Snow Sean, Horch Kenneth W, Mushahwar Vivian K
Department of Bioengineering, University of Utah, Salt Lake City 84112, USA.
IEEE Trans Biomed Eng. 2006 Feb;53(2):311-9. doi: 10.1109/TBME.2005.857638.
A cylindrical multielectrode system specifically designed for intraspinal microstimulation was mechanically and electrically evaluated in the ventral horn of the feline lumbo-sacral spinal cord. Electrode insertions proved to be straight as evaluated from radiographs. Impedances were measured in situ and force recruitment curves from quadriceps muscles were collected over a wide range of stimulus parameters. For a given charge, higher current amplitudes produced greater forces than proportionally longer pulse durations, indicating that charge is not the sole indicator of evoked force in applications utilizing electrical stimulation. Overlap measurements for calculating current-distance constants were collected at a variety of current amplitudes, electrode pair separations, and pair orientations in the spinal grey matter. Forces obtained in the majority of these trials demonstrated an order effect, presumably due to asymmetric neuronal connectivity within the spinal cord. In the cases showing no order effect, the dorso-ventral electrode pair orientation yielded a higher average current-distance constant (278 microA/mm2) than either the medio-lateral or rostro-caudal electrode pair orientations (197 microA/mm2). Specifications of an array of cylindrical multielectrodes for use in future intraspinal microstimulation prostheses were updated.
一种专门为脊髓内微刺激设计的圆柱形多电极系统在猫腰骶脊髓腹角进行了机械和电学评估。从X光片评估可知电极插入是笔直的。在原位测量了阻抗,并在广泛的刺激参数范围内收集了股四头肌的力募集曲线。对于给定电荷,较高的电流幅度比较长的脉冲持续时间按比例产生更大的力,这表明在利用电刺激的应用中,电荷不是诱发力的唯一指标。在脊髓灰质中,在各种电流幅度、电极对间距和对向方向上收集了用于计算电流-距离常数的重叠测量值。在大多数这些试验中获得的力表现出一种顺序效应,推测是由于脊髓内神经元连接不对称所致。在没有顺序效应的情况下,背腹电极对方向产生的平均电流-距离常数(278微安/平方毫米)高于中外侧或头尾电极对方向(197微安/平方毫米)。用于未来脊髓内微刺激假体的圆柱形多电极阵列的规格得到了更新。