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首页> 外文期刊>Journal of Neurophysiology >Functional properties of single motor units in the inferior head of human lateral pterygoid muscle: task firing rates.
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Functional properties of single motor units in the inferior head of human lateral pterygoid muscle: task firing rates.

机译:人类翼状ery肉外侧下脑中单个运动单位的功能特性:任务发射率。

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The precise function of the inferior head of the human lateral pterygoid muscle (IHLP) is unclear. The aim of this study was to clarify the normal function of the IHLP. The hypothesis was that an important function of the IHLP is the generation and fine control of horizontal (i.e., anteroposterior and mediolateral) jaw movements. The activities of 50 single motor units (SMUs) were recorded from IHLP (14 subjects) during two- or three-step contralateral movement (n = 36) and/or protrusion (n = 33). Most recording sites were identified by computer tomography. There was a statistically significant overall increase in firing rate as the magnitude of jaw displacement increased between the holding phases (range of increments: 0.3-1.6 mm). The firing rates during the dynamic phases for each unit were significantly greater than those during the previous holding phases but less than those during the subsequent holding phases. For the contralateral step task at the intermediate rate, the cross-correlation coefficients between jaw displacement in the mediolateral axis and the mean firing rate of each unit ranged from r = 0.29 to 0.77; mean +/- SD; r = 0.49 +/- 0.13 (protrusive step task: r = 0.12-0.74, r = 0.44 +/- 0.14 for correlation with anterior-posterior axis). The correlation coefficients at the fast rate during the contralateral step task and the protrusive step task were significantly higher than those at the slow rate. The firing rate change of the SMUs per unit displacement between holding phases was significantly greater for the lower-threshold than for the higher-threshold units during contralateral movement and protrusion. After dividing IHLP into four regions, the SMUs recorded in the superior part exhibited significantly greater mean firing rate changes per unit displacement during protrusion than for the SMUs recorded in the inferior part. Significantly fewer units were related to the protrusive task in the superior-medial part. These data support previously proposed notions of functional heterogeneity within IHLP. The present findings provide further evidence for an involvement of the IHLP in the generation and fine control of horizontal jaw movements.
机译:人外侧翼状muscle肌(IHLP)下头的确切功能尚不清楚。这项研究的目的是阐明IHLP的正常功能。假设是IHLP的重要功能是水平(即前后和前外侧)下颌运动的产生和精细控制。在两步或三步对侧运动(n = 36)和/或突出(n = 33)期间,从IHLP(14名受试者)记录了50个单运动单元(SMU)的活动。大多数记录地点是通过计算机断层扫描确定的。在保持阶段之间,随着钳口位移幅度的增加,击发速率的总体上统计学上显着增加(增量范围:0.3-1.6 mm)。每个单元在动态阶段的点火速率显着大于之前的保持阶段的点火速率,但小于随后的保持阶段的点火速率。对于中等速率的对侧踩踏任务,在中外侧轴上的下颌位移与每个单元的平均发动速率之间的互相关系数在r = 0.29至0.77范围内;平均值+/- SD; r = 0.49 +/- 0.13(突出步骤任务:r = 0.12-0.74,对于与前后轴相关,r = 0.44 +/- 0.14)。对侧步任务和突出步任务中快率时的相关系数明显高于慢速时的相关系数。在对侧移动和伸出过程中,阈值较低的单元在保持阶段之间单位位移的SMU的发射速率变化明显大于阈值较高的单元。将IHLP划分为四个区域后,记录在上半部的SMU与突出显示在下半部的SMU相比,在突出过程中每单位位移的平均发射速率变化明显更大。与上中部的突出任务相关的单元明显减少。这些数据支持了先前提出的IHLP中功能异质性的概念。本发现为IHLP参与水平颌骨运动的产生和精细控制提供了进一步的证据。

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