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人类口周肌肉组织中的运动单位区域。

Motor unit territories in the human perioral musculature.

作者信息

Goffman L, Smith A

机构信息

Department of Audiology and Speech Sciences, Purdue University, West Lafayette, IN.

出版信息

J Speech Hear Res. 1994 Oct;37(5):975-84. doi: 10.1044/jshr.3705.975.

Abstract

The perioral region was divided into four quadrants, and electromyograms (EMGs) were recorded from each area. The coherence function (i.e., the squared cross correlation between two signals computed at each frequency in the spectrum) was used to determine aspects of the organization of motor unit territories and to examine potential higher level sources of input in speech and nonspeech tasks. Coherence functions were computed between pairs of EMGs and were examined for significant values in the range of 20-240 Hz. When two pairs of electrodes were intentionally placed to record the activity from a common subset of motor units in a single quadrant of the lower lip, all subjects exhibited significant broad-band coherence in every frequency in all experimental tasks. Thus, the presence of such a pattern of broad-band significant coherence for EMG pairs recorded from different quadrants would indicate that single motor unit territories extended across perioral quadrants. When separate EMG recordings were obtained from the four quadrants of the lips, coherence functions computed between EMG pairs were typically zero across the entire frequency range. These findings suggest that perioral motor unit territories are organized into nonoverlapping quadrants. Further, the present analyses suggest that, unlike bilateral pairs of jaw-closing muscles during chewing, these motor units are not driven by any correlated oscillatory activity in chewing or other oral motor tasks.

摘要

口周区域被划分为四个象限,并从每个区域记录肌电图(EMG)。相干函数(即频谱中每个频率处计算的两个信号之间的平方互相关)用于确定运动单位区域的组织情况,并检查言语和非言语任务中潜在的更高层次输入源。计算EMG对之间的相干函数,并检查20 - 240Hz范围内的显著值。当故意放置两对电极以记录下唇单个象限中运动单位的共同子集的活动时,所有受试者在所有实验任务的每个频率上都表现出显著的宽带相干。因此,从不同象限记录的EMG对出现这种宽带显著相干模式将表明单个运动单位区域跨越口周象限延伸。当从嘴唇的四个象限获得单独的EMG记录时,EMG对之间计算的相干函数在整个频率范围内通常为零。这些发现表明口周运动单位区域被组织成不重叠的象限。此外,目前的分析表明,与咀嚼时双侧的闭口肌不同,这些运动单位在咀嚼或其他口腔运动任务中不受任何相关振荡活动的驱动。

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