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Open Knee: Open Source Modeling Simulation to Enable Scientific Discovery and Clinical Care in Knee Biomechanics

机译:开放式膝盖:开放源代码建模和仿真可在膝盖生物力学中实现科学发现和临床护理

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摘要

Virtual representations of the knee joint can provide clinicians, scientists, and engineers the tools to explore mechanical function of the knee and its tissue structures in health and disease. Modeling and simulation approaches such as finite element analysis also provide the possibility to understand the influence of surgical procedures and implants on joint stresses and tissue deformations. A large number of knee joint models are described in the biomechanics literature. However, freely accessible, customizable, and easy-to-use models are scarce. Availability of such models can accelerate clinical translation of simulations, where labor intensive reproduction of model development steps can be avoided. The interested parties can immediately utilize readily available models for scientific discovery and for clinical care. Motivated by this gap, this study aims to describe an open source and freely available finite element representation of the tibiofemoral joint, namely Open Knee, which includes detailed anatomical representation of the joint's major tissue structures, their nonlinear mechanical properties and interactions. Three use cases illustrate customization potential of the model, its predictive capacity, and its scientific and clinical utility: prediction of joint movements during passive flexion, examining the role of meniscectomy on contact mechanics and joint movements, and understanding anterior cruciate ligament mechanics. A summary of scientific and clinically directed studies conducted by other investigators are also provided. The utilization of this open source model by groups other than its developers emphasizes the premise of model sharing as an accelerator of simulation-based medicine. Finally, the imminent need to develop next generation knee models are noted. These are anticipated to incorporate individualized anatomy and tissue properties supported by specimen-specific joint mechanics data for evaluation, all acquired in vitro from varying age groups and pathological states.
机译:膝关节的虚拟表示可以为临床医生,科学家和工程师提供工具,以探索膝盖及其组织结构在健康和疾病中的机械功能。诸如有限元分析之类的建模和仿真方法还提供了理解手术程序和植入物对关节应力和组织变形的影响的可能性。生物力学文献中描述了许多膝关节模型。但是,缺乏可自由访问,可自定义和易于使用的模型。此类模型的可用性可以加速模拟的临床翻译,从而可以避免劳动密集型地复制模型开发步骤。感兴趣的各方可以立即利用现成的模型进行科学发现和临床护理。受这一差距的驱使,本研究旨在描述胫股关节的一种开放源代码和可免费获得的有限元表示形式,即“开放式膝关节”,其中包括关节主要组织结构,其非线性力学特性和相互作用的详细解剖学表示。三个用例说明了该模型的定制潜力,其预测能力及其科学和临床实用性:预测被动屈曲过程中的关节运动,检查半月板切除术在接触力学和关节运动中的作用以及了解前十字韧带力学。还提供了其他研究者进行的科学和临床指导研究的摘要。除其开发人员外,其他团体对这种开源模型的利用也强调了模型共享作为基于模拟医学的加速器的前提。最后,指出了开发下一代膝盖模型的迫切需求。预期这些将结合个体化的解剖学和组织特性,并由标本特定的关节力学数据支持以进行评估,所有这些都是从不同年龄组和病理状态体外获得的。

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