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Neural computations underlying depth perception.

机译:深度感知的神经计算。

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摘要

Neural mechanisms underlying depth perception are reviewed with respect to three computational goals: determining surface depth order, gauging depth intervals, and representing 3D surface geometry and object shape. Accumulating evidence suggests that these three computational steps correspond to different stages of cortical processing. Early visual areas appear to be involved in depth ordering, while depth intervals, expressed in terms of relative disparities, are likely represented at intermediate stages. Finally, 3D surfaces appear to be processed in higher cortical areas, including an area in which individual neurons encode 3D surface geometry, and a population of these neurons may therefore represent 3D object shape. How these processes are integrated to form a coherent 3D percept of the world remains to be understood.
机译:深度感知的神经机制针对三个计算目标进行了审查:确定表面深度顺序,测量深度间隔以及表示3D表面几何形状和对象形状。越来越多的证据表明这三个计算步骤对应于皮层处理的不同阶段。早期的视觉区域似乎参与了深度排序,而以相对差异表示的深度间隔很可能代表了中间阶段。最后,3D表面似乎在较高的皮质区域中进行了处理,包括单个神经元在其中编码3D表面几何形状的区域,因此这些神经元的群体可以表示3D对象的形状。如何整合这些过程以形成对世界的一致3D感知仍有待了解。

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