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A Digital Goniometer based on encoders for measuring knee-joint position in an orthosis

机译:基于编码器的数字测角仪,用于测量矫形器中的膝关节位置

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Angular measurements of knee joint are a key factor in orthoses design, actually is very important for human gait analysis in order to obtain a deep knowledge of the musculoskeletal system performance. Video-based motion analysis systems have been used as measurement tools to quantify the angle and movement of knee joint. Though this technique is good, it requires special equipment and high computational cost. This work introduces a novel method of knee joint measurement. The design is mainly based on the contactless magnetic absolute encoder AS5040 (Austria Microsystems®, USA), and the microprocessor type PIC16F877A. The developed device has a resolution of 0.35 degrees, quite enough for an orthosis that requires knee position measurements. The reliability of the system was evaluated by making: 1) Static measurements by using a mechanical goniometer as reference, in which a correlation up to 0.999 was obtained. 2) Dynamical measurements by performing flexion-extension movements by a healthy subject and comparing the records with a commercial motion analysis system (APAS®, USA). A correlation of 0.9943 was obtained. Besides, trials were performed by three subjects under natural gait.
机译:膝关节的角度测量是矫形器设计中的关键因素,实际上对人的步态分析非常重要,以便对肌肉骨骼系统的性能有深入的了解。基于视频的运动分析系统已被用作测量工具,以量化膝关节的角度和运动。尽管此技术很好,但它需要专用设备和较高的计算成本。这项工作介绍了一种新颖的膝关节测量方法。该设计主要基于非接触式磁性绝对值编码器AS5040(美国奥地利Microsystems®)和PIC16F877A型微处理器。开发的设备具有0.35度的分辨率,足以满足需要测量膝盖位置的矫形器的要求。通过以下方法评估系统的可靠性:1)使用机械测角仪作为参考进行静态测量,其中相关性最高为0.999。 2)通过进行健康受试者的屈伸运动并将记录与商用运动分析系统(美国APAS®)进行比较来进行动态测量。相关系数为0.9943。此外,三名受试者在自然步态下进行了试验。

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