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Basal ganglia subcircuits distinctively encode the parsing and concatenation of action sequences

机译:基底神经节子电路独特地编码动作序列的解析和串联

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Chunking allows the brain to efficiently organize memories and actions. Although basal ganglia circuits have been implicated in action chunking, little is known about how individual elements are concatenated into a behavioral sequence at the neural level. Using a task in which mice learned rapid action sequences, we uncovered neuronal activity encoding entire sequences as single actions in basal ganglia circuits. In addition to neurons with activity related to the start/stop activity signaling sequence parsing, we found neurons displaying inhibited or sustained activity throughout the execution of an entire sequence. This sustained activity covaried with the rate of execution of individual sequence elements, consistent with motor concatenation. Direct and indirect pathways of basal ganglia were concomitantly active during sequence initiation, but behaved differently during sequence performance, revealing a more complex functional organization of these circuits than previously postulated. These results have important implications for understanding the functional organization of basal ganglia during the learning and execution of action sequences.
机译:分块可以使大脑有效地组织记忆和动作。尽管基底神经节回路与动作分块有关,但对于单个元素如何在神经水平上串联为行为序列的了解甚少。使用其中小鼠学习快速动作序列的任务,我们发现了将整个序列编码为基底神经节回路中单个动作的神经元活动。除了具有与启动/停止活动信号转导序列解析相关的活性的神经元外,我们还发现神经元在整个序列执行过程中均表现出抑制的或持续的活性。这种持续的活动与单个序列元件的执行速度共变,与运动级联一致。基底神经节的直接和间接途径在序列启动过程中同时活跃,但在序列执行过程中表现不同,这表明这些电路的功能组织比以前假定的更为复杂。这些结果对于了解动作序列的学习和执行过程中基底神经节的功能组织具有重要意义。

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