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当协调手指敲击与变化的节拍时,运动的可变性缩放结构和皮质的 BOLD 信号都与听觉刺激同步。

When Coordinating Finger Tapping to a Variable Beat the Variability Scaling Structure of the Movement and the Cortical BOLD Signal are Both Entrained to the Auditory Stimuli.

机构信息

Department of Kinesiology, University of Connecticut, United States.

Department of Biomechanics, University of Nebraska at Omaha, United States.

出版信息

Neuroscience. 2018 Nov 10;392:203-218. doi: 10.1016/j.neuroscience.2018.06.025. Epub 2018 Jun 27.

DOI:10.1016/j.neuroscience.2018.06.025
PMID:29958941
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8091912/
Abstract

Rhythmic actions are characterizable as a repeating invariant pattern of movement together with variability taking the form of cycle-to-cycle fluctuations. Variability in behavioral measures is atypically random, and often exhibits serial temporal dependencies and statistical self-similarity in the scaling of variability magnitudes across timescales. Self-similar (i.e. fractal) variability scaling is evident in measures of both brain and behavior. Variability scaling structure can be quantified via the scaling exponent (α) from detrended fluctuation analysis (DFA). Here we study the task of coordinating thumb-finger tapping to the beats of constructed auditory stimuli. We test the hypothesis that variability scaling evident in tap-to-tap intervals as well as in the fluctuations of cortical hemodynamics will become entrained to (i.e. drawn toward) manipulated changes in the variability scaling of a stimulus's beat-to-beat intervals. Consistent with this hypothesis, manipulated changes of the exponent α of the experimental stimuli produced corresponding changes in the exponent α of both tap-to-tap intervals and cortical hemodynamics. The changes in hemodynamics were observed in both motor and sensorimotor cortical areas in the contralateral hemisphere. These results were observed only for the longer timescales of the detrended fluctuation analysis used to measure the exponent α. These findings suggest that complex auditory stimuli engage both brain and behavior at the level of variability scaling structures.

摘要

节律性动作的特征是运动的重复不变模式,同时具有以周期性波动形式出现的可变性。行为测量中的可变性通常是非随机的,并且经常表现出时间序列的依赖性和在变异性幅度的跨时间尺度标度上的统计自相似性。自相似(即分形)的可变性标度在大脑和行为的测量中都很明显。可变性标度结构可以通过去趋势波动分析(DFA)中的标度指数(α)来量化。在这里,我们研究了协调拇指-手指敲击与构建的听觉刺激节拍的任务。我们测试了这样一个假设,即敲击到敲击间隔以及皮质血液动力学波动中的可变性标度,将与刺激的节拍到节拍间隔的可变性标度的操纵变化相适应(即被吸引)。与该假设一致,实验刺激的指数α的操纵变化产生了敲击到敲击间隔和皮质血液动力学的指数α的相应变化。血液动力学的变化在对侧半球的运动和感觉运动皮质区域都观察到了。这些结果仅在用于测量指数α的去趋势波动分析的较长时间尺度上观察到。这些发现表明,复杂的听觉刺激在可变性标度结构的水平上既涉及大脑又涉及行为。

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