Astronauts experience sensorimotor disturbances during the initial exposure to microgravity and during the re-adapation phase following a return to an earth-gravitational environment. These alterations may disrupt the ability to perform mission critical functional tasks requiring ambulation, manual control and gaze stability. Interestingly, astronauts who return from space flight show substantial differences in their abilities to readapt to a gravitational environment. The ability to predict the manner and degree to which individual astronauts would be affected would improve the effectiveness of countermeasure training programs designed to enhance sensorimotor adaptability. For such an approach to succeed, we must develop predictive measure...
One of the greatest challenges for sensorimotor adaptation to the spaceflight environment is the lar...
Two part-task preflight adaptation trainers (PATs) are being developed at the NASA Johnson Space Cen...
Astronauts experience Postflight disturbances in postural and locomotor control due to sensorimotor ...
Astronauts experience sensorimotor disturbances during their initial exposure to microgravity and du...
Astronauts experience sensorimotor disturbances during their initial exposure to microgravity and du...
Astronauts experience sensorimotor disturbances during the initial exposure to microgravity and duri...
Spaceflight drives adaptive changes in healthy individuals appropriate for sensorimotor function in ...
Astronauts experience sensorimotor disturbances during the initial exposure to microgravity and duri...
Astronauts returning from space flight show significant inter-subject variations in their abilities ...
Locomotion requires integration of visual, vestibular, and somatosensory information to produce the ...
Exposure to the microgravity environment during spaceflight missions impacts crewmembers' sensorimot...
Exposure to the microgravity environment during a spaceflight mission impacts crewmembers' sensorimo...
Exposure to the microgravity conditions of space flight induces adaptive modification in sensorimoto...
Introduction: During space exploration missions astronauts are exposed to a series of novel sensorim...
In consideration of the health and performance of crewmembers during flight and postflight, we are c...
One of the greatest challenges for sensorimotor adaptation to the spaceflight environment is the lar...
Two part-task preflight adaptation trainers (PATs) are being developed at the NASA Johnson Space Cen...
Astronauts experience Postflight disturbances in postural and locomotor control due to sensorimotor ...
Astronauts experience sensorimotor disturbances during their initial exposure to microgravity and du...
Astronauts experience sensorimotor disturbances during their initial exposure to microgravity and du...
Astronauts experience sensorimotor disturbances during the initial exposure to microgravity and duri...
Spaceflight drives adaptive changes in healthy individuals appropriate for sensorimotor function in ...
Astronauts experience sensorimotor disturbances during the initial exposure to microgravity and duri...
Astronauts returning from space flight show significant inter-subject variations in their abilities ...
Locomotion requires integration of visual, vestibular, and somatosensory information to produce the ...
Exposure to the microgravity environment during spaceflight missions impacts crewmembers' sensorimot...
Exposure to the microgravity environment during a spaceflight mission impacts crewmembers' sensorimo...
Exposure to the microgravity conditions of space flight induces adaptive modification in sensorimoto...
Introduction: During space exploration missions astronauts are exposed to a series of novel sensorim...
In consideration of the health and performance of crewmembers during flight and postflight, we are c...
One of the greatest challenges for sensorimotor adaptation to the spaceflight environment is the lar...
Two part-task preflight adaptation trainers (PATs) are being developed at the NASA Johnson Space Cen...
Astronauts experience Postflight disturbances in postural and locomotor control due to sensorimotor ...