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与耳蜗核中的细胞相比,初级听觉纤维的动态特性。

Dynamic properties of primary auditory fibers compared with cells in the cochlear nucleus.

作者信息

Moller A R

出版信息

Acta Physiol Scand. 1976 Oct;98(2):157-67. doi: 10.1111/j.1748-1716.1976.tb00235.x.

Abstract

The dynamic properties of the responses of single primary auditory fibers were compared with those of single cells in the cochlear nucleus. The stimuli were tones (at the unit's characteristic frequency, CF) that were amplitude-modulated with pseudorandom noise. The dynamic properties were described by the cross-covariance and integrated cross-covariance functions between the recorded discharge rate and the modulation. These two measures have earlier been shown to be valid approximations of the system's impulse and step response function, i.e. the change in discharge rate in response to a short impulsive increase (or decrease) in the stimulus intensity and a step increment (or decrement) in the stimulus intensity. The cross-covariance function computed from the responses of fibers had a narrower peak than that of cells indicating that a brief change in stimulus intensity gives rise to a faster change in the discharge rate of fibers than that of cells. The nodulation of the discharge rate of cells for a certain degree of amplitude modulation of the sound is usually greater than that of cells. The modulation of the discharge rate of cells for a certain degree of amplitude modulation of the sound is usually greater than that of fibers. The range of stimulus intensities where a change in stimulus intensity gives rise to a change in discharge rate rate is smaller for fibers (about 30 dB) than what was shown earlier for cells (70-80 dB). The cross-covariance function computed from the slow wave responses recorded from the surface of the cochlear nucleus in response to an amplitude-modulated tone has individual peaks that reflect distinct classes of units with regard to latency of unit dishcarges.

摘要

将单个初级听觉纤维的反应动态特性与耳蜗核中的单个细胞的动态特性进行了比较。刺激是用伪随机噪声进行幅度调制的纯音(在单位的特征频率CF处)。通过记录的放电率与调制之间的互协方差和积分互协方差函数来描述动态特性。这两种测量方法 earlier 已被证明是系统脉冲和阶跃响应函数的有效近似,即响应于刺激强度的短暂脉冲增加(或减少)以及刺激强度的阶跃增加(或减少)时放电率的变化。从纤维反应计算出的互协方差函数的峰值比细胞的峰值更窄,这表明刺激强度的短暂变化引起纤维放电率的变化比细胞更快。对于一定程度的声音幅度调制,细胞放电率的调制通常大于纤维。对于一定程度的声音幅度调制,细胞放电率的调制通常大于纤维。刺激强度变化引起放电率变化的刺激强度范围对于纤维来说(约30dB)比 earlier 对细胞显示的范围(70 - 80dB)更小。从耳蜗核表面记录的慢波反应计算出的互协方差函数,响应于幅度调制纯音,具有单个峰值,这些峰值反映了关于单位放电潜伏期的不同类别的单位。 (注:原文中“earlier”可能有误,推测可能是“earlier”,翻译时保留了原文错误表述。)

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