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首页> 外文期刊>Reviews in the neurosciences >Determining the early corticospinal-motoneuronal responses to strength training: a systematic review and meta-analysis
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Determining the early corticospinal-motoneuronal responses to strength training: a systematic review and meta-analysis

机译:测定力量训练的早期皮质螺旋体 - 运动反应:系统审查和荟萃分析

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Several studies have used transcranial magnetic stimulation to probe the corticospinal-motoneuronal responses to a single session of strength training; however, the findings are inconsistent. This systematic review and meta-analysis examined whether a single bout of strength training affects the excitability and inhibition of intracortical circuits of the primary motor cortex (M1) and the corticospinal-motoneuronal pathway. A systematic review was completed, tracking studies between January 1990 and May 2018. The methodological quality of studies was determined using the Downs and Black quality index. Data were synthesised and interpreted from meta-analysis. Nine studies (n=107) investigating the acute corticospinal-motoneuronal responses to strength training met the inclusion criteria. Meta-analyses detected that after strength training compared to control, corticospinal excitability [standardised mean difference (SMD), 1.26; 95% confidence interval (CI), 0.88, 1.63; p<0.0001] and intracortical facilitation (ICF) (SMD, 1.60; 95% CI, 0.18, 3.02; p=0.003) were increased. The duration of the corticospinal silent period was reduced (SMD, ?17.57; 95% CI, ?21.12, ?14.01; p=0.00001), but strength training had no effect on the excitability of the intracortical inhibitory circuits [short-interval intracortical inhibition (SICI) SMD, 1.01; 95% CI, ?1.67, 3.69; p=0.46; long-interval intracortical inhibition (LICI) SMD, 0.50; 95% CI, ?1.13, 2.13; p=0.55]. Strength training increased the excitability of corticospinal axons (SMD, 4.47; 95% CI, 3.45, 5.49; p<0.0001). This systematic review and meta-analyses revealed that the acute neural changes to strength training involve subtle changes along the entire neuroaxis from the M1 to the spinal cord. These findings suggest that strength training is a clinically useful tool to modulate intracortical circuits involved in motor control.
机译:几项研究使用经颅磁刺激来探测到单一的力量训练课程的皮质螺旋运动响应;但是,调查结果不一致。该系统审查和META分析检查了单一的强度训练是否影响了初级运动皮质皮质(M1)和皮质脊髓动络途径的兴奋性和抑制。完成了系统审查,1990年1月至2018年5月之间进行了跟踪研究。利用唐氏和黑质质量指数确定了研究的方法论质量。从Meta分析中合成和解释数据。九项研究(n = 107)调查对强度训练的急性皮质螺旋运动响应符合纳入标准。荟萃分析检测到,在与对照相比的强度训练后,皮质振动性[标准化平均差(SMD),1.26; 95%置信区间(CI),0.88,1.63; P <0.0001]和鞘内促进(ICF)(SMD,1.60; 95%CI,0.18,3.02; P = 0.003)增加。皮质螺栓静脉期的持续时间减少(SMD,?17.57; 95%CI,α21.12,?14.01; P = 0.00001),但强度训练对肠内抑制电路的兴奋性没有影响[短期间的肠球抑制(SICI)SMD,1.01; 95%CI,?1.67,3.69; p = 0.46;长期间隔内抑制(LICI)SMD,0.50; 95%CI,?1.13,2.13; p = 0.55]。力量训练增加了皮质轴突的兴奋性(SMD,4.47; 95%CI,3.45,5.49; P <0.0001)。这种系统审查和荟萃分析表明,对强度训练的急性神经变化涉及从M1到脊髓的整个神经炎的微妙变化。这些研究结果表明,强度训练是一种临床有用的工具,可以调制电机控制中涉及的内部电路。

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