ISS Summary of Research - Human Research: Integrated Physiology and Nutrition
Clinical Nutrition
Assessment
Smith SM, Zwart SR, Heer MA, Hudson EK,
Shackelford LC, Morgan JL. Men and women in
space: Bone loss and kidney stone risk after
long-duration spaceflight. Journal of Bone and
Mineral Research. July 2014;29(7):1639-1645.
doi: 10.1002/jbmr.2185.
NASA
Clinical Nutrition
Assessment
Smith SM, Heer MA, Shackelford LC, Sibonga J,
Ploutz-Snyder LL, Zwart SR. Benefits for bone
from resistance exercise and nutrition in long-
duration spaceflight: Evidence from
biochemistry and densitometry. Journal of Bone
and Mineral Research. September
2012;27(9):1896-1906. doi: 10.1002/jbmr.1647.
NASA
Clinical Nutrition
Assessment
Smith SM, Zwart SR. Nutrition issues for space
exploration. Acta Astronautica. 2008;63: 609-
- doi: 10.1016/j.actaastro.2008.04.010.
NASA
Clinical Nutrition
Assessment
Hall PS. Past and current practice in space
nutrition. Cleveland, OH: Bone Loss During
Spaceflight: Etiology, Countermeasures, and
Implications for Bone Health on Earth. 2007.
NASA
Clinical Nutrition
Assessment
Smith SM, Zwart SR, Block G, Rice BL, Davis-
Street JE. The nutritional status of astronauts is
altered after long-term spaceflight aboard the
International Space Station. Journal of Nutrition.
2005;135(3):437-443.
NASA
VIIP Chylack Jr LT, Feiveson AH, Peterson LE, et al.
NASCA Report 2: Longitudinal study of
relationship of exposure to space radiation and
risk of lens opacity. Radiation Research.
2012;178(1):25-32. doi: 10.1667/RR2876.1.
NASA
VIIP Kramer LA, Sargsyan AE, Hasan KM, Polk JD,
Hamilton DR. Orbital and intracranial effects of
microgravity: Findings at 3-T MR imaging.
Radiology. 2012;263:819-827. doi:
10.1148/radiol.12111986.
NASA
VIIP Zwart SR, Gibson CR, Mader TH, et al. Vision
changes after spaceflight are related to
alterations in folate- and vitamin B-12-
dependent one-carbon metabolism. Journal of
Nutrition. March 1, 2012;142(3):427-431. doi:
10.3945/jn.111.154245.