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首页> 外文期刊>The Journal of Physiology >Spinal mu-opioid receptor-sensitive lower limb muscle afferents determine corticospinal responsiveness and promote central fatigue in upper limb muscle
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Spinal mu-opioid receptor-sensitive lower limb muscle afferents determine corticospinal responsiveness and promote central fatigue in upper limb muscle

机译:脊髓对阿片受体敏感的下肢肌肉传入决定皮质脊髓反应并促进上肢肌肉中枢疲劳

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We investigated the influence of group III/IV lower limb muscle afferents on the development of supraspinal fatigue and the responsiveness of corticospinal projections to an arm muscle. Eight males performed constant-load leg cycling exercise (80% peak power output) for 30 s (non-fatiguing) and to exhaustion (similar to 9 min; fatiguing) both under control conditions and with lumbar intrathecal fentanyl impairing feedback from mu-opioid receptor-sensitive lower limb muscle afferents. Voluntary activation (VA) of elbow flexors was assessed via transcranial magnetic stimulation (TMS) during maximum voluntary contraction (MVC) and corticospinal responsiveness was monitored via TMS-evoked potentials (MEPs) during a 25% MVC. Accompanied by a significant 5 +/- 1% reduction in VA from pre- to post-exercise, elbow flexor MVC progressively decreased during the fatiguing trial (P < 0.05). By contrast, with attenuated feedback from locomotor muscle afferents, MVC and VA remained unchanged during fatiguing exercise (P>0.3). MEPs decreased by 36 +/- 6% (P < 0.05) from the start of exercise to exhaustion under control conditions, but this reduction was prevented with fentanyl blockade. Furthermore, fentanyl blockade prevented the significant increase in elbow flexor MEP observed from rest to non-fatiguing exercise under control conditions and resulted in a 14% lower corticospinal responsiveness during this short bout (P < 0.05). Taken together, in the absence of locomotor muscle fatigue, group III/IV-mediated leg muscle afferents facilitate responsiveness of the motor pathway to upper limb flexor muscles. By contrast, in the presence of cycling-induced leg fatigue, group III/IV locomotor muscle afferents facilitate supraspinal fatigue in remote muscle not involved in the exercise and disfacilitate, or inhibit, the responsiveness of corticospinal projections to upper limb muscles.
机译:我们调查了III / IV组下肢肌肉传入神经对脊上神经疲劳的发展以及皮质脊髓突部对手臂肌肉的反应性的影响。八名男性在控制条件下和腰椎鞘内芬太尼削弱mu-阿片类药物的反馈的情况下,进行了恒定负荷的腿部自行车运动(峰值功率输出为80%)30 s(无疲劳),并达到了疲劳(约9分钟;疲劳)。受体敏感的下肢肌肉传入。在最大自愿收缩(MVC)期间通过经颅磁刺激(TMS)评估肘部屈肌的自愿激活(VA),在25%MVC期间通过TMS诱发电位(MEP)监测皮质脊髓反应。从运动前到运动后VA显着降低5 +/- 1%,在疲劳试验期间,肘屈肌MVC逐渐降低(P <0.05)。相比之下,在运动性疲劳期间,运动肌传入神经的反馈减弱,MVC和VA保持不变(P> 0.3)。在控制条件下,从运动开始到筋疲力尽,MEPs降低了36 +/- 6%(P <0.05),但芬太尼阻滞阻止了这种降低。此外,在控制条件下,芬太尼封锁阻止了从休息到无疲劳运动所观察到的肘屈肌MEP的显着增加,并且在此短暂发作期间导致皮质脊髓反应性降低了14%(P <0.05)。总之,在没有运动性肌肉疲劳的情况下,III / IV组介导的腿部肌肉传入神经促进了运动路径对上肢屈肌的响应。相比之下,在骑自行车引起的腿部疲劳的情况下,III / IV组运动性肌肉传入神经促进不参与运动的远端肌肉的脊柱上神经疲劳,并削弱或抑制皮质脊髓突部对上肢肌肉的反应性。

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