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Optical tomography of a realistic neonatal head phantom

机译:逼真的新生儿头部幻影的光学层析成像

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We have begun clinical trials of optical tomography of the neonatal brain. To validate this research, we have built and imaged an anatomically realistic, tissue-equivalent neonatal head phantom that is hollow, allowing contrasting objects to be placed inside it. Images were reconstructed by use of two finite-element meshes, one generated from a computed tomography image of the phantom and the other spherical. The phantom was filled with a liquid of the same optical properties as the outer region, and two perturbations were placed inside. These were successfully imaged with good separation between the absorption and scatter coefficients. The phantom was then refilled with a liquid of increased absorption compared with the background to simulate the brain, and the absolute properties of the two regions were found. These were used as a priori information for the complete reconstruction. Both perturbations were visible, superimposed on the increased absorption of the central region. The head-shaped mesh performed slightly better than the spherical mesh, particularly when the absorption of the central region of the phantom was increased. (C) 2003 Optical Society of America. [References: 23]
机译:我们已经开始对新生儿大脑进行光学层析成像的临床试验。为了验证这项研究,我们建立并成像了一个空心的解剖学逼真,组织等效的新生儿头模,可以在其中放置对比对象。通过使用两个有限元网格重建图像,其中一个是从体模的CT图像生成的,另一个是球形的。幻影充满了与外部区域具有相同光学特性的液体,并且在内部放置了两个扰动。这些被成功地成像,吸收系数和散射系数之间具有良好的分离。然后用与背景相比增加吸收的液体重新填充模型,以模拟大脑,并发现两个区域的绝对属性。这些被用作完整重建的先验信息。两种扰动都是可见的,叠加在中央区域吸收的增加上。头状网的性能略好于球形网,特别是当幻影的中央区域的吸收增加时。 (C)2003年美国眼镜学会。 [参考:23]

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