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A handheld computer as part of a portable in vivo knee joint load monitoring system

机译:便携式计算机作为便携式体内膝关节负荷监测系统的一部分

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摘要

In vivo measurement of loads and pressures acting on articular cartilage in the knee joint during various activities and rehabilitative therapies following focal defect repair will provide a means of designing activities that encourage faster and more complete healing of focal defects.It was the goal of this study to develop a totally portable monitoring system that could be used during various activities and allow continuous monitoring of forces acting on the knee. In order to make the monitoring system portable, a handheld computer with custom software, a USB powered miniature wireless receiver and a battery-powered coil were developed to replace a currently used computer, AC powered bench top receiver and power supply.A Dell handheld running Windows Mobile operating system(OS) programmed using Labview was used to collect strain measurements. Measurements collected by the handheld based system connected to the miniature wireless receiver were compared with the measurements collected by a hardwired system and a computer based system during bench top testing and in vivo testing. The newly developed handheld based system had a maximum accuracy of 99% when compared to the computer based system.
机译:体内测量在各种活动期间对膝关节的关节软骨施加的压力和压力的体内测量以及局灶性缺损修复后的康复疗法将提供一种设计活动的手段,以鼓励更快,更彻底地修复局灶性缺陷。这是本研究的目标。开发一种可以在各种活动中使用的完全便携式的监视系统,并可以连续监视作用在膝盖上的力。为了使监控系统具有便携性,开发了带有定制软件的手持计算机,USB供电的微型无线接收器和电池供电的线圈,以取代当前使用的计算机,交流供电的台式接收器和电源。使用Labview编程的Windows Mobile操作系统(OS)收集了应变测量值。在台式测试和体内测试过程中,将与微型无线接收器相连的基于手持系统的测量结果与由有线系统和基于计算机的系统收集的测量结果进行比较。与基于计算机的系统相比,新开发的基于手持机的系统具有99%的最大精度。

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