医学
缺血性坏死
运动医学
植入
骨科手术
关节置换术
机器人学
外科
物理疗法
人工智能
机器人
股骨头
计算机科学
作者
Tracy M. Borsinger,Sonia K. Chandi,Simarjeet Puri,Eytan M. Debbi,Jason L. Blevins,Brian P. Chalmers
出处
期刊:HSS Journal
[SAGE]
日期:2023-08-18
卷期号:19 (4): 478-485
标识
DOI:10.1177/15563316231193704
摘要
While total hip arthroplasty (THA) remains effective for improvement of pain and function in patients with osteoarthritis and avascular necrosis, there remain areas of continued pursuit of excellence, including decreasing rates of dislocation, leg length discrepancy, implant loosening, and infection. This review article covers several bearing surfaces and articulations, computer-assisted navigation and robotic technology, and minimally invasive surgical approaches that have sought to improve such outcomes. Perhaps the most significant improvement to THA implant longevity has been the broad adoption of highly cross-linked polyethylene, with low wear rates. Similarly, navigation and robotic technology has proven to more reproducibly achieve intraoperative component positioning, which has demonstrated clinical benefit with decreased risk of dislocation in a number of studies. Given the projected increase in THA over the coming decades, continued investigation of effective incorporation of technology, soft tissue-sparing approaches, and durable implants is imperative to continued pursuit of improved outcomes in THA.
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