Implantable transducer for two-degree of freedom joint angle sensing.

M W Johnson, P H Peckham, N Bhadra, K L Kilgore, M M Gazdik, M W Keith, P Strojnik
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引用次数: 61

Abstract

An implantable joint angle transducer (IJAT) was developed to provide command-control and feedback-control information for chronic use with functional neuromuscular stimulation (FNS) neuroprostheses. The IJAT uses Hall effect sensors to transduce joint angle. A titanium encapsulated array of Hall effect sensors and support circuitry is surgically implanted in one bone, and a similarly encapsulated permanent magnet in an opposing bone, across a joint. The IJAT provides consistent, reliable, high quality signals that reflect joint movement from midsized two-degree-of-freedom joints. IJAT's were implanted using a chronic in vivo dog model to demonstrate the feasibility of implantation and periodic measurement techniques, and to validate modeling techniques used for prediction of function and calibration. The flexion resolution ranged from 0.4 to 3.0 degrees over a range of 115 degrees. The maximum deviation from a linear response was 9 degrees. The resolution and linearity depend on several transducer and joint geometry parameters, and can be predicted prior to implantation and calibrated after implantation. The results of this study 1) defined the most appropriate hermetic capsule designs for the IJAT sensor and magnet, 2) defined the best orientation of the magnetic field to optimize device function, 3) provided a computer model of the IJAT to aid in placement, calibration, and evaluation of the device, 4) verified the surgical techniques used to implant the device, and 5) verified the long-term functionality and the biocompatibility of the device.

用于二自由度关节角度传感的可植入传感器。
研制了一种可植入关节角度传感器(IJAT),为功能性神经肌肉刺激(FNS)神经假体的慢性使用提供指挥控制和反馈控制信息。IJAT使用霍尔效应传感器来传递关节角度。一个钛封装的霍尔效应传感器阵列和支持电路通过手术植入一块骨头,并在另一块骨头上通过关节植入一个类似封装的永磁体。IJAT提供一致、可靠、高质量的信号,反映中等大小的二自由度关节的关节运动。IJAT的植入采用慢性体内狗模型,以证明植入和周期性测量技术的可行性,并验证用于预测功能和校准的建模技术。在115度范围内,屈曲分辨率从0.4度到3.0度不等。与线性响应的最大偏差为9度。分辨率和线性度取决于几个传感器和关节几何参数,并且可以在植入前预测和植入后校准。本研究的结果1)定义了IJAT传感器和磁铁的最合适的密封胶囊设计,2)定义了磁场的最佳方向以优化设备功能,3)提供了IJAT的计算机模型以帮助设备的放置,校准和评估,4)验证了用于植入设备的手术技术,5)验证了设备的长期功能和生物相容性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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