.N. и др. Optimal periprosthetic tissue specimen number for diagnosis of prosthetic joint infection // J. Clin. Microbiol. 2017. Т. 55, № 1. 121. Janz V. и др. Reduced culture time and improved isolation rate through culture of sonicate fluid in blood culture bottles // Technol. Heal. Care. IOS Press, 2017. Т. 25, № 4. С. 635–640. 122. Rothenberg A.C. и др. Sonication of Arthroplasty Implants Improves Accuracy of Periprosthetic Joint Infection Cultures // Clin. Orthop. Relat. Res. Springer US, 2017. Т. 475, № 7. С. 1827–1836. 123. Кренн Ф. и др. Новый алгоритм гистопатологической диагностики перипротезной инфекции с применением шкалы cd15 focus score и компьютерной программы cd15 Quantifier // Травматология И Ортопедия России. 2015. Т. 3, № 3 (77). С. 76–85. 124. Куковенко Г.А. и др. Важность выполнения алгоритма диагностики поздней глубокой перипротезной инфекции тазобедренного сустава // Травматология и ортопедия России. 2019. Т. 25, № 4. С. 75–87. 125. Krenn V. и др. Revised histopathological consensus classification of joint implant related pathology // Pathol Res Pr. 2014. Т. 210, № 12. С. 779–786. 126. Math K.R. и др. Imaging of total knee arthroplasty // Semin. Musculoskelet. Radiol. Semin Musculoskelet Radiol, 2006. Т. 10, № 1. С. 47–63. 127. Van Holsbeeck M.T. и др. Detection of infection in loosened hip prostheses: efficacy of sonography // AJR. Am. J. Roentgenol. AJR Am J Roentgenol, 1994. Т. 163, № 2. С. 381–384. 128. Eisler T. и др. Ultrasound for diagnosis of infection in revision total hip arthroplasty // J. Arthroplasty. J Arthroplasty, 2001. Т. 16, № 8. С. 1010–1017. 129. Battaglia M. и др. Validity of preoperative ultrasound-guided aspiration in the revision of hip prosthesis // Ultrasound Med. Biol. Ultrasound Med Biol, 2011. Т. 37, № 12. С. 1977–1983. 130. Sconfienza L.M. и др. Diagnosis of peripheral bone and prosthetic joint infections: overview on the consensus documents by the EANM, EBJIS, and ESR (with ESCMID endorsement) // Eur. Radiol. 2019. Т. 29, № 12. С. 6425–6438. 131. Patzakis M.J., Zalavras C.G. Chronic posttraumatic osteomyelitis and infected nonunion of the tibia: current management concepts. // The Journal of the American Academy of Orthopaedic Surgeons. 2005. Т. 13, № 6. С. 417–427. 132. Gross T. и др. Current Concepts in Posttraumatic Osteomyelitis: A Diagnostic Challenge with New Imaging Options // Journal of Trauma. 2002. Т. 52, № 6. С. 1210–1219. 133. Perlepe V. и др. Semi-quantitative CT assessment of fracture healing: How many and which CT reformats should be analyzed? // Eur. J. Radiol. Elsevier Ireland Ltd, 2019. Т. 118. С. 181–186. 134. Ledermann H. и др. Pitfalls and limitations of magnetic resonance imaging in chronic posttraumatic osteomyelitis // Eur. Radiol. 2000. Т. 10, № 11. С. 1815–1823. 135. Love C., Palestro C.J. Nuclear medicine imaging of bone infections // Clin. Radiol. W.B. Saunders Ltd, 2016. Т. 71, № 7. С. 632–646. 136. Glaudemans A.W.J.M. и др. Diagnosing fracture-related infections: can we optimize our nuclear imaging techniques? // European Journal of Nuclear Medicine and Molecular Imaging. Springer Berlin Heidelberg, 2019. Т. 46, № 8. С. 1583–1587. 137. Gemmel F. и др. Prosthetic joint infections: Radionuclide state-of-the-art imaging // European Journal of Nuclear Medicine and Molecular Imaging. 2012. Т. 39, № 5. С. 892–909. КР417 68 138. Reinartz P. FDG-PET in patients with painful hip and knee arthroplasty: Technical breakthrough or just more of the same // Q. J. Nucl. Med. Mol. Imaging. 2009. Т. 53, № 1. С. 41–50. 139. Jamar F. и др. EANM/SNMMI guideline for 18F-FDG use in inflammation and infection // J. Nucl. Med. 2013. Т. 54, № 4. С. 647–658. 140. van der Bruggen W. и др. PET and SPECT in Osteomyelitis and Prosthetic Bone and Joint Infections: A Systematic Review // Seminars in Nuclear Medicine. 2010. Т. 40, № 1. С. 3–15. 141. Valenziano C.P. и др. Efficacy of primary wound cultures in long bone open extremity fractures: Are they of any value? // Arch. Orthop. Trauma Surg. Arch Orthop Trauma Surg, 2002. Т. 122, № 5. С. 259–261. 142. Xu C. и др. Reevaluating Current Cutoffs for Acute Periprosthetic Joint Infection: Current Thresholds Are Insensitive // J. Arthroplasty. Churchill Livingstone Inc., 2019. Т. 34, № 11. С. 2744–2748. 143. Li C., Renz N., Trampuz A. Management of Periprosthetic Joint Infections (PJIs) // Manag. Periprosthetic Jt. Infect. Elsevier Inc., 2016. Т. 30, № 3. С. 138–146. 144. Stathellis A. и др. Periarticular injections with continuous perfusion of local anaesthetics provide better pain relief and better function compared to femoral and sciatic blocks after TKA: a randomized clinical trial // Knee Surgery, Sport. Traumatol. Arthrosc. Springer Verlag, 2017. Т. 25, № 9. С. 2702–2707. 145. Chou R. и др. Management of postoperative pain: A clinical practice guideline from the American pain society, the American society of regional anesthesia and pain medicine, and the American society of anesthesiologists’ committee on regional anesthesia, executive committee, and administrative council // J. Pain. Churchill Livingstone Inc., 2016. Т. 17, № 2. С. 131–157. 146. Lora-Tamayo J. и др. Short- versus long-duration levofloxacin plus rifampicin for acute staphylococcal prosthetic joint infection managed with implant retention: a randomised clinical trial // Int. J. Antimicrob. Agents. Elsevier B.V., 2016. Т. 48, № 3. С. 310–316. 