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APPARATUS AND METHOD FOR QUANTITATIVE NONCONTACT IN VIVO FLUORESCENCE TOMOGRAPHY USING A PRIORI INFORMATION

机译:利用先验信息进行体内荧光成像定量非接触的设备和方法

摘要

An apparatus for providing an integrated tri-modality system includes a fluorescence tomography subsystem (FT), a diffuse optical tomography subsystem (DOT), and an x-ray tomography subsystem (XCT), where each subsystem is combined in the integrated tri-modality system to perform quantitative fluorescence tomography with the fluorescence tomography subsystem (FT) using multimodality imaging with the x-ray tomography subsystem (XCT) providing XCT anatomical information as structural a priori data to the integrated tri-modality system, while the diffuse optical tomography subsystem (DOT) provides optical background heterogeneity information from DOT measurements to the integrated tri-modality system as functional a priori data. A method includes using FT, DOT, and XCT in an integrated fashion wherein DOT data is acquired to recover the optical property of the whole medium to accurately describe photon propagation in tissue, where structural limitations are derived from XCT, and accurate fluorescence concentration and lifetime parameters are recovered to form an accurate image.
机译:一种用于提供集成三峰系统的设备,包括荧光层析X射线断层摄影子系统(FT),漫射光学层析X射线断层摄影子系统(DOT)和X射线层析X射线断层摄影子系统(XCT),其中每个子系统被组合在集成的三峰中。系统通过使用X线断层摄影子系统(XCT)的多模态成像与荧光断层摄影子系统(FT)进行定量荧光断层摄影,而XCT解剖学信息将XCT解剖学信息作为结构先验数据提供给集成三模态系统,而扩散光学断层摄影子系统(DOT)将DOT测量的光学背景异质性信息作为功能先验数据提供给集成三峰系统。一种方法包括以集成方式使用FT,DOT和XCT,其中获取DOT数据以恢复整个介质的光学特性,以准确描述组织中的光子传播,其中结构限制源自XCT,并具有精确的荧光浓度和寿命恢复参数以形成准确的图像。

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