You are as fast as your motor neurons: speed of recruitment and maximal discharge of motor neurons determine the maximal rate of force development in humans

被引:222
作者
Del Vecchio, Alessandro [1 ,4 ]
Negro, Francesco [2 ]
Holobar, Ales [3 ]
Casolo, Andrea [1 ,4 ]
Folland, Jonathan P. [5 ]
Fella, Francesco [4 ]
Farina, Dario [1 ]
机构
[1] Imperial Coll London, Dept Bioengn, London SW7 2AZ, England
[2] Univ Brescia, Dept Clin & Expt Sci, Brescia, Italy
[3] Univ Maribor, Fac Elect Engn & Comp Sci, Maribor, Slovenia
[4] Univ Rome Foro Italico, Dept Movement Human & Hlth Sci, Rome, Italy
[5] Loughborough Univ, Sch Sport Exercise & Hlth Sci, Loughborough, Leics, England
来源
JOURNAL OF PHYSIOLOGY-LONDON | 2019年 / 597卷 / 09期
基金
欧盟地平线“2020”;
关键词
Motor unit; Neural Drive; Spike frequency adaptation; Ballistic contractions; EMG Decomposition; SPIKE FREQUENCY ADAPTATION; FIBER CONDUCTION-VELOCITY; BALLISTIC CONTRACTIONS; UNIT SYNCHRONIZATION; TORQUE DEVELOPMENT; SKELETAL-MUSCLE; DRIVE;
D O I
10.1113/JP277396
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
During rapid contractions, motor neurons are recruited in a short burst and begin to discharge at high frequencies (up to >200 Hz). In the present study, we investigated the behaviour of relatively large populations of motor neurons during rapid (explosive) contractions in humans, applying a new approach to accurately identify motor neuron activity simultaneous to measuring the rate of force development. The activity of spinal motor neurons was assessed by high-density electromyographic decomposition from the tibialis anterior muscle of 20 men during isometric explosive contractions. The speed of motor neuron recruitment and the instantaneous motor unit discharge rate were analysed as a function of the impulse (the time-force integral) and the maximal rate of force development. The peak of motor unit discharge rate occurred before force generation and discharge rates decreased thereafter. The maximal motor unit discharge rate was associated with the explosive force variables, at the whole population level (r(2) = 0.71 +/- 0.12; P < 0.001). Moreover, the peak motor unit discharge and maximal rate of force variables were correlated with an estimate of the supraspinal drive, which was measured as the speed of motor unit recruitment before the generation of afferent feedback (P < 0.05). We show for the first time the full association between the effective neural drive to the muscle and human maximal rate of force development. The results obtained in the present study indicate that the variability in the maximal contractile explosive force of the human tibialis anterior muscle is determined by the neural activation preceding force generation.
引用
收藏
页码:2445 / 2456
页数:12
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