模拟失重状态下人的认知和神经生理功能的动态变化

Aleksei A. Polyanichenko, Daria V. Schastlivtseva, Tatiana I. Kotrovskaya, Viktor G. Golubev, Daniil G. Smolyakov
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 The study aims to determine the dynamics of neurophysiological reactions and cognitive functions of a person during a 21–day AOSH (–6°).
 Materials and methods. The researchers analyzed the dynamics of cognitive functions based on the results of performing complex dynamic tasks with elements of uncertainty from the CleverBalls software test block. The authors determined the dynamics of neurophysiological reactions by the relative dynamics index (RDI) of the relative power value (RPV) of all the studied ranges of the EEG spectrum. The experts carried out measurements of all indicators before the start of the study (Background), on the 3rd (1st session), 10th (2nd session), 17th (3rd session) and 21st (4th session) days, as well as 3 days after the end of the experiment — aftereffect (After).
 Results. Scientists have found an increase in inhibitory processes in the brain as a result of solving complex dynamic tasks with elements of uncertainty in the acute period (3 days) and in the aftereffect. After the acute period and before the end of the experiment, they observed the restoration of brain functions to the background level. An increase in the performance of complex dynamic tasks with elements of uncertainty (according to the indicators \"Percentage of correct choice\" and \"Average harmonic click time\") was observed from ten days to the aftereffect inclusive, which indicated, at least, the absence of a decrease in cognitive functions during the 21-day AOSH.
 Conclusion. At the end of the experiment, the authors noted a less pronounced increase in Delta and Theta activity than in the acute period, with a simultaneous decrease in Alpha and Beta activity, but at the same time, they did not observe a decrease in the success of cognitive tests.
 Ethics. The program of the experiment was approved at the section of the Scientific Council and approved by the Commission on Biomedical Ethics at the Institute of Biomedical Problems, RAS (Protocol No. 599 of 06.10.2021).","PeriodicalId":35596,"journal":{"name":"Meditsina truda i promyshlennaia ekologiia","volume":null,"pages":null},"PeriodicalIF":0.0000,"publicationDate":"2023-10-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Dynamics of cognitive and neurophysiological functions of a person in the simulation of weightlessness in terrestrial conditions\",\"authors\":\"Aleksei A. Polyanichenko, Daria V. Schastlivtseva, Tatiana I. Kotrovskaya, Viktor G. Golubev, Daniil G. Smolyakov\",\"doi\":\"10.31089/1026-9428-2023-63-9-564-573\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Introduction. The authors have conducted a study of the influence of the conditions of 21-day antiorthostatic hypokinesia (AOSH) on the dynamics of neurophysiological reactions and cognitive functions of a person on the basis of Institute of Biomedical Problems, RAS, with the participation of six healthy male volunteers aged 24 to 40 years (30.7±5.4) who were in bed with hypokinesia in an antiorthostatic position with an angle of inclination –6° relative to the horizon.
 The study aims to determine the dynamics of neurophysiological reactions and cognitive functions of a person during a 21–day AOSH (–6°).
 Materials and methods. The researchers analyzed the dynamics of cognitive functions based on the results of performing complex dynamic tasks with elements of uncertainty from the CleverBalls software test block. The authors determined the dynamics of neurophysiological reactions by the relative dynamics index (RDI) of the relative power value (RPV) of all the studied ranges of the EEG spectrum. The experts carried out measurements of all indicators before the start of the study (Background), on the 3rd (1st session), 10th (2nd session), 17th (3rd session) and 21st (4th session) days, as well as 3 days after the end of the experiment — aftereffect (After).
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引用次数: 0

摘要

介绍。作者在RAS生物医学问题研究所的基础上,对6名24 ~ 40岁(30.7±5.4)的健康男性志愿者进行了21天抗立性运动减退(AOSH)对人神经生理反应和认知功能动态的影响的研究,他们在床上以相对于地平线倾斜-6°的抗立体位躺在床上。 该研究旨在确定一个人在21天的AOSH(-6°)期间的神经生理反应和认知功能的动态。材料和方法。研究人员根据执行复杂动态任务的结果分析了认知功能的动态,这些任务带有来自CleverBalls软件测试块的不确定性元素。作者通过脑电谱各研究范围的相对功率值的相对动力学指数(RDI)来确定神经生理反应的动力学。专家在研究开始前(背景)、第3天(第1期)、第10天(第2期)、第17天(第3期)、第21天(第4期)以及实验结束后3天(后)对所有指标进行测量。 结果。科学家发现,在急性期(3天)和后遗症中,由于解决具有不确定性因素的复杂动态任务,大脑中的抑制过程会增加。在急性期之后和实验结束之前,他们观察到大脑功能恢复到背景水平。在包含不确定性因素的复杂动态任务(根据指标“正确选择的百分比”和“平均谐波点击时间”)中,从10天到包括后遗症在内的时间内,观察到的表现有所增加,这表明,至少在21天的AOSH期间,认知功能没有下降。结论。在实验结束时,作者注意到Delta和Theta活动的增加不像急性期那么明显,α和β活动同时减少,但与此同时,他们没有观察到认知测试成功率的下降。道德。实验方案经科学理事会批准,并经RAS生物医学问题研究所生物医学伦理委员会批准(2021年10月6日第599号议定书)。
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Dynamics of cognitive and neurophysiological functions of a person in the simulation of weightlessness in terrestrial conditions
Introduction. The authors have conducted a study of the influence of the conditions of 21-day antiorthostatic hypokinesia (AOSH) on the dynamics of neurophysiological reactions and cognitive functions of a person on the basis of Institute of Biomedical Problems, RAS, with the participation of six healthy male volunteers aged 24 to 40 years (30.7±5.4) who were in bed with hypokinesia in an antiorthostatic position with an angle of inclination –6° relative to the horizon. The study aims to determine the dynamics of neurophysiological reactions and cognitive functions of a person during a 21–day AOSH (–6°). Materials and methods. The researchers analyzed the dynamics of cognitive functions based on the results of performing complex dynamic tasks with elements of uncertainty from the CleverBalls software test block. The authors determined the dynamics of neurophysiological reactions by the relative dynamics index (RDI) of the relative power value (RPV) of all the studied ranges of the EEG spectrum. The experts carried out measurements of all indicators before the start of the study (Background), on the 3rd (1st session), 10th (2nd session), 17th (3rd session) and 21st (4th session) days, as well as 3 days after the end of the experiment — aftereffect (After). Results. Scientists have found an increase in inhibitory processes in the brain as a result of solving complex dynamic tasks with elements of uncertainty in the acute period (3 days) and in the aftereffect. After the acute period and before the end of the experiment, they observed the restoration of brain functions to the background level. An increase in the performance of complex dynamic tasks with elements of uncertainty (according to the indicators "Percentage of correct choice" and "Average harmonic click time") was observed from ten days to the aftereffect inclusive, which indicated, at least, the absence of a decrease in cognitive functions during the 21-day AOSH. Conclusion. At the end of the experiment, the authors noted a less pronounced increase in Delta and Theta activity than in the acute period, with a simultaneous decrease in Alpha and Beta activity, but at the same time, they did not observe a decrease in the success of cognitive tests. Ethics. The program of the experiment was approved at the section of the Scientific Council and approved by the Commission on Biomedical Ethics at the Institute of Biomedical Problems, RAS (Protocol No. 599 of 06.10.2021).
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Meditsina truda i promyshlennaia ekologiia
Meditsina truda i promyshlennaia ekologiia Medicine-Public Health, Environmental and Occupational Health
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0.90
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0.00%
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80
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