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Robotically Simulated Pivot Shift That Represents the Clinical Exam

机译:机器人模拟的枢轴转移代表临床检查

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ABSTRACT A thorough understanding of anterior cruciate ligament (ACL) function and the effects of surgical interventions on knee biomechanics requires robust technologies and simulation paradigms that align with clinical insight. In vitro orthopedic biomechanical testing for the elucidation of ACL integrity doesn't have an established testing paradigm to simulate the clinical pivot shift exam on cadaveric specimens. The study aim was to develop a robotically simulated pivot shift that represents the clinical exam. An orthopedic surgeon performed a pivot shift on an instrumented ACL‐deficient cadaver leg to capture 6 degree‐of‐freedom motion/loads. The same knee was mounted to the robot and the sensitivity of the motion/loading profiles quantified. Three loading profile candidates that generated positive pivot shifts on the instrumented knee were selected and applied to 7 ACL‐intact/deficient specimens and resulted in the identification of a profile that was able to induce a positive pivot shift in all ACL‐deficient specimens ( p ??0.001). The simulated shifts began at 22?±?8° and ended at 33?±?6° of flexion with the average magnitude of the shifts being 12.8?±?3.2?mm in anterior tibial translation and 17.6?±?4.3° in external tibial rotation. The establishment and replication of a robotically simulated clinical pivot shift across multiple specimens show the robustness of the loading profile to accommodate anatomical and experimental variability. Further evaluation and refinement should be undertaken to create a useful tool in evaluating ACL function and reconstruction techniques. Statement of clinical significance: Creation and successful demonstration of the simulated clinical pivot shift validates a profile for robotic musculoskeletal simulators to analyze ACL related clinical questions. ? 2019 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 37:2601–2608, 2019
机译:摘要对膝关节生物力学的前令韧带(ACL)功能和手术干预效果的彻底理解需要强大的技术和仿真范式,与临床洞察力保持一致。对ACL完整性阐明的体外骨科生物力学测试没有建立的检测范例,以模拟尸体标本上的临床枢轴转变考试。研究目的是开发一种机器人模拟的枢轴转变,代表临床检查。矫形外科医生在仪表的ACL缺陷的尸体腿上进行了枢轴偏移,以捕获6个自由度运动/载荷。将相同的膝盖安装在机器人上和量化的运动/装载轮廓的灵敏度。选择仪表膝关节上的阳性枢轴偏移的三个装载简介候选物并施加到7个ACL-完整/缺陷的标本上,并导致识别能够在所有ACL缺陷的样本中诱导正枢转偏移的轮廓(P ?& 0.001)。模拟换档开始于22?±8°,并以33°θ±6°的屈曲结束,平均速度为12.8?±3.2Ω·mm,在外部胫骨翻译和17.6?±4.3°胫骨旋转。跨多个样本的机器人模拟临床枢轴偏移的建立和复制显示了装载型材的鲁棒性,以适应解剖学和实验性变异性。应进行进一步的评估和改进,以在评估ACL功能和重建技术方面创建有用的工具。临床意义陈述:模拟临床枢轴偏移的创建和成功示范验证了机器人肌肉骨骼模拟器的简介,以分析ACL相关的临床问题。还2019年骨科研究会。由Wiley期刊出版,Inc.J Orthop Res 37:2601-2608,2019

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