Theys Tom, Romero Maria C, van Loon Johannes, Janssen Peter
Laboratorium voor Neuro- en Psychofysiologie, Katholieke Universiteit Leuven Leuven, Belgium ; Afdeling Experimentele Neurochirurgie en Neuroanatomie, Katholieke Universiteit Leuven Leuven, Belgium.
Laboratorium voor Neuro- en Psychofysiologie, Katholieke Universiteit Leuven Leuven, Belgium.
Front Comput Neurosci. 2015 Apr 22;9:43. doi: 10.3389/fncom.2015.00043. eCollection 2015.
The primate visual system extracts object shape information for object recognition in the ventral visual stream. Recent research has demonstrated that object shape is also processed in the dorsal visual stream, which is specialized for spatial vision and the planning of actions. A number of studies have investigated the coding of 2D shape in the anterior intraparietal area (AIP), one of the end-stage areas of the dorsal stream which has been implicated in the extraction of affordances for the purpose of grasping. These findings challenge the current understanding of area AIP as a critical stage in the dorsal stream for the extraction of object affordances. The representation of three-dimensional (3D) shape has been studied in two interconnected areas known to be critical for object grasping: area AIP and area F5a in the ventral premotor cortex (PMv), to which AIP projects. In both areas neurons respond selectively to 3D shape defined by binocular disparity, but the latency of the neural selectivity is approximately 10 ms longer in F5a compared to AIP, consistent with its higher position in the hierarchy of cortical areas. Furthermore, F5a neurons were more sensitive to small amplitudes of 3D curvature and could detect subtle differences in 3D structure more reliably than AIP neurons. In both areas, 3D-shape selective neurons were co-localized with neurons showing motor-related activity during object grasping in the dark, indicating a close convergence of visual and motor information on the same clusters of neurons.
灵长类动物的视觉系统在腹侧视觉通路中提取物体形状信息以进行物体识别。最近的研究表明,物体形状也在背侧视觉通路中进行处理,该通路专门用于空间视觉和动作规划。许多研究调查了顶内前区(AIP)中二维形状的编码,AIP是背侧通路的终末区域之一,与为抓握目的提取可供性有关。这些发现挑战了目前将AIP区域视为背侧通路中提取物体可供性关键阶段的理解。三维(3D)形状的表征已在两个已知对物体抓握至关重要的相互连接区域中进行了研究:AIP区域和腹侧运动前皮质(PMv)中的F5a区域,AIP向其投射。在这两个区域中,神经元对由双眼视差定义的3D形状有选择性反应,但与AIP相比,F5a中神经选择性的潜伏期大约长10毫秒,这与其在皮质区域层次结构中的较高位置一致。此外,F5a神经元对3D曲率的小幅度变化更敏感,并且比AIP神经元更能可靠地检测3D结构中的细微差异。在这两个区域中,3D形状选择性神经元与在黑暗中抓握物体时显示运动相关活动的神经元共定位,表明视觉和运动信息在同一群神经元上紧密汇聚。