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A NIRS-fMRI investigation of prefrontal cortex activity during a working memory task

机译:在工作记忆任务期间前额叶皮层活动的NIRS-fMRI研究

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摘要

Near-infrared spectroscopy (NIRS) is commonly used for studying human brain function. However, several studies have shown that superficial hemodynamic changes such as skin blood flow can affect the prefrontal NIRS hemoglobin (Hb) signals. To examine the criterion-related validity of prefrontal NIRS-Hb signals, we focused on the functional signals during a working memory (WM) task and investigated their similarity with blood-oxygen-level-dependent (BOLD) signals simultaneously measured by functional magnetic resonance imaging (fMRI). We also measured the skin blood flow with a laser Doppler flowmeter (LDF) at the same time to examine the effect of superficial hemodynamic changes on the NIRS-Hb signals. Correlation analysis demonstrated that temporal changes in the prefrontal NIRS-Hb signals in the activation area were significantly correlated with the BOLD signals in the gray matter rather than those in the soft tissue or the LDF signals. While care must be taken when comparing the NIRS-Hb signal with the extracranial BOLD or LDF signals, these results suggest that the NIRS-Hb signal mainly reflects hemodynamic changes in the gray matter. Moreover, the amplitudes of the task-related responses of the NIRS-Hb signals were significantly correlated with the BOLD signals in the gray matter across participants, which means participants with a stronger NIRS-Hb response showed a stronger BOLD response. These results thus provide supportive evidence that NIRS can be used to measure hemodynamic signals originating from prefrontal cortex activation.
机译:近红外光谱(NIRS)通常用于研究人脑功能。但是,一些研究表明,诸如皮肤血流之类的浅层血液动力学变化会影响前额叶NIRS血红蛋白(Hb)信号。为了检查前额叶NIRS-Hb信号与标准相关的有效性,我们重点研究了工作记忆(WM)任务期间的功能信号,并研究了它们与功能磁共振同时测量的血氧水平依赖性(BOLD)信号的相似性成像(fMRI)。我们还使用激光多普勒流量计(LDF)同时测量了皮肤的血流量,以检查表面血流动力学变化对NIRS-Hb信号的影响。相关分析表明,激活区域中前额叶NIRS-Hb信号的时间变化与灰质中的BOLD信号显着相关,而与软组织或LDF信号中的BOLD信号显着相关。虽然在将NIRS-Hb信号与颅外BOLD或LDF信号进行比较时必须小心,但这些结果表明NIRS-Hb信号主要反映了灰质的血液动力学变化。此外,在参与者之间,与NIRS-Hb信号有关的任务相关响应的幅度与BOLD信号显着相关,这意味着具有更强NIRS-Hb响应的参与者表现出更强的BOLD响应。因此,这些结果提供了支持性证据,表明NIRS可用于测量源自前额叶皮层激活的血液动力学信号。

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