147. Puhto A.P., Puhto T., Syrjala H. Short-course antibiotics for prosthetic joint infections treated with prosthesis retention // Clin. Microbiol. Infect. Blackwell Publishing Ltd, 2012. Т. 18, № 11. С. 1143–1148. 148. Chaussade H. и др. Antibiotic therapy duration for prosthetic joint infections treated by Debridement and Implant Retention (DAIR): Similar long-term remission for 6 weeks as compared to 12 weeks // Int. J. Infect. Dis. Elsevier B.V., 2017. Т. 63. С. 37–42. 149. Legout L. и др. Tolerability of prolonged linezolid therapy in bone and joint infection: Protective effect of rifampicin on the occurrence of anaemia? // J. Antimicrob. Chemother. 2010. Т. 65, № 10. С. 2224–2230. 150. John A.K. и др. Efficacy of daptomycin in implant-associated infection due to methicillin-resistant Staphylococcus aureus: Importance of combination with rifampin // Antimicrob. Agents Chemother. 2009. Т. 53, № 7. С. 2719–2724. 151. Lora-Tamayo J. и др. High doses of daptomycin (10 mg/kg/d) plus rifampin for the treatment of staphylococcal prosthetic joint infection managed with implant retention: A comparative study // Diagn. Microbiol. Infect. Dis. Elsevier Inc., 2014. Т. 80, № 1. С. 66–71. 152. Thabit A.K. и др. Antibiotic penetration into bone and joints: An updated review // International Journal of Infectious Diseases. 2019. Т. 81. 153. Lesens O. и др. Should we expand the indications for the DAIR (debridement, antibiotic therapy, and implant retention) procedure for Staphylococcus aureus prosthetic joint infections? A multicenter retrospective study // Eur. J. Clin. Microbiol. Infect. Dis. Eur J Clin Microbiol Infect Dis, 2018. Т. 37, № 10. С. 1949–1956. 154. Scheper H. и др. Outcome of Debridement, Antibiotics, and Implant Retention for Staphylococcal Hip and Knee Prosthetic Joint Infections, Focused on Rifampicin Use: A КР417 69 Systematic Review and Meta-Analysis. // Open forum Infect. Dis. Oxford University Press, 2021. Т. 8, № 7. С. ofab298. 155. Becker A. и др. Duration of rifampin therapy is a key determinant of improved outcomes in early-onset acute prosthetic joint infection due to Staphylococcus treated with a debridement, antibiotics and implant retention (DAIR): a retrospective multicenter study in France. // J. bone Jt. Infect. Copernicus GmbH, 2020. Т. 5, № 1. С. 28–34. 156. Perez-Jorge C. и др. Drug treatments for prosthetic joint infections in the era of multidrug resistance // Expert Opin. Pharmacother. 2016. Т. 17, № 9. С. 1233–1246. 157. Ntalos D. и др. Implementation of a multidisciplinary infections conference affects the treatment plan in prosthetic joint infections of the hip: a retrospective study // Arch. Orthop. Trauma Surg. Arch Orthop Trauma Surg, 2019. Т. 139, № 4. С. 467–473. 158. Depypere M. и др. Recommendations for Systemic Antimicrobial Therapy in Fracture-Related Infection: A Consensus from an International Expert Group // J. Orthop. Trauma. Lippincott Williams and Wilkins, 2020. Т. 34, № 1. С. 30–41. 159. Zimmerli W., Sendi P. 105 - Orthopedic Implant– Associated Infections // Mandell, Douglas, and Bennett’s Principles and Practice of Infectious Diseases. Ninth Edit. Elsevier Inc., 2020. С. 1430-1442.e3. 160. Davis J.S. и др. Proposed empiric antibiotic therapy for prosthetic joint infections: an analysis of the Prosthetic Joint Infection in Australia and New Zealand, Observational (PIANO) cohort // Intern. Med. J. Intern Med J, 2022. Т. 52, № 2. С. 322–325. 161. Mao An M. и др. Linezolid versus vancomycin for meticillin-resistant Staphylococcus aureus infection: a meta-analysis of randomised controlled trials // Int. J. Antimicrob. Agents. 2013. Т. 41. С. 426–433. 162. van Hal S.J., Lodise T.P., Paterson D.L. The clinical significance of vancomycin minimum inhibitory concentration in Staphylococcus aureus infections: a systematic review and meta-analysis. // Clin. Infect. Dis. 2012. Т. 54, № 6. С. 755–771. 163. Perez-Jorge C. и др. Drug treatments for prosthetic joint infections in the era of multidrug resistance // Expert Opinion on Pharmacotherapy. Taylor and Francis Ltd, 2016. Т. 17, № 9. С. 1233–1246. 164. Wouthuyzen-Bakker M. и др. Moxifloxacin plus rifampin as an alternative for levofloxacin plus rifampin in the treatment of a prosthetic joint infection with Staphylococcus aureus // Int. J. Antimicrob. Agents. Int J Antimicrob Agents, 2018. Т. 51, № 1. С. 38–42. 165. Papadopoulos A. и др. Multidrug-resistant and extensively drug-resistant Gram-negative prosthetic joint infections: Role of surgery and impact of colistin administration // Int. J. Antimicrob. Agents. 2019. Т. 53, № 3. С. 294–301. 166. Kalbian I.L. и др. Treatment Outcomes and Attrition in Gram-Negative Periprosthetic Joint Infection // J. Arthroplasty. Elsevier Ltd, 2020. Т. 35, № 3. С. 849–854. 167. Bozhkova S. и др. Failure of the first step of two-stage revision due to polymicrobial prosthetic joint infection of the hip // J. Orthop. Traumatol. 2016. Т. 17, № 4. 168. Boyle K.K. и др. General Assembly, Treatment, Antimicrobials: Proceedings of International Consensus on Orthopedic Infections // J. Arthroplasty. Elsevier Ltd, 2019. Т. 34, № 2. С. S225–S237. 169. Backes M. и др. Effect of antibiotic prophylaxis on surgical site infections following removal of orthopedic implants used for treatment of foot, ankle, and lower leg fractures a randomized clinical trial // JAMA - J. Am. Med. Assoc. American Medical Association, 2017. Т. 318, № 24. С. 2438–2445. 