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Desynchronization of electrically evoked auditory-nerve activity by high-frequency pulse trains of long duration

机译:长时程高频脉冲序列使电诱发的听觉神经活动失同步

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摘要

Rubinstein et al. [Hear. Res. >127, 108–118 (1999)] suggested that the neural representation of the waveforms of electric stimuli might be improved by introducing an ongoing, high-rate, desynchronizing pulse train (DPT). A DPT may desynchronize neural responses to electric stimulation in a manner similar to spontaneous activity in a healthy ear. To test this hypothesis, responses of auditory-nerve fibers (ANFs) to 10-min-long electric pulse trains (5 kpps) were recorded from acutely deafened, anesthetized cats. Stimuli were delivered via an intracochlear electrode, and their amplitude was chosen to elicit a response in most ANFs. Responses to pulse trains showed pronounced adaptation during the first 1–2 min, followed by either a sustained response or cessation of spike discharges for the remainder of the stimulus. The adapted discharge rates showed a broad distribution across the ANF population like spontaneous activity. However, a higher proportion of fibers (46%) responded to the DPT at rates below 5 spikes/s than for spontaneous activity, and 12% of the fibers responded at higher rates than any spontaneously active fiber. Interspike interval histograms of sustained responses for some fibers had Poisson-like (exponential) shapes, resembling spontaneous activity, while others exhibited preferred intervals and, occasionally, bursting. Simultaneous recordings from pairs of fibers revealed no evidence of correlated activity, suggesting that the DPT does desynchronize the auditory nerve activity. Overall, these results suggest that responses to an ongoing DPT resemble spontaneous activity in a normal ear for a substantial fraction of the ANFs.
机译:鲁宾斯坦等。 [听。 Res。 > 127 ,第108–118页(1999)]提出,通过引入一个持续的,高速率的,不同步的脉冲序列(DPT),可以改善电刺激波形的神经表示。 DPT可以以类似于健康耳朵中的自发活动的方式使对电刺激的神经反应失去同步。为了验证该假设,记录了急性充耳聋,麻醉猫的听觉神经纤维(ANF)对10分钟长的电脉冲序列(5 kpps)的反应。刺激通过耳蜗内电极递送,并且选择它们的振幅以引起大多数ANF中的应答。对脉冲序列的响应在最初的1-2分钟内显示出明显的适应性,随后在其余的刺激中持续响应或停止了尖峰放电。调整后的放电率显示出自发活动在整个ANF人群中分布广泛。但是,与自发活性相比,更高比例的纤维(46%)对DPT的响应速率低于自发活性,而12%的纤维对DPT的响应速率高于任何自发活性纤维。某些纤维的持续响应的穗间间隔直方图具有类似泊松(指数)形状,类似于自发活动,而其他纤维则表现出较好的间隔,偶尔会破裂。从成对的纤维同时记录没有发现相关活动的证据,这表明DPT确实使听神经活动失去同步。总体而言,这些结果表明,对于持续进行的DPT的反应类似于正常耳朵中大部分ANF的自发活动。

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