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Water correction algorithm to increase the signal strength of oxy and deoxy-hemoglobin in near-infrared spectroscopy signals

机译:水校正算法可提高近红外光谱信号中氧和脱氧血红蛋白的信号强度

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In the wake of recent advances in the field of neuroscience, near-infrared spectroscopy (NIRS) has been widely used to measure the concentration changes in the blood chromophores during mental activity. NIRS system can be constructed low cost, portable and easy to use. Given that approximately 80% of blood chromophores are water, it is particularly important to the effect of water concentration change on measurement data. In the present study, we developed a wireless NIRS system that detects not only the concentration changes of oxy-hemoglobin (HbO) and deoxy-hemoglobin (HbR) during mental activity but also that of water (H2O); additionally, it implements a water-correction algorithm that improves the HbO and HbR signal strengths manifest during an arithmetic task. The system comprises a microcontroller, an optical probe, tri-wavelength light emitting diodes (LEDs), photodiodes, a WiFi communication module and a battery. System functionality was tested by means of arterial occlusion and arithmetic-task experiments, performed with healthy male subjects.
机译:随着神经科学领域的最新进展,近红外光谱法(NIRS)已被广泛用于测量精神活动期间血生色团的浓度变化。 NIRS系统可以被构造成低成本,便携式且易于使用。鉴于大约80%的血液发色团是水,因此对于水浓度变化对测量数据的影响尤为重要。在本研究中,我们开发了一种无线NIRS系统,该系统不仅可以检测精神活动期间氧合血红蛋白(HbO)和脱氧血红蛋白(HbR)的浓度变化,还可以检测水(H2O)的浓度变化。此外,它实现了一种水校正算法,可以提高算术任务期间表现出的HbO和HbR信号强度。该系统包括微控制器,光学探头,三波长发光二极管(LED),光电二极管,WiFi通信模块和电池。通过对健康男性受试者进行的动脉闭塞和算术任务实验来测试系统功能。

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