170. Pradier M. и др. Suppressive antibiotic therapy with oral tetracyclines for prosthetic joint infections: a retrospective study of 78 patients // Infection. Urban und Vogel GmbH, 2018. Т. 46, № 1. С. 39–47. 171. Pradier M. и др. Suppressive antibiotic therapy with oral doxycycline for Staphylococcus aureus prosthetic joint infection: a retrospective study of 39 patients // Int. J. Antimicrob. Agents. Elsevier B.V., 2017. Т. 50, № 3. С. 447–452. КР417 70 172. Siqueira M.B.P. и др. Chronic suppression of periprosthetic joint infections with oral antibiotics increases infection-free survivorship // J. Bone Jt. Surg. - Am. Vol. Lippincott Williams and Wilkins, 2014. Т. 97, № 15. С. 1220–1232. 173. Troendlin F. и др. Persistent Fistula for Treatment of a Failed Periprosthetic Joint Infection: Relic From the Past or a Viable Salvage Procedure? // J. Arthroplasty. Elsevier Ltd, 2020. Т. 35, № 2. С. 544–549. 174. Rao N. и др. Long term suppression of infection in total joint arthroplasty // Clin. Orthop. 2003. № 414. С. 55–60. 175. Vees T., Hofmann G.O. Early periprosthetic infection: dilution, jet dilution or local antibiotics. Which way to go? A meta-analysis on 575 patients. // GMS Interdiscip. Plast. Reconstr. Surg. DGPW. GMS Interdiscip Plast Reconstr Surg DGPW, 2020. Т. 9. С. Doc03. 176. Божкова С.А., Новокшонова А.А., Конев В.А. Современные возможности локальной антибиотикотерапии перипротезной инфекции и остеомиелита (Обзор литературы) // Травматология и ортопедия России. 2015. Т. 77, № 3. С. 92–107. 177. Argenson J.N. и др. Hip and Knee Section, Treatment, Debridement and Retention of Implant: Proceedings of International Consensus on Orthopedic Infections // J. Arthroplasty. 2019. Т. 34, № 2. С. S399–S419. 178. Romanò C.L. и др. Local Antibacterial Implant Protection in Orthopedics and Trauma: What’s New? // Travmatol. i Ortop. Ross. [Traumatology Orthop. Russ. 2019. Т. 25, № 4. С. 64–74. 179. Sadoghi P. и др. Revision surgery after total joint arthroplasty: A complication-based analysis using worldwide arthroplasty registers // J. Arthroplasty. J Arthroplasty, 2013. Т. 28, № 8. С. 1329–1332. 180. Luthringer T.A. и др. Periprosthetic Joint Infection After Hip and Knee Arthroplasty: A Review for Emergency Care Providers // Annals of Emergency Medicine. Mosby Inc., 2016. Т. 68, № 3. С. 324–334. 181. Wouthuyzen-Bakker M. и др. Timing of implant-removal in late acute periprosthetic joint infection: A multicenter observational study // J. Infect. 2019. Т. 79, № 3. С. 199–205. 182. Ghnaimat M. и др. Is DAIR Still an Effective Way to Eradicate Acute Prosthetic Joint Infections? Our Experience in the Jordanian Royal Medical Services // Med. Arch. (Sarajevo, Bosnia Herzegovina). Med Arch, 2021. Т. 75, № 6. С. 451–455. 183. Nurmohamed F.R.H.A. и др. One-year infection control rates of a DAIR (debridement, antibiotics and implant retention) procedure after primary and prosthetic-joint-infection-related revision arthroplasty - a retrospective cohort study // J. bone Jt. Infect. J Bone Jt Infect, 2021. Т. 6, № 4. С. 91–97. 184. van der Ende B. и др. Timing of debridement, antibiotics, and implant retention (DAIR) for early post-surgical hip and knee prosthetic joint infection (PJI) does not affect 1-year re-revision rates: data from the Dutch Arthroplasty Register. // J. bone Jt. Infect. Copernicus GmbH, 2021. Т. 6, № 8. С. 329–336. 185. Bryan A.J. и др. Irrigation and debridement with component retention for acute infection after hip arthroplasty : Improved results with contemporary management // J. Bone Jt. Surg. - Am. Vol. Lippincott Williams and Wilkins, 2017. Т. 99, № 23. С. 2011–2018. 186. Son W.S. и др. Efficacy of Open Debridement and Polyethylene Exchange in Strictly Selected Patients with Infection after Total Knee Arthroplasty // Knee Surg. Relat. Res. Springer Science and Business Media LLC, 2017. Т. 29, № 3. С. 172–179. 187. Tsang S.T.J. и др. Outcomes following debridement, antibiotics and implant retention in the management of periprosthetic infections of the hip: A review of cohort studies // Bone and Joint Journal. British Editorial Society of Bone and Joint Surgery, 2017. Т. 99B, № 11. С. 1458–1466. 188. Triantafyllopoulos G.K. и др. Implant retention after acute and hematogenous periprosthetic hip and knee infections: Whom, when and how? // World J. Orthop. 2016. Т. КР417 71 7, № 9. С. 546–552. 189. Buller L.T. и др. The Preoperative Prediction of Success Following Irrigation and Debridement With Polyethylene Exchange for Hip and Knee Prosthetic Joint Infections // J. Arthroplasty. Churchill Livingstone Inc., 2012. Т. 27, № 6. 190. Volpin A. и др. Aggressive Early Debridement in Treatment of Acute Periprosthetic Joint Infections After Hip and Knee Replacements // Open Orthop. J. Bentham Science Publishers Ltd., 2016. Т. 10, № 1. С. 669–678. 191. Swenson R.D. и др. Preoperative Anemia Is Associated With Failure of Open Debridement Polyethylene Exchange in Acute and Acute Hematogenous Prosthetic Joint Infection. // J. Arthroplasty. Churchill Livingstone Inc., 2018. Т. 33, № 6. С. 1855–1860. 192. Triantafyllopoulos G.K. и др. Implant retention after acute and hematogenous periprosthetic hip and knee infections: Whom, when and how? // World Journal of Orthopaedics. Baishideng Publishing Group Co, 2016. Т. 7, № 9. С. 546–552. 