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Individualization of interstitial photodynamic therapy for malignant gliomas

机译:恶性胶质瘤间质光动力学治疗的个体化

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Interstitial photodynamic therapy (iPDT) is currently being investigated as a light-based treatment option for highly malignant brain tumours (glioblastomas/GBM). To obtain a sufficient irradiation of the tumour, quantitative knowledge about the light propagation in the tissue is required for the light dosimetry calculations underlying the clinical treatment planning. To individualize the light dosimetry calculations, the optical properties of the irradiated tissue need to be determined in-vivo. A novel approach for this purpose is based on the direction-resolved light detection within the tissue, using a rotating optical side-view probe. During measurement, the tissue is irradiated via a separate interstitially placed light applicator, and from the angular dependence of the recorded signal the optical tissue properties are calculated, based on a solution of the radiative transfer equation (RTE). Measurements were performed on liquid tissue phantoms and biological tissue samples. As a result, an over- and underestimation of the calculated optical absorption and scattering coefficients may arise in some situations, but the effective attenuation coefficient remains largely unaffected and corresponds well with literature values.
机译:目前正在研究间质光动力治疗(IPDT)作为高度恶性脑肿瘤(GlioBlastomas / GBM)的基于轻基治疗选择。为了获得肿瘤的充分照射,需要对临床治疗计划的光剂量测定计算需要组织中的光繁殖的定量知识。为了个体化光剂量测定计算,需要在体内测定辐照组织的光学性质。一种用于此目的的新方法基于组织内的方向分辨的光检测,使用旋转光学侧视图探针。在测量期间,通过单独的倒置放置的光涂抹器照射组织,并且根据辐射传输方程(RTE)的溶液计算记录信号的角度依赖性光学组织特性。对液体组织素和生物组织样品进行测量。结果,在某些情况下可以出现计算出的光学吸收和散射系数的过度和低估,但是有效衰减系数仍然很大程度上不受影响并且与文献值良好。

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