Prutchi D
Department of Biomedical Engineering, Tel-Aviv University, Israel.
Med Eng Phys. 1995 Sep;17(6):442-54. doi: 10.1016/1350-4533(94)00016-3.
A high-resolution large-array (HRLA) SEMG system comprising 256 separate channels has been developed. SEMG signals are detected by a "bracelet" active electrode array connected to a stack of newly designed biopotential instrumentation amplifiers. A stand-alone data logger acquires and stores the array EMG activity at high sampling rates. A RISC multiprocessor network supports computationally-intensive array signal processing and analysis algorithms. In addition, an improved optoelectronic system for the measurement of human body kinematics has been associated to the HRLA SEMG system to provide the related mechanical characteristics of muscle activity. Analysis results demonstrate that high-resolution muscle fibre conduction velocity histograms can be obtained even from skeletal muscles in which a large number of motor units are simultaneously activated.
已开发出一种包含256个独立通道的高分辨率大阵列(HRLA)表面肌电系统。表面肌电信号由连接到一堆新设计的生物电位仪表放大器的“手镯”式有源电极阵列检测。一个独立的数据记录器以高采样率采集并存储阵列肌电活动。一个精简指令集(RISC)多处理器网络支持计算密集型的阵列信号处理和分析算法。此外,一种改进的用于人体运动学测量的光电系统已与HRLA表面肌电系统相关联,以提供肌肉活动的相关力学特性。分析结果表明,即使是在大量运动单位同时被激活的骨骼肌中,也能获得高分辨率的肌纤维传导速度直方图。