193. Rodríguez-Pardo D. и др. Gram-negative prosthetic joint infection: Outcome of a debridement, antibiotics and implant retention approach. A large multicentre study // Clin. Microbiol. Infect. Elsevier B.V., 2014. Т. 20, № 11. С. O911–O919. 194. Vilchez F. и др. Outcome and predictors of treatment failure in early post-surgical prosthetic joint infections due to Staphylococcus aureus treated with debridement // Clin. Microbiol. Infect. Blackwell Publishing Ltd, 2011. Т. 17, № 3. С. 439–444. 195. Konigsberg B.S. и др. Acute hematogenous infection following total hip and knee arthroplasty // J. Arthroplasty. J Arthroplasty, 2014. Т. 29, № 3. С. 469–472. 196. Sendi P. и др. Clinical comparison between exogenous and haematogenous periprosthetic joint infections caused by Staphylococcus aureus // Clin. Microbiol. Infect. Blackwell Publishing Ltd, 2011. Т. 17, № 7. С. 1098–1100. 197. Goud A.L. и др. Reinfection rates after one- and two-stage revision surgery for hip and knee arthroplasty: a systematic review and meta-analysis // Arch. Orthop. Trauma Surg. Arch Orthop Trauma Surg, 2021. 198. Kunutsor S.K. и др. Re-infection outcomes following one- and two-stage surgical revision of infected knee prosthesis: A systematic review and meta-analysis // PLoS One. Public Library of Science, 2016. Т. 11, № 3. 199. Van Den Kieboom J. и др. One-stage revision is as effective as twostage revision for chronic culture-negative periprosthetic joint infection after total hip and knee arthroplasty a retrospective cohort study // Bone Jt. J. British Editorial Society of Bone and Joint Surgery, 2021. Т. 103-B, № 3. С. 515–521. 200. Winkler H. и др. One stage uncemented revision of infected total hip replacement using cancellous allograft bone impregnated with antibiotics // J. Bone Jt. Surg. - Ser. B. J Bone Joint Surg Br, 2008. Т. 90, № 12. С. 1580–1584. 201. Whiteside L.A., Roy M.E. One-stage Revision With Catheter Infusion of Intraarticular Antibiotics Successfully Treats Infected THA. // Clin. Orthop. Relat. Res. Springer New York LLC, 2017. Т. 475, № 2. С. 419–429. 202. Gehrke T., Zahar A., Kendoff D. One-stage exchange: it all began here // Bone Joint J. Bone Joint J, 2013. Т. 95-B, № 11. С. 77–83. 203. Hip & Knee – ICM Philly [Электронный ресурс]. URL: https://icmphilly.com/hip-knee/ (дата обращения: 22.05.2020). 204. Zahar A. и др. Ten-Year Results Following One-Stage Septic Hip Exchange in the Management of Periprosthetic Joint Infection // J. Arthroplasty. Churchill Livingstone Inc., 2019. Т. 34, № 6. С. 1221–1226. 205. Bori G. и др. Preliminary Results After Changing From Two-Stage to One-Stage Revision Arthroplasty Protocol Using Cementless Arthroplasty for Chronic Infected Hip Replacements // J. Arthroplasty. Churchill Livingstone Inc., 2018. Т. 33, № 2. С. 527–532. 206. Jenny J.Y. и др. Routine one-stage exchange for chronic infection after total hip replacement // Int. Orthop. Springer Verlag, 2014. Т. 38, № 12. С. 2477–2481. 207. Jenny J.Y. и др. High infection control rate and function after routine one-stage exchange for chronically infected TKA knee // Clinical Orthopaedics and Related Research. Springer New York LLC, 2013. Т. 471, № 1. С. 238–243. 208. Wolf M. и др. Prosthetic joint infection following total hip replacement: Results of one-stage versus two-stage exchange // Int. Orthop. Springer Verlag, 2014. Т. 38, № 7. С. 1363–1368. 209. Zahar A., Gehrke T.A. One-Stage Revision for Infected Total Hip Arthroplasty // Orthopedic Clinics of North America. W.B. Saunders, 2016. Т. 47, № 1. С. 11–18. 210. Klouche S. и др. Infected total hip arthroplasty revision: One- or two-stage procedure? // Orthop. Traumatol. Surg. Res. Orthop Traumatol Surg Res, 2012. Т. 98, № 2. С. 144–150. 211. Akgün D. и др. Outcome of hip and knee periprosthetic joint infections caused by pathogens resistant to biofilm-active antibiotics: results from a prospective cohort study // Arch. Orthop. Trauma Surg. Springer Berlin Heidelberg, 2018. Т. 138, № 5. С. 635–642. 212. Kunutsor S.K. и др. Clinical Effectiveness of Treatment Strategies for Prosthetic Joint Infection Following Total Ankle Replacement: A Systematic Review and Meta-analysis // J. Foot Ankle Surg. J Foot Ankle Surg, 2020. Т. 59, № 2. С. 367–372. 213. Kunutsor S.K. и др. Re-infection outcomes following one- and two-stage surgical revision of infected knee prosthesis: A systematic review and meta-analysis // PLoS ONE. Public Library of Science, 2016. Т. 11, № 3. 214. Lichstein P. и др. Treatment of Periprosthetic Knee Infection With a Two-stage Protocol Using Static Spacers. // Clin. Orthop. Relat. Res. Springer New York LLC, 2016. Т. 474, № 1. С. 120–125. 215. Park S.J. и др. Comparison of static and mobile antibiotic-impregnated cement spacers for the treatment of infected total knee arthroplasty // Int. Orthop. Int Orthop, 2010. Т. 34, № 8. С. 1181–1186. 216. Chiang E.R. и др. Comparison of articulating and static spacers regarding infection with resistant organisms in total knee arthroplasty // Acta Orthop. Acta Orthop, 2011. Т. 82, № 4. С. 460–464. 217. Van Thiel G.S. и др. Intraoperative molds to create an articulating spacer for the infected knee arthroplasty // Clinical Orthopaedics and Related Research. Springer New York LLC, 2011. Т. 469, № 4. С. 994–1001. 