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小龙虾视神经持续纤维中的方向选择性运动检测:线性和非线性机制。

Directionally selective motion detection in the sustaining fibers of the crayfish optic nerve: linear and nonlinear mechanisms.

作者信息

Glantz R M, Wyatt C, Mahncke H

机构信息

Department of Biochemistry and Cell Biology, Rice University, Houston, Texas 77251, USA.

出版信息

J Neurophysiol. 1995 Jul;74(1):142-52. doi: 10.1152/jn.1995.74.1.142.

DOI:10.1152/jn.1995.74.1.142
PMID:7472319
Abstract
  1. Directional selectivity of crayfish sustaining fibers was examined with drifting sine wave gratings and with intracellular and extracellular recordings. Directionality was measured for variations in stimulus contrast, spatial frequency, and temporal frequency. 2. Sustaining fibers exhibit directional selectivity in the magnitude of the compound postsynaptic potential (PSP), the impulse frequency modulation response, and the mean firing rate. The mean synaptic potential is insensitive to direction. The directionality of the mean impulse rate appears to arise by rectification in the voltage-to-impulse transduction. 3. The preferred directions of three identified sustaining fibers are similar to those of head-down optomotor neurons to which these sustaining fibers project. 4. The modulatory response, elicited by gratings drifting in the preferred direction, increased linearly with contrast until saturation (typically at a contrast of 0.5), where maximum directional selectivity obtains. 5. The magnitude of the directional response is a band-pass function of spatial and temporal frequency and exhibits reversal of directionality (i.e., aliasing) at high spatial and temporal frequencies. The results imply a spatial sampling interval of 4.5 degrees and a temperature-dependent inhibitory delay of 40-90 ms. The PSP modulation response shares several features with that of neighboring tangential (Tan1) neurons. 6. A qualitative model is proposed for the transformation of a phase-sensitive, linear directional response to a phase-insensitive and nonlinear time-averaged response, based on the functional connections from Tan1 neurons to sustaining fibers to optomotor neurons. The model includes a threshold rectification, a synaptic band-pass filter, and differences in temporal phase among converging modulatory signals.
摘要
  1. 利用漂移正弦波光栅以及细胞内和细胞外记录技术,研究了小龙虾持续纤维的方向选择性。针对刺激对比度、空间频率和时间频率的变化测量了方向性。2. 持续纤维在复合突触后电位(PSP)的大小、冲动频率调制响应和平均放电率方面表现出方向选择性。平均突触电位对方向不敏感。平均冲动率的方向性似乎是由电压到冲动转换过程中的整流作用产生的。3. 三条已识别的持续纤维的偏好方向与这些持续纤维所投射的头朝下视动神经元的偏好方向相似。4. 由在偏好方向漂移的光栅引发的调制响应,随对比度线性增加直至饱和(通常在对比度为0.5时),此时获得最大方向选择性。5. 方向响应的大小是空间和时间频率的带通函数,并且在高空间和时间频率处表现出方向性反转(即混叠)。结果表明空间采样间隔为4.5度,且存在与温度相关的40 - 90毫秒的抑制延迟。PSP调制响应与相邻切向(Tan1)神经元的响应具有若干共同特征。6. 基于从Tan1神经元到持续纤维再到视动神经元的功能连接,提出了一个定性模型,用于将相敏、线性方向响应转换为相敏和非线性时间平均响应。该模型包括阈值整流、突触带通滤波器以及汇聚调制信号之间的时间相位差异。

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