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Polarity effects on neural responses of the electrically stimulated auditory nerve at different cochlear sites.

机译:极性对不同耳蜗部位的电刺激听觉神经的神经反应的影响。

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摘要

Three experiments studied the effect of stimulus polarity on the Electrically Evoked Compound Action Potential (ECAP) obtained with the masker-probe paradigm on different sites along the cochlea in cochlear implant users. Experiment 1 used a biphasic cathodic-1st (BIC) masker and showed that ECAP N(1) peak latencies were longer for BIC than for biphasic anodic-1st (BIA) probes on all electrodes under test. Both the latency of each probe as well as the latency difference between BIA and BIC probes increased when the phase width (PW) of the masker and probe were increased together. Experiment 2 used maskers with long inter-phase gaps (IPGs), and, by manipulating the polarity of the second phase (closest in time to the biphasic probe), showed that only an anodic phase could mask the probe response. Experiment 3 used maskers and probes with long IPGs and measured ECAPs to the first phase of the probe; ECAPs could be measured when both this phase and the second phase of the masker were anodic, but not when they were cathodic. Our results extend those of a previous study, showing that the auditory nerve in humans is preferentially activated by anodic stimulation, to different sites along the cochlea.
机译:三个实验研究了刺激极性对在人工耳蜗使用者中沿耳蜗不同部位的掩蔽探针范式获得的电诱发复合动作电位(ECAP)的影响。实验1使用了双相阴极1st(BIC)屏蔽器,并显示在所有被测电极上,BIC的ECAP N(1)峰潜伏期比双相阳极1st(BIA)探针更长。当掩蔽器和探针的相位宽度(PW)一起增加时,每个探针的潜伏期以及BIA和BIC探针之间的潜伏期差异都会增加。实验2使用具有较长相间间隙(IPG)的掩膜器,并且通过操纵第二相的极性(时间上最接近双相探针),表明只有阳极相才能掩盖探针响应。实验3使用具有较长IPG的掩蔽物和探针,并测量到探针第一阶段的ECAP;当掩膜的这一阶段和第二阶段均为阳极时,可以测量ECAP,而当它们为阴极时,则无法测量。我们的结果扩展了先前研究的结果,表明人类的听觉神经被阳极刺激优先激活到耳蜗的不同部位。

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