218. Choi H.R., Malchau H. Are Prosthetic Spacers Safe to Use in 2-Stage Treatment for Infected Total Knee Arthroplasty? // J. Arthroplasty. Churchill Livingstone Inc., 2012. Т. 27, № 8. 219. Hofmann A.A. и др. Ten-year experience using an articulating antibiotic cement hip spacer for the treatment of chronically infected total hip // J. Arthroplasty. J Arthroplasty, 2005. Т. 20, № 7. С. 874–879. 220. Citak M. и др. Are Preformed Articulating Spacers Superior To Surgeon-Made Articulating Spacers in the Treatment Of PJI in THA? A Literature Review // Open Orthop. J. Bentham Science Publishers Ltd., 2015. Т. 9, № 1. С. 255–261. 221. Cabo J. и др. Clinical outcome and microbiological findings using antibiotic-loaded spacers in two-stage revision of prosthetic joint infections // J. Infect. J Infect, 2011. Т. 63, № 1. С. 23–31. 222. Sorlí L. и др. The relationship between microbiology results in the second of a two-stage exchange procedure using cement spacers and the outcome after revision total joint replacement for infection: The use of sonication to aid bacteriological analysis // J. Bone Jt. Surg. - Ser. B. J Bone Joint Surg Br, 2012. Т. 94 B, № 2. С. 249–253. 223. Nelson C.L. и др. Sonication of antibiotic spacers predicts failure during two-stage revision for prosthetic knee and hip infections // Clin. Orthop. Relat. Res. Springer New York LLC, 2014. Т. 472, № 7. С. 2208–2214. 224. El-Husseiny M., Haddad F.S. The Role of Highly Selective Implant Retention in the Infected Hip Arthroplasty. // Clin. Orthop. Relat. Res. Springer New York LLC, 2016. Т. КР417 73 474, № 10. С. 2157–2163. 225. Fukui K. и др. Should well-fixed uncemented femoral components be revised in infected hip arthroplasty? Report of five trial cases // J. Orthop. Reed Elsevier India Pvt. Ltd., 2016. Т. 13, № 4. С. 437–442. 226. Miner T.M. и др. The extended trochanteric osteotomy in revision hip arthroplasty: A critical review of 166 cases at mean 3-year, 9-month follow-up // J. Arthroplasty. Churchill Livingstone Inc., 2001. Т. 16, № 8 SUPPL. 1. С. 188–194. 227. Struhl S. и др. Infected uncemented hip arthroplasty. Preserving the femoral stem with a two-stage revision procedure // Orthop Rev. 1989. Т. 18, № 6. С. 707–712. 228. Ji B. и др. Retention of the well-fixed implant in the single-stage exchange for chronic infected total hip arthroplasty: an average of five years of follow-up // Int. Orthop. Springer Verlag, 2017. Т. 41, № 5. С. 901–909. 229. Rahman W.A., Kazi H.A., Gollish J.D. Results of single stage exchange arthroplasty with retention of well fixed cement-less femoral component in management of infected total hip arthroplasty // World J. Orthop. Baishideng Publishing Group Co, 2017. Т. 8, № 3. С. 264–270. 230. Triantafyllopoulos G.K. и др. Periprosthetic Infection Recurrence After 2-Stage Exchange Arthroplasty: Failure or Fate? // J. Arthroplasty. Churchill Livingstone Inc., 2017. Т. 32, № 2. С. 526–531. 231. Babis G.C. и др. Two-Stage Revision Protocol in Multidrug Resistant Periprosthetic Infection Following Total Hip Arthroplasty Using a Long Interval Between Stages // J. Arthroplasty. Churchill Livingstone Inc., 2015. Т. 30, № 9. С. 1602–1606. 232. Лю Б. и др. Эффективность первого этапа двухэтапной ревизии при параэндопротезной инфекции тазобедренного сустава // Травматология и ортопедия России. 2014. Т. 73, № 3. С. 5–14. 233. Edelstein A.I. и др. Nephrotoxicity After the Treatment of Periprosthetic Joint Infection With Antibiotic-Loaded Cement Spacers. // J. Arthroplasty. Churchill Livingstone Inc., 2018. Т. 33, № 7. С. 2225–2229. 234. Geller J.A. и др. Acute Kidney Injury After First-Stage Joint Revision for Infection: Risk Factors and the Impact of Antibiotic Dosing // J. Arthroplasty. Churchill Livingstone Inc., 2017. Т. 32, № 10. С. 3120–3125. 235. James A., Larson T. Acute renal failure after high-dose antibiotic bone cement: case report and review of the literature. // Ren. Fail. Taylor and Francis Ltd, 2015. Т. 37, № 6. С. 1061–1066. 236. Winkler T. и др. Outcome of short versus long interval in two-stage exchange for periprosthetic joint infection: a prospective cohort study. // Arch. Orthop. Trauma Surg. Springer Verlag, 2019. Т. 139, № 3. С. 295–303. 237. Karczewski D. и др. A standardized interdisciplinary algorithm for the treatment of prosthetic joint infections // Bone Joint J. British Editorial Society of Bone & Joint Surgery, 2019. Т. 101-B, № 2. С. 132–139. 238. Preininger B. и др. Inadequacy of joint aspiration for detection of persistent periprosthetic infection during two-stage septic revision knee surgery // Orthopedics. Slack Incorporated, 2017. Т. 40, № 4. С. 231–234. 239. Wechter J. и др. Improved survival of uncemented versus cemented femoral stems in patients aged < 70 years in a community total joint registry // Clin. Orthop. Relat. Res. Springer New York LLC, 2013. Т. 471, № 11. С. 3588–3595. 240. Edwards P.K. и др. Are cementless stems more durable than cemented stems in two-stage revisions of infected total knee arthroplasties? Infection // Clinical Orthopaedics and Related Research. Springer New York LLC, 2014. Т. 472, № 1. С. 206–211. 241. Gathen M. и др. Comparison of two-stage revision arthroplasty and intramedullary arthrodesis in patients with failed infected knee arthroplasty // Arch. Orthop. Trauma Surg. Springer Verlag, 2018. Т. 138, № 10. С. 1443–1452. КР417 74 242. Cochran A.R. и др. Risk of Reinfection After Treatment of Infected Total Knee Arthroplasty // J. Arthroplasty. Churchill Livingstone Inc., 2016. Т. 31, № 9. С. 156–161. 