Neurovestibular considerations for sub-orbital space flight: A framework for future investigation.
暂无分享,去创建一个
[1] William H Paloski,et al. Posture, locomotion, spatial orientation, and motion sickness as a function of space flight , 1998, Brain Research Reviews.
[2] I Kato,et al. Vertical optokinetic nystagmus in normal individuals. , 1996, Acta oto-laryngologica. Supplementum.
[3] I P Howard,et al. Human gaze instability during brief exposure to reduced gravity. , 1994, Journal of vestibular research : equilibrium & orientation.
[4] H. Deubel. Is saccadic adaptation context-specific? , 1995 .
[5] Mark Shelhamer,et al. The dynamics of parabolic flight: flight characteristics and passenger percepts. , 2008, Acta astronautica.
[6] M. Reschke,et al. Neuroscience in space , 2008 .
[7] Mark Shelhamer,et al. Vertical skew due to changes in gravitoinertial force: a possible consequence of otolith asymmetry. , 2006, Journal of vestibular research : equilibrium & orientation.
[8] J T Marcus,et al. Vestibulo-ocular responses in man to +Gz hypergravity. , 1990, Aviation, space, and environmental medicine.
[9] Denis Pélisson,et al. Long-lasting modifications of saccadic eye movements following adaptation induced in the double-step target paradigm. , 2005, Learning & memory.
[10] Mark Shelhamer,et al. Context-specific adaptation of saccade gain in parabolic flight. , 2002, Journal of vestibular research : equilibrium & orientation.
[11] S. Furuya,et al. Effective utilization of gravity during arm downswing in keystrokes by expert pianists , 2009, Neuroscience.
[12] D G Watt,et al. Pointing at memorized targets during prolonged microgravity. , 1997, Aviation, space, and environmental medicine.
[13] B. Yates,et al. Physiological basis and pharmacology of motion sickness: an update , 1998, Brain Research Bulletin.
[14] M F Reschke,et al. Effects of body orientation and rotation axis on pitch visual-vestibular interaction. , 1999, Journal of vestibular research : equilibrium & orientation.
[15] Kikuro Fukushima,et al. Directional asymmetry in vertical smooth-pursuit and cancellation of the vertical vestibulo-ocular reflex in juvenile monkeys , 2007, Experimental Brain Research.
[16] Otmar Bock,et al. Isometric force production during changed-Gz episodes of parabolic flight , 2007, European Journal of Applied Physiology.
[17] D E Angelaki,et al. Differential processing of semicircular canal signals in the vestibulo- ocular reflex , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[18] D. Zee,et al. Adaptation of the vestibulo-ocular reflex with the head in different orientations and positions relative to the axis of body rotation. , 1993, Journal of vestibular research : equilibrium & orientation.
[19] Richard F. Lewis,et al. Vergence-dependent adaptation of the vestibulo-ocular reflex , 2003, Experimental Brain Research.
[20] Faisal Karmali. Vertical eye misalignments during pitch rotation and vertical translation: Evidence for bilateral asymmetries and plasticity in the otolith -ocular reflex , 2008 .
[21] B. Yates,et al. Post-spaceflight orthostatic intolerance: possible relationship to microgravity-induced plasticity in the vestibular system , 1998, Brain Research Reviews.
[22] A. D. Beuzekom,et al. Comparison of Tilt Estimates Based on Line Settings, Saccadic Pointing, and Verbal Reports , 1999 .
[23] S G Diamond,et al. The effect of space missions on gravity-responsive torsional eye movements. , 1998, Journal of vestibular research : equilibrium & orientation.
[24] Charles M. Oman,et al. Human Visual Orientation in Weightlessness , 2003 .
[25] H Misslisch,et al. Rotational kinematics of the human vestibuloocular reflex. II. Velocity steps. , 1994, Journal of neurophysiology.
[26] Scott J. Wood,et al. Spatial orientation and balance control changes induced by altered gravitoinertial force vectors , 2001, Experimental Brain Research.
[27] M. F. Reschke,et al. Neurosensory and sensory-motor functions , 1996 .
[28] C. Oman,et al. M.I.T./Canadian vestibular experiments on the Spacelab-1 mission: 4. Space motion sickness: symptoms, stimuli, and predictability , 2004, Experimental Brain Research.
[29] M F Reschke,et al. Vestibular plasticity following orbital spaceflight: recovery from postflight postural instability. , 1995, Acta oto-laryngologica. Supplementum.
[30] M. O’Brien. “Posture” , 1979 .
[31] S G Diamond,et al. A predictive test for space motion sickness. , 1993, Journal of vestibular research : equilibrium & orientation.
[32] V V Polyakov,et al. Modifications of spontaneous oculomotor activity in microgravitational conditions. , 1991, Acta astronautica.
[33] J. V. Van Gisbergen,et al. Comparison of tilt estimates based on line settings, saccadic pointing, and verbal reports. , 1999, Annals of the New York Academy of Sciences.
[34] T Haslwanter,et al. Three-dimensional vector analysis of the human vestibuloocular reflex in response to high-acceleration head rotations. II. responses in subjects with unilateral vestibular loss and selective semicircular canal occlusion. , 1996, Journal of neurophysiology.
[35] S. I. Perlmutter,et al. Simultaneous opposing adaptive changes in cat vestibulo-ocular reflex direction for two body orientations , 1987, Experimental Brain Research.
[36] R. Baloh,et al. Gravity and the vertical vestibulo-ocular reflex , 2004, Experimental Brain Research.
[37] A. H. Clarke,et al. Using high frame rate CMOS sensors for three-dimensional eye tracking , 2002, Behavior research methods, instruments, & computers : a journal of the Psychonomic Society, Inc.
