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Resting discharge and response dynamics of horizontal semicircular canal afferents of the toadfish Opsanus tau

机译:蟾鱼tausus的水平半圆管入口腔的静息放电和反应动力学

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摘要

The response dynamics of 66 primary afferents of the horizontal semicircular canal were studied in the toadfish using sinusoidal, rotational stimuli from 0.001–10 Hz at amplitudes of 5–100 degrees/sec. Twelve afferents were also tested to constant velocity trapezoids. Responses to sinusoids were used to classify afferents into 3 broad groups: (1) low-gain afferents that maintain a relatively linear response re: stimulus velocity across most of the frequency and amplitude spectra tested; (2) high-gain afferents that have a velocity sensitivity but also show a high-frequency gain enhancement and phase advance; and (3) so-called acceleration afferents that have a response more in phase with stimulus acceleration than velocity across the tested bandwidth. The afferent's background discharge was examined in relation to its rotational response. Low-gain afferents have regular spacing of interspike intervals. High-gain and acceleration afferents have a widely variable discharge regularity that is apparently unrelated to their rotational responses. Input/output transfer models were fit to the response data to describe the low- and high-pass filtering properties of the 3 afferent groups.
机译:在蟾蜍中,使用正弦旋转刺激,幅度为0.001至10 Hz,振幅为5至100度/秒,研究了66条水平半圆形管的初级传入反应的动力学。还测试了十二个传入恒速梯形。使用对正弦曲线的响应将传入的声音分为三大类:(1)保持相对线性响应的低增益传入:在大多数测试的频率和幅度频谱上的刺激速度; (2)具有速度敏感性但又表现出高频增益增强和相位超前的高增益传入; (3)所谓的加速度传入,其与刺激的加速相比,在整个测试带宽上的响应具有更多的同相响应。检查了传入者的背景放电及其旋转响应。低增益传入信号的尖峰间隔的间隔是规则的。高增益和加速度传入具有广泛变化的放电规律,这显然与其旋转响应无关。输入/输出传输模型适合于响应数据,以描述3个传入组的低通和高通滤波特性。

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