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Evaluation of the temporally extrapolated absorbance method for dual-wavelength imaging through tissuelike scattering media

机译:通过组织样散射介质进行双波长成像的时间外推吸收法的评估

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摘要

An independent assessment is described of a dual-wavelength imaging technique, known as the temporally extrapolated absorbance method (TEAM), proposed by Yamada et al. [Opt. Eng, 32, 634-64 (1993)]. The technique involves recording the temporal distribution of light transmitted across a scattering medium at two carefully chosen wavelengths at which the scattering properties of the medium are assumed to be identical. The objective is to image internal structure that absorbs more strongly at one wavelength than it does at the other. A simple theoretical treatment of TEAM is presented that employs a perturbation model Of photon transport. This indicates that despite the lack of a secure theoretical basis, the technique may provide a potentially effective ad hoc method of generating images of highly scattering media. The method was also evaluated experimentally by using, for the first time to our knowledge, a single object and two wavelengths. A single-projection two-dimensional image was obtained of a solid phantom with optical properties representative of breast tissue. The results exhibited good agreement with the theoretical model, and a small embedded feature that absorbs 3.5 times as strongly as the surrounding medium at one wavelength was revealed successfully. # 1997 Optical Society of America
机译:Yamada等人提出了一种对双波长成像技术的独立评估,该技术称为时间外推吸收法(TEAM)。 [选择。 Eng,32,634-64(1993)]。该技术涉及记录在两个精心选择的波长(假设介质的散射特性相同)下跨散射介质传输的光的时间分布。目的是成像内部结构,该内部结构在一个波长处的吸收比在另一波长处的吸收要强。提出了一种简单的TEAM理论方法,该方法采用光子传输的扰动模型。这表明尽管缺乏可靠的理论基础,但该技术可能会提供一种潜在的有效的临时方法来生成高散射介质的图像。据我们所知,该方法还首次通过实验使用了单个物体和两个波长进行了实验评估。获得具有光学特性代表乳房组织的实体模型的单投影二维图像。结果显示出与理论模型良好的一致性,并且成功揭示了一个小的嵌入式特征,该特征在一个波长下吸收的强度是周围介质的3.5倍。 #1997美国眼镜学会

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