Department of Biomedical Sciences and Biotechnologies, University of Brescia, Viale Europa 11, Brescia, Italy.
J Electromyogr Kinesiol. 2010 Aug;20(4):732-41. doi: 10.1016/j.jelekin.2010.03.005. Epub 2010 Apr 14.
The purpose of this work was to verify if deviation from the mirror-like behaviour of the motor units activation strategy (MUAS) and de-activation strategy (MUDS) and the degree of the error of the motor control system, during consecutive linearly increasing-decreasing isometric tension tasks, depend on the maximum reached tension and/or on the rate of tension changes. In 12 male subjects the surface EMG and force produced by the first dorsal interosseus activity were recorded during two (a and b) trapezoid isometric contractions with different plateau (a: 50% maximal voluntary contraction (MVC) and b: 100% MVC) and rate of tension changes (a: 6.7% MVC/s and b: 13.3% MVC/s) during up-going (UGR) and down-going (DGR) ramps. Ten steps (ST) 6s long at 5, 10, 20, 30, 40, 50, 60, 70, 80 and 90% MVC were also recorded. The root mean square (RMS) and mean frequency (MF) from EMG and the relative error of actual force output with respect to the target (% ERR) were computed. The EMG-RMS/% MVC and EMG-MF/% MVC relationships were not overlapped when the ST and DGR as well as the UGR and DGR data were compared. The % ERR/% MVC relationships during a and b contractions differed from ST data only below 20% MVC. It can be concluded that MUAS and MUDS are not mirroring one each other because MU recruitment or de-recruitment threshold may be influenced by the maximum effort and by the % MVC/s of UGR and DGR. The role of MUs mechanical and/or central nervous system hysteresis on force decrement control is discussed.
这项工作的目的是验证在连续线性递增-递减等长张力任务中,运动单位激活策略 (MUAS) 和去激活策略 (MUDS) 的偏离程度以及运动控制系统的误差程度是否取决于最大张力和/或张力变化率。在 12 名男性受试者中,在两个梯形等长收缩(a 和 b)期间记录了第一背侧间骨间肌的表面肌电图和产生的力,这两个收缩具有不同的平台(a:50%最大自愿收缩 (MVC) 和 b:100% MVC)和张力变化率(a:6.7% MVC/s 和 b:13.3% MVC/s)在上升 (UGR) 和下降 (DGR) 斜坡期间。还记录了十个步骤 (ST),每个步骤持续 6 秒,强度为 5、10、20、30、40、50、60、70、80 和 90% MVC。还计算了肌电图的均方根 (RMS) 和平均频率 (MF) 以及实际力输出与目标的相对误差 (% ERR)。当比较 ST 和 DGR 以及 UGR 和 DGR 数据时,EMG-RMS/% MVC 和 EMG-MF/% MVC 关系没有重叠。只有在 20% MVC 以下时,a 和 b 收缩期间的 % ERR/% MVC 关系才与 ST 数据不同。可以得出结论,MUAS 和 MUDS 彼此不镜像,因为 MU 募集或去募集阈值可能受到最大努力和 UGR 和 DGR 的 % MVC/s 的影响。讨论了 MUs 机械和/或中枢神经系统滞后对力递减控制的作用。