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Crewed Missions to Mars: Modeling the Impact of Astrophysical Charged Particles on Astronauts and Their Health

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arxiv 2208.00892 v2 pith:T7M5SZOR submitted 2022-08-01 physics.space-ph astro-ph.EP

Crewed Missions to Mars: Modeling the Impact of Astrophysical Charged Particles on Astronauts and Their Health

classification physics.space-ph astro-ph.EP
keywords radiationastronautshealthcrewedimpactmarsmissionsvarious
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The impact of exposure to astrophysical ionizing radiation on astronaut health is one of the main concerns in planning crewed missions to Mars. Astronauts will be exposed to energetic charged particles from Galactic and Solar origin for a prolonged period with little protection from a thin spacecraft shield in transit and from the rarefied Martian atmosphere when on the surface. Adverse impacts on astronaut health include, for example, Acute Radiation Syndrome, damage to the nervous system, and increased cancer risk. We rely on medical studies to assess the impact of enhanced radiation dose levels on various physiological systems and the overall health of astronauts. Using a combination of radiation measurements and numerical modeling with the GEANT4 package, we calculate the distribution of radiation dose in various human body organs for various expected scenarios simulated with a model human phantom. We suggest mitigation strategies, such as improved ways of shielding and dietary supplements, and make recommendations for the safety of astronauts in future crewed missions to Mars.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Stellar Activity, Exoplanet, Habitability, Planetary Atmospheres

    astro-ph.EP 2026-07 unverdicted novelty 2.0

    This is a review, not a new result: it consolidates stellar-evolution, atmospheric-escape, photochemistry, and magnetic-shielding literature for exoplanet habitability and biosignature interpretation.