Dtsch Arztebl Int. 2014 Dec 22;111(51-52):884-90. doi: 10.3238/arztebl.2014.0884.
PMID:25597367
Study on the effect of artificial joint replacement for osteosarcoma.
Hou S, Ni X, Wang J, Ding R, Liu T.
Medicine (Baltimore). 2023 Feb 22;102(8):e32896. doi: 10.1097/MD.0000000000032896.
PMID:36827028
FBN1-Related Marfan Syndrome.
Dietz H.
2001 Apr 18 [updated 2022 Feb 17]. In: Adam MP, Feldman J, Mirzaa GM, Pagon RA, Wallace SE, Amemiya A, editors. GeneReviews® [Internet]. Seattle (WA): University of Washington, Seattle; 1993–2025.
PMID:20301510
Estimation of the effects of inset heights and slit configurations in an acetabular cup on the pull-out behavior of an artificial hip joint with a structure for preventing dislocation using finite element analysis.
Kawamura Y, Ohmasa M, Kobayashi T, Matsufuji Y, Saito M, Uwa Y, Washio S, Yamamoto E.
Med Biol Eng Comput. 2020 Oct;58(10):2587-2601. doi: 10.1007/s11517-020-02231-8. Epub 2020 Aug 21.
Hip arthroplasty dislocation risk calculator: evaluation of one million primary implants and twenty-five thousand dislocations with deep learning artificial intelligence in a systematic review of reviews.
Hernigou P, Barbier O, Chenaie P.
Int Orthop. 2023 Feb;47(2):557-571. doi: 10.1007/s00264-022-05644-2. Epub 2022 Nov 29.
PMID:36445413
[Research progress of artificial wrist joint prosthesis].
Cai X, Ding J, Xu Y.
Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi. 2018 Apr 15;32(4):501-504. doi: 10.7507/1002-1892.201712031.
PMID:29806311
Concerns surrounding application of artificial intelligence in hip and knee arthroplasty : a review of literature and recommendations for meaningful adoption.
Polisetty TS, Jain S, Pang M, Karnuta JM, Vigdorchik JM, Nawabi DH, Wyles CC, Ramkumar PN.
Bone Joint J. 2022 Dec;104-B(12):1292-1303. doi: 10.1302/0301-620X.104B12.BJJ-2022-0922.R1.