scholarly journals Cool-down Versus Passive Recovery After Supramaximal Interval Exercise On Vagal Modulation

2021 ◽  
Vol 53 (8S) ◽  
pp. 68-69
Author(s):  
Jason C. Parks ◽  
Erica M. Marshall ◽  
Stacie M. Humm ◽  
Emily K. Erb ◽  
Meredith C. Paskert ◽  
...  
2020 ◽  
Vol 52 (7S) ◽  
pp. 707-707
Author(s):  
Jason C. Parks ◽  
Erica M. Marshall ◽  
Stacie M. Humm ◽  
Emily K. Erb ◽  
Meredith C. Paskert ◽  
...  

Author(s):  
Raphael J. PERRIER-MELO ◽  
Igor D'AMORIM ◽  
Tony MEIRELES SANTOS ◽  
Eduardo CALDAS COSTA ◽  
Rhennan RODRIGUES BARBOSA ◽  
...  

Author(s):  
Lucas Eduardo Rodrigues Santos ◽  
André dos Santos Costa ◽  
Eduardo Caldas Costa ◽  
Vinicius Oliveira Damasceno ◽  
Zhaojing Chen ◽  
...  

The purpose of the study was to investigate the effects of passive recovery with self-selected time on affect, ratings of perceived exertion, and heart rate in self-selected interval exercises (SSIE). Fifteen older women (68.1 ± 3.8 years), weekly practitioners of functional activities participated in three SSIE with self-selected recovery time (SSRT) and one self-selected continuous exercise session, all at 24 min approximately. The SSIE had the following configurations: 1′/SSRT, 1.5′/SSRT, and 2′/SSRT. The results showed that at the beginning of stimulus heart rate in 1.5′/SSRT (107.9 ± 16.5) and 2′/SSRT (114.6 ± 17.1) were significantly greater (p < .05) compared with self-selected continuous exercise (102.8 ± 14.5). The ratings of perceived exertion in self-selected continuous exercise (2.4 ± 0.4; p < .05) were higher compared with SSIE in recovery. No significant differences were found in affect. The SSIE provided similar responses based on recoveries manipulations.


2017 ◽  
Vol 26 (1) ◽  
pp. 885-893
Author(s):  
Ji-Young Ahn ◽  
Jin-Seok Lee ◽  
Chang-Gyun Kim ◽  
Sung-Jin Yoon

2021 ◽  
pp. 1-23
Author(s):  
Kosar Valaei ◽  
Javad Mehrabani ◽  
Alexei Wong

Abstract L-citrulline (L-Cit) is a nonessential amino acid that stimulates nitric oxide (NO) production and improves exercise performance by reducing muscle damage indices; however, the direct benefits of L-Cit on antioxidant markers are unclear. The aim of this study was to examine antioxidant responses to high-intensity interval exercise following acute L-Cit supplementation. Nine young men (21 ± 1 years) participated in a double-blind crossover study in which they received 12 g of L-Cit and placebo (PL) an hour prior to high-intensity interval exercise on two occasions, separated by a seven-day washout period. Blood samples were obtained before (PRE), immediately after (IP), 10 (10P), and 30 min after exercise (30P) from the cubital vein using standard procedures. Serum concentrations of superoxide dismutase (SOD), glutathione peroxidase (GPx), catalase (CAT), and NO metabolites (NOx) were measured. The exercise protocol significantly elevated SOD (p = 0.01) and GPx (p = 0.048) from PRE to 10P in the L-Cit group with greater changes than the PL group. CAT concentrations increased IP (p = 0.014) and remained elevated at 10P (p = 0.03) and 30P (p = 0.015) in both the L-Cit and PL conditions. NOx concentrations increased IP (p = 0.05) in the L-Cit group with greater changes than PL group in PRE to IP, PRE to 10P, and PRE to 30P (p < 0.05). Our data indicate that L-Cit supplementation (single 12 g dose pre-exercise) induces improvements in antioxidant markers following a session of high-intensity interval exercise in young men.


2021 ◽  
Vol 7 (16) ◽  
pp. eabf2856
Author(s):  
Thibaux Van der Stede ◽  
Laura Blancquaert ◽  
Flore Stassen ◽  
Inge Everaert ◽  
Ruud Van Thienen ◽  
...  

Exercise training is a powerful strategy to prevent and combat cardiovascular and metabolic diseases, although the integrative nature of the training-induced adaptations is not completely understood. We show that chronic blockade of histamine H1/H2 receptors led to marked impairments of microvascular and mitochondrial adaptations to interval training in humans. Consequently, functional adaptations in exercise capacity, whole-body glycemic control, and vascular function were blunted. Furthermore, the sustained elevation of muscle perfusion after acute interval exercise was severely reduced when H1/H2 receptors were pharmaceutically blocked. Our work suggests that histamine H1/H2 receptors are important transducers of the integrative exercise training response in humans, potentially related to regulation of optimal post-exercise muscle perfusion. These findings add to our understanding of how skeletal muscle and the cardiovascular system adapt to exercise training, knowledge that will help us further unravel and develop the exercise-is-medicine concept.


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