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A cadaver-based biomechanical model of acetabulum reaming for surgical virtual reality training simulators

机译:基于徒步旅行者的髋臼生物力学模型,用于外科虚拟现实训练模拟器

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Total hip arthroplasty (THA) is a highly successful surgical procedure, but complications remain, including aseptic loosening, early dislocation and misalignment. These may partly be related to lacking training opportunities for novices or those performing THA less frequently. A standardized training setting with realistic haptic feedback for THA does not exist to date. Virtual Reality (VR) may help establish THA training scenarios under standardized settings, morphology and material properties. This work summarizes the development and acquisition of mechanical properties on hip reaming, resulting in a tissue-based material model of the acetabulum for force feedback VR hip reaming simulators. With the given forces and torques occurring during the reaming, Cubic Hermite Spline interpolation seemed the most suitable approach to represent the nonlinear force–displacement behavior of the acetabular tissues over Cubic Splines. Further, Cubic Hermite Splines allowed for a rapid force feedback computation below the 1?ms hallmark. The Cubic Hermite Spline material model was implemented using a three-dimensional-sphere packing model. The resulting forces were delivered via a human–machine-interaction certified KUKA iiwa robotic arm used as a force feedback device. Consequently, this novel approach presents a concept to obtain mechanical data from high-force surgical interventions as baseline data for material models and biomechanical considerations; this will allow THA surgeons to train with a variety of machining hardness levels of acetabula for haptic VR acetabulum reaming.
机译:总髋关节关节成形术(THA)是一种非常成功的外科手术,但并发症仍然存在,包括无菌松动,早期脱位和未对准。这些可能与缺乏新手或那些频繁的人缺乏培训机会有关。迄今为止,具有现实触觉反馈的标准化培训设置不存在。虚拟现实(VR)可以帮助在标准化设置,形态和材料属性下建立培训方案。这项工作总结了对髋部铰孔的机械性能的开发和获取,导致髋臼的基于组织的材料模型,用于力反馈VR臀部铰孔模拟器。通过在铰孔期间发生的给定力和扭矩,立方Hermite花粉内插似乎是最合适的方法来表示髋臼组织在立方样条上的非线性力 - 位移行为。此外,立方Hermite花键允许在1?MS Hallmark以下的快速反馈计算。使用三维 - 球形包装模型实现了立方Hermite花粉材料模型。由此产生的力通过用作力反馈装置的人机交互认证的Kuka IIWA机器人臂提供。因此,这种新颖的方法呈现了从高力外科干预获得机械数据的概念,作为材料模型和生物力学考虑的基线数据;这将允许外科医生用各种加工硬度水平的AceTabula用于触觉vr髋臼钻孔。

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