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关于信息通过感觉神经元的传递。

On the transmission of information through sensory neurons.

作者信息

Walloe L

出版信息

Biophys J. 1970 Aug;10(8):745-63. doi: 10.1016/S0006-3495(70)86333-0.

Abstract

Information about muscle length is transmitted to the cerebellum from muscle spindle receptors through the dorsal spinocerebellar tract (DSCT). The "transinformation" about muscle length in single DSCT fibers was calculated from steady-state spike trains by two different methods, assuming that the decoding mechanisms use a frequency code. By the first method, the number of distinguishable muscle lengths (and thus the transiformation) was determined from the rate of convergence of the mean frequency of firing (with increasing number of intervals). The observation time necessary to estimate the mean frequency of the impulse train with a certain accuracy was independent of the stretch level, even though the number of intervals necessary to make this estimate was different at high and low levels of stretch. By the second method an input frequency-output frequency matrix was calculated. The transinformations and the rate of transinformation was then calculated from this matrix. There was an acceptable agreement in the estimates of transinformation by the two methods. The rates of transinformation are significantly increased by the particular time structure of the discharge patterns of the nerve cells. Consequently, the loss of information due to the synaptic coupling is appreciably reduced.

摘要

有关肌肉长度的信息通过背侧脊髓小脑束(DSCT)从肌梭感受器传递至小脑。假设解码机制使用频率编码,通过两种不同方法从稳态尖峰序列计算单条DSCT纤维中有关肌肉长度的“传递信息”。第一种方法是根据放电平均频率的收敛速率(随着间隔数量增加)确定可区分的肌肉长度数量(进而确定变换情况)。以一定精度估计冲动序列平均频率所需的观察时间与拉伸水平无关,尽管在高拉伸水平和低拉伸水平下进行此估计所需的间隔数量不同。第二种方法是计算输入频率 - 输出频率矩阵。然后从该矩阵计算传递信息和传递信息速率。两种方法对传递信息的估计结果具有可接受的一致性。神经细胞放电模式的特定时间结构显著提高了传递信息速率。因此,由于突触耦合导致的信息损失明显减少。

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