[1]
|
di benedetto, p., di benedetto, e.d., salviato, d., et al. (2017) acute periprosthetic knee infection: is there still a role for dair? acta biomedica, 88, 84-91.
|
[2]
|
parvizi, j., zmistowski, b. and adeli, b. (2010) periprosthetic joint infection: treatment options. orthopedics, 33, article 659.
|
[3]
|
rodríguez, d., pigrau, c., euba, g., cobo, j., garcía-lechuz, j., palomino, j., et al. (2010) acute haematogenous prosthetic joint infection: prospective evaluation of medical and surgical management. clinical microbiology and infection, 16, 1789-1795.
|
[4]
|
vilchez, f., martínez-pastor, j.c., garcía-ramiro, s., bori, g., tornero, e., garcía, e., et al. (2011) efficacy of debridement in hematogenous and early post-surgical prosthetic joint infections. the international journal of artificial organs, 34, 863-869.
|
[5]
|
wouthuyzen-bakker, m., sebillotte, m., lomas, j., taylor, a., palomares, e.b., murillo, o., et al. (2019) clinical outcome and risk factors for failure in late acute prosthetic joint infections treated with debridement and implant retention. journal of infection, 78, 40-47.
|
[6]
|
shohat, n., goswami, k., tan, t.l., fillingham, y. and parvizi, j. (2019) increased failure after irrigation and debridement for acute hematogenous periprosthetic joint infection. journal of bone and joint surgery, 101, 696-703.
|
[7]
|
pansu, n., hamoui, m., manna, f., makinson, a., dufour, s., morquin, d., et al. (2020) implant retention and high rate of treatment failure in hematogenous acute knee and hip prosthetic joint infections. médecine et maladies infectieuses, 50, 702-708.
|
[8]
|
zeller, v., kerroumi, y., meyssonnier, v., heym, b., metten, m., desplaces, n., et al. (2018) analysis of postoperative and hematogenous prosthetic joint-infection microbiological patterns in a large cohort. journal of infection, 76, 328-334.
|
[9]
|
李程, 安德烈坦普斯. 欧洲人工关节置换术后假体关节周围感染的细菌学分析[j]. 现代医药卫生, 2017, 33(1): 21-24.
|
[10]
|
zmistowski, b., fedorka, c.j., sheehan, e., deirmengian, g., austin, m.s. and parvizi, j. (2011) prosthetic joint infection caused by gram-negative organisms. the journal of arthroplasty, 26, 104-108.
|
[11]
|
wouthuyzen-bakker, m., sebillotte, m., huotari, k., escudero sánchez, r., benavent, e., parvizi, j., et al. (2020) lower success rate of débridement and implant retention in late acute versus early acute periprosthetic joint infection caused by staphylococcus spp. results from a matched cohort study. clinical orthopaedics & related research, 478, 1348-1355.
|
[12]
|
knoll, l., steppacher, s.d., furrer, h., thurnheer-zürcher, m.c. and renz, n. (2023) high treatment failure rate in haematogenous compared to non-haematogenous periprosthetic joint infection. the bone & joint journal, 105, 1294-1302.
|
[13]
|
anagnostakos, k. (2014) can periprosthetic hip joint infections be successfully managed by debridement and prosthesis retention? world journal of orthopedics, 5, article 218.
|
[14]
|
vilchez, f., martínez-pastor, j.c., garcía-ramiro, s., bori, g., maculé, f., sierra, j., et al. (2011) outcome and predictors of treatment failure in early post-surgical prosthetic joint infections due to staphylococcus aureus treated with debridement. clinical microbiology and infection, 17, 439-444.
|
[15]
|
izakovicova, p., borens, o. and trampuz, a. (2019) periprosthetic joint infection: current concepts and outlook. efort open reviews, 4, 482-494.
|