243. Fehring K.A. и др. Repeat two-stage exchange arthroplasty for periprosthetic knee infection is dependent on host grade // Journal of Bone and Joint Surgery - American Volume. Lippincott Williams and Wilkins, 2017. Т. 99, № 1. С. 19–24. 244. Byren I. и др. Randomized controlled trial of the safety and efficacy of daptomycin versus standard-of-care therapy for management of patients with osteomyelitis associated with prosthetic devices undergoing two-stage revision arthroplasty // Antimicrob. Agents Chemother. Antimicrob Agents Chemother, 2012. Т. 56, № 11. С. 5626–5632. 245. Божкова С.А. и др. Резекционная артропластика с пересадкой островкового мы-шечного лоскута у больных с перипротезной инфекцией // Хирургия. Журнал имени Н.И. Пирогова. 2020. № 2. С. 32–38. 246. Choa R. и др. Successful management of recalcitrant infection related to total hip replacement using pedicled rectus femoris or vastus lateralis muscle flaps // J. Bone Jt. Surg. - Ser. B. J Bone Joint Surg Br, 2011. Т. 93 B, № 6. С. 751–754. 247. Куляба Т.А., Корнилов Н.Н. Ревизионная артропластика коленного сустава. СПб.: РНИИТО им. Р.Р.Вредена, 2016. 168 с. 248. Balato G. и др. Re-infection rates and clinical outcomes following arthrodesis with intramedullary nail and external fixator for infected knee prosthesis: A systematic review and meta-analysis. // BMC Musculoskelet. Disord. BioMed Central Ltd., 2018. Т. 19, № 1. 249. Razii N. и др. Knee arthrodesis with a long intramedullary nail as limb salvage for complex periprosthetic infections // Eur. J. Orthop. Surg. Traumatol. Springer-Verlag France, 2016. Т. 26, № 8. С. 907–914. 250. Gathen M. и др. Comparison of two-stage revision arthroplasty and intramedullary arthrodesis in patients with failed infected knee arthroplasty // Arch. Orthop. Trauma Surg. Springer Verlag, 2018. Т. 138, № 10. С. 1443–1452. 251. Azzam K. и др. Outcome of a second two-stage reimplantation for periprosthetic knee infection // Clinical Orthopaedics and Related Research. Springer New York, 2009. Т. 467, № 7. С. 1706–1714. 252. Hawi N. и др. Septic single-stage knee arthrodesis after failed total knee arthroplasty using a cemented coupled nail // Bone Jt. J. British Editorial Society of Bone and Joint Surgery, 2015. Т. 97-B, № 5. С. 649–653. 253. Hungerer S. и др. Knee arthrodesis versus above-the-knee amputation after septic failure of revision total knee arthroplasty: Comparison of functional outcome and complication rates // BMC Musculoskelet. Disord. BioMed Central Ltd., 2017. Т. 18, № 1. 254. Wu C.H., Gray C.F., Lee G.C. Arthrodesis Should Be Strongly Considered After Failed Two-stage Reimplantation TKA // Clin. Orthop. Relat. Res. Springer New York LLC, 2014. Т. 472, № 11. С. 3295–3304. 255. Chen A.F. и др. Better function for fusions versus above-the-knee amputations for recurrent periprosthetic knee infection infection // Clinical Orthopaedics and Related Research. Springer New York LLC, 2012. Т. 470, № 10. С. 2737–2745. 256. Rodriguez-Merchan E.C. Knee Fusion or Above-The-Knee Amputation after Failed Two-Stage Reimplantation Total Knee Arthroplasty // Arch. Bone Jt. Surg. Mashhad University of Medical Sciences, 2015. Т. 3, № 4. С. 241. 257. Backe H.A., Wolff D.A., Windsor R.E. Total knee replacement infection after 2-stage reimplantation: Results of subsequent 2-stage // Clinical Orthopaedics and Related Research. Springer New York LLC, 1996. № 331. С. 125–131. 258. Moura D.L., Garruço A. Hip disarticulation - case series analysis and literature review // Rev. Bras. Ortop. Rev Bras Ortop, 2017. Т. 52, № 2. С. 154–158. 259. Zalavras C.G. и др. Hip disarticulation for severe lower extremity infections // Clinical Orthopaedics and Related Research. Springer New York, 2009. Т. 467, № 7. С. 1721–1726. 260. Kuo F.C. и др. Positive Blood Cultures Decrease the Treatment Success in Acute КР417 75 Hematogenous Periprosthetic Joint Infection Treated With Debridement, Antibiotics, and Implant Retention // J. Arthroplasty. Churchill Livingstone Inc., 2019. Т. 34, № 12. С. 3030-3034.e1. 261. Klement M.R. и др. Positive Blood Cultures in Periprosthetic Joint Infection Decrease Rate of Treatment Success // J. Arthroplasty. Churchill Livingstone Inc., 2018. Т. 33, № 1. С. 200-204.e1. 262. Kalbian I.L. и др. Treatment Outcomes and Attrition in Gram-Negative Periprosthetic Joint Infection // J. Arthroplasty. Churchill Livingstone Inc., 2020. Т. 35, № 3. С. 849–854. 263. Patel K.M. и др. Sepsis and Total Joint Arthroplasty // Orthop. Clin. North Am. Orthop Clin North Am, 2022. Т. 53, № 1. С. 13–24. 264. Lenguerrand E. и др. Risk factors associated with revision for prosthetic joint infection following knee replacement: an observational cohort study from England and Wales // Lancet Infect. Dis. 2019. Т. 19, № 6. 265. Lensen K.J. и др. Chronic prosthetic joint infections with a draining sinus. Who should receive suppressive antibiotic treatment? // J. Bone Jt. Infect. Copernicus GmbH, 2020. Т. 6, № 2. С. 43–45. 266. Lensen K.J.D.F. и др. The efficacy of suppressive antibiotic treatment in patients managed non-operatively for periprosthetic joint infection and a draining sinus // J. bone Jt. Infect. J Bone Jt Infect, 2021. Т. 6, № 7. С. 313–319. 