Stieglitz Thomas, Schuettler Martin, Schneider Andreas, Valderrama Elena, Navarro Xavier
Fraunhofer Institute for Biomedical Engineering, Neural Prosthetics Group, D-66386 Sankt Ingbert, Germany.
IEEE Trans Neural Syst Rehabil Eng. 2003 Dec;11(4):427-37. doi: 10.1109/TNSRE.2003.819793.
In neural rehabilitation, selective activation of muscles after electrical stimulation is mandatory for control of paralyzed limbs. For an evaluation of electrode selectivity, a setup to noninvasively measure the force development after electrical stimulation in the rat foot was developed. The setup was designed in accordance to the anatomical features of the rat model to test the isometric torque development at given ankle positions in an intact leg. In this paper, the setup design and development is presented and discussed. In a first study, the selectivity of small nerve cuffs with 12 electrodes implanted around the rat sciatic nerve was investigated. Special attention was drawn to the performance of the torque measurement setup in comparison to electrophysiological data obtained from compound muscle action potential recordings. Using one cuff around the nerve, electrical stimulation on different electrode tripoles led to plantarflexion and dorsiflexion of the foot without an a priori alignment of the cuff.
在神经康复中,电刺激后肌肉的选择性激活对于控制瘫痪肢体至关重要。为了评估电极的选择性,开发了一种用于无创测量大鼠足部电刺激后力量发展的装置。该装置根据大鼠模型的解剖特征进行设计,以测试完整腿部在给定踝关节位置的等长扭矩发展。本文介绍并讨论了该装置的设计与开发。在第一项研究中,研究了在大鼠坐骨神经周围植入12个电极的小型神经袖套的选择性。与从复合肌肉动作电位记录获得的电生理数据相比,特别关注了扭矩测量装置的性能。在神经周围使用一个袖套,在不同电极三元组上进行电刺激可导致足部跖屈和背屈,而无需事先对齐袖套。