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猫的电诱发单纤维动作电位:对单极、单相刺激的反应。

Electrically evoked single-fiber action potentials from cat: responses to monopolar, monophasic stimulation.

作者信息

Miller C A, Abbas P J, Robinson B K, Rubinstein J T, Matsuoka A J

机构信息

Department of Otolaryngology, Head and Neck Surgery, University of Iowa, Iowa City 52242, USA.

出版信息

Hear Res. 1999 Apr;130(1-2):197-218. doi: 10.1016/s0378-5955(99)00012-x.

Abstract

We recorded action potentials from single auditory-nerve fibers of cats using monophasic current pulses delivered by a monopolar intracochlear electrode. These simple stimuli provided a means of investigating basic properties and hypotheses of electrical excitation. Standard micropipette recording techniques were used. Responses to anodic (positive) and cathodic (negative) stimulus pulses were recorded separately to evaluate stimulus polarity effects. Mean spike (action potential) latency was polarity dependent, with greater latencies for cathodic stimulation. Threshold stimulus level was also polarity dependent, with relatively lower cathodic thresholds. Both effects are consistent with trends reported in the compound action potential. Variability in single-fiber latency (i.e., jitter) was dependent upon stimulus polarity. In contrast, the slope of single-fiber input-output functions failed to show a clear polarity dependence, although such trends have been seen in the compound action potential data. We also observed a relatively greater degree of adaptation over time with anodic stimulation. Bimodal post-stimulus-time histograms were recorded in a small number (2%) of fibers, supporting the hypothesis that both the peripheral (dendritic) and central axonal processes are excitable with the same stimulus polarity, in a limited number of cases. This observation, together with analyses of interactions among measures of latency, threshold, and jitter, is consistent with the hypothesis that, with monopolar intracochlear stimulation, most fibers are stimulated at axonal (modiolar) sites and a minority of fibers nearest the electrode are stimulable at their peripheral processes.

摘要

我们使用单极耳蜗内电极施加的单相电流脉冲,记录了猫单根听神经纤维的动作电位。这些简单的刺激提供了一种研究电兴奋基本特性和假说的方法。采用了标准的微电极记录技术。分别记录对阳极(正)和阴极(负)刺激脉冲的反应,以评估刺激极性效应。平均峰电位(动作电位)潜伏期取决于极性,阴极刺激的潜伏期更长。阈值刺激水平也取决于极性,阴极阈值相对较低。这两种效应与复合动作电位中报道的趋势一致。单纤维潜伏期的变异性(即抖动)取决于刺激极性。相比之下,单纤维输入-输出函数的斜率没有显示出明显的极性依赖性,尽管在复合动作电位数据中已经观察到这种趋势。我们还观察到,随着时间的推移,阳极刺激的适应性程度相对较高。在少数(2%)纤维中记录到了双峰刺激后时间直方图,支持了在有限数量的情况下,外周(树突状)和中枢轴突过程都可以被相同刺激极性兴奋的假说。这一观察结果,连同对潜伏期、阈值和抖动测量之间相互作用的分析,与以下假说一致:在单极耳蜗内刺激时,大多数纤维在轴突(蜗轴)部位受到刺激,而最靠近电极的少数纤维在其外周过程中可被刺激。

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