McCreery D B, Yuen T G, Agnew W F, Bullara L A
Huntington Medical Research Institutes, Neurological Research Laboratory, Pasadena, CA 91105.
Hear Res. 1994 Jun 15;77(1-2):105-15. doi: 10.1016/0378-5955(94)90258-5.
We investigated the effects of continuous microstimulation in the cats' posteroventral cochlear nucleus, using chronically implanted activated iridium microelectrodes. We examined 51 electrode sites (39 pulsed sites, and 12 unpulsed sites). Seven hours of continuous stimulation at 500 Hz often produced tissue injury near the tips of the pulsed microelectrodes. The damage took the form of a region of vacuolated tissue extending 200 microns or more from the site of the electrode tip. Electron microscope studies showed the vacuoles to be severely edematous segments of myelinated axons. The statistical correlation between the amount of damaged tissue and the charge per phase was large and highly significant (P < 0.0001). When the electrodes were pulsed for 7 h at 500 Hz with charge-balanced biphasic pulse pairs, the threshold for the damage was approximately 3 nC/phase. The damage threshold was not appreciably lower than the stimulation protocol was extended to 35 h (7 h/day for 5 days). In contrast, the threshold for exciting neurons near the microelectrode is approximately 1 nC/phase, as determined by the evoked response recorded in the inferior colliculus. There was little correlation between the severity of the tissue damage and the geometric charge density at the surface of the electrodes, between the damage and amplitude of the cathodic phase of the voltage transient induced across the stimulating electrodes by the stimulus current pulses, or between the damage and the stimulus pulse duration.
我们使用长期植入的活性铱微电极,研究了在猫的后腹侧耳蜗核中进行连续微刺激的效果。我们检查了51个电极位点(39个脉冲位点和12个非脉冲位点)。以500 Hz进行7小时的连续刺激通常会在脉冲微电极尖端附近产生组织损伤。损伤表现为一个空泡化组织区域,从电极尖端部位延伸200微米或更远。电子显微镜研究表明,这些空泡是有髓轴突的严重水肿段。受损组织量与每相电荷量之间的统计相关性很大且高度显著(P < 0.0001)。当电极以500 Hz用电荷平衡的双相脉冲对进行7小时脉冲刺激时,损伤阈值约为3 nC/相。当刺激方案延长至35小时(每天7小时,共5天)时,损伤阈值没有明显降低。相比之下,通过在下丘记录的诱发反应确定,在微电极附近兴奋神经元的阈值约为1 nC/相。组织损伤的严重程度与电极表面的几何电荷密度、损伤与刺激电流脉冲在刺激电极上感应出的电压瞬变阴极相的幅度之间,或损伤与刺激脉冲持续时间之间几乎没有相关性。