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站立时姿势矫正诱发的外侧腓肠肌神经肌肉节段的活动。

Activity of neuromuscular compartments in lateral gastrocnemius evoked by postural corrections during stance.

作者信息

Dunbar D C, Macpherson J M

机构信息

Department of Anatomy, School of Medicine, University of Puerto Rico, San Juan.

出版信息

J Neurophysiol. 1993 Dec;70(6):2337-49. doi: 10.1152/jn.1993.70.6.2337.

DOI:10.1152/jn.1993.70.6.2337
PMID:8120586
Abstract
  1. The electromyographic (EMG) activity of the four neuromuscular compartments in lateral gastrocnemius (LG) of cats was investigated to determine whether these intramuscular subdivisions could be activated differentially during automatic postural corrections. EMG electrodes were surgically implanted into each of the four compartments of left LG-LG1, LG2, LG3, and LGm--in two cats. Electrodes were also implanted into soleus and gluteus medius for comparative purposes. 2. Quiet quadrupedal stance was disturbed first by linearly translating the cats on a movable platform in each of 16 different horizontal directions. Mechanical events during corrections were characterized in terms of the three-dimensional forces exerted by each paw on the platform. EMG and force traces were quantified (area under the curve) and normalized, and tuning curves were constructed that relate muscle response and force change to direction of platform movement. 3. In a second series of trials, translations were presented along one direction only over a series of six velocities ranging from 5 to 16 cm/s. The third series of perturbations, termed the pop-up, consisted of a rapid upward displacement of the support under the left hindlimb only over a series of six amplitudes ranging from 1 to 10 mm. Evoked EMG activity and average change in force were normalized and regressions were computed onto velocity and amplitude, respectively. The slopes of the regressions were compared. 4. EMG tuning curves associated with the multidirectional horizontal translations revealed no differential activity across LG compartments. Similarly, there was no statistical difference among the slopes of the regressions within LG. In contrast, soleus exhibited significantly different slopes from LG for the regressions. Thus it is concluded that LG compartments are not differentially activated during automatic postural responses to perturbations of the support surface.
摘要
  1. 研究了猫外侧腓肠肌(LG)中四个神经肌肉分区的肌电图(EMG)活动,以确定在自动姿势校正过程中这些肌肉内部分区是否能被差异性激活。在两只猫身上,将EMG电极手术植入左LG的四个分区——LG1、LG2、LG3和LGm中的每一个。为了进行比较,电极也被植入比目鱼肌和臀中肌。2. 首先通过在可移动平台上沿16个不同水平方向线性平移猫来干扰安静的四足站立姿势。校正过程中的力学事件根据每只爪子施加在平台上的三维力来表征。对EMG和力迹线进行量化(曲线下面积)并归一化,并构建了将肌肉反应和力变化与平台运动方向相关联的调谐曲线。3. 在第二系列试验中,仅沿一个方向在5至16厘米/秒的六个速度范围内进行平移。第三系列扰动称为弹出式扰动,仅包括左后肢下方支撑物在1至10毫米的六个幅度范围内的快速向上位移。将诱发的EMG活动和力的平均变化进行归一化,并分别计算与速度和幅度的回归。比较回归的斜率。4. 与多方向水平平移相关的EMG调谐曲线显示LG各分区之间没有差异活动。同样,LG内回归的斜率之间没有统计学差异。相比之下,比目鱼肌的回归斜率与LG有显著差异。因此得出结论,在对支撑表面扰动的自动姿势反应过程中,LG各分区不会被差异性激活。

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