首页> 外文会议>Conference on optical methods for tumor treatment and detection: mechanisms and techniques in photodynamic therapy XXVI >In vivo wide-field multispectral dosimeter for use in ALA-PpIX based photodynamic therapy of skin
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In vivo wide-field multispectral dosimeter for use in ALA-PpIX based photodynamic therapy of skin

机译:在体内宽场多光谱剂量计中用于ALA-PPIX基皮肤动力学治疗皮肤

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Photodynamic therapy (PDT) for Actinic Kertoses (AK) using aminoluvelinic acid (ALA) is an FDA-approved treatment, which is generally effective, yet response rates vary. The origin of the variability is not well characterized, but may be related to inter-patient variability in the production of protoporphyrin IX (PpIX). While fiber-based point probe systems provide a method for measuring PpIX production, these measurements have demonstrated large spatial and inter-operator variability. Thus, in an effort to improve patient-specific dosimetry and treatment it is important to develop a robust system that accounts for spatial variability and reduces the chance of operator errors. To address this need, a wide-field multispectral imaging system was developed that is capable of quantifying maps of PpIX in both liquid phantoms and in vivo experiments, focusing on high sensitivity light signals. The system uses both red and blue excitation to elicit a fluorescent response at varying skin depths. A ten-position filter wheel with bandpass filters ranging from 635nm to 710nm are used to capture images along the emission band. A linear least-square spectral fitting algorithm provides the ability to decouple background autofluorescence from PpIX fluorescence, which has improved the system sensitivity by an order of magnitude, detecting nanomolar PpIX concentrations in liquid phantoms in the presence of 2% whole blood and 2% intralipid.
机译:使用氨基乙酸(ALA)的光学动力疗法(AK)是FDA批准的治疗,其通常有效,但响应率变化。可变性的起源并不具备很好的表征,但可能与原因卟啉IX(PPIX)的产生中的患者间变异有关。虽然基于纤维的点探针系统提供了一种用于测量PPIX生产的方法,但这些测量表明了大量的空间和操作型变异性。因此,为了改善患者特异性剂量测定和治疗,开发一个稳健的系统是重要的,该系统考虑空间可变性并减少操作员错误的可能性。为了解决这种需求,开发了广泛的多光谱成像系统,其能够在液体幽灵和体内实验中量化PPIX的地图,专注于高灵敏度光信号。该系统使用红色和蓝色激励来引出不同的肤质深度时的荧光响应。具有从635nm至710nm的带通滤波器的十个位置过滤器用于沿发射带捕获图像。线性最小平方光谱拟合算法提供了从PPIX荧光脱钩的能力,这通过幅度提高了系统敏感性,在2%全血和2%intralipid存在下检测液体模子中的纳摩尔PPIX浓度。

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