Department of Information Science and Biomedical Engineering, Graduate School of Science and Engineering, Kagoshima University, Kagoshima, Japan.
Eur J Neurosci. 2018 Dec;48(12):3552-3566. doi: 10.1111/ejn.14162. Epub 2018 Oct 8.
The inferotemporal cortex consists of an anterior (cytoarchitectonic area TE) and a posterior (area TEO) part, which together constitute the final areas of the ventral visual stream, which is critical for object discrimination. Area TE receives dense projections from area TEO. We have previously identified a response tolerance in the cells in area TE in monkeys to a range of viewing angles after object discrimination at each of several views. To investigate the contribution of area TEO to the establishment of such a response tolerance in area TE, we conducted electrophysiological recordings of the responses of the single cells in area TEO after performance saturation of object discrimination at several independent views, without any association across views, and compared them with those obtained from the TE cells. The cells in area TEO showed responses to the experienced object views, but not to nearby views. Comparisons of the tunings of the TE and TEO cells to different viewing angles for the same object sets in the same animal showed that cells in area TEO had a significantly narrower tuning width, whereas the response tolerance was usually observed in the TE cells across viewing angles up to 60°. Our findings revealed a significant difference in the representation of the object views between areas TE and TEO, and suggested that such a representation in area TE may be completed through neuronal mechanisms within area TE, which is not a property of the earlier stages of the ventral visual stream.
颞下回皮质由前部(细胞构筑区 TE)和后部(区 TEO)组成,共同构成腹侧视觉流的最终区域,对物体辨别至关重要。TE 区接收来自 TEO 区的密集投射。我们之前在猴子身上发现,在几个视图中的每个视图进行物体辨别后,TE 区的细胞对一系列视角具有反应容忍度。为了研究 TEO 区对 TE 区建立这种反应容忍度的贡献,我们在几个独立视图的物体辨别达到饱和后,对 TEO 区的单个细胞进行电生理记录,而不进行任何跨视图关联,并将其与 TE 区细胞的记录进行比较。TE 区的细胞对经历过的物体视图有反应,但对附近的视图没有反应。将 TE 和 TEO 细胞对同一动物同一物体集不同视角的调谐进行比较,结果表明,TE 区的细胞调谐宽度明显变窄,而在 TE 细胞中,反应容忍度通常在 60°的视角范围内观察到。我们的发现揭示了 TE 和 TEO 区之间物体视图表示的显著差异,并表明 TE 区的这种表示可能是通过 TE 区内的神经元机制完成的,而不是腹侧视觉流早期阶段的特性。