BACKGROUND: Physical inactivity is often associated with positive energy balance and fat gain. OBJECTIVE: We aimed to assess whether energy intake in excess of requirement activates systemic inflammation and antioxidant defenses and accelerates muscle atrophy induced by inactivity. DESIGN: Nineteen healthy male volunteers were studied before and at the end of 5 wk of bed rest. Subjects were allowed to spontaneously adapt to decreased energy requirement (study A, n = 10) or were provided with an activity-matched diet (study B, n = 9). Groups with higher (HEB) or lower (LEB) energy balance were identified according to median values of inactivity-induced changes in fat mass (DeltaFM, assessed by bioelectrical impedance analysis). RESULTS: I...
International audienceCONTEXT/OBJECTIVE: The aim of this study was to evaluate the regulation of the...
licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that th...
Background: Bed rest (BR) reduces whole-body insulin-stimulated glucose disposal (GD) and alters mus...
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...
Context: The effects of energy-balanced bed rest on metabolic flexibility have not been thoroughly e...
The initial metabolic and molecular events that underpin disuse-induced skeletal muscle deconditioni...
Short (<10 days) periods of muscle disuse, often necessary for recovery from illness or injury, l...
BACKGROUND: Muscle inactivity and low energy intake commonly occur in persons with acute or chronic...
Short (<10 days) periods of muscle disuse, often necessary for recovery from illness or injury, lead...
Purpose: Microgravity leads to a decline of muscle power especially in the postural muscles of the l...
Objective: Muscle loss and metabolic changes occur with disuse [i.e. bed rest (BR)]. We hypothe...
International audienceAims/hypothesis Physical inactivity has broad implications forhuman disease in...
International audienceCONTEXT/OBJECTIVE: The aim of this study was to evaluate the regulation of the...
licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that th...
Background: Bed rest (BR) reduces whole-body insulin-stimulated glucose disposal (GD) and alters mus...
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...
Context: The effects of energy-balanced bed rest on metabolic flexibility have not been thoroughly e...
The initial metabolic and molecular events that underpin disuse-induced skeletal muscle deconditioni...
Short (<10 days) periods of muscle disuse, often necessary for recovery from illness or injury, l...
BACKGROUND: Muscle inactivity and low energy intake commonly occur in persons with acute or chronic...
Short (<10 days) periods of muscle disuse, often necessary for recovery from illness or injury, lead...
Purpose: Microgravity leads to a decline of muscle power especially in the postural muscles of the l...
Objective: Muscle loss and metabolic changes occur with disuse [i.e. bed rest (BR)]. We hypothe...
International audienceAims/hypothesis Physical inactivity has broad implications forhuman disease in...
International audienceCONTEXT/OBJECTIVE: The aim of this study was to evaluate the regulation of the...
licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that th...
Background: Bed rest (BR) reduces whole-body insulin-stimulated glucose disposal (GD) and alters mus...