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The role of medical imaging in the context of photodynamic therapy

机译:医学成像在光动力治疗背景下的作用

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Photodynamic therapy (PDT) is a modality with promising results for the treatment of various cancers. PDT is increasingly included in the standard of care for different pathologies. The role of medical imaging in this context is crucial to better understand how and where to deliver the therapy but also to observe the different mechanisms involved in the effects on tumors. At different stages of delivery, PDT requires imaging to plan, evaluate and monitor treatment. In this paper, we review the contribution of Magnetic Resonance Imaging or Positron Emission Tomography for planning and therapeutic monitoring purposes. Several solutions have been proposed to plan PDT from imaging. MRI and dedicated segmentation algorithm have been recently proposed to plan interstitial PDT with stereotactic localization and light diffusion simulation capabilities. Additionally, photosensitizer biodistribution has been evaluated with radiolabeled photosensitizers. The effects of PDT delivery have also been explored with specific Magnetic Resonance Imaging or Positron Emission Tomography radiopharmaceuticals to evaluate the effects on cells (apoptosis, necrosis, proliferation, metabolism) or vascular damage. The contribution of medical imaging in the context of photodynamic therapies is important and continues to increase. Using morphological or molecular imaging has to be considered for future developments of PDT.
机译:光动力疗法(PDT)是一种态度,具有治疗各种癌症的有希望的结果。 PDT越来越多地包括在不同病理学的护理标准中。医学成像在这种背景下的作用至关重要,以更好地了解如何以及在携带治疗方面以及观察对肿瘤影响的不同机制。在不同的交付阶段,PDT需要成像计划,评估和监测治疗。在本文中,我们审查了磁共振成像或正电子发射断层扫描以进行规划和治疗监测目的的贡献。已经提出了几种解决方案来计划PDT成像。最近已经提出了MRI和专用分割算法以规划间隙PDT,具有立体定位和光扩散模拟能力。另外,光敏剂生物分布已经用放射性标记的光敏剂评估。还探讨了PDT递送的效果,具有特定的磁共振成像或正电子发射断层摄影放射性药物,以评估对细胞的影响(细胞凋亡,坏死,增殖,代谢)或血管损伤。在光动力疗法的背景下医学成像的贡献是重要的,并且继续增加。使用形态学或分子成像必须考虑PDT的未来发展。

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