Exercise in space: the European Space Agency approach to in-flight exercise countermeasures for long-duration missions on ISS
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Joachim Mester | Jonathan Scott | Inessa Kozlovskaya | Volker Damann | Filippo Castrucci | Nora Petersen | Patrick Jaekel | Andre Rosenberger | Tobias Weber | Gunda Lambrecht | Lori Ploutz-Snyder | I. Kozlovskaya | L. Ploutz-Snyder | F. Castrucci | J. Mester | Jonathan Scott | Nora Petersen | G. Lambrecht | T. Weber | V. Damann | Patrick Jaekel | A. Rosenberger | Gunda Lambrecht
[1] Alan H Feiveson,et al. Peak exercise oxygen uptake during and following long-duration spaceflight. , 2014, Journal of applied physiology.
[2] Deborah W Korth,et al. Exercise Countermeasure Hardware Evolution on ISS: The First Decade. , 2015, Aerospace medicine and human performance.
[3] Joachim Mester,et al. Reliability of a new test battery for fitness assessment of the European Astronaut corps , 2015, Extreme Physiology & Medicine.
[4] Sung Gyoo Park. Medicine and Science in Sports and Exercise , 1981 .
[5] Scott M Smith,et al. Benefits for bone from resistance exercise and nutrition in long‐duration spaceflight: Evidence from biochemistry and densitometry , 2012, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[6] I B Kozlovskaya,et al. Countermeasure of the negative effects of weightlessness on physical systems in long-term space flights. , 1995, Acta astronautica.
[7] John K De Witt,et al. Bungee force level, stiffness, and variation during treadmill locomotion in simulated microgravity. , 2014, Aviation, space, and environmental medicine.
[8] John K De Witt,et al. Ground reaction forces during treadmill running in microgravity. , 2014, Journal of biomechanics.
[9] Hiroshi Ohshima,et al. Physical Training for Long-Duration Spaceflight. , 2015, Aerospace medicine and human performance.
[10] Ge Tancred,et al. Guidelines for Exercise Testing and Prescription , 1991 .
[11] Anatoly I. Grigoriev,et al. The Russian experience in medical care and health maintenance of the International Space Station crews , 2007 .
[12] KYLE J. HACKNEY,et al. The Astronaut-Athlete: Optimizing Human Performance in Space , 2015, Journal of strength and conditioning research.
[13] Mary L. Wear,et al. Human Response to Space Flight , 2008 .
[14] Mihriban Whitmore,et al. NASA-STD-3001, Space Flight Human-System Standard and the Human Integration Design Handbook , 2012 .
[15] Danny A Riley,et al. Exercise in space: human skeletal muscle after 6 months aboard the International Space Station. , 2009, Journal of applied physiology.
[16] C. Mukai,et al. Acclimation during space flight: effects on human physiology , 2009, Canadian Medical Association Journal.
[17] R. Fitts,et al. Physiology of a microgravity environment invited review: microgravity and skeletal muscle. , 2000, Journal of applied physiology.
[18] N. C. Sharp,et al. Guidelines for Exercise Testing and Prescription , 1993 .
[19] Stanley R Mohler,et al. Weight loss in humans in space. , 2011, Aviation, space, and environmental medicine.
[20] Linda H Loerch,et al. Exercise Countermeasures on ISS: Summary and Future Directions. , 2015, Aerospace medicine and human performance.
[21] V. Carr. PRINCIPLES OF CLINICAL MEDICINE FOR SPACE FLIGHT , 2008 .
[22] E V Fomina,et al. Russian Countermeasure Systems for Adverse Effects of Microgravity on Long-Duration ISS Flights. , 2015, Aerospace medicine and human performance.
[23] T. P. Stein. Weight, muscle and bone loss during space flight: another perspective , 2012, European Journal of Applied Physiology.
[24] David Hoellen,et al. Functional Fitness Testing Results Following Long-Duration ISS Missions. , 2015, Aerospace medicine and human performance.