首页> 美国卫生研究院文献>The Journal of Neuroscience >Processing and Integration of Contextual Information in Monkey Ventrolateral Prefrontal Neurons during Selection and Execution of Goal-Directed Manipulative Actions
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Processing and Integration of Contextual Information in Monkey Ventrolateral Prefrontal Neurons during Selection and Execution of Goal-Directed Manipulative Actions

机译:在目标定向操纵动作的选择和执行过程中猴子腹侧前额神经元的上下文信息处理和整合

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摘要

The prefrontal cortex (PFC) is deemed to underlie the complexity, flexibility, and goal-directedness of primates' behavior. Most neurophysiological studies performed so far investigated PFC functions with arm-reaching or oculomotor tasks, thus leaving unclear whether, and to which extent, PFC neurons also play a role in goal-directed manipulative actions, such as those commonly used by primates during most of their daily activities. Here we trained two macaques to perform or withhold grasp-to-eat and grasp-to-place actions, depending on the combination of two subsequently presented cues: an auditory goo-go cue (high/low tone) and a visually presented target (food/object). By varying the order of presentation of the two cues, we could segment and independently evaluate the processing and integration of contextual information allowing the monkey to make a decision on whether or not to act, and what action to perform. We recorded 403 task-related neurons from the ventrolateral prefrontal cortex (VLPFC): unimodal sensory-driven (37%), motor-related (21%), unimodal sensory-and-motor (23%), and multisensory (19%) neurons. Target and goo-go selectivity characterized most of the recorded neurons, particularly those endowed with motor-related discharge. Interestingly, multisensory neurons appeared to encode a behavioral decision independently from the sensory modality of the stimulus allowing the monkey to make it: some of them reflected the decision to act or refraining from acting (56%), whereas others (44%) encoded the decision to perform (or withhold) a specific action (e.g., grasp-to-eat). Our findings indicate that VLPFC neurons play a role in the processing of contextual information underlying motor decision during goal-directed manipulative actions.>SIGNIFICANCE STATEMENT We demonstrated that macaque ventrolateral prefrontal cortex (VLPFC) neurons show remarkable selectivity for different aspects of the contextual information allowing the monkey to select and execute goal-directed manipulative actions. Interestingly, a set of these neurons provide multimodal representations of the intended goal of a forthcoming action, encoding a behavioral decision (e.g., grasp-to-eat) independently from the sensory information allowing the monkey to make it. Our findings expand the available knowledge on prefrontal functions by showing that VLPFC neurons play a role in the selection and execution of goal-directed manipulative actions resembling those of common primates' foraging behaviors. On these bases, we propose that VLPFC may host an abstract “vocabulary” of the intended goals pursued by primates in their natural environment.
机译:前额叶皮层(PFC)被认为是灵长类动物行为的复杂性,灵活性和目标导向性的基础。迄今为止,进行的大多数神经生理学研究都调查了PFC具有伸臂或动眼功能的功能,因此尚不清楚PFC神经元是否以及在何种程度上在目标定向的操纵行为中起作用,例如在大多数情况下灵长类动物通常使用的那些行为。他们的日常活动。在这里,我们训练了两只猕猴,以执行或保留“抓地吃”和“抓地放”的动作,具体取决于随后出现的两种提示的组合:听觉通过/不通过提示(高/低调)和视觉提示目标(食物/对象)。通过改变两个提示的显示顺序,我们可以细分并独立评估上下文信息的处理和整合,从而使猴子可以决定是否采取行动以及执行何种行动。我们从腹侧前额叶皮层(VLPFC)记录了403个与任务相关的神经元:单峰感觉驱动(37%),运动相关(21%),单峰感觉和运动(23%)和多感觉(19%)神经元。目标和通过/不通过选择性是大多数记录的神经元的特征,特别是那些具有运动相关放电的神经元。有趣的是,多感觉神经元似乎独立于让猴子做出刺激的感觉方式来编码行为决定:其中一些反映了决定采取行动或不采取行动的决定(56%),而其他人(44%)则对行为决定进行了编码。决定执行(或不执行)特定动作(例如,抓着吃)。我们的研究结果表明,VLPFC神经元在目标定向的操纵动作中在运动决策相关的上下文信息的处理中发挥作用。>意义声明我们证明了猕猴腹外侧前额叶皮层(VLPFC)神经元对不同的神经显示出显着的选择性上下文信息的各个方面,使猴子能够选择并执行目标导向的操作。有趣的是,这些神经元的集合提供即将发生的动作的预期目标的多模式表示,独立于允许猴子做出的感觉信息来编码行为决定(例如,抓地吃)。我们的研究结果表明,VLPFC神经元在选择和执行类似于普通灵长类动物觅食行为的目标定向操作中发挥了作用,从而扩展了有关额叶前额功能的知识。在这些基础上,我们建议VLPFC可以容纳灵长类动物在其自然环境中追求的预期目标的抽象“词汇”。

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