Age-related differences in the motor unit action potential size in relation to recruitment threshold

被引:24
作者
Sterczala, Adam J. [1 ]
Herda, Trent J. [1 ]
Miller, Jonathan D. [1 ]
Ciccone, Anthony B. [1 ]
Trevino, Michael A. [1 ]
机构
[1] Univ Kansas, Neuromech Lab, 101A Robinson Ctr,1301 Sunnyside Ave, Lawrence, KS 66046 USA
关键词
ageing; atrophy; echo intensity; electromyography; first dorsal interosseous; ultrasound; SURFACE EMG SIGNALS; SKELETAL-MUSCLE; COMPUTED-TOMOGRAPHY; ELDERLY MEN; MECHANICAL-PROPERTIES; ORDERLY RECRUITMENT; OLDER-ADULTS; MACRO-EMG; YOUNG; AMPLITUDE;
D O I
10.1111/cpf.12453
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Motor unit action potential size (MUAP(size)) versus recruitment threshold (RT) relationship analysis provides a non-invasive measure of motor unit (MU) hypertrophy; however, this method's ability to identify MU atrophy is unknown. This investigation sought to determine if MUAP(size) versus RT relationship slope (AP(slope)) comparison could identify evidence of MU atrophy in older individuals. Surface electromyography signals were recorded from the first dorsal interosseous (FDI) of fourteen young (YG, age=22<bold></bold>29 +/- 2<bold></bold>79years) and ten older (OG, 61<bold></bold>0 +/- 2<bold></bold>0years) subjects during a 50% maximal voluntary contraction (MVC) isometric trapezoidal muscle action. The signals were decomposed to yield a MUAP(size) and RT for each MU. For each subject, the MUs recruited between 10% and 50% MVC were linearly regressed as a function of RT to calculate an individual AP(slope). FDI cross-sectional area (CSA) and echo intensity (EI) were quantified via ultrasonography. The mean AP(slope) was lower for OG (0<bold></bold>033 +/- 0<bold></bold>010mV%MVC-1) than YG (0<bold></bold>056 +/- 0<bold></bold>019mV%MVC-1). OG and YG possessed similar CSAs (OG: 2<bold></bold>09 +/- 0<bold></bold>31cm(2); YG: 2<bold></bold>08 +/- 0<bold></bold>41cm(2)); however, OG (53<bold></bold>25 +/- 7<bold></bold>56 AU) had greater EI than YG (43<bold></bold>87 +/- 7<bold></bold>59 AU). The lower OG mean AP(slope) was due to smaller MUAP(sizes) of higher-threshold MUs, likely due to atrophy of muscle fibres that comprise those MUs. In support, similar CSA with greater EI indicated increased adipose and fibrous tissue and reduced contractile tissue in OG. Thus, MUAP(size) versus RT relationship may provide a non-invasive measure of MU atrophy.
引用
收藏
页码:610 / 616
页数:7
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