Literature DB >> 26893033

Long-duration bed rest as an analog to microgravity.

Alan R Hargens1, Laurence Vico2.   

Abstract

Long-duration bed rest is widely employed to simulate the effects of microgravity on various physiological systems, especially for studies of bone, muscle, and the cardiovascular system. This microgravity analog is also extensively used to develop and test countermeasures to microgravity-altered adaptations to Earth gravity. Initial investigations of bone loss used horizontal bed rest with the view that this model represented the closest approximation to inactivity and minimization of hydrostatic effects, but all Earth-based analogs must contend with the constant force of gravity by adjustment of the G vector. Later concerns about the lack of similarity between headward fluid shifts in space and those with horizontal bed rest encouraged the use of 6 degree head-down tilt (HDT) bed rest as pioneered by Russian investigators. Headward fluid shifts in space may redistribute bone from the legs to the head. At present, HDT bed rest with normal volunteers is the most common analog for microgravity simulation and to test countermeasures for bone loss, muscle and cardiac atrophy, orthostatic intolerance, and reduced muscle strength/exercise capacity. Also, current physiologic countermeasures are focused on long-duration missions such as Mars, so in this review we emphasize HDT bed rest studies with durations of 30 days and longer. However, recent results suggest that the HDT bed rest analog is less representative as an analog for other important physiological problems of long-duration space flight such as fluid shifts, spinal dysfunction and radiation hazards.
Copyright © 2016 the American Physiological Society.

Entities:  

Keywords:  bed rest; bone; muscle; simulated microgravity; space flight

Mesh:

Year:  2016        PMID: 26893033     DOI: 10.1152/japplphysiol.00935.2015

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  74 in total

Review 1.  Adaptation to microgravity, deconditioning, and countermeasures.

Authors:  Kunihiko Tanaka; Naoki Nishimura; Yasuaki Kawai
Journal:  J Physiol Sci       Date:  2016-12-20       Impact factor: 2.781

2.  Excretion of Zinc and Copper Increases in Men during 3 Weeks of Bed Rest, with or without Artificial Gravity.

Authors:  Hayley N Heacox; Patricia L Gillman; Sara R Zwart; Scott M Smith
Journal:  J Nutr       Date:  2017-05-10       Impact factor: 4.798

3.  Altered cerebral perfusion in response to chronic mild hypercapnia and head-down tilt Bed rest as an analog for Spaceflight.

Authors:  Donna R Roberts; Heather R Collins; Jessica K Lee; James A Taylor; Matthew Turner; Greg Zaharchuk; Max Wintermark; Michael U Antonucci; Edwin R Mulder; Darius A Gerlach; Davud Asemani; Heather R McGregor; Rachael D Seidler
Journal:  Neuroradiology       Date:  2021-02-15       Impact factor: 2.804

Review 4.  Joint Cartilage in Long-Duration Spaceflight.

Authors:  Bergita Ganse; Magali Cucchiarini; Henning Madry
Journal:  Biomedicines       Date:  2022-06-08

Review 5.  Skeletal changes during and after spaceflight.

Authors:  Laurence Vico; Alan Hargens
Journal:  Nat Rev Rheumatol       Date:  2018-03-21       Impact factor: 20.543

6.  Icariin prevents bone loss by inhibiting bone resorption and stabilizing bone biological apatite in a hindlimb suspension rodent model.

Authors:  Jin-Peng He; Xiu Feng; Ju-Fang Wang; Wen-Gui Shi; He Li; Sergei Danilchenko; Aleksei Kalinkevich; Mykhailo Zhovner
Journal:  Acta Pharmacol Sin       Date:  2018-06-11       Impact factor: 6.150

7.  Treadmill exercise within lower body negative pressure protects leg lean tissue mass and extensor strength and endurance during bed rest.

Authors:  Suzanne M Schneider; Stuart M C Lee; Alan H Feiveson; Donald E Watenpaugh; Brandon R Macias; Alan R Hargens
Journal:  Physiol Rep       Date:  2016-08

8.  Intervertebral Disc Swelling Demonstrated by 3D and Water Content Magnetic Resonance Analyses after a 3-Day Dry Immersion Simulating Microgravity.

Authors:  Loïc Treffel; Karen Mkhitaryan; Stéphane Gellee; Guillemette Gauquelin-Koch; Claude Gharib; Stéphane Blanc; Catherine Millet
Journal:  Front Physiol       Date:  2016-12-05       Impact factor: 4.566

Review 9.  Spinal Health during Unloading and Reloading Associated with Spaceflight.

Authors:  David A Green; Jonathan P R Scott
Journal:  Front Physiol       Date:  2018-01-18       Impact factor: 4.566

10.  Effects of Spaceflight Stressors on Brain Volume, Microstructure, and Intracranial Fluid Distribution.

Authors:  Jessica K Lee; Vincent Koppelmans; Ofer Pasternak; Nichole E Beltran; Igor S Kofman; Yiri E De Dios; Edwin R Mulder; Ajitkumar P Mulavara; Jacob J Bloomberg; Rachael D Seidler
Journal:  Cereb Cortex Commun       Date:  2021-03-30
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