Centre of Metabolism, Ageing & Physiology (COMAP), MRC-Versus Arthritis Centre for Musculoskeletal Ageing Research &, National Institute for Health Research (NIHR) Nottingham Biomedical Research Centre, School of Medicine, University of Nottingham, Royal Derby Hospital Centre (Room 3011), Derby, DE22 3DT, UK.
School of Sport, Exercise and Health Sciences, Loughborough University, Loughborough, UK.
Geroscience. 2024 Jun;46(3):3249-3261. doi: 10.1007/s11357-024-01063-w. Epub 2024 Jan 19.
Although muscle atrophy may partially account for age-related strength decline, it is further influenced by alterations of neural input to muscle. Persistent inward currents (PIC) and the level of common synaptic inputs to motoneurons influence neuromuscular function. However, these have not yet been described in the aged human quadriceps. High-density surface electromyography (HDsEMG) signals were collected from the vastus lateralis of 15 young (mean ± SD, 23 ± 5 y) and 15 older (67 ± 9 y) men during submaximal sustained and 20-s ramped contractions. HDsEMG signals were decomposed to identify individual motor unit discharges, from which PIC amplitude and intramuscular coherence were estimated. Older participants produced significantly lower knee extensor torque (p < 0.001) and poorer force tracking ability (p < 0.001) than young. Older participants also had lower PIC amplitude (p = 0.001) and coherence estimates in the alpha frequency band (p < 0.001) during ramp contractions when compared to young. Persistent inward currents and common synaptic inputs are lower in the vastus lateralis of older males when compared to young. These data highlight altered neural input to the clinically and functionally important quadriceps, further underpinning age-related loss of function which may occur independently of the loss of muscle mass.
尽管肌肉萎缩可能部分解释了与年龄相关的力量下降,但它还受到肌肉神经输入变化的影响。持续内向电流(PIC)和运动神经元的常见突触输入水平影响神经肌肉功能。然而,这些在老年人的股四头肌中尚未被描述。从 15 名年轻(平均±标准差,23±5 岁)和 15 名老年人(67±9 岁)男性的股外侧肌采集高密度表面肌电图(HDsEMG)信号,在亚最大持续和 20 秒斜坡收缩期间。对 HDsEMG 信号进行分解以识别单个运动单位放电,从中估计 PIC 幅度和肌内相干性。与年轻人相比,老年人产生的膝关节伸肌扭矩明显较低(p<0.001),且力量跟踪能力较差(p<0.001)。与年轻人相比,老年人在斜坡收缩期间的 PIC 幅度(p=0.001)和 alpha 频带的相干性估计值也较低(p<0.001)。与年轻人相比,老年人股外侧肌的持续内向电流和常见突触输入较低。这些数据突出了神经传入到临床上和功能上重要的股四头肌的改变,进一步支持了与年龄相关的功能丧失,这可能独立于肌肉质量的丧失而发生。