首页> 外文会议>Biomedical Engineering Meeting, 2009. BIYOMUT 2009 >Investigation of the effect of playing video games on visual attention and brain hemodynamics with functional near infrared spectroscopy
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Investigation of the effect of playing video games on visual attention and brain hemodynamics with functional near infrared spectroscopy

机译:功能近红外光谱研究视频游戏对视觉注意力和脑血流动力学的影响

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Video game playing is an attractive form of entertainment among school-age children. Although this activity has many adverse effects on child development, there have been only a few studies examining the biological effects of video games on brain activity. The aims of this study were i) to investigate effects of video game playing on attentional capacity and visual skills ii) to relate training induced alterations in performance with regional cerebral oxygenation levels obtained by functional near infrared spectroscopy (fNIRS). 24 high school students (12 video game players and 12 non-video game players) participated in the study. Subjects were asked to perform a task-switching experiment. Cerebral oxygenation level in the prefrontal cortex was measured with a near infrared spectroscopy device. Video game players had shorter reaction times (p<0.02) to presented stimuli and lower error rates (p<0.04) when compared to non-video game players. As the task became more difficu they were able to sustain better performance with more profound increase in prefrontal oxygenation (p<0.008). The results imply that video game playing alters visual skills and hand-eye coordination. Higher prefrontal oxygenation observed in video game players suggests that limited vascular resources in their brain might be transferred towards areas involved in executive function.
机译:在学龄儿童中,视频游戏是一种有吸引力的娱乐方式。尽管这种活动对儿童发育有许多不利影响,但只有少数研究检查了电子游戏对大脑活动的生物学影响。这项研究的目的是:i)研究视频游戏对注意力能力和视觉技能的影响; ii)将训练诱发的性能变化与功能性近红外光谱法(fNIRS)获得的局部脑氧合水平联系起来。 24名高中学生(12名视频游戏玩家和12名非视频游戏玩家)参加了这项研究。要求受试者进行任务转换实验。用近红外光谱仪测量前额叶皮层中的脑氧合水平。与非视频游戏玩家相比,视频游戏玩家对呈现刺激的反应时间更短(p <0.02),错误率更低(p <0.04)。随着任务变得越来越困难;他们能够通过额叶前额氧合的更深远的增加来维持更好的表现(p <0.008)。结果表明,玩视频游戏会改变视觉技能和手眼协调能力。在视频游戏玩家中观察到的较高的额前充氧表明他们大脑中有限的血管资源可能会转移到执行功能所涉及的区域。

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