267. Ferry T. и др. The CRIOAc healthcare network in France: A nationwide Health Ministry program to improve the management of bone and joint infection // Orthop. Traumatol. Surg. Res. Elsevier Masson SAS, 2019. Т. 105, № 1. С. 185–190. 268. Laurent E. и др. Multidisciplinary team meeting for complex bone and joint infections diagnosis: The PHICTOS study // Rev. Epidemiol. Sante Publique. Rev Epidemiol Sante Publique, 2019. Т. 67, № 3. С. 149–154. 269. Fang C. и др. Infection after fracture osteosynthesis - Part II: Treatment // J. Orthop. Surg. 2017. Т. 25, № 1. С. 1–11. 270. Mote G.A., Malay D.S. Efficacy of Power-pulsed Lavage in Lower Extremity Wound Infections: A Prospective Observational Study // J. Foot Ankle Surg. J Foot Ankle Surg, 2010. Т. 49, № 2. С. 135–142. 271. Bezstarosti H. и др. Insights into treatment and outcome of fracture-related infection: a systematic literature review // Archives of Orthopaedic and Trauma Surgery. Springer Verlag, 2019. Т. 139, № 1. С. 61–72. 272. Hake M.E. и др. Local antibiotic therapy strategies in orthopaedic trauma: Practical tips and tricks and review of the literature // Injury. Elsevier Ltd, 2015. Т. 46, № 8. С. 1447–1456. 273. Zhang Y. и др. Double-level bone transport for large post-traumatic tibial bone defects: a single centre experience of sixteen cases // Int. Orthop. Springer Verlag, 2018. Т. 42, № 5. С. 1157–1164. 274. Paley D., Herzenberg J.E. Intramedullary infections treated with antibiotic cement rods: Preliminary results in nine cases // J. Orthop. Trauma. J Orthop Trauma, 2002. Т. 16, № 10. С. 723–729. 275. Winkler H. Treatment of chronic orthopaedic infection // EFORT Open Reviews. British Editorial Society of Bone and Joint Surgery, 2017. Т. 2, № 5. С. 110–116. 276. Patzakis M.J., Zalavras C.G. Chronic posttraumatic osteomyelitis and infected nonunion of the tibia: current management concepts. // The Journal of the American Academy of Orthopaedic Surgeons. J Am Acad Orthop Surg, 2005. Т. 13, № 6. С. 417–427. 277. Kadhim M. и др. Treatment Options for Nonunion with Segmental Bone Defects: Systematic Review and Quantitative Evidence Synthesis // Journal of Orthopaedic Trauma. Lippincott Williams and Wilkins, 2017. Т. 31, № 2. С. 111–119. 278. Zhang Z. и др. Infection-free rates and Sequelae predict factors in bone transportation for infected tibia: A systematic review and meta-analysis // BMC Musculoskelet. Disord. BioMed Central Ltd., 2018. Т. 19, № 1. КР417 76 279. Gubin A. V. и др. Contribution of G.A. Ilizarov to bone reconstruction: historical achievements and state of the art // Strategies in Trauma and Limb Reconstruction. Springer-Verlag Italia s.r.l., 2016. Т. 11, № 3. С. 145–152. 280. McKee M.D. и др. A prospective, randomized clinical trial comparing an antibiotic-impregnated bioabsorbable bone substitute with standard antibiotic-impregnated cement beads in the treatment of chronic osteomyelitis and infected nonunion // J. Orthop. Trauma. J Orthop Trauma, 2010. Т. 24, № 8. С. 483–490. 281. Kocaoglu M. и др. Reconstruction of segmental bone defects due to chronic osteomyelitis with use of an external fixator and an intramedullary nail // J. Bone Jt. Surg. - Ser. A. J Bone Joint Surg Am, 2006. Т. 88, № 10. С. 2137–2145. 282. Li Z. и др. Distraction osteogenesis technique using an intramedullary nail and a monolateral external fixator in the reconstruction of massive postosteomyelitis skeletal defects of the femur // Can J Surg. 2009. Т. 52, № 2. 283. Aytaç S. и др. Posttraumatic and postoperative osteomyelitis: surgical revision strategy with persisting fistula // Arch. Orthop. Trauma Surg. Arch Orthop Trauma Surg, 2014. Т. 134, № 2. С. 159–165. 284. Berkes M. и др. Maintenance of hardware after early postoperative infection following fracture internal fixation // J. Bone Jt. Surg. - Ser. A. Journal of Bone and Joint Surgery Inc., 2010. Т. 92, № 4. С. 823–828. 285. Metsemakers W.J. и др. Evidence-Based Recommendations for Local Antimicrobial Strategies and Dead Space Management in Fracture-Related Infection // J. Orthop. Trauma. Lippincott Williams and Wilkins, 2020. Т. 34, № 1. С. 18–29. 286. Cierny G. Surgical treatment of osteomyelitis // Plast. Reconstr. Surg. Plast Reconstr Surg, 2011. Т. 127, № SUPPL. 1 S. 287. Клюшин Н.М. и др. Клинические рекомендации «Остеомиелит» [Электронный ресурс]. 2016. Т. 2016. С. 68. URL: http://kokb45.ru/wp-content/uploads/2018/06/Osteomielit.pdf. 288. Siddiqi A. и др. Perioperative antibiotic prophylaxis in total joint arthroplasty: A systematic review and meta-analysis // J. Bone Jt. Surg. - Am. Vol. Lippincott Williams and Wilkins, 2019. Т. 101, № 9. С. 828–842. 289. Backes M. и др. Wound Infections Following Implant removal below the knee: The effect of antibiotic prophylaxis; The WIFI-trial, a multi-centre randomized controlled trial // BMC Surg. BioMed Central Ltd., 2015. Т. 15, № 1. 290. Sanders F.R.K. и др. Comparison of 2g vs 1 g of Prophylactic Cefazolin in Surgical Site Infections in Trauma Surgery Below the Knee // Foot Ankle Int. SAGE Publications Inc., 2020. Т. 41, № 5. С. 582–589. 291. Chen P.J. и др. Topical antibiotic prophylaxis for surgical wound infections in clean and clean-contaminated surgery: a systematic review and meta-analysis // BJS open. BJS Open, 2021. Т. 5, № 6. 292. Kim P.H., Leopold S.S. Gustilo-Anderson classification // Clinical Orthopaedics and Related Research. Springer New York LLC, 2012. Т. 470, № 11. С. 3270–3274. 