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神经肌肉电刺激和代谢反射激活的血液动力学反应。

Hemodynamic responses to neuromuscular electrical stimulation and to metaboreflex activation.

机构信息

School of Medicine, Graduate Program in Health Sciences, Cardiology and Cardiovascular Sciences, Federal University of Rio Grande do Sul, Porto Alegre, Brazil.

Federal University of Rio Grande do Sul, Porto Alegre, Brazil.

出版信息

J Sports Med Phys Fitness. 2022 Feb;62(2):163-169. doi: 10.23736/S0022-4707.21.11877-8. Epub 2021 Mar 26.

Abstract

BACKGROUND

Metabolites produced during muscle exercise can sensitize types III and IV fibers, which account for increasing blood pressure (BP) and vascular resistance in non-exercising limbs, as well as for redistributing the blood flow to active muscles; reflex response is called metaboreflex. Neuromuscular electrical stimulation (NMES) induces greater local muscle metabolic demand than voluntary isometric contractions. Metabolic accumulation is essential to activate muscle metaboreflex; thus, the hypothesis of the current study is that one NMES session can induce metaboreflex with different hemodynamic responses in upper and lower limbs. Objective - to investigate whether one acute NMES session could activate metaboreflex by inducing different hemodynamic responses between arms and legs.

METHODS

Twenty (20) healthy subjects (mean age = 47.7±9.4 years, 13 women, mean body mass index = 26 ± 3 kg/m) participated in this randomized crossover study. All participants were subjected to two NMES interventions, one in the upper limbs (UPL) and the other in the lower limbs (LL). Mean blood pressure (MBP), blood flow (BF) and vascular resistance (VR) were used to selectively evaluate metaboreflex responses at baseline, during NMES interventions, and recovery periods with, and without, postexercise circulatory occlusion (PECO+ and PECO-, respectively) through the area under the curve (AUC) in VR.

RESULTS

MBP increased by 13% during UPL interventions and only remained high during PECO+. Changes in MBP were not observed in LL, although BF in the contralateral leg has decreased by 14% during PECO+ protocol. Muscle metaboreflex activation (AUC differences in VR between PECO+ and PECO-) was not different between UPL and LL (P=0.655).

CONCLUSIONS

Acute NMES session has induced similar metaboreflex activation in both arms and legs, although hemodynamic responses differed between interventions.

摘要

背景

肌肉运动产生的代谢物可以使 III 型和 IV 型纤维敏感,这些纤维会增加非运动肢体的血压(BP)和血管阻力,并重新分配血流到活跃的肌肉;这种反射反应称为代谢反射。神经肌肉电刺激(NMES)引起的局部肌肉代谢需求比自愿等长收缩大。代谢物的积累对于激活肌肉代谢反射至关重要;因此,本研究的假设是,一次 NMES 治疗可以在上肢和下肢引起不同的血流动力学反应来诱导代谢反射。

目的-研究一次急性 NMES 治疗是否可以通过在上肢和下肢引起不同的血流动力学反应来激活代谢反射。

方法

20 名健康受试者(平均年龄=47.7±9.4 岁,13 名女性,平均体重指数=26±3kg/m)参与了这项随机交叉研究。所有参与者都接受了两种 NMES 干预,一种在上肢(UPL),另一种在下肢(LL)。平均血压(MBP)、血流(BF)和血管阻力(VR)用于在基线、NMES 干预期间以及恢复期间,通过 VR 的曲线下面积(AUC)来选择性评估代谢反射反应,同时(分别为 PECO+和 PECO-)和没有运动后循环闭塞(PECO+)。

结果

UPL 干预期间 MBP 增加了 13%,并且只有在 PECO+期间保持高位。LL 中没有观察到 MBP 的变化,尽管在 PECO+方案中对侧腿部的 BF 下降了 14%。UPL 和 LL 之间,肌肉代谢反射激活(PECO+和 PECO-之间 VR 的 AUC 差异)没有差异(P=0.655)。

结论

急性 NMES 治疗在上肢和下肢都诱导了相似的代谢反射激活,尽管干预之间的血流动力学反应不同。

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