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Evaluation of improvement of diffuse optical imaging of brain function by high-density probe arrangements and imaging algorithms

机译:通过高密度探头布置和成像算法评估对脑功能的漫射光学成像的改善

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摘要

Diffuse optical imaging has been applied to measure the localized hemodynamic responses to brain activation. One of the serious problems with diffuse optical imaging is the limitation of the spatial resolution caused by the sparse probe arrangement and broadened spatial sensitivity profile for each probe pair. High-density probe arrangements and an image reconstruction algorithm considering the broadening of the spatial sensitivity can improve the spatial resolution of the image. In this study, the diffuse optical imaging of the absorption change in the brain is simulated to evaluate the effect of the high-density probe arrangements and imaging methods. The localization error, equivalent full-width half maximum and circularity of the absorption change in the image obtained by the mapping and reconstruction methods from the data measured by five probe arrangements are compared to quantitatively evaluate the imaging methods and probe arrangements. The simple mapping method is sufficient for the density of the measurement points up to the double-density probe arrangement. The image reconstruction method considering the broadening of the spatial sensitivity of the probe pairs can effectively improve the spatial resolution of the image obtained from the probe arrangements higher than the quadruple density, in which the distance between the neighboring measurement points is 10.6 mm.
机译:漫射光学成像已用于测量对大脑激活的局部血流动力学反应。漫射光学成像的严重问题之一是由稀疏的探针布置引起的空间分辨率的局限性以及每个探针对的空间灵敏度分布变宽。考虑到空间灵敏度的扩大的高密度探针布置和图像重建算法可以提高图像的空间分辨率。在这项研究中,对大脑中吸收变化的漫射光学成像进行了模拟,以评估高密度探针排列和成像方法的效果。比较了通过映射和重建方法从五个探头装置测得的数据中获得的图像中的定位误差,等效全角半峰最大值和吸收变化的圆度,以定量评估成像方法和探头装置。简单的映射方法足以达到双密度探头布置的测量点密度。考虑到探针对的空间灵敏度的加宽的图像重建方法可以有效地提高从探针布置获得的图像的空间分辨率,该图像的分辨率高于四倍密度,其中相邻测量点之间的距离为10.6mm。

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