科技报告详细信息
Distinct Pattern of Oculomotor Impairment Associated with Acute Sleep Loss and Circadian Misalignment
Stone, Leland S ; Tyson, Terence L ; Cravalho, Patrick F ; Feick, Nathan H ; Flynn-Evans, Erin E
关键词: BIOMARKERS;    CIRCADIAN RHYTHMS;    DYNAMIC CONTROL;    HUMAN PERFORMANCE;    HUMAN REACTIONS;    MISALIGNMENT;    SLEEP DEPRIVATION;    VISUAL STIMULI;    SENSORIMOTOR PERFORMANCE;    OCULOMOTOR NERVES;   
RP-ID  :  ARC-E-DAA-TN72240
学科分类:医学(综合)
美国|英语
来源: NASA Technical Reports Server
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【 摘 要 】
Sleep loss and circadianmisalignment have long been known to impair human cognitive and motor performance with significant societal and health consequences. It is well known that human reaction time to a visual cue is impaired following sleep loss and circadian misalignment, but it has remained unclear how more complex visuomotor control behaviour is altered under these conditions. In this study, we measured 14 parameters of the voluntary ocular tracking response of 12 human participants (six females) to systematically examine the effects of sleep loss and circadianmisalignment using a constant routine 24 h acute sleep-deprivation paradigm. The combination of state-of-the-art oculometric and sleep-research methodologies allowed us to document, for the first time, large changes in many components of pursuit, saccades and visual motion processing as a function of time awake and circadian phase. Further, we observed a pattern of impairment across our set of oculometric measures that is qualitatively different from that observed previously with other mild neural impairments. We conclude that dynamic vision and visuomotor control exhibit a distinct pattern of impairment linked with time awake and circadian phase. Therefore, a sufficiently broad set of oculometric measures could provide a sensitive and specific behavioural biomarker of acute sleep loss and circadian misalignment. We foresee potential applications of such oculometric biomarkers assisting in the assessment of readiness-to-perform higher risk tasks and in the characterization of sub-clinical neural impairment in the face of a multiplicity of potential risk factors, including disrupted sleep and circadian rhythms.
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