首页> 外文会议>IEEE EMBS Asian-Pacific Conference on Biomedical Engineering >IMPROVEMENT OF NEAR-INFRARED TOPOGRAPHY BY OPTODE ARRANGEMENT AND RECONSTRUCTION ALGORITHM USING SPATIAL SENSITIVITY PROFILE
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IMPROVEMENT OF NEAR-INFRARED TOPOGRAPHY BY OPTODE ARRANGEMENT AND RECONSTRUCTION ALGORITHM USING SPATIAL SENSITIVITY PROFILE

机译:光光电布置和使用空间敏感性剖面的改进近红外地形和重构算法

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Near-infrared topographic imaging can noninvasively measure the distribution of brain activation in the cortex. The near-infrared light is strongly scattered in the superficial tissues and the volume of tissue sampled by a source-detector pair of the imaging system is broadly distributed in the cortical tissue. This poses results in poor spatial resolution and contrast in the topographic images. In this study, we propose reconstruction algorithm for near-infrared topographic imaging using the spatial sensitivity profile. The profile of absorption change in the head model is calculated to evaluate the proposed algorithm. The width of the profiles calculated by the proposed algorithm is smaller than that by the conventional mapping algorithm. The profiles calculated by the proposed algorithm agree with the correct distribution when the interval of the source-detector pairs is less than 8 mm.
机译:近红外地形成像可以非侵略地测量皮质中脑激活的分布。 近红外光在浅表组织中强烈地散射,并且由源检测器对成像系统采样的组织体积广泛地分布在皮质组织中。 这种姿势导致空间分辨率不佳,地形图像中的对比度。 在本研究中,我们使用空间敏感性曲线提出了近红外地形成像的重建算法。 计算头部模型中的吸收变化的轮廓以评估所提出的算法。 由所提出的算法计算的简档的宽度小于传统映射算法的宽度。 当源检测器对的间隔小于8mm时,通过所提出的算法计算的配置文件与正确的分布一致。

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