[38] B Fowler,et al. Human sensorimotor coordination during spaceflight: an analysis of pointing and tracking responses during the "Neurolab" Space Shuttle mission. , 2001, Aviation, space, and environmental medicine.
[39] J J Bloomberg,et al. Space Flight and Neurovestibular Adaptation , 1994, Journal of clinical pharmacology.
[40] R. Jell,et al. Modification of vertical OKN and vertical OKAN asymmetry in humans during parabolic flight. , 1997, Journal of vestibular research : equilibrium & orientation.
[41] A Berthoz,et al. Gaze control in microgravity. 1. Saccades, pursuit, eye-head coordination. , 1993, Journal of vestibular research : equilibrium & orientation.
[42] Charles M. Oman,et al. Space motion sickness monitoring experiment - Spacelab 1 , 1984 .
[43] M F Reschke,et al. Disruption of postural readaptation by inertial stimuli following space flight. , 1999, Journal of vestibular research : equilibrium & orientation.
[44] J. Bloomberg,et al. Neuromuscular activation patterns during treadmill walking after space flight , 2006, Experimental Brain Research.
[45] M F Reschke,et al. Effects of eccentric rotation on the human pitch vestibulo-ocular reflex , 2009, Acta oto-laryngologica.
[46] S Mori,et al. Shift in arm-pointing movements during gravity changes produced by aircraft parabolic flight. , 1999, Uchu Seibutsu Kagaku.
[47] K E Popov,et al. Changes of posture during transient perturbations in microgravity. , 1985, Aviation, space, and environmental medicine.
[48] H. Collewijn,et al. Binocular co‐ordination of human vertical saccadic eye movements. , 1988, The Journal of physiology.
[49] Bernd Lorenz,et al. Impairments of manual tracking performance during spaceflight are associated with specific effects of microgravity on visuomotor transformations , 2003, Ergonomics.
[50] L R Young,et al. Spatial orientation in weightlessness and readaptation to earth's gravity. , 1984, Science.
[51] C. Oman,et al. Vestibulo-ocular response of human subjects seated in a pivoting support system during 3 Gz centrifuge stimulation. , 1995, Journal of vestibular research : equilibrium & orientation.
[52] D. Robinson,et al. Context-specific adaptation of the gain of the vestibulo-ocular reflex in humans. , 1992, Journal of vestibular research : equilibrium & orientation.
[53] Mark Shelhamer,et al. Context-specific adaptation and its significance for neurovestibular problems of space flight. , 2003, Journal of vestibular research : equilibrium & orientation.
[54] W. Thornton,et al. Clinical characterization and etiology of space motion sickness. , 1987, Aviation, space, and environmental medicine.
[55] A. Berthoz,et al. Modifications of gain asymmetry and beating field of vertical optokinetic nystagmus in microgravity , 1986, Neuroscience Letters.
[56] J J Bloomberg,et al. Locomotor head-trunk coordination strategies following space flight. , 1997, Journal of Vestibular Research-Equilibrium & Orientation.
[57] Ajitkumar P. Mulavara,et al. Development of a Countermeasure to Mitigate Postflight Locomotor Dysfunction , 2006 .
[58] D. Tweed,et al. Rotational kinematics of the human vestibuloocular reflex. I. Gain matrices. , 1994, Journal of neurophysiology.
[59] T Haslwanter,et al. Three-dimensional vector analysis of the human vestibuloocular reflex in response to high-acceleration head rotations. I. Responses in normal subjects. , 1996, Journal of neurophysiology.
[60] Hans Pongratz,et al. Acceleration effects on manual performance with isometric and displacement joysticks. , 2007, Aviation, space, and environmental medicine.
[61] B. Bridgeman,et al. Alternating prism exposure causes dual adaptation and generalization to a novel displacement , 1993, Perception & psychophysics.
[62] H. Hecht,et al. Adaptation of the vestibulo-ocular reflex, subjective tilt, and motion sickness to head movements during short-radius centrifugation. , 2003, Journal of vestibular research : equilibrium & orientation.
[63] Millard F. Reschke,et al. Spatial coding of eye movements relative to perceived earth and head orientations during static roll tilt , 1998, Experimental Brain Research.
[64] Gilles Clément,et al. A review of the effects of space flight on the asymmetry of vertical optokinetic and vestibulo-ocular reflexes. , 2003, Journal of vestibular research : equilibrium & orientation.
[65] A D Kuo,et al. Multivariate changes in coordination of postural control following spaceflight. , 1998, Journal of biomechanics.
[66] R. V. von Baumgarten,et al. A model for vestibular function in altered gravitational states. , 1979, Life sciences and space research.
[67] J. Lackner,et al. Gravitoinertial force level influences arm movement control. , 1993, Journal of neurophysiology.
[68] S G Diamond,et al. Parabolic flight reveals independent binocular control of otolith-induced eye torsion. , 2000, Archives italiennes de biologie.
[69] W. Bruzek,et al. European vestibular experiments on the Spacelab-1 mission: 5. Contribution of the otoliths to the vertical vestibulo-ocular reflex , 2004, Experimental Brain Research.
[70] P A Low,et al. Orthostatic intolerance and motion sickness after parabolic flight. , 2013, Journal of applied physiology.
[71] M. A. Gresty,et al. Assessment of the perception of verticality and horizontality with self-paced saccades , 1998, Experimental Brain Research.
[72] A Berthoz,et al. Gaze control in microgravity. 2. Sequences of saccades toward memorized visual targets. , 1993, Journal of vestibular research : equilibrium & orientation.