Introduction: β-alanine (BAl) and NaHCO 3 (SB) ingestion may provide performance benefits by enhancing concentrations of their respective physiochemical buffer counterparts, muscle carnosine and blood bicarbonate, counteracting acidosis during intense exercise. This study examined the effect of BAl and SB co-supplementation as an ergogenic strategy during high-intensity exercise. Methods: Eight healthy males ingested either BAl (4.8 g day -1 for 4 weeks, increased to 6.4 g day -1 for 2 weeks) or placebo (Pl) (CaCO 3 ) for 6 weeks, in a crossover design (6-week washout between supplements). After each chronic supplementation period participants performed two trials, each consisting of two intense exercise tests performed over consecutive day...
The oral ingestion of beta-alanine, the rate-limiting precursor in carnosine synthesis, has been sho...
Muscle carnosine loading through chronic oral beta-alanine supplementation has been shown to be effe...
Purpose: Sodium bicarbonate (NaHCO3) ingestion may prevent exercise-induced perturbations in acid-ba...
Introduction β-alanine (BAl) and NaHCO3 (SB) ingestion may provide performance benefits by enhancing...
Introduction Intense exercise induced acidosis occurs from the accumulation of hydrogen ions as by-p...
Intense exercise induced acidosis occurs after accumulation of hydrogen ions as by-products of anaer...
PURPOSE: We examined the effect of β-alanine supplementation plus sodium bicarbonate on high-intensi...
Abstract We examined the isolated and combined effects of beta-alanine (BA) and sodium bicarbonate (...
This study aimed to investigate if combining beta alanine (BA) and sodium bicarbonate (NaHCO3) suppl...
We examined the isolated and combined effects of beta-alanine (BA) and sodium bicarbonate (SB) on h...
The effect of β-alanine and NaHCO3 co-ingestion on buffering capacity and exercise performance with ...
The Author(s) 2015. This article is published with open access at Springerlink.com Abstract Intramus...
β-alanine is a commonly used supplement within the realm of athletics. Although it is produced in th...
Purpose: The purpose of this study was to investigate the effects of 28 d of β-alanine supplementati...
INTRODUCTION We aimed to manipulate physiological determinants of severe exercise performance. We...
The oral ingestion of beta-alanine, the rate-limiting precursor in carnosine synthesis, has been sho...
Muscle carnosine loading through chronic oral beta-alanine supplementation has been shown to be effe...
Purpose: Sodium bicarbonate (NaHCO3) ingestion may prevent exercise-induced perturbations in acid-ba...
Introduction β-alanine (BAl) and NaHCO3 (SB) ingestion may provide performance benefits by enhancing...
Introduction Intense exercise induced acidosis occurs from the accumulation of hydrogen ions as by-p...
Intense exercise induced acidosis occurs after accumulation of hydrogen ions as by-products of anaer...
PURPOSE: We examined the effect of β-alanine supplementation plus sodium bicarbonate on high-intensi...
Abstract We examined the isolated and combined effects of beta-alanine (BA) and sodium bicarbonate (...
This study aimed to investigate if combining beta alanine (BA) and sodium bicarbonate (NaHCO3) suppl...
We examined the isolated and combined effects of beta-alanine (BA) and sodium bicarbonate (SB) on h...
The effect of β-alanine and NaHCO3 co-ingestion on buffering capacity and exercise performance with ...
The Author(s) 2015. This article is published with open access at Springerlink.com Abstract Intramus...
β-alanine is a commonly used supplement within the realm of athletics. Although it is produced in th...
Purpose: The purpose of this study was to investigate the effects of 28 d of β-alanine supplementati...
INTRODUCTION We aimed to manipulate physiological determinants of severe exercise performance. We...
The oral ingestion of beta-alanine, the rate-limiting precursor in carnosine synthesis, has been sho...
Muscle carnosine loading through chronic oral beta-alanine supplementation has been shown to be effe...
Purpose: Sodium bicarbonate (NaHCO3) ingestion may prevent exercise-induced perturbations in acid-ba...