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Spectroscopic time-resolved diffuse reflectance and transmittance measurements of the female breast at different interfiber distances

机译:不同纤维间距离的女性乳房的光谱时间分辨漫反射和透射率测量

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摘要

The first, to our knowledge, in-vivo broadband spectro-scopic characterization of breast tissue using different interfiber distances as well as transmittance measurements is presented. Absorption and scattering properties are measured on six healthy subjects, using time-resolved diffuse spectroscopy and an inverse model based on the diffusion equation. Waveiength-tunable picosecond-pulse-lasers and time-correlated single-photon counting detection are employed, enabling fully spectroscopic measurements in the range 610 to 1040 nm. Characterization of the absorption and reduced scattering coefficients of breast tissue is made with the aim of investigating individual variations, as well as variations due to different measurement geometries. Diffuse reflectance measurements at different interfiber distances (2, 3, and 4 cm) are performed, as well as measurements in transmittance mode, meaning that different sampling volumes are involved. The results show a large variation in the absorption and scattering properties depending on the subject, correlating mainly with the water versus lipid content of the breast. Intra-subject variations, due to different interfiber distances or transmittance modes, correlate with the known structures of the breast, but these variations are small compared to the subject-to-subject variation. The intrasubject variations are larger for the scattering data than the absorption data; this is consistent with different spatial localization of the measurements of these parameters, which is explained by the photon migration theory. (C) 2004 Society of Photo-Optical Instrumentation Engineers.
机译:首先,据我们所知,介绍了使用不同纤维间距离以及透射率测量对乳房组织进行的体内宽带光谱表征。使用时间分辨扩散光谱和基于扩散方程的逆模型,对六个健康受试者的吸收和散射特性进行了测量。采用波强度可调的皮秒脉冲激光和与时间相关的单光子计数检测,可在610至1040 nm范围内进行全光谱测量。表征乳腺组织的吸收系数和降低的散射系数是为了研究个体差异以及由于不同的测量几何形状而引起的差异。进行了不同纤维间距离(2、3和4 cm)处的漫反射率测量,以及透射率模式下的测量,这意味着需要使用不同的采样量。结果表明,取决于受试者,吸收和散射特性会有很大变化,这主要与乳房的水分含量和脂质含量有关。由于不同的纤维间距离或透射率模式,受试者内部的变化与乳房的已知结构相关,但是与受试者之间的变化相比,这些变化较小。散射数据的对象内变化大于吸收数据。这与这些参数的测量值在空间上的不同定位是一致的,这由光子迁移理论解释了。 (C)2004年光电仪器工程师协会。

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