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加州地松鼠(Spermophilus beecheyi)视神经纤维的方向滤波特性

Directional filter characteristics of optic nerve fibers in California ground squirrel (Spermophilus beecheyi).

作者信息

McCourt M E, Jacobs G H

出版信息

J Neurophysiol. 1984 Dec;52(6):1200-12. doi: 10.1152/jn.1984.52.6.1200.

Abstract

Directional units in the optic nerve of the California ground squirrel (Spermophilus beecheyi) were studied with respect to their response to diffuse light, preferred directions of motion, tuning for preferred direction, the relationship between spatial and directional tuning characteristics, and receptive-field size and areal summating properties. Directional units in the ground squirrel optic nerve are of the "on-off" type. No purely on or off units were encountered in a sample of 356 directionally selective fibers. The distribution of preferred directions of image motion for 356 units was significantly anisotropic; greater than 50% of the directional units prefer motion in the direction of the superior-nasal visual quadrant. Mean directional bandwidth, measured at half-amplitude response, for 39 units was 88.5 degrees. The distribution of directional bandwidths suggests that two subpopulations of directional units may exist a broadly tuned (106.4 degrees bandwidth) group preferring image motion in the superior-nasal direction, and a narrowly tuned group (59.9 degrees bandwidth) with a uniform distribution of preferred direction. Tuning for direction of motion and for spatial frequency were significantly positively correlated in a sample of 35 directional units. Area-vs.-response measures for directional units show that they possess excitatory discharge centers with a concentric antagonistic surround, plus a larger suppressive surround activated specifically by moving luminance contours, which may be asymmetric. Critical activation areas for directional units, as measured along orthogonal orientations, were highly positively correlated. This suggests that these receptive fields possess the property of linear spatial summation, not of luminance flux, but of areas of moving luminance contours.

摘要

对加利福尼亚地松鼠(Spermophilus beecheyi)视神经中的定向单元进行了研究,涉及它们对漫射光的反应、偏好的运动方向、对偏好方向的调谐、空间和定向调谐特性之间的关系,以及感受野大小和面积总和特性。地松鼠视神经中的定向单元属于“开-关”型。在356根具有方向选择性的纤维样本中未遇到纯开或纯关单元。356个单元的图像运动偏好方向分布显著各向异性;超过50%的定向单元偏好上鼻侧视觉象限方向的运动。39个单元在半幅度响应下测得的平均定向带宽为88.5度。定向带宽的分布表明可能存在两个定向单元亚群:一个是宽调谐(带宽106.4度)的群体,偏好上鼻侧方向的图像运动;另一个是窄调谐群体(带宽59.9度),其偏好方向分布均匀。在35个定向单元的样本中,运动方向调谐和空间频率调谐显著正相关。定向单元的面积与响应测量表明,它们具有兴奋性放电中心,周围有同心拮抗环绕,加上一个更大的抑制性环绕,该环绕由移动的亮度轮廓特异性激活,可能是不对称的。沿正交方向测量的定向单元的临界激活区域高度正相关。这表明这些感受野具有线性空间总和特性,不是亮度通量的总和特性,而是移动亮度轮廓区域的总和特性。

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