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具有光剂量动态规划与监测功能的三维图像引导局部光动力治疗系统

Three-dimensional image-guided topical photodynamic therapy system with light dosimetry dynamic planning and monitoring.

作者信息

Wang Xu, Jin Teng, Xiong Jiyuan, Zhao Huiting, Hu Xiaoming, Li Qin, Ren Jie, Zhao Yi

机构信息

Department of Biomedical Engineering, School of Life Science, Beijing Institute of Technology, Beijing, China.

Department of Dermatology, Beijing Tsinghua Changgung Hospital, School of Clinical Medicine, Tsinghua University, Beijing, China.

出版信息

Biomed Opt Express. 2022 Dec 20;14(1):453-466. doi: 10.1364/BOE.481248. eCollection 2023 Jan 1.

Abstract

Photodynamic therapy (PDT) has shown significant potential for skin disease treatment. As a key element, light is critical to influencing its treatment outcome, and light dosimetry is an issue of much concern for researchers. However, because of three-dimensional irregularity in shape and patient's movement during the therapy, irradiance hardly keeps uniform on the lesion and flux measurement remains a challenge. In this work, we report the development of a three-dimensional image-guided PDT system, and the method of dynamic irradiance planning and flux monitoring for lesions in different poses. This system comprises a three-dimensional camera for monitoring patients' movement during therapy, a computer for data analysis and processing, and a homemade LED array for forming uniform irradiance on lesions. Simulations on lesions of the face and arm show that the proposed system significantly increases effective therapy area, enhances irradiance uniformity, is able to visualize flux on the lesion, and reduces risks of burns during PDT. The developed PDT system is promising for optimizing procedures of PDT and providing better treatment outcomes by delivering controllable irradiance and flux on lesions even when a patient is moving.

摘要

光动力疗法(PDT)在皮肤病治疗方面已显示出巨大潜力。作为关键要素,光对于影响其治疗效果至关重要,而光剂量学是研究人员非常关注的一个问题。然而,由于治疗过程中病变形状的三维不规则性以及患者的移动,辐照度在病变部位很难保持均匀,通量测量仍然是一个挑战。在这项工作中,我们报告了一种三维图像引导的光动力治疗系统的开发,以及针对不同姿势病变的动态辐照度规划和通量监测方法。该系统包括一个用于在治疗过程中监测患者移动的三维相机、一台用于数据分析和处理的计算机,以及一个用于在病变部位形成均匀辐照度的自制LED阵列。对面部和手臂病变的模拟表明,所提出的系统显著增加了有效治疗面积,提高了辐照度均匀性,能够可视化病变部位的通量,并降低了光动力治疗期间的烧伤风险。所开发的光动力治疗系统有望通过在患者移动时在病变部位提供可控的辐照度和通量来优化光动力治疗程序并提供更好的治疗效果。

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