Hu Yida, Wang Ken, Zhu Timothy C
Departments of Radiation Oncology, University of Pennsylvania, Philadelphia, PA.
Proc SPIE Int Soc Opt Eng. 2013 Jul 13;7380:73801W. doi: 10.1117/12.823064.
A novel light source - light blanket composed of a series of parallel cylindrical diffusing fibers (CDF) is designed to substitute the hand-held point source in the PDT treatment of the malignant pleural or intraperitoneal diseases. It achieves more uniform light delivery and less operation time in operating room. The preliminary experiment was performed for a 9cmx9cm light blanket composed of 8 9-cm CDFs. The linear diffusers were placed in parallel finger-like pockets. The blanket is filled with 0.2 % intralipid scattering medium to improve the uniformity of light distribution. 0.3-mm aluminum foil is used to shield and reflect the light transmission. The full width of the profile of light distribution at half maximum along the perpendicular direction is 7.9cm and 8.1cm with no intralipid and with intralipid. The peak value of the light fluence rate profiles per input power is 11.7mW/cm/W and 8.6mW/cm/W respectively. The distribution of light field is scanned using the isotropic detector and the motorized platform. The average fluence rate per input power is 8.6 mW/cm/W and the standard deviation is 1.6 mW/cm/W for the scan in air, 7.4 mW/cm/W and 1.1 mW/cm/W for the scan with the intralipid layer. The average fluence rate per input power and the standard deviation are 20.0 mW/cm/W and 2.6 mW/cm/W respectively in the tissue mimic phantom test. The light blanket design produces a reasonably uniform field for effective light coverage and is flexible to confirm to anatomic structures in intraoperative PDT. It also has great potential value for superficial PDT treatment in clinical application.
一种新型光源——光毯,由一系列平行的圆柱形漫射光纤(CDF)组成,旨在替代恶性胸膜或腹膜疾病光动力疗法(PDT)治疗中使用的手持式点光源。它能实现更均匀的光传输,且在手术室中的操作时间更短。对由8根9厘米长的CDF组成的9厘米×9厘米光毯进行了初步实验。线性漫射器放置在平行的指状袋中。光毯填充0.2%的脂质乳剂散射介质以提高光分布的均匀性。使用0.3毫米厚的铝箔来屏蔽和反射光传输。在垂直方向上,无脂质乳剂和有脂质乳剂时光分布曲线半高宽分别为7.9厘米和8.1厘米。每输入功率的光通量率曲线峰值分别为11.7毫瓦/平方厘米/瓦和8.6毫瓦/平方厘米/瓦。使用各向同性探测器和电动平台扫描光场分布。在空气中扫描时,每输入功率的平均光通量率为8.6毫瓦/平方厘米/瓦,标准偏差为1.6毫瓦/平方厘米/瓦;有脂质乳剂层扫描时,平均光通量率为7.4毫瓦/平方厘米/瓦,标准偏差为1.1毫瓦/平方厘米/瓦。在组织模拟体模测试中,每输入功率的平均光通量率和标准偏差分别为20.0毫瓦/平方厘米/瓦和2.6毫瓦/平方厘米/瓦。光毯设计产生了一个相当均匀的场,以实现有效的光覆盖,并且在术中PDT中能灵活贴合解剖结构。它在临床应用中的浅表PDT治疗也具有很大的潜在价值。