首页> 外文期刊>Integrative physiological and behavioral science: the official journal of the Pavlovian Society >The Effect of Highly Concentrated Oxygen Administration on Cerebral Activation Levels and Lateralization in Visuospatial Tasks
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The Effect of Highly Concentrated Oxygen Administration on Cerebral Activation Levels and Lateralization in Visuospatial Tasks

机译:集中供氧对视觉空间任务中脑激活水平和侧向化的影响

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This study investigated what effect a 30% oxygen administration had on visuospatial cognitive performance and cerebral activation and lateralization using fMRI. Eight college students were selected as the subjects for this study. An oxygen dispenser that provided 21% and 30% oxygen at a constant rate of 8L/min was developed. In order to measure the performance level of visuospatial cognition, two psychological tests were also developed. The experiment consisted of two runs, one for a visuospatial cognition task with normal air (21% oxygen) and the other for a visuospatial cognition task with hyperoxic air (30% oxygen). Functional brain images were taken with a 3T MRI using the single-shot EPI method. The results of the visuospatial behavioral analysis reveal that accuracy rates were enhanced with 30% oxygen administration when compared to 21% oxygen. There were more activations observed at the bilateral occipital, parietal, and frontal lobes with 30% oxygen administration. However, decreased cerebrum lateralization was observed with 30% oxygen administration in the same regions compared with 21% oxygen administration. Thus, it is concluded that the positive effect on the visuospatial cognitive performance level by the highly concentrated oxygen administration resulted from an increase of cerebrum activation and a decrease of cerebrum lateralization.
机译:这项研究使用功能性磁共振成像研究了30%的氧气给药对视觉空间认知表现以及大脑激活和侧化的影响。选择了八名大学生作为本研究的主题。开发了以8L / min的恒定速率提供21%和30%的氧气的氧气分配器。为了衡量视觉空间认知的表现水平,还开发了两种心理测试。该实验包括两个运行,一个运行在正常空气(21%氧气)下的视觉空间认知任务,另一个运行在高氧空气(30%氧气)下的视觉空间认知任务。使用单次EPI方法通过3T MRI拍摄功能性大脑图像。视觉空间行为分析的结果表明,与21%的氧气相比,使用30%的氧气可以提高准确率。给予30%的氧气后,双侧枕叶,顶叶和额叶观察到更多激活。但是,在相同区域中使用30%的氧气,与使用21%的氧气相比,观察到大脑侧向化程度降低。因此,可以得出结论,高浓度氧气的施用对视觉空间认知能力水平的积极影响是由于大脑激活的增加和大脑偏侧化的减少。

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