Effects of head-down bed rest & microgravity on renal fluid excretion.
Peter Norsk, Niels Juel Christensen, D. Vorobiev, Yoshio Suzuki, C. Drummer, Martina Heer
Abstract
Peter Norsk, Niels Juel Christensen, D. Vorobiev, Yoshio Suzuki, C. Drummer, Martina Heer
Abstract
The significance of transverse gravity stress on fluid volume regulation in supine humans was studied on the D2 Spacelab mission, a Mir mission, and in a head-down tilt bed rest study. A new hypothesis is presented which states that on the ground, the transverse G-stress in supine or slightly head-down tilted humans has a more pronounced effect than anticipated on the interaction of central cardiovascular, endocrine, and renal variables. Also, total abolishment of the G-stress during space flight induces a more pronounced decrease in intravascular volume than the decrease induced by prolonged head-down bed rest, which results in stimulation of fluid retaining mechanisms.
OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The significance of transverse gravity stress on fluid volume regulation in supine humans was studied on the D2 Spacelab mission, a Mir mission, and in a head-down tilt bed rest study. A new hypothesis is presented which states that on the ground, the transverse G-stress in supine or slightly head-down tilted humans has a more pronounced effect than anticipated on the interaction of central cardiovascular, endocrine, and renal variables. Also, total abolishment of the G-stress during space flight induces a more pronounced decrease in intravascular volume than the decrease induced by prolonged head-down bed rest, which results in stimulation of fluid retaining mechanisms.
Key concepts: Head-Down Tilt, Supine position, Bed rest, Weightlessness, Tilt (camera), Head (geology), Spaceflight, Medicine