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首页> 外文期刊>Neural Systems and Rehabilitation Engineering, IEEE Transactions on >Miniature Low-Power Inertial Sensors: Promising Technology for Implantable Motion Capture Systems
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Miniature Low-Power Inertial Sensors: Promising Technology for Implantable Motion Capture Systems

机译:微型低功耗惯性传感器:用于植入式运动捕捉系统的有前途的技术

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摘要

Inertial and magnetic sensors are valuable for untethered, self-contained human movement analysis. Very recently, complete integration of inertial sensors, magnetic sensors, and processing into single packages, has resulted in miniature, low power devices that could feasibly be employed in an implantable motion capture system. We developed a wearable sensor system based on a commercially available system-in-package inertial and magnetic sensor. We characterized the accuracy of the system in measuring 3-D orientation—with and without magnetometer-based heading compensation—relative to a research grade optical motion capture system. The root mean square error was less than 4 in dynamic and static conditions about all axes. Using four sensors, recording from seven degrees-of-freedom of the upper limb (shoulder, elbow, wrist) was demonstrated in one subject during reaching motions. Very high correlation and low error was found across all joints relative to the optical motion capture system. Findings were similar to previous publications using inertial sensors, but at a fraction of the power consumption and size of the sensors. Such ultra-small, low power sensors provide exciting new avenues for movement monitoring for various movement disorders, movement-based command interfaces for assistive devices, and implementation of kinematic feedback systems for assistive interventions like functional electrical stimulation.
机译:惯性和磁传感器对于不受限制的,独立的人体运动分析非常有价值。最近,将惯性传感器,磁传感器和处理过程完全集成到单个封装中,已经产生了可在植入式运动捕捉系统中可行采用的小型,低功耗设备。我们基于市售的封装内惯性和磁传感器开发了可穿戴传感器系统。我们相对于研究级的光学运动捕捉系统,表征了该系统在测量3-D方向(带有和不带有基于磁力计的航向补偿)时的准确性。在所有轴的动态和静态条件下,均方根误差均小于4。使用四个传感器,在运动过程中在一个对象中演示了从上肢的七个自由度(肩膀,肘部,腕部)进行记录。相对于光学运动捕获系统,在所有关节上发现非常高的相关性和低误差。研究结果与以前使用惯性传感器的出版物相似,但其功耗和传感器尺寸仅为其一小部分。这种超小型,低功耗传感器为各种运动异常的运动监测,辅助设备的基于运动的命令界面以及运动反馈系统的实现提供了令人兴奋的新途径,以用于诸如功能性电刺激之类的辅助干预。

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