Although various exercise regimens are commonly used as countermeasures to reduce the cardiovascular deconditioning induced by microgravity, the underlying mechanisms are not well understood. In this study we aimed to test whether lower limb resistance exercise with flywheel technology can prevent the fluid homeostasis alterations induced by 90-day head-down tilt bed-rest (HDT), and thus improve orthostatic tolerance. Total body water (TBW, measured by isotope dilution) and plasma volume (PV, calculated from the haemoglobin and the haematocrit) were measured in a control group (Co, n=9) and a countermeasure group (CM, n=9). Simultaneously, plasma atrial natriuretic peptide (ANP), renin (AR), and aldosterone (Aldo), as well as urinary anti-d...
Introduction: Alternatively using gradient lower-body negative pressure (LBNP) and ergometer exercis...
AbstractThe dose-response effects of exercise in reduced gravity on musculoskeletal health have not ...
: Head-down bed rest (HDBR) reproduces the cardiovascular effects of microgravity. We tested the hyp...
International audienceCardiovascular deconditioning after long duration spaceflight is especially ch...
Background Cardiovascular risk may be increased in astronauts after long term space flights based on...
Cardiovascular deconditioning after long duration spaceflight is especially challenging in women who...
Spaceflight is associated with enhanced inactivity, resulting in muscular and cardiovascular decondi...
Head-down-tilt bed rest (HDT) mimics the changes in hemodynamics and autonomic cardiovascular contro...
Integrated physiologic countermeasures are needed to maintain orthostatic tolerance after spacefligh...
Exposure to real (space flight) or simulated microgravity (e.g., head–down tilt bed rest) induces re...
Introduction: Orthostatic intolerance commonly occurs in astronauts returning to earth. Head-down t...
Abstract To understand fundamental mechanisms associated with post-flight orthostatic intolerance we...
Both chronic microgravity exposure and long-duration bed rest induce cardiac atrophy, which leads to...
Muscle atrophy and bone loss pose substantial problems for long-term space flight and in clinical im...
PURPOSE: Spaceflight impairs physical capacity. Here we assessed the protective effect of artificial...
Introduction: Alternatively using gradient lower-body negative pressure (LBNP) and ergometer exercis...
AbstractThe dose-response effects of exercise in reduced gravity on musculoskeletal health have not ...
: Head-down bed rest (HDBR) reproduces the cardiovascular effects of microgravity. We tested the hyp...
International audienceCardiovascular deconditioning after long duration spaceflight is especially ch...
Background Cardiovascular risk may be increased in astronauts after long term space flights based on...
Cardiovascular deconditioning after long duration spaceflight is especially challenging in women who...
Spaceflight is associated with enhanced inactivity, resulting in muscular and cardiovascular decondi...
Head-down-tilt bed rest (HDT) mimics the changes in hemodynamics and autonomic cardiovascular contro...
Integrated physiologic countermeasures are needed to maintain orthostatic tolerance after spacefligh...
Exposure to real (space flight) or simulated microgravity (e.g., head–down tilt bed rest) induces re...
Introduction: Orthostatic intolerance commonly occurs in astronauts returning to earth. Head-down t...
Abstract To understand fundamental mechanisms associated with post-flight orthostatic intolerance we...
Both chronic microgravity exposure and long-duration bed rest induce cardiac atrophy, which leads to...
Muscle atrophy and bone loss pose substantial problems for long-term space flight and in clinical im...
PURPOSE: Spaceflight impairs physical capacity. Here we assessed the protective effect of artificial...
Introduction: Alternatively using gradient lower-body negative pressure (LBNP) and ergometer exercis...
AbstractThe dose-response effects of exercise in reduced gravity on musculoskeletal health have not ...
: Head-down bed rest (HDBR) reproduces the cardiovascular effects of microgravity. We tested the hyp...