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猕猴顶内前区神经元的感受野特性

Receptive field properties of neurons in the macaque anterior intraparietal area.

作者信息

Romero Maria C, Janssen Peter

机构信息

Laboratorium voor Neuro- en Psychofysiologie, KU Leuven, Leuven, Belgium.

Laboratorium voor Neuro- en Psychofysiologie, KU Leuven, Leuven, Belgium

出版信息

J Neurophysiol. 2016 Mar;115(3):1542-55. doi: 10.1152/jn.01037.2014. Epub 2016 Jan 20.

Abstract

Visual object information is necessary for grasping. In primates, the anterior intraparietal area (AIP) plays an essential role in visually guided grasping. Neurons in AIP encode features of objects, but no study has systematically investigated the receptive field (RF) of AIP neurons. We mapped the RF of posterior AIP (pAIP) neurons in the central visual field, using images of objects and small line fragments that evoked robust responses, together with less effective stimuli. The RF sizes we measured varied between 3°(2)and 90°(2), with the highest response either at the fixation point or at parafoveal positions. A large fraction of pAIP neurons showed nonuniform RFs, with multiple local maxima in both ipsilateral and contralateral hemifields. Moreover, the RF profile could depend strongly on the stimulus used to map the RF. Highly similar results were obtained with the smallest stimulus that evoked reliable responses (line fragments measuring 1-2°). The nonuniformity and dependence of the RF profile on the stimulus in pAIP were comparable to previous observations in the anterior part of the lateral intraparietal area (aLIP), but the average RF of pAIP neurons was located at the fovea whereas the average RF of aLIP neurons was located parafoveally. Thus nonuniformity and stimulus dependence of the RF may represent general RF properties of neurons in the dorsal visual stream involved in object analysis, which contrast markedly with those of neurons in the ventral visual stream.

摘要

视觉物体信息对于抓握是必要的。在灵长类动物中,顶内前区(AIP)在视觉引导的抓握中起着至关重要的作用。AIP中的神经元编码物体的特征,但尚无研究系统地研究AIP神经元的感受野(RF)。我们使用能引发强烈反应的物体图像和小线段片段以及效果较差的刺激,绘制了中央视野中后顶内前区(pAIP)神经元的RF。我们测量的RF大小在3°(2)和90°(2)之间变化,最高反应出现在注视点或旁中央凹位置。很大一部分pAIP神经元表现出不均匀的RF,在同侧和对侧半视野中都有多个局部最大值。此外,RF轮廓可能强烈依赖于用于绘制RF的刺激。使用能引发可靠反应的最小刺激(1 - 2°的线段片段)也获得了高度相似的结果。pAIP中RF的不均匀性及其对刺激的依赖性与先前在外侧顶内前区(aLIP)前部的观察结果相当,但pAIP神经元的平均RF位于中央凹,而aLIP神经元的平均RF位于旁中央凹。因此,RF的不均匀性和对刺激的依赖性可能代表参与物体分析的背侧视觉流中神经元的一般RF特性,这与腹侧视觉流中神经元的特性形成明显对比。

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