Powers Randall K, Nardelli Paul, Cope T C
Department of Physiology, University of Washington, School of Medicine, Seattle, Washington 98195, USA.
J Neurophysiol. 2008 Jul;100(1):292-303. doi: 10.1152/jn.90296.2008. Epub 2008 May 7.
Motoneuron activation is strongly influenced by persistent inward currents (PICs) flowing through voltage-sensitive channels. PIC characteristics and their contribution to the control of motoneuron firing rate have been extensively described in reduced animal preparations, but their contribution to rate modulation in human motoneurons is controversial. It has recently been proposed that the analysis of discharge records of a simultaneously recorded pair of motor units can be used to make quantitative estimates of the PIC contribution, based on the assumption that the firing rate of an early recruited (reporter) unit can be used as a measure of the synaptic drive to a later recruited (test) unit. If the test unit's discharge is augmented by PICs, less synaptic drive will be required to sustain discharge than required to initially recruit it, and the difference in reporter unit discharge (Delta F) at test recruitment and de-recruitment is a measure of the size of the PIC contribution. We applied this analysis to discharge records of pairs of motoneurons in the decerebrate cat preparation, in which motoneuron PICs have been well-characterized and are known to be prominent. Mean Delta F values were positive in 58/63 pairs, and were significantly greater than zero in 40/63 pairs, as would be expected based on PIC characteristics recorded in this preparation. However, several lines of evidence suggest that the Delta F value obtained in a particular motoneuron pair may depend on a number of factors other than the PIC contribution to firing rate.
运动神经元的激活受到流经电压敏感通道的持续性内向电流(PICs)的强烈影响。在简化的动物标本中,PICs的特征及其对运动神经元放电频率控制的贡献已得到广泛描述,但它们对人类运动神经元频率调制的贡献仍存在争议。最近有人提出,基于早期募集(报告)单元的放电频率可作为对后期募集(测试)单元突触驱动的一种衡量这一假设,对同时记录的一对运动单位的放电记录进行分析,可用于对PICs的贡献进行定量估计。如果测试单元的放电因PICs而增强,那么维持放电所需的突触驱动将比最初募集它时所需的更少,并且报告单元在测试募集和解募时放电的差异(ΔF)是PICs贡献大小的一种衡量。我们将这种分析应用于去大脑猫标本中运动神经元对的放电记录,在该标本中运动神经元的PICs已得到充分表征且已知很突出。在63对记录中,58对的平均ΔF值为正,40对的平均ΔF值显著大于零,这与基于该标本中记录的PICs特征所预期的情况一致。然而,有几条证据表明,在特定运动神经元对中获得的ΔF值可能取决于除PICs对放电频率的贡献之外的许多因素。