Tardif E, Lepore F, Guillemot J P
Groupe de Recherche en Neuropsychologie Expérimentale, Centre-Ville, Québec, H3C 3J7, Montréal, Canada.
Neuroscience. 2000;97(4):625-34. doi: 10.1016/s0306-4522(00)00061-0.
The receptive field properties of single units were assessed in area 21b of the cat visual cortex. Visual cells in this area were binocular and showed relatively large receptive fields. Most cells were strongly sensitive to the direction of drifting gratings. The mean value of the half-widths of the direction tuning curves (32 degrees ) suggests broader direction tunings than are typically found in other visual areas. The spatial frequency tuning functions were either band-pass or low-pass. Cells responded optimally to low spatial frequencies (mean =0.08c/deg) and also showed low spatial resolution (mean =0.29c/deg.). The estimated values of spatial bandwidths (mean=2.2 octaves) suggest that area 21b cells act as relatively good spatial filters. Although some cells exhibited a low contrast threshold, most cells began to respond at intermediate or high contrast values (mean threshold =15.5%). Temporal frequency tuning functions were mostly band-pass and usually broad (mean temporal bandwidth=3.3 octaves). Cells were found that responded optimally to various temporal frequencies (mean optimal temporal frequency=3.2Hz), although the majority preferred a temporal frequency below 4Hz.These results suggest that visual properties (receptive fields sizes, spatial resolution and orientation/direction selectivity) of cells in area 21b differ from those of cells previously observed in the adjoining area 21a. These differences provide evidence in support of functional distinction between these two visual areas.
在猫视觉皮层的21b区评估了单个神经元的感受野特性。该区域的视觉细胞具有双眼性,且表现出相对较大的感受野。大多数细胞对漂移光栅的方向具有强烈敏感性。方向调谐曲线半高宽的平均值(32度)表明,与其他视觉区域相比,该区域的方向调谐更宽泛。空间频率调谐函数要么是带通的,要么是低通的。细胞对低空间频率(平均值 = 0.08周/度)反应最佳,并且空间分辨率也较低(平均值 = 0.29周/度)。空间带宽的估计值(平均值 = 2.2倍频程)表明,21b区的细胞可作为相对较好的空间滤波器。尽管一些细胞表现出较低的对比度阈值,但大多数细胞在中等或高对比度值时开始做出反应(平均阈值 = 15.5%)。时间频率调谐函数大多是带通的,且通常较宽(平均时间带宽 = 3.3倍频程)。发现细胞对各种时间频率反应最佳(平均最佳时间频率 = 3.2Hz),尽管大多数细胞更喜欢低于4Hz的时间频率。这些结果表明,21b区细胞的视觉特性(感受野大小、空间分辨率和方向/方向选择性)与先前在相邻的21a区观察到的细胞不同。这些差异为支持这两个视觉区域之间的功能区别提供了证据。