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Multi-Indenter Device for in Vivo Biomechanical Tissue Measurement

机译:用于体内生物力学组织测量的多压头装置

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Biomechanical tissue properties have been hypothesized to play a critical role in the quantification of prosthetic socket production for individuals with limb amputation. In this investigation, a novel indenter platform is presented and its performance evaluated for the purposes of residual-limb tissue characterization. The indenter comprised 14 position- and force-controllable actuators that circumferentially surround a biological residuum to form an actuator ring. Each indenter actuator was individually controllable in position ( {{97.1}}~mu {text {m}}97.1 μm accuracy) and force (330 mN accuracy) at a PC controller feedback rate of 500 Hz, allowing for a range of measurement across a residual stump. Data were collected from 162 sensors over an EtherCAT fieldbus to characterize the mechanical hyperviscoelastic tissue response of two transtibial residual-limbs from a study participant with bilateral amputations. At five distinct anatomical locations across the residual-limb, force versus deflection data—including hyperviscoelastic tissue properties—are presented, demonstrating the accuracy and versatility of the multi-indenter platform for residual-limb tissue characterization.
机译:假设生物力学组织特性在肢体截肢患者假牙窝产生的量化中起关键作用。在这项研究中,提出了一种新型压头平台,并对其性能进行了评估,以表征残肢组织。压头包括14个位置和力可控制的致动器,其沿周向围绕生物残留物以形成致动器环。每个压头执行器的位置({{97.1}}〜mu {text {m}} 97.1μm精度)和力(330 mN精度)可以分别控制在500 Hz的PC控制器反馈速率下,从而可进行跨范围的测量残留的树桩。在EtherCAT现场总线上从162个传感器中收集了数据,以表征研究参与者双侧截肢的两个胫骨残余肢的机械性高粘弹性组织反应。在整个残肢的五个不同的解剖位置,显示了力与挠度的数据(包括超粘弹性组织特性),证明了用于残肢组织表征的多压头平台的准确性和多功能性。

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