Keen Douglas A, Fuglevand Andrew J
Department of Physiology, University of Arizona, Tucson, Arizona 85721, USA.
J Neurophysiol. 2004 Jan;91(1):57-62. doi: 10.1152/jn.00650.2003. Epub 2003 Sep 10.
Short-term synchronization of active motor units has been attributed in part to last-order divergent projections that provide common synaptic input across motor neurons. The extent of synchrony thus allows insight as to how the inputs to motor neurons are distributed. Our particular interest relates to the organization of extrinsic finger muscles that give rise distally to multiple tendons, which insert onto all the fingers. For example, extensor digitorum (ED) is a multi-compartment muscle that extends digits 2-5. Given the unique architecture of ED, it is unclear if synaptic inputs are broadly distributed across the entire pool of motor neurons innervating ED or segregated to supply subsets of motor neurons innervating different compartments. Therefore the purpose of this study was to evaluate the degree of motor-unit synchrony both within and across compartments of ED. One hundred and forty-five different motor-unit pairs were recorded in the human ED of nine subjects during weak voluntary contractions. Cross-correlation histograms were generated for all of the motor-unit pairs and the degree of synchronization between two units was assessed using the index of common input strength (CIS). The degree of synchrony for motor-unit pairs within the same compartment (CIS = 0.7 +/- 0.3; mean +/- SD) was significantly greater than for motor-unit pairs in different compartments (CIS = 0.4 +/- 0.22). Consequently, last-order synaptic projections are not distributed uniformly across the entire pool of motor neurons innervating ED but are segregated to supply subsets of motor neurons innervating different compartments.
主动运动单位的短期同步化部分归因于最后的发散性投射,这些投射为运动神经元提供共同的突触输入。因此,同步化程度有助于深入了解运动神经元的输入是如何分布的。我们特别感兴趣的是外在手指肌肉的组织,这些肌肉在远端产生多条肌腱,插入到所有手指上。例如,指伸肌(ED)是一块多肌腹肌肉,可伸展第2 - 5指。鉴于ED独特的结构,尚不清楚突触输入是广泛分布于支配ED的整个运动神经元池,还是被分隔开来以供应支配不同肌腹的运动神经元子集。因此,本研究的目的是评估ED肌腹内和跨肌腹的运动单位同步化程度。在9名受试者的人类ED进行弱自主收缩期间,记录了145对不同的运动单位。为所有运动单位对生成互相关直方图,并使用共同输入强度指数(CIS)评估两个单位之间的同步化程度。同一肌腹内运动单位对的同步化程度(CIS = 0.7 +/- 0.3;平均值 +/- 标准差)显著高于不同肌腹的运动单位对(CIS = 0.4 +/- 0.22)。因此,最后的突触投射并非均匀分布于支配ED的整个运动神经元池,而是被分隔开来以供应支配不同肌腹的运动神经元子集。