Neuromuscular Research Center, Department of Biology of Physical Activity, University of Jyväskylä, Jyväskylä, Finland.
PLoS One. 2013;8(2):e53425. doi: 10.1371/journal.pone.0053425. Epub 2013 Feb 6.
Understanding the detailed control of human locomotion and balance can be improved, when individual motor units can be isolated and their firing rates followed in natural movement of large, fuctionally important muscles. For this reason the present study investigated the motor unit discharge rate (MUDR) in isometric and dynamic contractions of the soleus muscle.
Eleven males performed isometric (10-100% MVC) and dynamic (10-40% MVC) plantar flexions. Intramuscular EMG was measured from Soleus with bipolar wire-electrodes and decomposed with custom built "Daisy" software.
The Soleus MUDR was significantly higher in concentric compared to isometric or eccentric contractions at all submaximal force levels (P<0.05). In isometric contractions MUDR increased up to 100% MVC.
Motor unit discharge properties of a large plantarflexor can be measured in dynamic and maximal contractions. For a given torque output, MUDR is dependent upon contraction type, as set by the major mechanical differences between concentric and eccentric actions.
当可以分离单个运动单位并跟踪其在大而重要的功能肌肉的自然运动中的发射率时,可以更好地理解人类运动和平衡的详细控制。出于这个原因,本研究调查了比目鱼肌的等长和动态收缩中的运动单位放电率(MUDR)。
11 名男性进行了等长(10-100%MVC)和动态(10-40%MVC)跖屈运动。使用双极线电极从比目鱼肌测量肌内 EMG,并使用定制的“雏菊”软件进行分解。
在所有次最大力水平下,与等长或离心收缩相比,比目鱼肌 MUDR 在向心收缩时明显更高(P<0.05)。在等长收缩中,MUDR 增加到 100%MVC。
可以在动态和最大收缩中测量大型跖屈肌的运动单位放电特性。对于给定的扭矩输出,MUDR取决于收缩类型,这是由向心和离心作用之间的主要机械差异决定的。