Dorsolateral striatum encodes a temporal basis for the organization of behavior

Filipe Sobreira Rodrigues, Tiago Monteiro, Asma Motiwala, Joseph J Paton
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Abstract

To behave adaptively, the brain must register temporal structure in the environment and use it to organize behavior. The dorsolateral striatum (DLS) integrates sensorimotor cortical input, and is necessary for accurate timing and structuring behavior in general. However, if DLS provides the basis for mapping temporal features in the environment to behavior, its activity should predict variation in that mapping. A reanalysis of DLS population activity in rats comparing the duration of two sequentially presented vibratory stimuli revealed a striking correspondence between neural activity and behavior. Varying vibration intensity of the second stimulus induced systematic biases in temporal judgments, and corresponding biases in multiple features of DLS activity, including population coding of time. In contrast, the same intensity manipulations applied to the first stimulus affected neither behavior nor neural activity. Furthermore, neuronal response profiles were best described as a continuum, arguing against hypotheses where categories of responses, e.g., ramping activity, selectively underpin temporal processing. These data represent important additional evidence that striatal population dynamics support the organization of behavior by mapping temporal information to action.
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背外侧纹状体编码行为组织的时间基础
为了适应行为,大脑必须记录环境中的时间结构,并用它来组织行为。背外侧纹状体(DLS)整合感觉运动皮层输入,是准确定时和组织行为所必需的。但是,如果DLS提供了将环境中的时间特征映射到行为的基础,那么它的活动应该预测该映射中的变化。一项对大鼠DLS种群活动的再分析,比较了两个顺序呈现的振动刺激的持续时间,揭示了神经活动和行为之间惊人的对应关系。第二刺激振动强度的变化会引起时间判断的系统性偏差,并导致DLS活动的多个特征(包括时间的总体编码)产生相应的偏差。相比之下,同样强度的操作对第一个刺激既不影响行为也不影响神经活动。此外,神经元反应概况最好被描述为一个连续体,反驳了反应类别(例如,斜坡活动)选择性地支持时间处理的假设。这些数据是纹状体种群动态通过将时间信息映射到行动来支持行为组织的重要补充证据。
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