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Impact of Changes in Systemic Physiology on fNIRS/NIRS Signals: Analysis Based on Oblique Subspace Projections Decomposition

机译:系统生理变化对Fnirs / Nirs信号的影响:基于斜子空间投影分解的分析

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摘要

Measurements of cerebral and muscle oxygenation (StO(2)) and perfusion ([tHb]) with functional near-infrared spectroscopy (fNIRS) and near infrared spectroscopy (NIRS), respectively, can be influenced by changes in systemic physiology. The aim of our study was to apply the oblique subspace projections signal decomposition (OSPSD) to find the contribution from systemic physiology, i.e. heart rate (HR), electrocardiography (ECG)-derived respiration (EDR) and partial pressure of carbon dioxide (pCO(2)) to StO(2) and [tHb] signals measured on the prefrontal cortex (PFC) and calf muscle. OSPSD was applied to two datasets (n(1) = 42, n(2) = 79 measurements) from two fNIRS/NIRS speech studies. We found that (i) all StO(2) and [tHb] signals contained components related to changes in systemic physiology, (ii) the contribution from systemic physiology varied strongly between subjects, and (iii) changes in systemic physiology generally influenced fNIRS signals on the left and right PFC to a similar degree.
机译:分别测量脑和肌肉氧合(STO(2))和具有功能近红外光谱(FNIR)和近红外光谱(NIRS)的灌注([THB]),可以受到全身生理学的变化的影响。我们的研究目的是应用倾斜子空间投影信号分解(OSPSD),以查找来自全身生理学的贡献,即心率(HR),心电图(ECG) - 一定的呼吸(EDR)和二氧化碳的部分压力(PCO (2))在前额叶皮质(PFC)和小牛肌上测量的STO(2)和[THB]信号。从两个FNIR / NIRS语音研究中应用OSPSD(N(1)= 42,N(2)= 79测量)。我们发现(i)所有STO(2)和[THB]信号包含与系统生理学的变化有关的组件,(ii)来自受试者之间的系统生理学的贡献和(iii)系统生理学的变化通常影响FNIR信号在左边和右边的PFC到类似程度。

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