首页> 外文期刊>Physics in medicine and biology. >Light dosimetry for multiple cylindrical diffusing sources for use in photodynamic therapy
【24h】

Light dosimetry for multiple cylindrical diffusing sources for use in photodynamic therapy

机译:用于光动力治疗的多个圆柱状漫射源的光剂量法

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Since prostatic carcinoma is usually multifocal within the prostate, effective photodynamic therapy (PDT) of prostatic carcinoma is expected to require the photochemical destruction of the entire organ. Accurate light dosimetry will be essential to avoid damage to proximal sensitive tissue such as the rectum. The prostate will be illuminated using interstitial cylindrical fibreoptic light sources and, because of the limited transparency of prostate tissue, these sources will be mounted in a parallel array analogous to the source array used in brachytherapy. Both source spacing and the light delivered to each source will control light dosimetry from a parallel array of fibreoptic sources implanted into tissue. Clinical PDT will require dose planning in order to determine the position and illumination of each source prior to treatment, but unfortunately few methods of predicting light fluence from cylindrical interstitial sources currently exist. In this paper, a novel light fluence model is used to predict tissue transillumination resulting from cylindrical interstitial sources. The cylindrical source is modelled as a finite array of infinitesimal small sources using Christian Huygens' famous single-slit diffraction model. We show that this source model when combined with a robust derivation of fluence in a spherical geometry using diffusion theory, accurately predicts fluence levels from a single cylindrical source in a variety of media. This method is found to retain its accuracy near the sources. With a simple extension, this fluence model is used to predict the light fluence levels from an array of three sources and the predicted fluence is found to compare favourably with experimental data.
机译:由于前列腺癌通常在前列腺内是多灶性的,因此预期对前列腺癌的有效光动力疗法(PDT)需要整个器官的光化学破坏。准确的光剂量测定对于避免损坏近端敏感组织(例如直肠)至关重要。前列腺将使用间质性圆柱形光纤光源进行照明,并且由于前列腺组织的透明性有限,这些光源将以类似于近距离放射治疗中使用的光源阵列的平行阵列安装。光源间距和传递到每个光源的光都将控制来自植入组织中的平行光纤光源阵列的光剂量。临床PDT将需要进行剂量规划,以便在治疗之前确定每个光源的位置和照度,但不幸的是,目前很少有预测来自圆柱形间隙光源的光通量的方法。在本文中,一种新颖的光通量模型用于预测由圆柱状间隙源产生的组织透照。使用克里斯蒂安·惠更斯著名的单缝衍射模型,将圆柱源建模为无限小源的有限阵列。我们显示,此源模型与使用扩散理论的球形几何中的注量的鲁棒推导结合时,可以准确地预测来自多种介质中单个圆柱源的注量水平。发现该方法在源附近保持其准确性。通过简单的扩展,该注量模型可用于预测来自三个光源的阵列的注量水平,并且发现预测的注量与实验数据具有良好的比较。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号