Context: The effects of energy-balanced bed rest on metabolic flexibility have not been thoroughly examined.Objective: We investigated the effects of 21 days of bed rest, with and without whey protein supplementation, on metabolic flexibility while maintaining energy balance. We hypothesized that protein supplementation mitigates metabolic inflexibility by preventing muscle atrophy.Design and Setting: Randomized crossover longitudinal study conducted at the German Aerospace Center, Cologne, Germany.Participants and Interventions: Ten healthy men were randomly assigned to dietary counter-measure or isocaloric control diet during a 21-day bed rest.Outcome Measures: Before and at the end of the bed rest, metabolic flexibility was assessed duri...
Short (<10 days) periods of muscle disuse, often necessary for recovery from illness or injury, l...
International audienceMetabolic flexibility is defined as the ability to adapt substrate oxidation r...
Objective: An impaired fatty acid handling in skeletal muscle may be involved in the development of ...
Context: The effects of energy-balanced bed rest on metabolic flexibility have not been thoroughly e...
Background: Physical inactivity is often associated with positive energy balance and fat gain. Objec...
Background: Physical inactivity is often associated with positive energy balance and fat gain. Objec...
BACKGROUND: Physical inactivity is often associated with positive energy balance and fat gain. OBJEC...
The initial metabolic and molecular events that underpin disuse-induced skeletal muscle deconditioni...
BACKGROUND: Physical inactivity is often associated with positive energy balance and fat gain. OBJE...
Background & aims: It is unclear if dietary adjustments to maintain energy balance during reduced ph...
Physical inactivity is associated with alteration of normal physiologic processes leading to muscle ...
Background: Bed rest (BR) reduces whole-body insulin-stimulated glucose disposal (GD) and alters mus...
Short (<10 days) periods of muscle disuse, often necessary for recovery from illness or injury, l...
International audienceMetabolic flexibility is defined as the ability to adapt substrate oxidation r...
Objective: An impaired fatty acid handling in skeletal muscle may be involved in the development of ...
Context: The effects of energy-balanced bed rest on metabolic flexibility have not been thoroughly e...
Background: Physical inactivity is often associated with positive energy balance and fat gain. Objec...
Background: Physical inactivity is often associated with positive energy balance and fat gain. Objec...
BACKGROUND: Physical inactivity is often associated with positive energy balance and fat gain. OBJEC...
The initial metabolic and molecular events that underpin disuse-induced skeletal muscle deconditioni...
BACKGROUND: Physical inactivity is often associated with positive energy balance and fat gain. OBJE...
Background & aims: It is unclear if dietary adjustments to maintain energy balance during reduced ph...
Physical inactivity is associated with alteration of normal physiologic processes leading to muscle ...
Background: Bed rest (BR) reduces whole-body insulin-stimulated glucose disposal (GD) and alters mus...
Short (<10 days) periods of muscle disuse, often necessary for recovery from illness or injury, l...
International audienceMetabolic flexibility is defined as the ability to adapt substrate oxidation r...
Objective: An impaired fatty acid handling in skeletal muscle may be involved in the development of ...