Resting energy expenditure (REE) is determined mainly by fat-free mass (FFM). FFM depends also on daily physical activity. REE normally decreases with increased age due to decreases in FFM and physical activity. Measuring REE is essential for estimating total energy expenditure. As such, there are a number of different equations in use to predict REE. In recent years, an increasing number of older adults continue to participate in competitive sports creating the surge of master athletes. It is currently unclear if these equations developed primarily for the general population are also valid for highly active, older master athletes. Therefore, we tested the validity of six commonly-used equations for predicting REE in master athletes...
Having valid and reliable resting energy expenditure (REE) estimations is crucial to establish reach...
Having valid and reliable resting energy expenditure (REE) estimations is crucial to establish reac...
Devrim Lanpir, Asli/0000-0002-4267-9950WOS: 000460805800004Background/aims: Only a few studies deter...
Resting energy expenditure (REE) is determined mainly by fat-free mass (FFM). FFM depends also on da...
Resting energy expenditure (REE) is determined mainly by fat-free mass (FFM). FFM depends also on da...
Resting energy expenditure (REE) is expected to be higher in athletes because of their relatively hi...
INTRODUCTION: Resting energy expenditure (REE) is expected to be higher in athletes because of their...
Resting energy expenditure (REE) is often estimated in athletes using equations developed from the g...
Abstract: INTRODUCTION: Resting energy expenditure (REE) is expected to be higher in athletes becaus...
Introduction: Resting energy expenditure (REE) is expected to be higher in athletes because of their...
Predictive resting metabolic rate (RMR) equations are widely used to determine athletes’ resting ene...
Background and aims: The measurement of resting energy expenditure (REE) is important to assess indi...
Prediction of energy expenditure allows for calculation of appropriate energy requirements, which is...
Introduction: It is recommended to use the fat free mass (FFM) based Cunningham equation to accurate...
Indirect calorimetry (IC) is considered the reference method to determine the resting energy expend...
Having valid and reliable resting energy expenditure (REE) estimations is crucial to establish reach...
Having valid and reliable resting energy expenditure (REE) estimations is crucial to establish reac...
Devrim Lanpir, Asli/0000-0002-4267-9950WOS: 000460805800004Background/aims: Only a few studies deter...
Resting energy expenditure (REE) is determined mainly by fat-free mass (FFM). FFM depends also on da...
Resting energy expenditure (REE) is determined mainly by fat-free mass (FFM). FFM depends also on da...
Resting energy expenditure (REE) is expected to be higher in athletes because of their relatively hi...
INTRODUCTION: Resting energy expenditure (REE) is expected to be higher in athletes because of their...
Resting energy expenditure (REE) is often estimated in athletes using equations developed from the g...
Abstract: INTRODUCTION: Resting energy expenditure (REE) is expected to be higher in athletes becaus...
Introduction: Resting energy expenditure (REE) is expected to be higher in athletes because of their...
Predictive resting metabolic rate (RMR) equations are widely used to determine athletes’ resting ene...
Background and aims: The measurement of resting energy expenditure (REE) is important to assess indi...
Prediction of energy expenditure allows for calculation of appropriate energy requirements, which is...
Introduction: It is recommended to use the fat free mass (FFM) based Cunningham equation to accurate...
Indirect calorimetry (IC) is considered the reference method to determine the resting energy expend...
Having valid and reliable resting energy expenditure (REE) estimations is crucial to establish reach...
Having valid and reliable resting energy expenditure (REE) estimations is crucial to establish reac...
Devrim Lanpir, Asli/0000-0002-4267-9950WOS: 000460805800004Background/aims: Only a few studies deter...