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A DECISION-THEORETIC APPROACH TO TRANSILLUMINATION IMAGING IN BIOLOGICAL MEDIUMS

机译:生物介质中转译成像的决策理论方法

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The tradeoffs between ballistic imaging (time-gated imaging of first-arrival, unscattered photons) and conventional imaging for resolving tumors in biological scattering media are examined. For ballistic imaging, closed form expressions are derived to characterize the resolvability using five degrees of freedom (laser intensity, scattering coefficient, thickness of medium, false alarm rate, and number of observations). For conventional imaging, a numerical approximation is used to find the asymptotic resolution using the scattering and absorption coefficients of the medium. Using the characterizations of both approaches, a decision-theoretic approach to determining the minimum resolvable object size is developed, which provides clear guidelines as to when time-gated ballistic imaging methods offer advantages over conventional imaging. The theoretical predictions are validated through a realistic simulation of tumors in breast tissue.
机译:检查了弹道成像(先到达,未散射光子的时间门控成像)和用于解决生物散射介质中肿瘤的常规成像之间的权衡。对于弹道成像,使用五个自由度(激光强度,散射系数,介质厚度,误报率和观察次数),得出闭合形式的表达式来表征可分辨性。对于常规成像,使用数值近似值使用介质的散射系数和吸收系数来找到渐近分辨率。利用这两种方法的特性,开发了一种确定最小可分辨物体尺寸的决策理论方法,该方法为何时门控弹道成像方法提供了优于常规成像的优势提供了清晰的指导。理论预测是通过对乳腺组织中肿瘤的真实模拟来验证的。

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