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潜水和运动:三叉神经受体和肌肉代谢感受器在人体肌肉交感神经活动中的相互作用。

Diving and exercise: the interaction of trigeminal receptors and muscle metaboreceptors on muscle sympathetic nerve activity in humans.

机构信息

School of Sport, Exercise and Rehabilitation Sciences, College of Life and Environmental Sciences, University of Birmingham, Birmingham, United Kingdom;

Department of Physiology and Pharmacology, Fluminense Federal University, Niterói, Brazil; and.

出版信息

Am J Physiol Heart Circ Physiol. 2015 Mar 1;308(5):H367-75. doi: 10.1152/ajpheart.00728.2014. Epub 2014 Dec 19.

Abstract

Swimming involves muscular activity and submersion, creating a conflict of autonomic reflexes elicited by the trigeminal receptors and skeletal muscle afferents. We sought to determine the autonomic cardiovascular responses to separate and concurrent stimulation of the trigeminal cutaneous receptors and metabolically sensitive skeletal muscle afferents (muscle metaboreflex). In eight healthy men (30 ± 2 yr) muscle sympathetic nerve activity (MSNA; microneurography), mean arterial pressure (MAP; Finometer), femoral artery blood flow (duplex Doppler ultrasonography), and femoral vascular conductance (femoral artery blood flow/MAP) were assessed during the following three experimental conditions: 1) facial cooling (trigeminal nerve stimulation), 2) postexercise ischemia (PEI; muscle metaboreflex activation) following isometric handgrip, and 3) trigeminal nerve stimulation with concurrent PEI. Trigeminal nerve stimulation produced significant increases in MSNA total activity (Δ347 ± 167%) and MAP (Δ21 ± 5%) and a reduction in femoral artery vascular conductance (Δ-17 ± 9%). PEI also evoked significant increases in MSNA total activity (Δ234 ± 83%) and MAP (Δ36 ± 4%) and a slight nonsignificant reduction in femoral artery vascular conductance (Δ-9 ± 12%). Trigeminal nerve stimulation with concurrent PEI evoked changes in MSNA total activity (Δ341 ± 96%), MAP (Δ39 ± 4%), and femoral artery vascular conductance (Δ-20 ± 9%) that were similar to those evoked by either separate trigeminal nerve stimulation or separate PEI. Thus, excitatory inputs from the trigeminal nerve and metabolically sensitive skeletal muscle afferents do not summate algebraically in eliciting a MSNA and cardiovascular response but rather exhibit synaptic occlusion, suggesting a high degree of convergent inputs on output neurons.

摘要

游泳涉及肌肉活动和浸没,这会产生三叉神经受体和骨骼肌肉传入纤维引发的自主反射的冲突。我们旨在确定三叉神经皮肤受体和代谢敏感的骨骼肌肉传入纤维(肌肉代谢反射)单独和同时刺激的自主心血管反应。在八名健康男性(30 ± 2 岁)中,肌肉交感神经活动(MSNA;微神经记录)、平均动脉压(MAP;Finometer)、股动脉血流(双功能多普勒超声检查)和股动脉血流传导(股动脉血流/MAP)在以下三种实验条件下进行评估:1)面部冷却(三叉神经刺激),2)等长握力后的运动后缺血(PEI;肌肉代谢反射激活),3)三叉神经刺激同时进行 PEI。三叉神经刺激会导致 MSNA 总活动(Δ347 ± 167%)和 MAP(Δ21 ± 5%)显著增加,并导致股动脉血管传导(Δ-17 ± 9%)降低。PEI 也会引起 MSNA 总活动(Δ234 ± 83%)和 MAP(Δ36 ± 4%)的显著增加,以及股动脉血管传导(Δ-9 ± 12%)的轻微非显著降低。三叉神经刺激同时进行 PEI 会引起 MSNA 总活动(Δ341 ± 96%)、MAP(Δ39 ± 4%)和股动脉血管传导(Δ-20 ± 9%)的变化,这些变化与单独的三叉神经刺激或单独的 PEI 引起的变化相似。因此,三叉神经的兴奋性输入和代谢敏感的骨骼肌肉传入纤维在引起 MSNA 和心血管反应时并不是代数相加的,而是表现出突触阻断,这表明输出神经元上存在高度的会聚输入。

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