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Precisely timed dopamine signals establish distinct kinematic representations of skilled movements

机译:精确定时的多巴胺信号建立了熟练运动的不同运动表示

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摘要

Brain dopamine is critical for normal motor control, as evidenced by its importance in Parkinson Disease and related disorders. Current hypotheses are that dopamine influences motor control by ‘invigorating’ movements and regulating motor learning. Most evidence for these aspects of dopamine function comes from simple tasks (e.g. lever pressing). Therefore, the influence of dopamine on motor skills requiring multi-joint coordination is unknown. To determine the effects of precisely timed dopamine manipulations on the performance of a complex, finely coordinated dexterous skill, we optogenetically stimulated or inhibited midbrain dopamine neurons as rats performed a skilled reaching task. We found that reach kinematics and coordination between gross and fine movements progressively changed with repeated manipulations. However, once established, rats transitioned abruptly between aberrant and baseline reach kinematics in a dopamine-dependent manner. These results suggest that precisely timed dopamine signals have immediate and long-term influences on motor skill performance, distinct from simply ‘invigorating’ movement.
机译:脑多巴胺对于正常的电机控制至关重要,如帕金森病和相关疾病的重要性所证明。目前的假设是多巴胺通过“振奋”运动和调节电机学习来影响电机控制。多巴胺函数的这些方面的大多数证据来自简单的任务(例如,杠杆按压)。因此,多巴胺对需要多关节协调的运动技能的影响是未知的。为了确定精确定时的多巴胺操纵对复杂,精细协调的灵巧技能的性能的影响,我们对大鼠进行了熟练的达到任务,我们对多巴胺神经元进行了致敏或抑制中脑多巴胺神经元。我们发现,通过重复的操纵,逐渐改变了总和和良好运动之间的运动学和协调。然而,一旦建立,大鼠以多巴胺依赖性方式在异常和基线到达运动学之间突然过渡。这些结果表明,精确定时的多巴胺信号对机动技能的性能有直接和长期影响,不同于简单的“振奋”运动。

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