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小龙虾视叶非锋电位中间神经元的方向选择性:线性模型评估

Directional selectivity in a nonspiking interneuron of the crayfish optic lobe: evaluation of a linear model.

作者信息

Glantz R M

机构信息

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

出版信息

J Neurophysiol. 1994 Jul;72(1):180-93. doi: 10.1152/jn.1994.72.1.180.

DOI:10.1152/jn.1994.72.1.180
PMID:7965004
Abstract
  1. Intracellular recordings, sine wave gratings, and paired flashes were used to characterize the directional selectivity (DS) of the peripheral neurons of the crayfish visual pathway. DS was observed in nonspiking tangential (Tan1) neurons of the distal medulla externa and it is expressed by the amplitude of the modulated synaptic potential elicited with drifting gratings. 2. The directional mechanism was characterized by variations in the grating contrast, spatial frequency, and temporal frequency. DS is both contrast and velocity dependent. 3. The velocity dependence of DS for fixed stimulus contrast can be described by a linear model including a delay and subtractive compare operation. This mechanism operates over the entire useful range of spatial and temporal frequencies. 4. The parameters of the linear model can be estimated from the spatiotemporal structure of the Tan1 cell receptive field. The receptive field exhibits a spatially asymmetric inhibitory subfield that is offset from the excitatory subfield by 3-5 degrees (1-2 ommatidia). The inhibition is delayed relative to excitation by 50-100 ms. 5. The contrast dependence of DS reflects an apparent nonlinearity in the mechanism that determines the null response amplitude. The preferred response magnitude is approximately linear with variations in contrast. 6. The nonlinearity observed in the null direction can in principle be attributed to either a tonic excitation at 0 contrast or a threshold for inhibition. There is evidence for both processes in the Tan1 cell visual response.
摘要
  1. 采用细胞内记录、正弦波光栅和配对闪光来表征小龙虾视觉通路外周神经元的方向选择性(DS)。在远端外髓质的非尖峰切向(Tan1)神经元中观察到了DS,它通过漂移光栅引发的调制突触电位的幅度来表示。2. 方向机制通过光栅对比度、空间频率和时间频率的变化来表征。DS既依赖于对比度也依赖于速度。3. 对于固定刺激对比度,DS的速度依赖性可以用一个包含延迟和减法比较运算的线性模型来描述。该机制在整个有用的空间和时间频率范围内起作用。4. 线性模型的参数可以从小龙虾Tan1细胞感受野的时空结构中估计出来。感受野呈现出一个空间不对称的抑制性子区域,它相对于兴奋性子区域偏移3 - 5度(1 - 2个小眼)。抑制相对于兴奋延迟50 - 100毫秒。5. DS的对比度依赖性反映了决定零反应幅度的机制中明显的非线性。首选反应幅度随对比度变化大致呈线性。6. 在零方向观察到的非线性原则上可归因于0对比度时的强直兴奋或抑制阈值。在Tan1细胞视觉反应中这两个过程都有证据。

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