NMIBC的剂量学建议:模拟和体内研究(会议报告)

L. Lilge, Daniel Molehuis, A. Manalac, Fynn Schwiegelshohn, Vaughn Betz, Wayne Embree, A. Mandel, R. Dumoulin-White, G. Kulkani, M. Jewett
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摘要

复发性非肌肉浸润性膀胱癌(NMIBC)是一种弥漫性疾病,标准卡介苗治疗失败的患者面临预防性膀胱切除术。PDT因其结果多变和发病率高而失宠。为了克服PDT对膀胱肌层的相关毒性,建议使用更短的波长和注入光敏剂。虽然这两种方法在动物模型中都被证明可以改善结果,但它们以前没有在人类研究中结合起来。此外,膀胱高度可变的组织光学特性及其形状的影响尚未研究。在这里,我们使用CT图像和FullMonte软件包展示了6个人膀胱的表面剂量直方图,这些图像是通过光传播模拟得到的,用于解剖细节。单个光传感器与3个或12个光传感器测量膀胱表面平均辐照度的能力作为膀胱壁组织光学特性的函数进行了评估。结果表明,非球形膀胱内的辐照度可以发生一个数量级以上的变化,但辐照度直方图受发射器在膀胱内位移的影响很小。由于单个传感器监测的表面积在很大程度上取决于膀胱形状,因此单个传感器对膀胱平均辐照度的响应度可以均匀变化。12个光传感器监测整个膀胱表面几乎完整,因此它们的平均响应率与膀胱上的平均辐照度保持不变,在很大程度上与形状无关。传感器的响应对组织光学特性的依赖性也较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dosimetry recommendations for NMIBC: a simulation and in vivo study (Conference Presentation)
Recurrent Non-Muscle Invasive Bladder Cancer (NMIBC) is a diffuse disease, and patients have failed standard BCG therapy face prophylactic cystectomy. PDT fell out of favour due to its variable outcome, and high morbidity. To overcome PDT associate toxicity to the bladder’s muscle layer, the use of shorter wavelength and instillation of the photosensitizer were suggested. While either approach was shown to improve the outcome in animal models they have not previously combined in human studies. Additionally, the effects of highly variable tissue optical properties of the bladder and its shape have not been studied. Here, we present surface dose histograms derived from light propagation simulation in 6 human bladders using CT images for anatomical detail and the FullMonte software package. The ability of a single light sensor versus 3 or 12 light sensors to measure the average irradiance on the bladder surface was evaluated as a function of the bladder wall’s tissue optical properties. Results show that the irradiance in non-spherical bladders can vary over an order of magnitude, but the irradiance histograms are affected little by displacement of the emitter inside the bladder void. As the surface area monitored by a single sensor depends strongly on the bladder shape, the responsivity of a single sensor to the average bladder irradiance can vary equally. Twelve light sensors monitor the entire bladder surface almost complete and hence their average responsivity is constant to the average irradiance on the bladder largely independent of shape. The dependency of the sensor’s response on the tissue optical properties is also lower.
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