Ogawa Yutaro, Kotani Kiyoshi, Jimbo Yasuhiko
Graduate School of Frontier Science, The University of Tokyo Chiba, Japan.
Brain Behav. 2014 Jul;4(4):544-51. doi: 10.1002/brb3.238. Epub 2014 May 24.
Working memory (WM) is a key function for various cognitive processes. Near-infrared spectroscopy (NIRS) is a powerful technique for noninvasive functional imaging. However, a study has yet to be published on the application of NIRS for evaluating WM performance. The objective was to evaluate NIRS for measuring WM performance.
Subjects were trained to perform a visuospatial WM task. Eight channels on the lateral prefrontal cortex were analyzed. We asked the following three questions: (1) Does WM performance correlate with NIRS signal amplitudes? (2) What are the differences in NIRS amplitudes between correct- and incorrect-WM tasks? (3) Is there a correlation between WM performance and NIRS amplitudes in only correct-WM tasks?
NIRS activation in all channels correlated with WM performance (P < 0.05). There was a statistically significant difference (P < 0.05) in seven channels between NIRS amplitude in correct- and incorrect-WM tasks. NIRS activation of the delay time averaged with only correct-WM tasks, correlated with WM performance in six channels (P < 0.05).
Subjects with better WM performance have higher levels of oxyhemoglobin activation compared with control trials in the WM delay time, and our results suggest that NIRS will be useful for measuring the WM performance.
工作记忆(WM)是各种认知过程的关键功能。近红外光谱(NIRS)是一种用于无创功能成像的强大技术。然而,关于NIRS在评估工作记忆表现方面的应用尚未有研究发表。目的是评估NIRS测量工作记忆表现的能力。
训练受试者执行视觉空间工作记忆任务。分析前额叶外侧皮质的八个通道。我们提出了以下三个问题:(1)工作记忆表现与NIRS信号幅度是否相关?(2)正确和错误工作记忆任务之间的NIRS幅度有何差异?(3)仅在正确的工作记忆任务中,工作记忆表现与NIRS幅度之间是否存在相关性?
所有通道的NIRS激活与工作记忆表现相关(P < 0.05)。在正确和错误工作记忆任务的NIRS幅度之间,七个通道存在统计学显著差异(P < 0.05)。仅对正确工作记忆任务的延迟时间进行平均后的NIRS激活,在六个通道中与工作记忆表现相关(P < 0.05)。
与工作记忆延迟时间的对照试验相比,工作记忆表现较好的受试者在氧合血红蛋白激活水平上更高,我们的结果表明NIRS将有助于测量工作记忆表现。