Piotrkiewicz M, Kudina L, Mierzejewska J, Jakubiec M, Hausmanowa-Petrusewicz I
Institute of Biocybernetics and Biomedical Engineering, Polish Academy of Sciences, 4, Trojdena Str., Warsaw, Poland.
J Physiol. 2007 Dec 1;585(Pt 2):483-90. doi: 10.1113/jphysiol.2007.142356. Epub 2007 Oct 11.
Motor unit (MU) potentials were recorded from brachial biceps of healthy subjects aged 5.5-79 years. The subjects were subdivided into young (5.5-19 year) and adult (37.5-79 year) groups, between which single MU discharge characteristics were compared. Firing rates were in the ranges of 8.3-21.7 s(-1) (mean 12.87 s(-1)) and 5.9-18.7 s(-1) (mean 11.08 s(-1)) for young and adult groups, respectively. Standard deviations (s.d.) of interspike intervals (ISIs) were in the range 4.84-11.57 ms (mean 8.39 ms) for the young group and 4.26-12.23 ms (mean 7.76 ms) for the adult group. Both differences were statistically significant (P < 0.001). Special attention was paid to the previously developed method of ISI variability analysis, which enabled the comparison of MUs with respect to afterhyperpolarization (AHP) duration of their motoneurones (MNs). The results show that AHP duration increases gradually with increasing age, which is in line with the transformation of muscle properties towards a slower phenotype. This transformation seems to be a continuous process, covering the entire lifespan of a human being, from childhood to senescence. The results presented here are significant for their insight into the ageing process of the neuromuscular system. The age-related change in AHP duration has not been investigated previously in human studies and has been met with ambiguous results in animal studies.
从年龄在5.5至79岁的健康受试者的肱二头肌记录运动单位(MU)电位。受试者被分为年轻组(5.5至19岁)和成年组(37.5至79岁),比较两组之间单个MU放电特征。年轻组和成年组的放电频率范围分别为8.3至21.7次/秒(平均12.87次/秒)和5.9至18.7次/秒(平均11.08次/秒)。年轻组峰峰间期(ISI)的标准差在4.84至11.57毫秒(平均8.39毫秒)范围内,成年组在4.26至12.23毫秒(平均7.76毫秒)范围内。这两个差异均具有统计学意义(P < 0.001)。特别关注了先前开发的ISI变异性分析方法,该方法能够根据运动神经元(MN)的超极化后电位(AHP)持续时间对MU进行比较。结果表明,AHP持续时间随年龄增长而逐渐增加,这与肌肉特性向较慢表型的转变一致。这种转变似乎是一个持续的过程,涵盖了人类从童年到衰老的整个生命周期。此处呈现的结果对于深入了解神经肌肉系统的衰老过程具有重要意义。AHP持续时间与年龄相关的变化在先前的人体研究中尚未被研究,在动物研究中也得到了不明确的结果。