Global ETD Search

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Showing 1 to 3 of 3 for “"Long-term spaceflight"”.

  1. MICROGRAVITY-INDUCED ALTERATIONS IN THE BRAIN-TO-BONE AXIS: IMPLICATIONS FOR BONE LOSS AND COUNTERMEASURE DEVELOPMENT IN LONG-TERM SPACEFLIGHT.

    … functioning upon arrival. Even with these countermeasures and intensive postflight reconditioning, full recovery is a lengthy process that often leaves scars, despite some studies indicating that it remains incomplete. Muscle atrophy and loss of strength may result from neurophysiological …

    trento Repository record for MICROGRAVITY-INDUCED ALTERATIONS IN THE BRAIN-TO-BONE AXIS: IMPLICATIONS FOR BONE LOSS AND COUNTERMEASURE DEVELOPMENT IN LONG-TERM SPACEFLIGHT. (opens in a new tab)

  2. Stress in a Microgravity Bioreactor

    … loading of biological tissue. Because of this, long-term spaceflight has led to many health concerns, including osteoporosis and muscle atrophy. Space travel is rare and costly, making this research difficult to conduct, however; techniques to simulate microgravity on Earth can be achieved by …

    temple Repository record for Stress in a Microgravity Bioreactor (opens in a new tab)

  3. Effect of space conditions on neuronal plasticity and connectivity

    … to human health risks that could occur during spaceflight was raised. Up to now, a large number of experiments has been performed to determine the biological effects of space conditions on human health, in order to develop appropriate countermeasures. However, extensive investigations still …

    ghent Repository record for Effect of space conditions on neuronal plasticity and connectivity (opens in a new tab)