a:1:{s:5:"en_US";s:21:"Università di Torino";}.
Università di Torino.
Acta Biomed. 2021 Nov 3;92(5):e2021295. doi: 10.23750/abm.v92i5.9988.
Background and aim of the work Implant dislocation in total hip arthroplasties (THA) is a common concern amongst the orthopedic surgeons and represents the most frequent complication after primary implant. Several causes could be responsible for the dislocation, including the malpositioning of the components. Conventional imaging techniques frequently fail to detect the mechanical source of dislocation mainly because they could not reproduce a dynamic evaluation of the components. The purpose of this study was to elaborate a diagnostic tool capable to virtually assess if the range of movement (ROM) of a THA is free from anterior and/or superior mechanical impingement. The ultimate aim is to give the surgeon the possibility to weigh the mechanical contribution in a THA dislocation. Methods A group of patients who underwent THA revision for acute dislocation was compared to a group of non-dislocating THA. CT scans and a virtual model of each patient was obtained. A software called "Prosthesis Impingement Simulator (PIS)" was developed for simulating the (ROM) of the prosthetic hip. The ROM free of mechanical impingement was compared between the two groups. Results The PIS test could detect the dislocations with a sensitivity of 71,4%, and a specificity of 85,7%. The Fisher's exact test showed a p-value of 0,02. The Chi-square test found a p-value of 0,009. Conclusion The PIS seems to be an effective tool for the determination of hip prosthetic impingement, as the main aid of the software is the exclusion of mechanical causes in the event of a dislocation.
背景与目的 全髋关节置换术后假体脱位是骨科医生普遍关注的问题,也是初次植入后最常见的并发症。假体脱位的原因很多,包括假体位置不当。传统的影像学技术常常无法检测到脱位的机械原因,主要是因为它们无法对假体进行动态评估。本研究的目的是开发一种诊断工具,能够虚拟评估全髋关节置换术后的活动范围是否存在前向和/或上向机械撞击。最终目的是为外科医生提供评估全髋关节置换术后机械因素参与脱位的可能性。 方法 将接受全髋关节置换术翻修术治疗急性脱位的患者与未脱位的全髋关节置换术患者进行比较。对每位患者进行 CT 扫描和虚拟模型检查。开发了一种名为“假体撞击模拟器(PIS)”的软件,用于模拟假体髋关节的活动范围。比较两组患者的无机械撞击活动范围。 结果 PIS 测试的敏感度为 71.4%,特异度为 85.7%。Fisher 精确检验的 p 值为 0.02。卡方检验的 p 值为 0.009。 结论 PIS 似乎是一种有效的髋关节假体撞击检测工具,因为该软件的主要辅助手段是在发生脱位时排除机械原因。