Zhang Feng-juan, Hu Xiao-ming, Zhou Ya, Li Qin
Beijing Institute of Technology, School of Life Science, Beijing 100081, China.
Beijing Institute of Technology, School of Optoelectronics, Beijing 100081, China.
J Biomed Opt. 2015 Apr;20(4):048004. doi: 10.1117/1.JBO.20.4.048004.
Controllable and effective irradiation of lesions is among the key factors that affect the potency of photodynamic therapy (PDT). An optimization method for the irradiance distribution of treatment was proposed which can be used to improve the efficacy of PDT and allow more lesions to receive the desired irradiance level in a single therapy session. With the proposed digital illumination binocular treatment system, the preferred surface normal vectors, irradiation angles, as well as area and weight coefficients of lesions can be achieved and used as characteristic parameters to optimize the irradiation direction. Two port-wine stain phantom experiments were performed. The comparison of the illumination area between preoptimization and postoptimization showed that the proposed method can effectively guide the light source control, improve the distribution of light dose, and increase the effective treatment area.
对病变进行可控且有效的照射是影响光动力疗法(PDT)效果的关键因素之一。提出了一种治疗辐照度分布的优化方法,该方法可用于提高PDT的疗效,并使更多病变在单次治疗过程中接受所需的辐照度水平。利用所提出的数字照明双目治疗系统,可以获得病变的优选表面法向量、照射角度以及面积和权重系数,并将其用作优化照射方向的特征参数。进行了两个鲜红斑痣模型实验。预优化和后优化之间照明面积的比较表明,所提出的方法可以有效地指导光源控制,改善光剂量分布,并增加有效治疗面积。