Volchan E, Bernardes R F, Rocha-Miranda C E, Gleiser L, Gawryszewski L G
Instituto de Biologia da Universidade do Estado do Rio de Janeiro, Brazil.
Exp Brain Res. 1988;73(2):297-304. doi: 10.1007/BF00248221.
Reference axes for the visuotopic study of the opossum's striate cortex were estimated from corresponding binocular response fields using multi-unit recording. These central binocular axes (CBA) were derived from experimental data based on the concept that corresponding receptive fields for each eye should be mostly in register under natural conditions. Vertical reference meridians, orthogonal to these axes, define a contralateral and an ipsilateral field for each eye with respect to the recording site. An ipsilateral field representation was observed for both eyes in the striate cortex at the transition zone with peristriate. Maximal values for the center and border of ipsilateral receptive fields were, respectively, 8 and 20 degrees for the contralateral eye and 6 and 14 degrees for the ipsilateral eye. An equivalent ipsilateral field representation was found in animals that had the anterior commissure cut prior to the recording session. This suggests that the ipsilateral field of both eyes may be represented in the striate cortex via the ipsilateral optic tract. Additionally, it was observed that the region of higher ganglion cell density in the retina shows a flattened distribution and that the CBA intersects the retina at the temporal aspect of this region.
利用多单位记录法,根据相应的双眼反应场估计了负鼠纹状皮层视拓扑研究的参考轴。这些中央双眼轴(CBA)是根据实验数据得出的,其依据的概念是,在自然条件下,每只眼睛的相应感受野大多应相互对齐。与这些轴正交的垂直参考子午线,相对于记录部位,为每只眼睛定义了一个对侧视野和一个同侧视野。在纹状皮层与纹周皮层的过渡区,观察到双眼都有同侧视野代表区。对侧眼同侧感受野中心和边界的最大值分别为8度和20度,同侧眼分别为6度和14度。在记录前切断前连合的动物中也发现了等效的同侧视野代表区。这表明双眼的同侧视野可能通过同侧视束在纹状皮层中得到代表。此外,还观察到视网膜中神经节细胞密度较高的区域呈扁平分布,且CBA在该区域的颞侧与视网膜相交。