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Suppression of superficial hemodynamic changes using a depth-selective filter in near-infrared spectroscopy measurements

机译:抑制近红外光谱测量中深度选择过滤器的浅表血流动力学变化

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Herein, we introduce a depth-selective filter to our recently developed equilateral-triangle probe arrangement to suppress the influence of skin-blood-flow changes on cerebral-blood flow in near-infrared spectroscopy (NIRS) brain-function measurements. The effect of the filter was evaluated by both simulations and experiments. According to the simulations, the influence of the absorption-coefficient perturbations in the superficial layer below the triangle's vertex can be successfully reduced using the filter. We found that applying the new filter process to experiments performed using a system containing an equilateral-triangle sensor arrangement can help in successfully reducing the influence of blood-flow variations accompanying postural changes. Thus, it is valuable to obtain topographic images using this depth-selective filter, and the equilateral-triangle sensor arrangement is suitable for enhancing the filter effect.
机译:在此,我们将深度选择性过滤器引入我们最近开发的等边 - 三角形探针布置,以抑制皮肤流动变化对近红外光谱(NIRS)脑功能测量的脑血流量的影响。通过模拟和实验评估过滤器的效果。根据仿真,可以使用过滤器成功地减少三角形顶点下方的浅层层中的吸收系数扰动的影响。我们发现将新的过滤过程应用于使用含有等边三角形传感器布置的系统进行的实验可以帮助成功减少伴随姿势变化的血流变化的影响。因此,使用该深度选择性滤波器获得地形图像是有价值的,并且等边三角形传感器装置适合于增强滤波器效果。

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