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Motor Origin of Precise Synaptic Inputs onto Forebrain Neurons Driving a Skilled Behavior

机译:精确突触输入到前脑神经元的运动起源驱动一种熟练的行为

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摘要

Sensory feedback is crucial for learning and performing many behaviors, but its role in the execution of complex motor sequences is poorly understood. To address this, we consider the forebrain nucleus HVC in the songbird, which contains the premotor circuitry for song production and receives multiple convergent sensory inputs. During singing, projection neurons within HVC exhibit precisely timed synaptic events that may represent the ongoing motor program or song-related sensory feedback. To distinguish between these possibilities, we recorded the membrane potential from identified HVC projection neurons in singing zebra finches. External auditory perturbations during song production did not affect synaptic inputs in these neurons. Furthermore, the systematic removal of three sensory feedback streams (auditory, proprioceptive, and vagal) did not alter the frequency or temporal precision of synaptic activity observed. These findings support a motor origin for song-related synaptic events and suggest an updated circuit model for generating behavioral sequences.
机译:感觉反馈对于学习和执行许多行为至关重要,但人们对其执行复杂运动序列的作用知之甚少。为了解决这个问题,我们考虑了鸣禽中的前脑核HVC,它包含用于产生歌曲的前运动电路,并接收多个会聚的感觉输入。在唱歌过程中,HVC中的投射神经元表现出精确定时的突触事件,可能代表正在进行的运动程序或与歌曲相关的感觉反馈。为了区分这些可能性,我们在唱歌的斑马雀科中记录了已识别的HVC投射神经元的膜电位。歌曲制作过程中的外部听觉扰动不会影响这些神经元中的突触输入。此外,系统地去除三种感觉反馈流(听觉,本体感觉和迷走神经)不会改变所观察到的突触活动的频率或时间精度。这些发现支持了与歌曲相关的突触事件的运动起源,并提出了用于生成行为序列的更新电路模型。

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