Laboratory of Cognitive Neuroscience, Brain Mind Institute, Faculty of Life Sciences, Swiss Federal Institute of Technology (EPFL), Geneva, Switzerland.
Defitech Chair in Brain-Machine Interfaces, Center for Neuroprosthetics, Swiss Federal Institute of Technology, Geneva, Switzerland.
Sci Rep. 2017 Nov 1;7(1):14867. doi: 10.1038/s41598-017-15126-w.
In physics "entrainment" refers to the synchronization of two coupled oscillators with similar fundamental frequencies. In behavioral science, entrainment refers to the tendency of humans to synchronize their movements with rhythmic stimuli. Here, we asked whether human subjects performing a tapping task would entrain their tapping to an undetected auditory rhythm surreptitiously introduced in the guise of ambient background noise in the room. Subjects performed two different tasks, one in which they tapped their finger at a steady rate of their own choosing and one in which they performed a single abrupt finger tap on each trial after a delay of their own choosing. In both cases we found that subjects tended to tap in phase with the inducing modulation, with some variability in the preferred phase across subjects, consistent with prior research. In the repetitive tapping task, if the frequency of the inducing stimulus was far from the subject's own self-paced frequency, then entrainment was abolished, consistent with the properties of entrainment in physics. Thus, undetected ambient noise can influence self-generated movements. This suggests that uncued decisions to act are never completely endogenous, but are subject to subtle unnoticed influences from the sensory environment.
在物理学中,“同步”是指两个具有相似基本频率的耦合振荡器的同步。在行为科学中,同步是指人类倾向于使自己的运动与节奏刺激同步。在这里,我们询问了执行敲击任务的人类受试者是否会将他们的敲击与隐蔽地引入房间背景噪声中的未被察觉的听觉节奏同步。受试者执行了两项不同的任务,一项是按照自己选择的稳定速度敲击手指,另一项是在自己选择的延迟后每次试验进行单次突然手指敲击。在这两种情况下,我们都发现受试者倾向于与诱导调制同步敲击,受试者对首选相位的变化存在一定的可变性,这与先前的研究一致。在重复敲击任务中,如果诱导刺激的频率与受试者自身的自主节奏频率相差甚远,那么同步就会被取消,这与物理学中的同步特性一致。因此,未被察觉的环境噪声会影响自主产生的运动。这表明,未经提示的行动决策从来都不是完全内在的,而是会受到感官环境中微妙的、未被注意到的影响。