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Design of near-infrared imaging probe with the assistance of ultrasound localization

机译:超声定位辅助下的近红外成像探头设计

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摘要

A total of 364 optical source–detector pairs were deployed uniformly over a 9 cm × 9 cm probe area initially, and then the total pairs were reduced gradually to 60 in experimental and simulation studies. For each source–detector configuration, three-dimensional (3-D) images of a 1-cm-diameter absorber of different contrasts were reconstructed from the measurements made with a frequency-domain system. The results have shown that more than 160 source–detector pairs are needed to reconstruct the absorption coefficient to within 60% of the true value and appropriate spatial and contrast resolution. However, the error in target depth estimated from 3-D images was more than 1 cm in all source–detector configurations. With the a priori target depth information provided by ultrasound, the accuracy of the reconstructed absorption coefficient was improved by 15% and 30% on average, and the beam width was improved by 24% and 41% on average for high- and low-contrast cases, respectively. The speed of reconstruction was improved by ten times on average.
机译:最初,一共有364个光源-探测器对均匀地部署在9 cm×9 cm的探针区域上,然后在实验和模拟研究中,总数逐渐减少到60。对于每种源-探测器配置,根据频域系统的测量结果,重建了具有不同对比度的直径为1厘米的吸收体的三维(3-D)图像。结果表明,需要超过160个源-检测器对才能将吸收系数重建到真实值的60%以内,并具有适当的空间和对比度分辨率。但是,在所有源-探测器配置中,从3-D图像估计的目标深度误差均大于1 cm。利用超声提供的先验目标深度信息,重构的吸收系数的精度平均提高了15%和30%,高和低对比度的光束宽度平均提高了24%和41%案件。重建速度平均提高了十倍。

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