Choudhury B P
Brain Res. 1978 Apr 7;144(1):19-29. doi: 10.1016/0006-8993(78)90432-8.
Under anaesthesia the right visual cortex of the guinea pig was investigated with 1.5 M potassium citrate-filled glass microelectrodes. Single unit and small unit cluster response showed an organized three-part representation of the contralateral visual field on the animal's visual cortex. The major central division (V1) had the representation of a nasotemporally elongated visual field. This visual field extended for about 110 degrees horizontally and for about 70 degrees vertically. The nasal visual field was represented laterally on the cortex and the lower visual field anteriorly. The visual field representation was not uniformly magnified in V1; the magnification of the nasal field was higher than the rest of the visual field. On either side of V1, the guinea pig's cortex had two additional visually responsive strips. The strip V2L, situated lateral to V1, had a condensed representation of about 40 degrees of the animal's nasal visual field and mirror-imaged the visual field representation of the adjacent V1. The strip V2M, situated medial to V1, had a similar representation of about 40 degrees of the animal's temporal visual field and mirror-imaged the visual field representation of the area V1 adjacent to it. A binocularly responsive zone of cortex was observed on either side of the boundary between the areas V1 and V2L, representing between 10 degrees and 15 degrees of the nasal visual field on each side of the boundary line. Investigation of the retinal ganglion cell distribution of the animal showed a nasotemporally oriented 'visual streak' with a high ganglion cell density per unit area of the retina, near the optic disc. Away from the 'visual streak' the density of the ganglion cells of the retina diminished progressively. The configuration of the 'visual streak' and the general pattern of the ganglion cell distribution in the rest of the retina coincided with the asymmetry in the magnification of representation of the animal's visual field on the cortex.
在麻醉状态下,用充满1.5M柠檬酸钾的玻璃微电极对豚鼠的右侧视觉皮层进行了研究。单个单位和小单位簇反应显示,动物视觉皮层上对侧视野呈现出有组织的三部分表征。主要的中央区域(V1)具有鼻颞向拉长的视野表征。该视野水平方向延伸约110度,垂直方向延伸约70度。鼻侧视野在皮层上的表征位于外侧,下侧视野的表征位于前方。V1区域内视野表征的放大率并不均匀;鼻侧视野的放大率高于视野的其他部分。在V1的两侧,豚鼠的皮层还有另外两条视觉反应带。位于V1外侧的V2L带,对动物约40度的鼻侧视野有浓缩表征,并镜像了相邻V1区域的视野表征。位于V1内侧的V2M带,对动物约40度的颞侧视野有类似表征,并镜像了与其相邻的V1区域的视野表征。在V1和V2L区域边界的两侧观察到一个双眼反应性皮层区域,代表边界线两侧各10度至15度的鼻侧视野。对该动物视网膜神经节细胞分布的研究显示,在视盘附近有一条鼻颞向的“视觉条纹”,视网膜每单位面积的神经节细胞密度较高。远离“视觉条纹”,视网膜神经节细胞的密度逐渐降低。“视觉条纹”的形态以及视网膜其他部分神经节细胞分布的总体模式与动物皮层上视野表征放大率的不对称性相吻合。