Dias E C, Rocha-Miranda C E, Bernardes R F, Schmidt S L
Departamento de Neurobiologia, Universidade Federal do Rio de Janeiro, Brasil.
Exp Brain Res. 1991;87(3):546-52. doi: 10.1007/BF00227080.
Binocular visual responses can be recorded in two regions of the superficial layers of the superior colliculus of the opossum. The direct binocular region (DBR) represents the binocular portion of the contralateral hemifield whereas the rostral pole (RP) represents the binocular portion of the ipsilateral hemifield. In the present study single units from both of these regions were tested with binocular and monocular stimulation. Most cells in both regions showed response facilitation when both eyes were simultaneously stimulated and, when tested with different binocular disparities, most cells showed broadly-tuned disparity selectivity. DBR units usually preferred disparities near zero whereas RP units had a wider range of preferred disparities, with a tendency toward positive (crossed) values. This data indicates that the superior colliculus of the opossum could provide a neural substrate for a coarse analysis of depth and also might help control vergence eye movements. The different ranges of disparity selectivity of DBR and RP are consistent with the previously reported monocular receptive-field data and suggest that DBR and RP analyze different depths of the 3-dimensional visual scene.
负鼠上丘表层的两个区域可记录到双眼视觉反应。直接双眼区(DBR)代表对侧半视野的双眼部分,而吻侧极(RP)代表同侧半视野的双眼部分。在本研究中,对这两个区域的单个神经元进行了双眼和单眼刺激测试。两个区域的大多数细胞在双眼同时受到刺激时均表现出反应易化,并且在不同双眼视差测试中,大多数细胞表现出宽调谐视差选择性。DBR神经元通常偏好接近零的视差,而RP神经元具有更广泛的偏好视差范围,且有偏向正值(交叉)的趋势。该数据表明,负鼠的上丘可为深度的粗略分析提供神经基质,也可能有助于控制眼球的辐辏运动。DBR和RP不同的视差选择性范围与先前报道的单眼感受野数据一致,表明DBR和RP分析三维视觉场景的不同深度。