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在视觉分类任务中比较顶内沟的外侧和内侧区域。

A comparison of lateral and medial intraparietal areas during a visual categorization task.

机构信息

Department of Neurobiology, The University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Neurosci. 2013 Aug 7;33(32):13157-70. doi: 10.1523/JNEUROSCI.5723-12.2013.

Abstract

Categorization is essential for interpreting sensory stimuli and guiding our actions. Recent studies have revealed robust neuronal category representations in the lateral intraparietal area (LIP). Here, we examine the specialization of LIP for categorization and the roles of other parietal areas by comparing LIP and the medial intraparietal area (MIP) during a visual categorization task. MIP is involved in goal-directed arm movements and visuomotor coordination but has not been implicated in non-motor cognitive functions, such as categorization. As expected, we found strong category encoding in LIP. Interestingly, we also observed category signals in MIP. However, category signals were stronger and appeared with a shorter latency in LIP than MIP. In this task, monkeys indicated whether a test stimulus was a category match to a previous sample with a manual response. Test-period activity in LIP showed category encoding and distinguished between matches and non-matches. In contrast, MIP primarily reflected the match/non-match status of test stimuli, with a strong preference for matches (which required a motor response). This suggests that, although category representations are distributed across parietal cortex, LIP and MIP play distinct roles: LIP appears more involved in the categorization process itself, whereas MIP is more closely tied to decision-related motor actions.

摘要

分类对于解释感官刺激和指导我们的行动至关重要。最近的研究揭示了外侧顶内沟(LIP)中强大的神经元类别代表。在这里,我们通过比较视觉分类任务中的 LIP 和内侧顶内沟(MIP)来检查 LIP 对分类的专业化和其他顶叶区域的作用。MIP 参与目标导向的手臂运动和视觉运动协调,但与分类等非运动认知功能无关。正如预期的那样,我们在 LIP 中发现了强烈的类别编码。有趣的是,我们也在 MIP 中观察到了类别信号。然而,LIP 中的类别信号比 MIP 更强,潜伏期更短。在这个任务中,猴子通过手动反应来指示测试刺激是否与之前的样本匹配类别。LIP 在测试期的活动显示了类别编码,并区分了匹配和不匹配的情况。相比之下,MIP 主要反映了测试刺激的匹配/不匹配状态,对匹配有强烈的偏好(这需要进行运动反应)。这表明,尽管类别表示分布在顶叶皮层中,但 LIP 和 MIP 发挥着不同的作用:LIP 似乎更参与分类过程本身,而 MIP 更紧密地与决策相关的运动动作相关。

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