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Delayed feedback embedded in perception-action coordination cycles results in anticipation behavior during synchronized rhythmic action A dynamical systems approach

机译:在感知 - 动作协调周期中嵌入延迟反馈导致在同步节奏动作期间的预期行为进行动态系统方法

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When navigating a busy sidewalk, people coordinate their behavior in an orderly manner. Other activities require people to carefully synchronize periodic actions, as in a group rowing or marching. When individuals tap in synchrony with a metronome, their taps tend to anticipate the metronome. Experiments have revealed that factors like musical expertise, the presence of a synchronizing partner, auditory feedback, and the sound travel time, all systematically affect the tendency to anticipate. While researchers have hypothesized a number of potential mechanisms for such anticipatory behavior, none have successfully accounted for all of the effects. Previous research on coupled physical systems has shown that when one system receives input from a second system, plus its own delayed signal as input, this causes system 1 to anticipate system 2. We hypothesize that the tendency to anticipate is the result of delayed communication between neurons. Our work demonstrates the ability of delay-coupled physical systems to capture human anticipation and the effect of external factors in the anticipation tendency. Our model supports the theory that delayed communication within the nervous system is crucial to understanding anticipatory coordinative behavior.
机译:导航繁忙的人行道时,人们以有序的方式协调其行为。其他活动要求人们仔细同步定期行动,如团体划船或游行。当个人用节拍器中的同步带敲击时,他们的水龙头往往会预期节拍器。实验揭示了音乐专业知识等因素,同步伙伴的存在,听觉反馈和声音旅行时间,所有这些都会系统地影响预期的趋势。虽然研究人员已经假设了许多用于此类预期行为的潜在机制,但没有成功地占所有效果。以前关于耦合物理系统的研究表明,当一个系统从第二系统接收到输入时,加上其自身的延迟信号作为输入,这使得系统1预测系统2.我们假设预期的趋势是延迟通信之间的趋势神经元。我们的工作展示了延迟耦合的物理系统捕获人类预期的能力和外部因素在预期趋势中的影响。我们的模型支持神经系统内延迟通信对理解预期协调行为至关重要的理论。

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