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Interstitial photodynamic therapy for primary prostate cancer incorporating real-time treatment dosimetry

机译:主要前列腺癌的间质光动力治疗掺入实时治疗剂量测定

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Photodynamic therapy (PDT) for the treatment of prostate cancer has been demonstrated to be a safe treatment option capable of inducing tissue necrosis and decrease in prostate specific antigen (PSA). Research groups report on large variations in treatment response, possibly due to biological variations in tissue composition and short-term response to the therapeutic irradiation. Within our group, an instrument for interstitial PDT on prostate tissue that incorporates realtime treatment feedback is being developed. The treatment protocol consists of two parts. The first part incorporates the pre-treatment plan with ultrasound investigations, providing the geometry for the prostate gland and surrounding risk organs, an iterative random-search algorithm to determine near-optimal fiber positions within the reconstructed geometry and a Block-Cimmino optimization algorithm for predicting individual fiber irradiation times. During the second part, the therapeutic light delivery is combined with measurements of the light transmission signals between the optical fibers, thus monitoring the tissue effective attenuation coefficient by means of spatially resolved spectroscopy. These data are then used as input for repeated runs of the Block-Cimmino optimization algorithm. Thus, the irradiation times for individual fibers are updated throughout the treatment in order to compensate for the influence of changes in tissue composition on the light distribution at the therapeutic wavelength.
机译:用于治疗前列腺癌的光动力疗法(PDT)是一种安全的治疗方法,能够诱导组织坏死和前列腺特异性抗原(PSA)的降低。研究组关于治疗反应的大变化的报告,可能是由于组织成分的生物变化和对治疗辐射的短期反应。在我们的小组中,正在开发一种包含实时治疗反馈的前列腺组织上的间隙PDT乐器。治疗协议由两部分组成。第一部分包括具有超声研究的预处理计划,提供前列腺和周围风险器官的几何形状,一种迭代随机搜索算法,用于确定重建几何形状内的近最优光纤位置和块 - CIMMINO优化算法预测各个纤维照射时间。在第二部分期间,治疗光输送与光纤之间的光传输信号的测量结合,从而通过空间分辨的光谱监测组织有效衰减系数。然后将这些数据用作反复运行的块CIMMINO优化算法的输入。因此,在整个处理中更新各种纤维的照射时间,以便补偿组织组合物变化对治疗波长的光分布的影响。

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