293. Sorger J.I. и др. Once daily, high dose versus divided, low dose gentamicin for open fractures // Clin. Orthop. Relat. Res. Clin Orthop Relat Res, 1999. Т. 366, № 366. С. 197–204. 294. Hoff W.S. и др. East practice management guidelines work group: Update to practice management guidelines for prophylactic antibiotic use in open fractures // J. Trauma - Inj. Infect. Crit. Care. J Trauma, 2011. Т. 70, № 3. С. 751–754. 295. Murray C.K. и др. Prevention of infections associated with combat-related extremity injuries // J. Trauma Inj. Infect. Crit. Care. 2011. Т. 71, № 2. 296. Takahara S. и др. Ampicillin/sulbactam versus cefazolin plus aminoglycosides for antimicrobial prophylaxis in management of Gustilo type IIIA open fractures: A retrospective cohort study // Injury. Injury, 2022. Т. 53, № 4. С. 1517–1522. КР417 77 297. Trauma – ICM Philly [Электронный ресурс]. URL: https://icmphilly.com/trauma/ (дата обращения: 25.05.2020). 298. Парвизи Д., Торстен Г. Материалы международной согласительной конференции по перипротезной инфекции. РНИИТО им. / под ред. Тихилова Р.М. СПб., 2014. 355 с. 299. Elia M. и др. A systematic review of the cost and cost effectiveness of using standard oral nutritional supplements in the hospital setting // Clin. Nutr. Churchill Livingstone, 2016. Т. 35, № 2. С. 370–380. 300. Metsemakers W.J. и др. General treatment principles for fracture-related infection: recommendations from an international expert group // Arch. Orthop. Trauma Surg. Springer, 2020. Т. 140, № 8. С. 1013–1027. 301. Gatin L. и др. Ceftaroline-fosamil efficacy against methicillin-resistant staphylococcus aureus in a rabbit prosthetic joint infection model // Antimicrob. Agents Chemother. American Society for Microbiology, 2014. Т. 58, № 11. С. 6496–6500. 302. Barber K.E. и др. Evaluation of ceftaroline alone and in combination against biofilm-producing methicillin-resistant Staphylococcus aureus with reduced susceptibility to daptomycin and vancomycin in an in vitro pharmacokinetic/pharmacodynamic model // Antimicrob. Agents Chemother. American Society for Microbiology, 2015. Т. 59, № 8. С. 4497–4503. 303. Garrigues G.E. и др. Proceedings from the 2018 International Consensus Meeting on Orthopedic Infections: evaluation of periprosthetic shoulder infection // J. Shoulder Elb. Surg. 2019. Т. 28, № 6. 304. Tang H. и др. In vitro efficacy of fosfomycin-containing regimens against methicillin-resistant Staphylococcus aureus in biofilms // J. Antimicrob. Chemother. 2012. Т. 67, № 4. С. 944–950. 305. Soriano A. и др. Efficacy and tolerability of prolonged linezolid therapy in the treatment of orthopedic implant infections // Eur. J. Clin. Microbiol. Infect. Dis. 2007. Т. 26, № 5. С. 353–356. 306. Rao N., Hamilton C.W. Efficacy and safety of linezolid for Gram-positive orthopedic infections: a prospective case series // Diagn. Microbiol. Infect. Dis. 2007. Т. 59, № 2. С. 173–179. 307. Schmidt-Malan S.M. и др. In vitro activity of tedizolid against staphylococci isolated from prosthetic joint infections // Diagn. Microbiol. Infect. Dis. Elsevier Inc., 2016. Т. 85, № 1. С. 77–79. 308. Tzeng A. и др. Treating periprosthetic joint infections as biofilms: Key diagnosis and management strategies // Diagn. Microbiol. Infect. Dis. Elsevier Inc., 2015. Т. 81, № 3. С. 192–200. 309. Assis L.M., Nedeljković M., Dessen A. New strategies for targeting and treatment of multi-drug resistant Staphylococcus aureus // Drug Resist. Updat. 2017. Т. 31, № 2017. С. 1–14. 310. Holmberg A., Rasmussen M. Antibiotic regimens with rifampicin for treatment of Enterococcus faecium in biofilms // Int. J. Antimicrob. Agents. Elsevier, 2014. Т. 44, № 1. С. 78–80. 311. Lomas J. Antimicrobial treatment in bone and joint infections // Orthop. Trauma. Elsevier Ltd, 2019. Т. 33, № 3. С. 153–159. 312. Corvec S. и др. Activities of fosfomycin, tigecycline, colistin, and gentamicin against extended-spectrum-lactamase-producing escherichia coli in a foreign-body infection model // Antimicrob. Agents Chemother. 2013. Т. 57, № 3. С. 1421–1427. 313. Ribera A. и др. Osteoarticular infection caused by MDR Pseudomonas aeruginosa: the benefits of combination therapy with colistin plus b-lactams // J Antimicrob Chemother. 2015. № 70. С. 3357. 314. Lora-Tamayo J. и др. Activity of colistin combined with doripenem at clinically relevant concentrations against multidrug-resistant pseudomonas aeruginosa in an in vitro dynamic КР417 78 biofilm model // J. Antimicrob. Chemother. 2014. Т. 69, № 9. С. 2434–2442. 315. Конев В.А. и др. Результаты применения фосфомицина для импрегнации остеозамещающих материалов при лечении хронического остеомиелита. 2016. Т. 22, № 2. С. 43–56. 316. Божкова С.А. и др. Фосфомицин — возможности применения для локальной терапии перипротезной инфекции // Клиническая микробиология и антимикробная химиотерапия. 2016. Т. 18, № 2. С. 104–112. 317. Божкова С.А. и др. Клинико-экономическая эффективность использования фосфомицина и ванкомицина для импрегнации спейсеров при хирургическом лечении пациентов с перипротезной инфекцией // Травматология и ортопедия России. 2017. № 2. С. 122–131.

Для продолжения работы требуется Registration
На предыдущую страницу

Предыдущая страница

Следующая страница

На следующую страницу
Список литературы
На предыдущую главу Предыдущая глава
оглавление
Следующая глава На следующую главу

Table of contents

Данный блок поддерживает скрол*