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Detection and characterization of optical inhomogeneities with diffuse photon density waves: A signal-to-noise analysis

机译:扩散光子密度波的光学不均匀性的检测和表征:信噪比分析

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Diffusing photons provide information about the optical properties of turbid media. In biological tissues these optical properties may be correlated to physiological parameters, enabling one to probe effectively the physiological states of tissue for abnormalities such as tumors and hemorrhages. We show that positional uncertainty in the source and detector lead to significant random errors that degrade the optical information available from diffusing photons. We investigate the Limits for the detection, localization, and characterization of optical inhomogeneities by using diffusing photons as a probe. Although detection is sufficient for tumor screening, fill characterization of the optical properties is desirable for specification of the tumor. Our findings in model breast systems with realistic signal-to-noise ratios indicate that tumors as small as 0.3 cm in diameter can be unambiguously detected; however, simultaneous determination of tumor size and optical properties is possible only if its diameter is of the order of 1.0 cm or larger. On the other hand, if a. priori information about the size (optical properties) is available, then the optical properties (size) of tumors as small as 0.3 cm in diameter can be determined. (C) 1997 Optical Society of America
机译:扩散光子提供有关混浊介质光学特性的信息。在生物组织中,这些光学特性可能与生理参数相关,使人们能够有效地探测组织的生理状态是否出现异常,例如肿瘤和出血。我们表明,源和检测器中的位置不确定性会导致明显的随机误差,从而降低可用于扩散光子的光学信息。我们通过使用扩散光子作为探针来研究检测,定位和表征光学不均匀性的极限。尽管检测足以进行肿瘤筛查,但是光学特性的填充表征对于确定肿瘤是理想的。我们在具有现实信噪比的模型乳房系统中的发现表明,可以清楚地检测出直径仅为0.3 cm的肿瘤;但是,只有在其直径为1.0厘米或更大时,才能同时确定肿瘤的大小和光学特性。另一方面,如果。可获得有关大小(光学特性)的先验信息,然后可以确定直径小至0.3 cm的肿瘤的光学特性(大小)。 (C)1997年美国眼镜学会

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