首页> 外文期刊>Advances in Experimental Medicine and Biology >Quantification of Systemic Interference in Optical Topography Data during Frontal Lobe and Motor Cortex Activation: An Independent Component Analysis
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Quantification of Systemic Interference in Optical Topography Data during Frontal Lobe and Motor Cortex Activation: An Independent Component Analysis

机译:正面叶片和电机皮质激活期间光学地形数据的系统干扰量化:独立分量分析

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摘要

Abstract Functional near-infrared optical topography (OT) is used to non-invasively measure the changes in oxygenated and deoxygenated haemoglobin (AfHbO2], A[HHb]) and hence investigate the brain haemodynamic changes, which occur in response to functional activation at specific regions of the cerebral cortex. However, when analysing functional OT data the task-related systemic changes should be taken into account. Here we used an independent component analysis (ICA) method on the OT [HbO2] signal, to determine the task-related independent components and then compared them with the systemic measurements (blood pressure, heart rate, scalp blood flow) to assess whether the components are due to systemic noise or neuronal activation. This analysis can therefore extract the true OT haemodynamic neuronal response and hence discriminate between regional activated cortical areas and global haemodynamic changes.
机译:摘要功能近红外光学地形(OT)用于非侵入性地测量氧化和脱氧血红蛋白(AFHBO2],A [HHB])的变化,从而研究脑血管动力学变化,这响应特定的功能活化 脑皮层的区域。 但是,在分析功能OT数据时,应考虑任务相关的系统更改。 在这里,我们在OT [HBO2]信号上使用了独立的分量分析(ICA)方法,以确定与任务相关的独立组件,然后将其与系统测量(血压,心率,头皮血液)进行比较,以评估是否 组件是由于系统性噪声或神经元激活。 因此,该分析可以提取真正的OT血管动力学神经元响应,因此区分区域激活的皮质区域和全局血液动力学变化。

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