Kalberlah C, Distler C, Hoffmann K-P
Allgemeine Zoologie und Neurobiologie, Ruhr-Universität Bochum, Postfach 102148, 44780, Bochum, Germany.
Exp Brain Res. 2009 Jan;192(3):379-89. doi: 10.1007/s00221-008-1545-z. Epub 2008 Aug 23.
To investigate binocular interactions as the neuronal substrate for disparity sensitivity in the ferret (Mustela putorius furo), we measured the effects of relative horizontal disparities on responses of neurons in areas 17 and 18 of the visual cortex. Stimulation by moving bars and sinusoidal gratings showed that about half of our sample in pigmented ferrets was sensitive to relative horizontal disparity. This also included many neurons, which were classified as only monocularly activated when testing either eye alone. However, the tuning width was about two or three times coarser (median tuning width 4 degrees of visual angle) than that in the cat. In albino ferrets, only 8% of the neurons in the early visual cortex displayed some sort of disparity-dependent binocular interactions, but none could be clearly identified as relative disparity-coding neuron.
为了研究雪貂(白鼬)双眼相互作用作为视差敏感性的神经基质,我们测量了相对水平视差对视觉皮层17区和18区神经元反应的影响。移动条纹和正弦光栅刺激表明,在有色雪貂中,约一半的样本对相对水平视差敏感。这还包括许多神经元,当单独测试任何一只眼睛时,它们被归类为仅单眼激活。然而,调谐宽度比猫的调谐宽度大约粗两到三倍(中位调谐宽度为4度视角)。在白化雪貂中,早期视觉皮层中只有8%的神经元表现出某种视差依赖的双眼相互作用,但没有一个能被明确鉴定为相对视差编码神经元。