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首页> 外文期刊>Aviation, space, and environmental medicine. >Mount everest: a space analogue for speech monitoring of cognitive deficits and stress.
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Mount everest: a space analogue for speech monitoring of cognitive deficits and stress.

机译:珠穆朗玛峰:用于语音监控认知缺陷和压力的太空类似物。

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In deep-space missions, the basal ganglia and hippocampus, subcortical structures of the brain that play critical roles in motor activity, cognition, and memory, will be vulnerable to damage from cosmic rays. These metabolically active structures are also sensitive to damage arising from the low oxygen content of air at extreme altitudes. We have, therefore, used Mount Everest as an analogue for deep space, where astronauts will be subject to danger and stress as well as neural damage. We can ethically obtain data because our climber-subjects already intend to climb Mt. Everest. We record speech and test cognitive and linguistic performance before, during, and after exposure to hypoxic conditions. From these data we have derived and validated computer-implemented acoustic voice measures that track slight as well as profound cognitive impairment. Vowel duration and speech motor sequencing errors increase as climbers ascend, reflecting degraded basal ganglia activity. These metrics detect deficits in language comprehension and the ability to change plans in changing circumstances. Preliminary analyses also reveal memory deficits reflecting hippocampal damage. Our speech metrics are unobtrusive and do not reveal the content of a verbal message; they could be derived automatically, allowing space crews to detect subtle motor and cognitive deficits and invoke countermeasures before performance is profoundly impaired. In future work we will be validating the voice metrics of stress in collaboration with the Dinges NSBRI laboratory study of task-induced stress. Our procedures can also be applied in general aviation and in the treatment of Parkinson's disease, Alzheimer's dementia, and other neurological disorders.
机译:在深空任务中,在运动活动,认知和记忆中起关键作用的基底神经节和海马,大脑皮层下结构将很容易受到宇宙射线的损害。这些代谢活性结构还对极端海拔高度的空气中低氧含量引起的破坏敏感。因此,我们已将珠穆朗玛峰用作深空的模拟物,在那里,宇航员将面临危险,压力以及神经损伤。我们可以从道德上获得数据,因为我们的攀登者已经打算攀登Mt.Mt。珠穆朗玛峰。我们记录语音,并测试在暴露于低氧环境之前,之中和之后的认知和语言表现。从这些数据中,我们得出并验证了计算机实现的,可追踪轻度和重度认知障碍的声学语音测量方法。随着登山者的上升,元音持续时间和语音运动顺序错误会增加,反映出基底神经节活动性下降。这些度量标准可以检测语言理解能力的不足以及在不断变化的环境中更改计划的能力。初步分析还发现反映海马损伤的记忆缺陷。我们的语音指标不引人注目,不会透露口头信息的内容;它们可以自动导出,从而使航天员能够检测出细微的运动和认知缺陷,并在性能受到严重损害之前采取对策。在未来的工作中,我们将与Dinges NSBRI对任务引起的压力的实验室研究合作,验证压力的语音指标。我们的程序还可以应用于通用航空以及帕金森氏病,阿尔茨海默氏痴呆症和其他神经系统疾病的治疗。

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