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

被引:8
作者
Doherty, Connor J. [1 ]
King, Trevor J. [1 ]
Incognito, Anthony, V [1 ]
Lee, Jordan B. [1 ]
Shepherd, Andrew D. [1 ]
Cacoilo, Joseph A. [2 ]
Slysz, Joshua T. [1 ]
Burr, Jamie F. [1 ]
Millar, Philip J. [1 ,3 ]
机构
[1] Univ Guelph, Dept Human Hlth & Nutr Sci, Guelph, ON, Canada
[2] Univ Guelph Humber, Dept Kinesiol, Toronto, ON, Canada
[3] Toronto Gen Hosp, Toronto Gen Res Inst, Toronto, ON, Canada
基金
加拿大创新基金会;
关键词
autonomic nervous system; concurrent exercise; cycling; exercise; handgrip; HEART-RATE-VARIABILITY; BLOOD-FLOW RESPONSES; STATIC EXERCISE; CARDIOVASCULAR-RESPONSES; METABOREFLEX ACTIVATION; HANDGRIP EXERCISE; MEAN VELOCITY; SHEAR RATE; PRESSURE; REFLEX;
D O I
10.1152/japplphysiol.00997.2018
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
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 visit 1, 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 visit 2, MSNA (contralateral fibular nerve microneurography) was acquired successfully in 12/35 participants during the same exercise modes. SFA blood flow increased during RHG (P < 0.0001) and concurrent exercise (P = 0.03) but not cycling (P = 0.91). SFA vascular conductance was unchanged during RHG (P = 0.88) but reduced similarly during concurrent and cycling exercise (both P < 0.003). RHG increased MSNA burst frequency (P = 0.04) without altering burst amplitude (P = 0.69) or total MSNA (P = 0.26). In contrast, cycling and concurrent exercise had no effects on MSNA burst frequency (both P >= 0.10) but increased burst amplitude (both P <= 0.001) and total MSNA (both P <= 0.007). Across all exercise modes, the changes in MSNA burst amplitude and SFA vascular conductance were correlated negatively (r = -0.43, P = 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. NEW & NOTEWORTHY 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.
引用
收藏
页码:464 / 472
页数:9
相关论文
共 49 条
[1]   The metaboreflex does not contribute to the increase in muscle sympathetic nerve activity to contracting muscle during static exercise in humans [J].
Boulton, Daniel ;
Taylor, Chloe E. ;
Green, Simon ;
Macefield, Vaughan G. .
JOURNAL OF PHYSIOLOGY-LONDON, 2018, 596 (06) :1091-1102
[2]   Quantifying sympathetic neuro-haemodynamic transduction at rest in humans: insights into sex, ageing and blood pressure control [J].
Briant, L. J. B. ;
Burchell, A. E. ;
Ratcliffe, L. E. K. ;
Charkoudian, N. ;
Nightingale, A. K. ;
Paton, J. F. R. ;
Joyner, Michael J. ;
Hart, E. C. .
JOURNAL OF PHYSIOLOGY-LONDON, 2016, 594 (17) :4753-4768
[3]   Muscle sympathetic nerve responses to passive and active one-legged cycling: insights into the contributions of central command [J].
Doherty, Connor J. ;
Incognito, Anthony V. ;
Notay, Karambir ;
Burns, Matthew J. ;
Slysz, Joshua T. ;
Seed, Jeremy D. ;
Nardone, Massimo ;
Burr, Jamie F. ;
Millar, Philip J. .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2018, 314 (01) :H3-H10
[5]   Spontaneous bursts of muscle sympathetic nerve activity decrease leg vascular conductance in resting humans [J].
Fairfax, Seth T. ;
Padilla, Jaume ;
Vianna, Lauro C. ;
Davis, Michael J. ;
Fadel, Paul J. .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2013, 304 (05) :H759-H766
[6]   Effects of varying central command and muscle mass on the cardiovascular responses to isometric exercise [J].
Franke, WD ;
Boettger, CF ;
McLean, SP .
CLINICAL PHYSIOLOGY, 2000, 20 (05) :380-387
[7]   CARDIOVASCULAR-RESPONSES TO MUSCLE ISCHEMIA IN MAN - DEPENDENCY ON MUSCLE MASS [J].
FREUND, PR ;
HOBBS, SF ;
ROWELL, LB .
JOURNAL OF APPLIED PHYSIOLOGY, 1978, 45 (05) :762-767
[8]   Effect of static and dynamic exercise on heart rate and blood pressure variabilities [J].
González-Camarena, R ;
Carrasco-Sosa, S ;
Román-Ramos, R ;
Gaitán-González, MJ ;
Medina-Bañuelos, V ;
Azpiroz-Leehan, J .
MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 2000, 32 (10) :1719-1728
[9]   Comparison of forearm blood flow responses to incremental handgrip and cycle ergometer exercise: relative contribution of nitric oxide [J].
Green, DJ ;
Bilsborough, W ;
Naylor, LH ;
Reed, C ;
Wright, J ;
O'Driscoll, G ;
Walsh, JFH .
JOURNAL OF PHYSIOLOGY-LONDON, 2005, 562 (02) :617-628
[10]   Effect of muscle metaboreflex activation on spontaneous cardiac baroreflex sensitivity during exercise in humans [J].
Hartwich, Doreen ;
Dear, William E. ;
Waterfall, Jessica L. ;
Fisher, James P. .
JOURNAL OF PHYSIOLOGY-LONDON, 2011, 589 (24) :6157-6171