Shyu Jeng-Shyong, Maia Mauricio, Weiland James D, Ohearn Thomas, Chen Shih-Jen, Margalit Eyal, Suzuki Satoshi, Humayun Mark S
Wilmer Ophthalmological Institute, Johns Hopkins University, Baltimore, MD 21287, USA.
IEEE Trans Neural Syst Rehabil Eng. 2006 Sep;14(3):290-8. doi: 10.1109/TNSRE.2006.881536.
Experiments were conducted to assess the effect of stimulating electrode parameters (size, position, and waveform shape) on electrically elicited ganglion cell action potentials from isolated rabbit retina. Thirty-eight isolated rabbit retinas were stimulated with bipolar stimulating electrodes (either 125 or 25 microm in diameter) positioned on either the ganglion or the photoreceptor side. Recording electrodes were placed between the optic disc and the stimulating electrodes. Cathodic-first, biphasic, current waveforms of varying pulse durations (0.1, 0.5, 1 ms) were used. For the four conditions tested (125-electrode and 25-microm electrode, ganglion cell, and photoreceptor positions) threshold currents ranged from 6.7 to 23.6 microA, depending on location and pulse duration. With 1-ms pulse duration, no statistically significant difference was seen between threshold currents when either size electrode was used to stimulate either the ganglion cell side or the photoreceptor side. For all groups, the threshold currents using the 1-ms pulse were lower than those using 0.1 ms, but the 0.1-ms pulses used less charge. These experiments provide a number of valuable insights into the relative effects of several stimulation parameters critical to the development of an implanted electronic retinal prosthesis.
进行了实验以评估刺激电极参数(尺寸、位置和波形形状)对从离体兔视网膜电诱发神经节细胞动作电位的影响。使用双极刺激电极(直径为125或25微米)刺激38个离体兔视网膜,电极分别置于神经节侧或光感受器侧。记录电极置于视盘和刺激电极之间。使用了阴极优先、双相、不同脉冲持续时间(0.1、0.5、1毫秒)的电流波形。对于测试的四种条件(125电极和25微米电极、神经节细胞和光感受器位置),阈值电流范围为6.7至23.6微安,具体取决于位置和脉冲持续时间。当使用1毫秒脉冲持续时间时,无论使用哪种尺寸的电极刺激神经节细胞侧或光感受器侧,阈值电流之间均未观察到统计学上的显著差异。对于所有组,使用1毫秒脉冲的阈值电流低于使用0.1毫秒的阈值电流,但0.1毫秒脉冲使用的电荷量更少。这些实验为植入式电子视网膜假体开发中几个关键刺激参数的相对影响提供了许多有价值的见解。