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首页> 外文期刊>Brain research >Two successive neurocognitive processes captured by near-infrared spectroscopy: prefrontal activation during a computerized plus-shaped maze task.
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Two successive neurocognitive processes captured by near-infrared spectroscopy: prefrontal activation during a computerized plus-shaped maze task.

机译:近红外光谱法捕获的两个连续的神经认知过程:在计算机化的加号迷宫任务中的前额叶激活。

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The present study using near-infrared spectroscopy (NIRS) examined prefrontal activation associated with maze-solving performance in adult humans. The participants were required to solve a plus-shaped maze, comparable to the one used for pigeons and human children to behaviorally assess planning processes, by moving a target square to a goal square presented on a touch-sensitive screen. The participants made incorrect responses toward a previous goal immediately after the goal jumped to the end of another arm, in parallel with but less frequently than previous participants, with shorter reaction times than when they correctly adjusted their responses. In these incorrect trials, relatively larger hemodynamic changes having two peaks were observed, especially in channels near the right inferior frontal cortex (IFC), suggesting use of additional cognitive resources for adjustment of responses after making errors. In addition to showing human adults' better behavioral inhibition than previous participants, the present NIRS data suggest a difference in prefrontal activation patterns according to whether inhibition of the forward plan was working well or not. The results also testify to the effective NIRS recording, while the participants were moving a computer-generated stimulus by actually making finger touches to the monitor.
机译:本研究使用近红外光谱(NIRS)检查了成年人类与迷宫解决性能相关的前额叶激活。要求参与者通过将目标方格移动到触摸屏上显示的目标方格,来解决与鸽子和人类儿童行为评估计划过程所使用的迷宫一样的加号迷宫。在目标跳至另一只手臂的末端后,参与者与先前的参与者并行但不经常地对先前的目标做出不正确的响应,但反应时间比正确调整其响应时要短。在这些不正确的试验中,观察到相对较大的血液动力学变化,具有两个峰值,尤其是在右下额叶皮层(IFC)附近的通道中,这表明使用额外的认知资源来调整错误后的反应。除了显示人类成年人比以前的参与者具有更好的行为抑制能力外,目前的NIRS数据还表明,根据前瞻性计划的抑制作用是否良好,前额叶激活模式有所不同。结果还证明了NIRS的有效记录,而参与者通过实际触摸显示器来移动计算机生成的刺激。

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