Physiologic changes in microgravity may lead to unpredictable effects of spinal anesthesia. [PDF]
Wagner S, Turnock M.
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Neurophysiological markers of cognitive workload under altered gravity conditions using a gamified dual-task paradigm. [PDF]
Badalì C +4 more
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Editorial: Impact of vestibular dysfunction studies on space flight health challenges. [PDF]
Lackner JR, Denise P, Wood SJ.
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Prolonged Cell Encapsulation and Gravity-independent Filamented Light Biofabrication of Muscle Constructs. [PDF]
Winkelbauer M +13 more
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Butterfly Clap-Fling Flight Mechanisms Observed by Schlieren Imaging for the Design of Bio-Inspired Micro Air Vehicles. [PDF]
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Outdoor Microphone Range Tests and Spectral Analysis of UAV Acoustic Signatures for Array Development. [PDF]
Jekateryńczuk G, Piotrowski Z.
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Parabolic Flight: Loss of Sense of Orientation
Science, 1979On the earth, or in level flight, a blindfolded subject being rotated at constant velocity about his recumbent long body axis experiences illusory orbital motion of his body in the opposite direction. By contrast, during comparable rotation in the free-fall phase of parabolic flight, no body motion is perceived and all sense of external orientation may
J R, Lackner, A, Graybiel
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Caloric nystagmus decay during parabolic flight
Acta Oto-Laryngologica, 1990In human subjects the caloric test was conducted during parabolic flight. The slow-phase velocity (SPV) of the caloric nystagmus increased proportionally to the value of the g-force. The nystagmus disappeared in microgravity, after an exponential SPV decay that showed a specific time constant (Tc).
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A nonlinear controller for parabolic flight
Proceedings of 32nd IEEE Conference on Decision and Control, 2002The paper deals with the design of a nonlinear controller for asymptotic tracking of a given parabolic trajectory in flight dynamics. The problem here addressed is related to the possibility of maintaining microgravity conditions. Simulation results show the effectiveness of the proposed controller. >
D'Antonio L., MONACO, Salvatore
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