Department of Biomedical and Dental Sciences and Morphofunctional Imaging, Università di Messina, Messina, Italy.
Department of Mechanical and Aerospace Engineering, Politecnico di Torino, Turin, Italy.
Eur J Appl Physiol. 2020 Apr;120(4):853-860. doi: 10.1007/s00421-020-04324-6. Epub 2020 Feb 19.
Different motor units (MUs) in the biceps brachii (BB) muscle have been shown to be preferentially recruited during either elbow flexion or supination. Whether these different units reside within different regions is an open issue. In this study, we tested wheter MUs recruited during submaximal isometric tasks of elbow flexion and supination for two contraction levels and with the wrist fixed at two different angles are spatially localized in different BB portions.
The MUs' firing instants were extracted by decomposing high-density surface electromyograms (EMG), detected from the BB muscle of 12 subjects with a grid of electrodes (4 rows along the BB longitudinal axis, 16 columns medio-laterally). The firing instants were then used to trigger and average single-differential EMGs. The average rectified value was computed separately for each signal and the maximal value along each column in the grid was retained. The center of mass, defined as the weighted mean of the maximal, average rectified value across columns, was then consdiered to assess the medio-lateral changes in the MU surface representation between conditions.
Contraction level, but neither wrist position nor force direction (flexion vs. supination), affected the spatial distribution of BB MUs. In particular, higher forces were associated with the recruitment of BB MUs whose action potentials were represented more medially.
Although the action potentials of BB MUs were represented locally across the muscle medio-lateral region, dicrimination between elbow flexion or supination seems unlikely from the surface representation of MUs action potentials.
已经表明,肱二头肌(BB)中的不同运动单位(MU)在进行肘屈或旋前时会被优先募集。这些不同的单位是否存在于不同的区域是一个悬而未决的问题。在这项研究中,我们测试了在两种收缩水平下进行的最大等长肘屈和旋前任务中,以及在手腕固定在两个不同角度的情况下,募集的 MU 是否在 BB 的不同部位具有空间定位。
通过对来自 12 名受试者的 BB 肌肉的高密度表面肌电图(EMG)进行分解,提取 MU 的触发瞬间,该 EMG 是通过电极网格(沿着 BB 长轴 4 行,中间到外侧 16 列)检测到的。然后,使用触发瞬间来触发和平均单差 EMG。为每个信号计算平均整流值,并保留网格中每列的最大值。质心被定义为跨列的最大平均整流值的加权平均值,用于评估在不同条件下 MU 表面表示的中间到外侧的变化。
收缩水平,但无论是手腕位置还是力的方向(屈肌与旋前),都不会影响 BB MU 的空间分布。特别是,更高的力与募集的 BB MU 相关,其动作电位在中间更代表。
尽管 BB MU 的动作电位在肌肉中间到外侧区域具有局部表示,但从 MU 动作电位的表面表示来看,区分肘屈或旋前似乎不太可能。