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A direct brain interface to restore function in humans with spinal cord injury

机译:直接的大脑接口可恢复脊髓损伤患者的功能

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Summary form only given. We describe the design of a compact, wireless sensor module designed to capture expressive gestures in real-time when worn at the hands and feet of a dancer. Each sensor includes a 6-axis inertial measurement unit (IMU) that contains three orthogonal gyroscopes and accelerometers in order to capture local dynamics, as well as a capacitive sensor to measure node-to-node proximity. Signal conditioning to support a resistive sensor (e.g., bend or pressure measurement) is also included, and a compact expansion port is available with free digital inputs and an SPI interface. The onboard radio transceiver supports a power-efficient, high-speed RF network capable of real-time data acquisition from several devices simultaneously, thereby meeting the requirements of instrumenting a small dance ensemble for interactive applications. This paper describes the application goals, presents the prototype hardware design, introduces concepts for feature extraction, and shows early test results.
机译:仅提供摘要表格。我们描述了一种紧凑的无线传感器模块的设计,该模块旨在在穿戴在舞者的手和脚上时实时捕获表情手势。每个传感器都包括一个6轴惯性测量单元(IMU),该单元包含三个正交的陀螺仪和加速计以捕获局部动态,还包括一个电容传感器来测量节点到节点的接近度。还包括支持电阻传感器的信号调理(例如弯曲或压力测量),并且紧凑型扩展端口可提供免费的数字输入和SPI接口。车载无线电收发器支持高效节能的高速RF网络,该网络能够同时从多个设备进行实时数据采集,从而满足为交互式应用配备小型舞蹈合奏的要求。本文描述了应用目标,介绍了原型硬件设计,介绍了特征提取的概念,并显示了早期的测试结果。

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