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首页> 外文期刊>Journal of Neural Transplantation and Plasticity: Neural Plasticity >Oscillatory Corticospinal Activity during Static Contraction of Ankle Muscles Is Reduced in Healthy Old versus Young Adults
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Oscillatory Corticospinal Activity during Static Contraction of Ankle Muscles Is Reduced in Healthy Old versus Young Adults

机译:踝关节肌的静态收缩期间的振荡皮质脊髓活性减少了健康的旧与年轻成年人

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Aging is accompanied by impaired motor function, but age-related changes in neural networks responsible for generating movement are not well understood. We aimed to investigate the functional oscillatory coupling between activity in the sensorimotor cortex and ankle muscles during static contraction. Fifteen young (20–26 yr) and fifteen older (65–73 yr) subjects were instructed to match a target force by performing static ankle dorsi- or plantar flexion, while electroencephalographic (EEG) activity was recorded from the cortex and electromyographic (EMG) activity was recorded from dorsi- (proximal and distal anterior tibia) and plantar (soleus and medial gastrocnemius) flexor muscles. EEG-EMG and EMG-EMG beta band (15–35 Hz) coherence was analyzed as an index of corticospinal activity. Our results demonstrated that beta cortico-, intra-, and intermuscular coherence was reduced in old versus young subjects during static contractions. Old subjects demonstrated significantly greater error than young subjects while matching target forces, but force precision was not related to beta coherence. We interpret this as an age-related decrease in effective oscillatory corticospinal activity during steady-state motor output. Additionally, our data indicate a potential effect of alpha coherence and tremor on performance. These results may be instrumental in developing new interventions to strengthen sensorimotor control in elderly subjects.
机译:老化伴随着运动功能受损,但负责产生运动的神经网络的年龄相关变化并不充分理解。我们旨在在静态收缩期间探讨感官电池皮质和踝关节肌肉中的活动之间的功能振荡耦合。 12名年轻(20-26岁)和十五岁较大的(65-73年)受试者通过进行静态踝关节或跖屈,从皮层和电拍摄(EMG)记录脑电图(EEG)活性而匹配目标力量)从背氏(近端和远端胫骨)和跖(Soleus和Nearial Gastrocnemius)屈肌肌肉中记录的活性。分析EEG-EMG和EMG-EMGβ带(15-35Hz)相干性作为皮质脊髓活性指标。我们的结果表明,在静态收缩期间,旧与年轻受试者的β皮质,和胚间相干性降低。在匹配目标力的同时,旧科目的误差比年轻对象显着更大,但是力精度与β连贯性无关。我们将其解释为稳态电机输出期间有效振荡性皮质脊柱活动的年龄相关的降低。此外,我们的数据表明α-一致性和震颤对性能的潜在影响。这些结果可能是在制定新的干预措施时,以加强老年人对传感器控制的新干预措施。

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