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A DAQ-Device-Based Continuous Wave Near-Infrared Spectroscopy System for Measuring Human Functional Brain Activity

机译:基于DAQ设备的连续波近红外光谱系统用于测量人类功能性大脑活动

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摘要

In the last two decades, functional near-infrared spectroscopy (fNIRS) is getting more and more popular as a neuroimaging technique. The fNIRS instrument can be used to measure local hemodynamic response, which indirectly reflects the functional neural activities in human brain. In this study, an easily implemented way to establish DAQ-device-based fNIRS system was proposed. Basic instrumentation components (light sources driving, signal conditioning, sensors, and optical fiber) of the fNIRS system were described. The digital in-phase and quadrature demodulation method was applied in LabVIEW software to distinguish light sources from different emitters. The effectiveness of the custom-made system was verified by simultaneous measurement with a commercial instrument ETG-4000 during Valsalva maneuver experiment. The light intensity data acquired from two systems were highly correlated for lower wavelength (Pearson's correlation coefficient r = 0.92, P < 0.01) and higher wavelength (r = 0.84, P < 0.01). Further, another mental arithmetic experiment was implemented to detect neural activation in the prefrontal cortex. For 9 participants, significant cerebral activation was detected in 6 subjects (P < 0.05) for oxyhemoglobin and in 8 subjects (P < 0.01) for deoxyhemoglobin.
机译:在过去的二十年中,功能性近红外光谱(fNIRS)作为神经成像技术越来越受到欢迎。 fNIRS仪器可用于测量局部血液动力学反应,从而间接反映人脑中的功能性神经活动。在这项研究中,提出了一种易于实现的方法来建立基于DAQ设备的fNIRS系统。描述了fNIRS系统的基本仪器组件(光源驱动,信号调节,传感器和光纤)。 LabVIEW软件中采用了数字同相和正交解调方法,以区分来自不同发射器的光源。在Valsalva机动实验期间,通过同时使用商用仪器ETG-4000进行测量,验证了定制系统的有效性。从两个系统获得的光强度数据与较低波长(皮尔逊相关系数r = 0.92,P <0.01)和较高波长(r = 0.84,P <0.01)高度相关。此外,还实施了另一项心理算术实验,以检测前额叶皮层中的神经激活。对于9名参与者,在6名受试者(P <0.05)的氧合血红蛋白和8名受试者(P <0.01)的脱氧血红蛋白中检测到了明显的大脑激活。

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