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首页> 外文期刊>Zeitschrift fur Naturforschung, C. A Journal of Biosciences >Visual recognition based on temporal cortex cells: Viewer-centred processing of pattern configuration
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Visual recognition based on temporal cortex cells: Viewer-centred processing of pattern configuration

机译:基于颞皮质细胞的视觉识别:以查看者为中心的模式配置处理

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A model of recognition is described based on cell properties in the ventral cortical stream of visual processing in the primate brain. At a critical intermediate stage in this system, 'Elaborate' feature sensitive cells respond selectively to visual features in a way that depends on size (+/-1 octave), orientation (+/-45 degrees) but does not depend on position within central vision (+/-5 degrees). These features are simple conjunctions of 2-D elements (e.g. a horizontal dark area above a dark smoothly convex area). They can arise either as elements of an object's surface pattern or as a 3-D component bounded by an object's external contour. By requiring a combination of several such features without regard to their position within the central region of the visual image, 'Pattern' sensitive cells at higher levels can exhibit selectivity for complex configurations that typify objects seen under particular viewing conditions. Given that input features to such Pattern sensitive cells are specified in approximate size and orientation, initial cellular 'representations' of the visual appearance of object type (or object example) are also selective for orientation and size. At this level, sensitivity to object view (+/-60 degrees) arises because visual features disappear as objects are rotated in perspective. Processing is thus viewer-centred and the neurones only respond to objects seen from particular viewing conditions or 'object instances'. Combined sensitivity to multiple features (conjunctions of elements) independent of their position, establishes selectivity for the configurations of object parts (from one view) because rearranged configurations of the same parts yield images lacking some of the 2-D visual features present in the normal configuration. Different neural populations appear to be selectively tuned to particular components of the same biological object (e.g. face, eyes, hands, legs), perhaps because the independent articulation of these components gives rise to correlated activity in different sets of input visual features. Generalisation over viewing conditions for a given object can be established by hierarchically pooling outputs of view-condition specific cells with pooling operations dependent on the continuity in experience across viewing conditions. Different object parts are seen together and different views are seen in succession when the observer walks around the object. The view specific coding that characterises the selectivity of cells in the temporal lobe can be seen as a natural consequence of selective experience of objects from particular vantage points. View specific coding for the face and body also has great utility in understanding complex social signals, a property that may not be feasible with object-centred processing. [References: 108]
机译:基于灵长类动物大脑视觉处理的腹侧皮质流中的细胞特性描述了一种识别模型。在该系统的关键中间阶段,“精心制作”的特征敏感单元以依赖于大小(+/- 1倍频程),方向(+/- 45度)但不依赖于其内部位置的方式选择性地响应视觉特征中心视力(+/- 5度)。这些功能是2D元素的简单结合(例如,深色平滑凸区域上方的水平深色区域)。它们既可以作为对象表面图案的元素出现,也可以作为以对象外部轮廓为边界的3-D组件出现。通过要求几个这样的特征的组合而不考虑它们在视觉图像中心区域内的位置,“模式”敏感单元在较高级别上可以表现出对复杂配置的选择性,这些复杂配置代表了在特定观看条件下看到的物体。假定以近似的大小和方向指定了此类模式敏感单元的输入特征,则对象类型(或对象示例)的视觉外观的初始单元格“表示”对于方向和大小也是有选择的。在此级别上,由于对象旋转透视时视觉特征消失,因此对对象视图(+/- 60度)敏感。因此,处理以观看者为中心,并且神经元仅对从特定观看条件或“对象实例”看到的对象做出响应。对多个特征(元素的连接)的敏感性独立于其位置,从而为对象部分的配置(从一个视图)建立了选择性,因为相同部分的重新排列配置产生的图像缺少法线中存在的某些二维视觉特征组态。不同的神经种群似乎被选择性地调整为同一生物对象的特定组成部分(例如脸,眼,手,腿),这可能是因为这些组成部分的独立表达会导致不同组输入视觉特征中的相关活动。给定对象的观看条件的一般化可以通过根据观看条件在不同观看条件下的连续性,通过分层合并具有观看条件的特定单元格的输出而建立,该合并操作取决于合并条件。当观察者在对象周围走动时,可以同时看到不同的对象部分,并且可以连续看到不同的视图。可以将表征颞叶中细胞选择性的特定于视图的编码视为来自特定有利位置的对象选择性体验的自然结果。针对面部和身体的特定视图编码在理解复杂的社会信号方面也具有很大的实用性,这种属性在以对象为中心的处理中可能不可行。 [参考:108]

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