Rozman J, Sovinec B, Trlep M, Zorko B
J. Stefan Institute, University of Ljubljana, Republic of Slovenia.
J Biomed Eng. 1993 Mar;15(2):113-20. doi: 10.1016/0141-5425(93)90039-2.
In this paper we present the modelling, design, and experimental testing of a nerve cuff multielectrode system for selective activation of fibres in superficial peripheral nerve trunk regions which is capable of activating fibres in physiological order. The multielectrode system consists of 45 platinum electrodes embedded within a self-curling spiral silicone sheet organized in fifteen longitudinal groups consisting of three electrodes spaced equidistally around the circumference of the cuff. Electrodes in the centre band acted as stimulating cathodes while the two electrodes of the same group in the two outer bands were connected together and corresponded to the position of a particular cathode, serving as anodes to block the nascent action potentials by membrane hyperpolarization. The interpolar distance was 6 mm on both sides, resulting in a total cuff length of about 20 mm. The cuff was constructed with a diameter to fit the size of the dog sciatic nerve. Preliminary animal testing of the nerve cuff was performed on the sciatic nerve of a Bigley female dog. In the 45-electrode stimulation system, biphasic cathodic first pulses with quasitrapezoidal-shaped cathodic and square anodic parts were delivered through the particular group of tripolar electrodes to effect both selective stimulation of motor axons within the gastrocnemius muscle fascicle, and differential block by membrane hyperpolarization. The test was repeated using rectangular cathodic first biphasic current pulses delivered monopolarly on the central electrode of the same group while connected anodes were replaced by a common anode situated elsewhere in the surrounding tissue. In both experiments an isometric torque in the ankle joint elicited by the gastrocnemius muscle was measured and compared.(ABSTRACT TRUNCATED AT 250 WORDS)
在本文中,我们展示了一种用于选择性激活浅表周围神经干区域纤维的神经袖套多电极系统的建模、设计和实验测试,该系统能够按生理顺序激活纤维。多电极系统由45个铂电极嵌入自卷曲螺旋硅树脂片中组成,这些电极排列成15个纵向组,每组由围绕袖套圆周等距分布的三个电极组成。中间带的电极作为刺激阴极,而两个外带中同一组的两个电极连接在一起,对应于特定阴极的位置,作为阳极通过膜超极化来阻断新生动作电位。两侧的极间距离均为6毫米,袖套总长度约为20毫米。袖套的直径设计为适合犬坐骨神经的大小。在一只雌性比格犬的坐骨神经上对神经袖套进行了初步动物测试。在45电极刺激系统中,通过特定的三极电极组施加具有准梯形阴极和方形阳极部分的双相阴极优先脉冲,以实现对腓肠肌束内运动轴突的选择性刺激以及通过膜超极化进行差异阻断。在将连接的阳极替换为位于周围组织其他位置的公共阳极的同时,使用在同一组中心电极上单独施加的矩形阴极优先双相电流脉冲重复该测试。在两个实验中,均测量并比较了腓肠肌引起的踝关节等长扭矩。(摘要截短为250字)