[Some Features of Sound Signal Envelope by the Frog's Cochlear Nucleus Neurons].

Biofizika Pub Date : 2015-05-01
N G Bibikov
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Abstract

The responses of single neurons in the medullar auditory center of the grass frog were recorded extracellularly under the action of long tonal signals of the characteristic frequency modulated by repeating fragments of low-frequency (0-15 Hz, 0-50 Hz or 0-150 Hz) noise. Correlation method was used for evaluating the efficacy of different envelope fragments to ensure generation of a neuron pulse discharge. Carrying out these evaluations at different time intervals between a signal and a response the maximum delays were assessed. Two important envelope fragments were revealed. In majority of units the most effective was the time interval of the amplitude rise from mean value to maximum, and the fragment where the amplitude fall from maximum to mean value was the second by the efficacy. This type of response was observed in the vast majority of cells in the range of the envelope frequency bands 0-150 and 0-50 Hz. These cells performed half-wave rectification of such type of the envelope. However, in some neurons we observed more strong preference toward a time interval with growing amplitude, including even those where the amplitude value was smaller than the mean one. These properties were observed mainly for low-frequency (0-15 Hz) modulated signals at high modulation depth. The data show that even in medulla oblongata specialization of neural elements of the auditory pathway occurs with respect to time interval features of sound stimulus. This diversity is most evident for signals with a relatively slowly varying amplitude.

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[青蛙耳蜗核神经元声信号包络的一些特征]。
在细胞外记录了草蛙髓质听觉中枢单个神经元在重复低频(0 ~ 15 Hz、0 ~ 50 Hz或0 ~ 150 Hz)噪声片段调制的特征频率长音调信号作用下的反应。采用相关性法评价不同包膜片段对保证神经元脉冲放电产生的有效性。在信号和响应之间的不同时间间隔进行这些评估,评估了最大延迟。两个重要的信封碎片被发现。在大多数单位中,最有效的是振幅从平均值上升到最大值的时间间隔,振幅从最大值下降到平均值的片段是第二有效的。在包络频段0-150和0-50 Hz范围内的绝大多数细胞中观察到这种类型的响应。这些细胞对这种类型的包膜进行半波整流。然而,在一些神经元中,我们观察到对振幅增长的时间间隔有更强的偏好,甚至包括那些振幅值小于平均值的时间间隔。这些特性主要是在高调制深度的低频(0-15 Hz)调制信号中观察到的。数据表明,即使在延髓中,听觉通路的神经元件的特化也与声音刺激的时间间隔特征有关。这种差异在幅度变化相对缓慢的信号中最为明显。
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