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离体青蛙肌梭的信息传递

Information transmission by isolated frog muscle spindle.

作者信息

Eckhorn R, Querfurth H

出版信息

Biol Cybern. 1985;52(3):165-76. doi: 10.1007/BF00339945.

Abstract

Transmission of sensory information was calculated for the isolated frog muscle spindle receptor, using Shannon's information measure. Sinusoidal movements, random noise stretches, and sinusoids with superimposed auxiliary noise were applied as stimuli. In addition, the static prestretch level of the intrafusal muscle bundle was adjusted between resting length (L0) and L0 + 600 micron, so that the analysis of the information transmission properties covered the entire dynamic range of the sensory receptor organ. Sinusoidal stretches below 2 Hz evoked smoothly modulated cycle histograms, which were approximately linearly related to the stimulating sinewave. The transinformation rates under these conditions were generally low (5-17 bit X s-1), regardless of the amplitude of the applied movement. Increasing prestretch enhanced the modulation depth of the cycle histograms considerably, but increased the transinformation rates by less than 10 bit X s-1. By contrast, sinusoids above 2 Hz evoked clearly nonlinear cycle histograms, because each action potential was firmly phase-locked to a small segment of the stretch cycle. Under these conditions the transinformation rates grew larger with increasing stimulus frequency and approached 130 bit X s-1 at 60 Hz. Small amplitude sinusoidal stretches, however, evoked considerable transinformation rates in the high frequency region only then, when the spindle receptor was extended to higher prestretch levels. Random stretches evoked transinformation rates between 5 and 30 bit X s-1 depending on both the prestretch level and the intensity of the noise stimulus. The linear response components carried only about 25% of the transinformation rates transmitted by both the linear and nonlinear response components. Auxiliary noise stimuli greatly improved the information transmission of sinusoidal stretches. For example, a pure sinusoid evoked 5 bit X s-1. Adding a noise signal with equal energy to the sinusoidal movement elicited 20 bit X s-1. This facilitation effect of auxiliary noise was restricted to low frequency sinusoidal stimuli. The present results are discussed with respect to the information transmission properties of various sensory systems evaluated by either the same or different information processing procedure as that used in the present study. The functional significance of high transinformation rates sent by the muscle spindle to the central nervous system is discussed with respect to motor control.

摘要

利用香农信息测度,计算了分离的青蛙肌梭感受器的感觉信息传递。将正弦运动、随机噪声拉伸以及叠加有辅助噪声的正弦波作为刺激施加。此外,梭内肌束的静态预拉伸水平在静息长度(L0)和L0 + 600微米之间进行调整,以便对信息传递特性的分析涵盖感觉感受器器官的整个动态范围。低于2Hz的正弦拉伸诱发了平滑调制的周期直方图,其与刺激正弦波大致呈线性相关。在这些条件下,无论施加运动的幅度如何,互信息率通常都很低(5 - 17比特·秒⁻¹)。增加预拉伸显著增强了周期直方图的调制深度,但互信息率增加不到10比特·秒⁻¹。相比之下,高于2Hz的正弦波诱发了明显的非线性周期直方图,因为每个动作电位都牢固地锁相到拉伸周期的一小段。在这些条件下,互信息率随着刺激频率的增加而增大,在60Hz时接近130比特·秒⁻¹。然而,小幅度正弦拉伸仅在肌梭感受器延伸到更高预拉伸水平时,才在高频区域诱发相当大的互信息率。随机拉伸诱发的互信息率在5到30比特·秒⁻¹之间,这取决于预拉伸水平和噪声刺激的强度。线性响应成分所携带的互信息率仅约为线性和非线性响应成分共同传递的互信息率的25%。辅助噪声刺激极大地改善了正弦拉伸的信息传递。例如,纯正弦波诱发5比特·秒⁻¹。向正弦运动添加具有相等能量的噪声信号诱发20比特·秒⁻¹。辅助噪声的这种促进作用仅限于低频正弦刺激。本文结果结合通过与本研究相同或不同信息处理程序评估的各种感觉系统的信息传递特性进行了讨论。关于运动控制,讨论了肌梭向中枢神经系统发送的高互信息率的功能意义。

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