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时间频率和适应水平对猫视网膜神经节细胞感受野组织的影响。

The influence of temporal frequency and adaptation level on receptive field organization of retinal ganglion cells in cat.

作者信息

Derrington A M, Lennie P

出版信息

J Physiol. 1982 Dec;333:343-66. doi: 10.1113/jphysiol.1982.sp014457.

Abstract
  1. The discharges of single X and Y ganglion cells (distinguished by a test of linearity of spatial summation) were recorded in the optic tract of anaesthetized, paralysed cats.2. Fourier techniques were used to analyse the distribution of amplitudes of several component temporal frequencies in the maintained discharge. X and Y cells were distinguished by their mean rates, but not by the amplitude or variability of other component frequencies.3. Sensitivities to moving sinusoidal gratings were measured by an automatic procedure in which stimulus contrast was adjusted to give the smallest modulation of discharge that reliably exceeded that of the relevant component frequency in the maintained discharge.4. Spatial contrast sensitivity curves of X cells and of on-centre Y cells could be described by a model of the receptive field as two concentric Gaussian sensitivity profiles representing the centre and the antagonistic surround.5. Changes in temporal frequency altered the shapes of the spatial contrast sensitivity curves of most units. For X cells sensitivity at the optimum spatial frequency was greater at a temporal frequency of 10.4 Hz than at lower or higher temporal frequencies. The relative sensitivity to low spatial frequencies improved as temporal frequency was raised from 0.16 to 20.8 Hz. The shapes of the contrast sensitivity functions of Y cells were less affected by changes in temporal frequency: at all spatial frequencies sensitivity was greater at 2.6 Hz than at lower or higher frequencies.6. The effect of temporal frequency upon the shape of the spatial contrast sensitivity curve could be explained by assuming that the centre and surround changed their sensitivities without changing their characteristic radii. A simple model, using a temporal R-C filter in the surround pathway, predicted qualitatively similar changes in the shape of contrast sensitivity curves but failed to provide acceptable fits to the observations. A second model, which assumed that surround signals are delayed by a fixed amount before being combined with those from the centre, fitted the observations of most, but not all, X cells.7. Dark adaptation produced changes in the shape of the spatial contrast sensitivity curve consistent with a reduction in the relative sensitivity of the surround, but did not bring about systematic changes in the space constants of the best-fitting theoretical curves.8. The effects of adaptation level upon contrast sensitivity were expressed as plots of increment-threshold against mean illumination. The shallowest of these curves, obtained for the optimum spatial stimulus moving at about 10 Hz, had slopes averaging 0.77. Decreases in spatial or temporal frequency increased the slopes of the curves.
摘要
  1. 在麻醉、麻痹的猫的视束中记录单个X和Y神经节细胞的放电情况(通过空间总和线性测试区分)。

  2. 采用傅里叶技术分析维持放电中几个组成时间频率的振幅分布。X和Y细胞通过其平均放电频率区分,但不是通过其他组成频率的振幅或变异性区分。

  3. 通过自动程序测量对移动正弦光栅的敏感性,其中调整刺激对比度以给出最小的放电调制,该调制可靠地超过维持放电中相关组成频率的调制。

  4. X细胞和中心型Y细胞的空间对比度敏感性曲线可以用一个感受野模型来描述,该模型为两个同心高斯敏感性分布,分别代表中心和拮抗周边。

  5. 时间频率的变化改变了大多数神经元的空间对比度敏感性曲线的形状。对于X细胞,在10.4 Hz的时间频率下,最佳空间频率处的敏感性高于较低或较高的时间频率。随着时间频率从0.16 Hz提高到20.8 Hz,对低空间频率的相对敏感性提高。Y细胞的对比度敏感性函数形状受时间频率变化的影响较小:在所有空间频率下,2.6 Hz时的敏感性高于较低或较高频率。

  6. 时间频率对空间对比度敏感性曲线形状的影响可以通过假设中心和周边改变其敏感性而不改变其特征半径来解释。一个简单的模型,在周边通路中使用时间R-C滤波器,定性地预测了对比度敏感性曲线形状的类似变化,但未能提供与观测结果可接受的拟合。第二个模型假设周边信号在与中心信号组合之前延迟固定量,拟合了大多数但不是所有X细胞的观测结果。

  7. 暗适应导致空间对比度敏感性曲线形状发生变化,这与周边相对敏感性降低一致,但没有导致最佳拟合理论曲线的空间常数发生系统性变化。

  8. 适应水平对对比度敏感性的影响表示为增量阈值与平均照度的关系图。对于以约10 Hz移动的最佳空间刺激获得的这些曲线中最浅的曲线,斜率平均为0.77。空间或时间频率的降低增加了曲线的斜率。

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