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动态手臂和腿部运动对非活动腿部肌肉交感神经活动和血管传导的影响。

Effects of dynamic arm and leg exercise on muscle sympathetic nerve activity and vascular conductance in the inactive leg.

机构信息

Department of Human Health and Nutritional Sciences, University of Guelph, Guelph, Ontario, Canada.

Department of Kinesiology, University of Guelph-Humber, Toronto, Ontario, Canada.

出版信息

J Appl Physiol (1985). 2019 Aug 1;127(2):464-472. doi: 10.1152/japplphysiol.00997.2018. Epub 2019 Jun 27.

Abstract

The influence of muscle sympathetic nerve activity (MSNA) responses on local vascular conductance during exercise are not well established. Variations in exercise mode and active muscle mass can produce divergent MSNA responses. Therefore, we sought to examine the effects of small- versus large-muscle mass dynamic exercise on vascular conductance and MSNA responses in the inactive limb. Thirty-five participants completed two study visits in a randomized order. During , superficial femoral artery (SFA) blood flow (Doppler ultrasound) was assessed at rest and during steady-state rhythmic handgrip (RHG; 1:1 duty cycle, 40% maximal voluntary contraction), one-leg cycling (17 ± 3% peak power output), and concurrent exercise at the same intensities. During , MSNA (contralateral fibular nerve microneurography) was acquired successfully in 12/35 participants during the same exercise modes. SFA blood flow increased during RHG ( < 0.0001) and concurrent exercise ( = 0.03) but not cycling ( = 0.91). SFA vascular conductance was unchanged during RHG ( = 0.88) but reduced similarly during concurrent and cycling exercise (both < 0.003). RHG increased MSNA burst frequency ( = 0.04) without altering burst amplitude ( = 0.69) or total MSNA ( = 0.26). In contrast, cycling and concurrent exercise had no effects on MSNA burst frequency (both ≥ 0.10) but increased burst amplitude (both ≤ 0.001) and total MSNA (both ≤ 0.007). Across all exercise modes, the changes in MSNA burst amplitude and SFA vascular conductance were correlated negatively ( = -0.43, = 0.02). In summary, the functional vascular consequences of alterations in sympathetic outflow to skeletal muscle are most closely associated with changes in MSNA burst amplitude, but not frequency, during low-intensity dynamic exercise. Low-intensity small- versus large-muscle mass exercise can elicit divergent effects on muscle sympathetic nerve activity (MSNA). We examined the relationships between changes in MSNA (burst frequency and amplitude) and superficial femoral artery (SFA) vascular conductance during rhythmic handgrip, one-leg cycling, and concurrent exercise in the inactive leg. Only changes in MSNA burst amplitude were inversely associated with SFA vascular conductance responses. This result highlights the functional importance of measuring MSNA burst amplitude during exercise.

摘要

肌肉交感神经活动 (MSNA) 对运动时局部血管传导的影响尚未得到充分证实。运动方式和活动肌肉量的变化会产生不同的 MSNA 反应。因此,我们旨在研究小肌肉群与大肌肉群动力性运动对非运动肢体血管传导和 MSNA 反应的影响。35 名参与者以随机顺序完成了两次研究访问。在 中,通过超声多普勒评估股浅动脉(SFA)血流(休息时和稳定状态节律性握力期间;1:1 工作周期,40%最大自主收缩)、单腿踏车(17±3%峰值功率输出)和同时进行的运动。在 中,12/35 名参与者在相同的运动模式下成功获得了对侧腓总神经微神经图的 MSNA。SFA 血流量在 RHG( < 0.0001)和同时运动( = 0.03)期间增加,但在踏车运动时没有增加( = 0.91)。SFA 血管传导在 RHG 期间保持不变( = 0.88),但在同时和踏车运动期间相似降低(均 < 0.003)。RHG 增加 MSNA 爆发频率( = 0.04),而不改变爆发幅度( = 0.69)或总 MSNA( = 0.26)。相比之下,踏车和同时运动对 MSNA 爆发频率没有影响(均 ≥ 0.10),但增加了爆发幅度(均 ≤ 0.001)和总 MSNA(均 ≤ 0.007)。在所有运动模式中,MSNA 爆发幅度和 SFA 血管传导的变化呈负相关( =−0.43, = 0.02)。总之,在低强度动力性运动中,交感神经传出对骨骼肌的改变与 MSNA 爆发幅度的改变最为密切相关,而不是频率的改变。低强度小肌肉群与大肌肉群运动对肌肉交感神经活动(MSNA)有不同的影响。我们检查了在非运动腿的节律性握力、单腿踏车和同时运动期间,MSNA(爆发频率和幅度)和股浅动脉(SFA)血管传导的变化之间的关系。只有 MSNA 爆发幅度的变化与 SFA 血管传导反应呈负相关。这一结果突出了在运动期间测量 MSNA 爆发幅度的功能重要性。

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