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A Sensor Array for the Measurement of Relative Motion in Lower Limb Prosthetic Sockets

机译:用于测量下肢假肢相对运动的传感器阵列

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摘要

The relative motion between residual limb and prosthetic socket could be a relevant factor in quantifying socket fit. The measurement of these movements, particularly in dynamic gait situations, poses a challenging task. This paper presents the realization of a measurement concept based on multiple optical 2D-motion sensors. The performance of the system was evaluated on a test rig considering accuracy and precision as well as accomplished measurement frequency and reliability of the system. Additionally, results of a pilot study measuring the relative motion between residual limb and prosthetic socket at seven specific locations of one individual with transtibial amputation during straight level walking are presented. The sensor functionality of the array was confirmed and the test rig experiments were comparable to the previously tested functional model (errrel=0.52±1.87%). With a sampling frequency of 1.3 kHz to be distributed among the number of sensor units, the developed system is suitable for investigating the relative movement between residual limb and prosthetic socket in dynamic gait situations. Results of the pilot study show the majority of relative motion occurring during the second half of the gait cycle. The measured relative motions show the residual limb sinking deeper into the socket, extending in the Sagittal plane and rotating internally in the Transverse plane during stance phase. Data captured during swing phase indicate a lower limb extension in the Sagittal plane as well as an external rotation in the Transverse plane.
机译:残肢与假牙窝之间的相对运动可能是量化牙窝配合的相关因素。这些运动的测量,特别是在动态步态下,是一项艰巨的任务。本文介绍了基于多个光学2D运动传感器的测量概念的实现。该系统的性能在测试设备上进行了评估,其中考虑了准确性和精度以及已完成的测量频率和系统的可靠性。此外,还提供了一项初步研究的结果,该研究测量了在直行步行过程中经胫骨截肢的个人的七个特定位置处残肢与假肢之间的相对运动。确认了阵列的传感器功能,并且测试装备实验与之前测试的功能模型相当( e r r rel = 0.52 ± 1.87 %)。该系统的采样频率为1.3 kHz,可在多个传感器单元之间分配,适用于研究动态步态情况下残肢与假牙窝之间的相对运动。初步研究结果表明,大多数相对运动发生在步态周期的后半段。测得的相对运动表明,在站立阶段,残余肢体更深地沉入窝中,在矢状平面内延伸,并在横向平面内向内旋转。在挥杆阶段捕获的数据表明在矢状面中的下肢伸展以及在横断面中的外旋。

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