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首页> 外文期刊>American Journal of Physiology >Intensity-dependent alterations in the excitability of cortical and spinal projections to the knee extensors during isometric and locomotor exercise
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Intensity-dependent alterations in the excitability of cortical and spinal projections to the knee extensors during isometric and locomotor exercise

机译:在等距和运动运动期间将皮质和脊柱突起的兴奋性兴奋的强度依赖性改变

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We investigated the role of exercise intensity and associated central motor drive in determining corticomotoneuronal excitability. Ten participants performed a series of nonfatiguing (3 s) isometric single-leg knee extensions (ISO; 10-100% of maximal voluntary contractions, MVC) and cycling bouts (30-160% peak aerobic capacity, W_(peak)). At various exercise intensities, electrical potentials were evoked in the vastus lateralis (VL) and rectus femoris (RF) via transcranial magnetic stimulation (motor-evoked potentials, MEP), and electrical stimulation of both the cervicomedullary junction (cervicomedullary evoked potentials, CMEP) and the femoral nerve (maximal M-waves, M_(max)). Whereas M_(max) remained unchanged in both muscles (P > 0.40), voluntary electromyographic activity (EMG) increased in an exercise intensity-dependent manner for ISO and cycling exercise in VL and RF (both P < 0.001). During ISO exercise, MEPs and CMEPs progressively increased in VL and RF until a plateau was reached at ~75% MVC; further increases in contraction intensity did not cause additional changes (P > 0.35). During cycling exercise, VL-MEPs and CMEPs progressively increased by ~65% until a plateau was reached at W_(peak). In contrast, RF MEPs and CMEPs progressively increased by ~110% throughout the tested cycling intensities without the occurrence of a plateau. Furthermore, alterations in EMG below the plateau influenced corticomotoneuronal excitability similarly between exercise modalities. In both exercise modalities, the MEP-to-CMEP ratio did not change with exercise intensity (P > 0.22). In conclusion, increases in exercise intensity and EMG facilitates the corticomotoneuronal pathway similarly in isometric knee extension and locomotor exercise until a plateau occurs at a submaximal exercise intensity. This facilitation appears to be primarily mediated by increases in excitability of the motoneuron pool.
机译:我们调查了运动强度和相关的中央电机驱动在确定皮质体尿声兴奋性方面的作用。十个参与者进行了一系列非涂层(3秒)等距单腿膝盖延伸(ISO; 10-100%的最大自愿收缩,MVC)和循环伴侣(30-160%的好氧能力,W_(峰))。在各种运动强度下,通过经颅磁刺激(电动机诱发电位,MEP),在夸张的侧面(VL)和直肠股骨(RF)中唤起电势,并且宫颈髓系列(颈椎测井诱发电位,CMEP)的电气刺激和股神神经(最大m波,m_(max))。虽然M_(MAX)在肌肉(P> 0.40)中保持不变(P> 0.40),但自愿电焦活动(EMG)以v1和rf(p <0.001)中的ISO和循环运动的运动强度依赖性方式增加。在ISO运动期间,MEPS和CMEP在VL和RF中逐渐增加,直到达到〜75%MVC达到高原;收缩强度的进一步增加不会引起额外的变化(p> 0.35)。在循环运动期间,VL-MEPS和CMEPS逐渐增加〜65%,直到W_(峰值)达到平台。相比之下,在整个测试的循环强度的情况下,RF MEPS和CMEPs逐渐增加了〜110%,没有高原的发生。此外,在平台下方的EMG中的改变影响了运动方式之间的皮质组尿脉络性。在两种运动方式中,MEP-TO-CMEP比率与运动强度没有变化(P> 0.22)。总之,运动强度和EMG的增加有助于皮质体尿路途径在等距膝关节延伸和运动运动中,直到高原发生在潜水运动强度。这种便利化似乎主要由Motoneuron池的兴奋性的增加介导。

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