由内在运动节奏的频率失谐引起的手皮层和言语区功能分离。

IF 2.1 3区 医学 Q3 NEUROSCIENCES
Ioanna Anastasopoulou, Douglas O Cheyne, Blake W Johnson
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引用次数: 0

摘要

在Penfield(1937)对运动侏儒的经典描述几十年后,人们仍然不清楚人类感觉运动皮层中空间连续和相互联系的表征如何将它们的活动分开,以实现对不同身体区域的定向和精确控制,这些活动在打字和说话等不同活动中很明显。一个长期存在但相对被忽视的解释来自简单物理系统(如摆动的钟摆)的模型,假设神经元群体振荡特性的微小差异(称为“频率失谐”)可以导致它们的活动和输出的高度有效分离。我们通过比较在一组健康成人和一组正常发育儿童的手指和语言运动的脑磁图神经成像研究中测量到的β波段(13-30 Hz)运动节奏的峰值频率来验证这一假设。我们的研究结果证实,成年人左右脑的β运动节律的峰值频率任务差异(言语运动与手部运动)约为1.5赫兹。在儿童的左脑中也有类似的任务差异,但在右脑中没有。这些结果为频率失谐在大脑功能组织中的作用提供了新的支持,并表明这种机制应该在当前的身体表征模型及其在感觉运动皮层中的发展中发挥更突出的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional segregation of cortical hand and speech areas by frequency detuning of an intrinsic motor rhythm.

Many decades after Penfield's (1937) classic depiction of the motor homunculus, it remains unclear how spatially contiguous and interconnected representations within human sensorimotor cortex might separate their activities to achieve the directed and precise control of distinct body regions evident in activities as different as typing and speaking. One long-standing but relatively neglected explanation draws from models of simple physical systems (like swinging pendulums) to posit that small differences in the oscillatory properties of neuronal populations (termed "frequency detuning") can result in highly effective segregation of their activities and outputs. We tested this hypothesis by comparing the peak frequencies of beta-band (13-30 Hz) motor rhythms measured in a magnetoencephalographic neuroimaging study of finger and speech movements in a group of healthy adults and a group of typically developing children. Our results confirm a peak frequency task difference (speech movement versus hand movement) of about 1.5 Hz in the beta motor rhythms of both left and right hemispheres in adults. A comparable task difference was obtained in children for the left but not for the right hemisphere. These results provide novel support for the role of frequency detuning in the functional organisation of the brain and suggest that this mechanism should play a more prominent role in current models of bodily representations and their development within the sensorimotor cortex.

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来源期刊
Journal of neurophysiology
Journal of neurophysiology 医学-神经科学
CiteScore
4.80
自引率
8.00%
发文量
255
审稿时长
2-3 weeks
期刊介绍: The Journal of Neurophysiology publishes original articles on the function of the nervous system. All levels of function are included, from the membrane and cell to systems and behavior. Experimental approaches include molecular neurobiology, cell culture and slice preparations, membrane physiology, developmental neurobiology, functional neuroanatomy, neurochemistry, neuropharmacology, systems electrophysiology, imaging and mapping techniques, and behavioral analysis. Experimental preparations may be invertebrate or vertebrate species, including humans. Theoretical studies are acceptable if they are tied closely to the interpretation of experimental data and elucidate principles of broad interest.
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