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腹侧前运动皮层中的决策预示着行动。

Decision-making in the ventral premotor cortex harbinger of action.

机构信息

Laboratorios de Neurociencia, Facultad de Medicina, Departamento de Fisiología, and Complejo Hospitalario Universitario, Universidad de Santiago de Compostela Santiago de Compostela, Spain.

出版信息

Front Integr Neurosci. 2011 Sep 27;5:54. doi: 10.3389/fnint.2011.00054. eCollection 2011.

Abstract

Although the premotor (PM) cortex was once viewed as the substrate of pure motor functions, soon it was realized that it was involved in higher brain functions. By this it is meant that the PM cortex functions would better be explained as motor set, preparation for limb movement, or sensory guidance of movement rather than solely by a fixed link to motor performance. These findings, together with a better knowledge of the PM cortex histology and hodology in human and non-human primates prompted quantitative studies of this area combining behavioral tasks with electrophysiological recordings. In addition, the exploration of the PM cortex neurons with qualitative methods also suggested its participation in higher functions. Behavioral choices frequently depend on temporal cues, which together with knowledge of previous outcomes and expectancies are combined to decide and choose a behavioral action. In decision-making the knowledge about the consequences of decisions, either correct or incorrect, is fundamental because they can be used to adapt future behavior. The neuronal correlates of a decision process have been described in several cortical areas of primates. Among them, there is evidence that the monkey ventral premotor (PMv) cortex, an anatomical and physiological well-differentiated area of the PM cortex, supports both perceptual decisions and performance monitoring. Here we review the evidence that the steps in a decision-making process are encoded in the firing rate of the PMv neurons. This provides compelling evidence suggesting that the PMv is involved in the use of recent and long-term sensory memory to decide, execute, and evaluate the outcomes of the subjects' choices.

摘要

虽然运动前区(PM)皮层曾被视为纯粹运动功能的基础,但很快就意识到它参与了更高的大脑功能。这意味着 PM 皮层的功能更好地被解释为运动设定、肢体运动的准备或运动的感觉引导,而不仅仅是通过与运动表现的固定联系。这些发现,加上对人类和非人类灵长类动物 PM 皮层组织学和神经解剖学的更好了解,促使人们结合行为任务和电生理记录对该区域进行定量研究。此外,通过定性方法对 PM 皮层神经元的探索也表明其参与了更高的功能。行为选择经常取决于时间线索,这些线索与先前结果和期望的知识相结合,以决定和选择行为动作。在决策中,关于决策结果的知识(无论是正确的还是错误的)都是至关重要的,因为它们可以用来适应未来的行为。灵长类动物的几个皮质区域已经描述了决策过程的神经元相关性。其中,有证据表明,猴子腹侧运动前区(PMv)皮层是 PM 皮层的一个解剖学和生理学上分化良好的区域,支持感知决策和表现监测。在这里,我们回顾了决策过程的步骤是如何被 PMv 神经元的放电率编码的证据。这提供了令人信服的证据,表明 PMv 参与了使用最近和长期的感觉记忆来决定、执行和评估被试选择的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d8f/3180590/870e3573857c/fnint-05-00054-g001.jpg

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