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A method to improve reconstruction of the distribution of hemoglobin oxygenation and MLu concentration in the human prostate before and after photodynamic therapy

机译:一种改善光动力治疗前后人体前列腺中血红蛋白氧合和MLu浓度分布重建的方法

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摘要

Explicit dosimetry of photodynamic therapy requires detailed knowledge of the light, drug, and oxygenation distributions within the target tissue. We present a method for the optical detection and three-dimensional reconstruction of hemoglobin concentration and oxygenation and sensitizer concentration within the human prostate. Spectrally resolved diffuse transmission measurements were made using a small isotropic fiber-based white light source and an isotropic detector inserted into the prostate via parallel closed transparent catheters. The spectra were modeled using the diffusion approximation appropriate for infinite media. The optical absorption of the prostate was assumed to be a linear combination of the absorption spectra of oxy- and deoxyhemoglobin and MLu, and the scattering was assumed to be of the form A(λ/λ0)−b. The separation of absorption and scattering coefficients was accomplished based on the spectral shape of the diffuse transmission, rather than the spatial variation in intensity. By making multiple measurements at various source-detector separations, we investigate the signal-to-noise sensitivity of our algorithm. In addition, the redundancy in our source-detector position matrix creates several positions in which the tissue parameters can be reconstructed from multiple independent measurements, allowing an assessment of the repeatability of the algorithm. We find significant heterogeneity in the reconstructed optical properties; however the recovery of spectrally consistent absorption and scattering spectra is improved compared to wavelength-wise reconstruction algorithms.
机译:光动力疗法的显式剂量测定需要详细了解靶组织内的光,药物和氧合分布。我们提出了一种光学检测和三维重建人体前列腺内血红蛋白浓度,氧合和敏化剂浓度的方法。使用基于各向同性光纤的小型白光源和通过平行封闭的透明导管插入前列腺的各向同性检测器进行光谱分辨的漫透射测量。使用适用于无限媒体的扩散近似对光谱进行建模。假设前列腺的光吸收是氧和脱氧血红蛋白与MLu的吸收光谱的线性组合,并且散射的形式为A(λ/λ0) -b 。吸收系数和散射系数的分离是基于漫透射的光谱形状而不是强度的空间变化来完成的。通过在不同的源-检测器间隔进行多次测量,我们研究了算法的信噪比敏感性。此外,源探测器位置矩阵中的冗余创建了几个位置,可以从多个独立的测量值中重建组织参数,从而可以评估算法的可重复性。我们发现在重建的光学特性中存在明显的异质性;然而,与波长重建算法相比,光谱一致的吸收光谱和散射光谱的恢复得到了改善。

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