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An Adapting Auditory-motor Feedback Loop Can Contribute to Generating Vocal Repetition

机译:自适应听觉运动反馈回路可有助于产生人声重复

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摘要

Consecutive repetition of actions is common in behavioral sequences. Although integration of sensory feedback with internal motor programs is important for sequence generation, if and how feedback contributes to repetitive actions is poorly understood. Here we study how auditory feedback contributes to generating repetitive syllable sequences in songbirds. We propose that auditory signals provide positive feedback to ongoing motor commands, but this influence decays as feedback weakens from response adaptation during syllable repetitions. Computational models show that this mechanism explains repeat distributions observed in Bengalese finch song. We experimentally confirmed two predictions of this mechanism in Bengalese finches: removal of auditory feedback by deafening reduces syllable repetitions; and neural responses to auditory playback of repeated syllable sequences gradually adapt in sensory-motor nucleus HVC. Together, our results implicate a positive auditory-feedback loop with adaptation in generating repetitive vocalizations, and suggest sensory adaptation is important for feedback control of motor sequences.
机译:在行为序列中,动作的连续重复很常见。尽管将感官反馈与内部运动程序的集成对于序列生成很重要,但对反馈是否以及如何有助于重复动作的了解很少。在这里,我们研究听觉反馈如何有助于在鸣禽中产生重复的音节序列。我们建议听觉信号向正在进行的运动命令提供正反馈,但是随着音节重复过程中响应适应的减弱,这种影响会减弱。计算模型表明,这种机制解释了孟加拉雀科歌曲中观察到的重复分布。我们通过实验证实了孟加拉雀科对此机制的两个预测:通过震耳欲聋消除听觉反馈,减少音节重复;对重复音节序列的听觉回放的神经反应和神经反应逐渐适应于感觉运动核HVC。总之,我们的结果暗示了正听觉反馈回路在产生重复发声中具有适应性,并且暗示感觉适应性对于运动序列的反馈控制很重要。

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