Erimaki Sophia, Christakos Constantinos N
Laboratory of Systems Physiology, Division of Basic Sciences, Medical School, University of Crete, Crete, Greece.
J Neurophysiol. 2008 Feb;99(2):473-83. doi: 10.1152/jn.00341.2007. Epub 2007 Dec 5.
In quasi-sinusoidal (0.5-3.0 Hz) voluntary muscle contractions, we studied the 6- to 10-Hz motor unit (MU) firing synchrony and muscle force oscillation with emphasis on their neural substrate and relation to rhythmical motor control. Our analyses were performed on data from 121 contractions of a finger muscle in 24 human subjects. They demonstrate that coherent 6- to 10-Hz components of MU discharges coexist with carrier components and coherent modulation components underlying the voluntary force variations. The 6- to 10-Hz synchrony has the frequency of the tremor synchrony in steady contractions and is also widespread and in-phase. Its strength ranges from very small to very large (MU/MU coherence >0.50) among contractions; moreover, it is not related to the contraction parameters, in accord with the notion of a distinct 6- to 10-Hz synaptic input to the MUs. Unlike the coherent MU modulations and the voluntary force variations, the in-phase 6- to 10-Hz MU components are suppressed or even eliminated during ischemia, while the respective force component is drastically reduced. These findings agree with the widely assumed supraspinal origin of the MU modulations, but they also strongly suggest a key role for muscle spindle feedback in the generation of the 6- to 10-Hz synaptic input. They therefore provide important information for the study of generators of the 6- to 10-Hz rhythm which subserves the postulated rhythmical control and is manifested as force and movement components. Moreover, they argue for a participation of oscillating spinal stretch reflex loops in the rhythm generation, possibly in interaction with supraspinal oscillators.
在准正弦(0.5 - 3.0赫兹)的随意肌肉收缩过程中,我们研究了6至10赫兹运动单位(MU)放电同步性和肌肉力量振荡,重点关注它们的神经基础以及与节律性运动控制的关系。我们的分析是基于24名人类受试者手指肌肉121次收缩的数据进行的。分析结果表明,MU放电的相干6至10赫兹成分与载体成分以及随意力量变化背后的相干调制成分共存。6至10赫兹的同步性在稳定收缩中具有震颤同步的频率,并且广泛存在且同相。其强度在不同收缩之间范围从非常小到非常大(MU/MU相干性>0.50);此外,它与收缩参数无关,这与存在一个独特的6至10赫兹向运动单位的突触输入的观点一致。与相干的MU调制和随意力量变化不同,同相的6至10赫兹MU成分在缺血期间受到抑制甚至消除,而相应的力量成分则大幅降低。这些发现与广泛假设的运动单位调制的脊髓上起源一致,但也强烈表明肌肉梭反馈在产生6至10赫兹突触输入中起关键作用。因此,它们为研究6至10赫兹节律的产生机制提供了重要信息,该节律有助于假定的节律性控制,并表现为力量和运动成分。此外,它们支持振荡的脊髓牵张反射环路参与节律产生,可能与脊髓上振荡器相互作用。