Effects of Microgravity on Human Physiology

Влияние микрогравитации на физиологию человека
Kunihiko Tanaka, Satoshi Iwase, Naoki Nishimura, Tadaaki Mano
2020-02-05

cardiovascular deconditioninghuman physiologymicrogravityshort-arm centrifugespaceflight-associated neuro-ocular syndrome
The effects of microgravity conditions on neurovestibular, cardiovascular, musculoskeletal, bone metabolic, and hemato-immunological systems are described. We discuss “space motion sickness,” sensorimotor coordination disorders, cardiovascular deconditioning, muscular atrophy, bone loss, and anemia/immunodeficiency, including their causes and mechanisms. In addition to the previously described deconditioning, new problems related to microgravity, spaceflight-associated neuro-ocular syndrome (SANS), and structural changes of the brain by magnetic resonance imaging (MRI) are also explained. Our proposed countermeasure, artificial gravity produced by a short-arm centrifuge with ergometric exercise, is also described in detail, and we confirmed this system to be effective in preventing the abovementioned deconditioning caused by microgravity exposure.
1
Artificial gravity generated by a short-arm centrifuge combined with ergometric exercise was effective in preventing microgravity-induced physiological deconditioning.
2
Microgravity affects neurovestibular, cardiovascular, musculoskeletal, bone metabolic, and hemato-immunological systems.
3
Microgravity-induced problems include space motion sickness, sensorimotor coordination disorders, cardiovascular deconditioning, muscle atrophy, bone loss, anemia, and immunodeficiency.
4
Spaceflight-associated neuro-ocular syndrome and structural brain changes detected by MRI represent additional microgravity-related concerns.

Human physiological systems exposed to microgravity during spaceflight

Microgravity-induced neurovestibular, cardiovascular, musculoskeletal, bone-metabolic, hemato-immunological, neuro-ocular, and brain structural changes, including deconditioning mechanisms and prevention by artificial gravity with ergometric exercise

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2020-02-05
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Kunihiko Tanaka
Satoshi Iwase
Naoki Nishimura
Tadaaki Mano
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