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    • 3. 发明申请
    • APPARATUS AND METHOD FOR MULTI-MODAL IMAGING
    • 多模式成像的装置和方法
    • US20100220836A1
    • 2010-09-02
    • US12763231
    • 2010-04-20
    • Gilbert D. FekeWilliam E. McLaughlinDouglas L. Vizard
    • Gilbert D. FekeWilliam E. McLaughlinDouglas L. Vizard
    • G01N23/04H04N5/225G06K9/00
    • A61B6/4417A61B5/0035A61B5/0059A61B5/0071A61B6/00A61B6/5247A61B2562/17
    • An imaging system and method for imaging an immobilized object. The imaging system includes a support member adapted to receive the object in an immobilized state. The system also includes first means for imaging the immobilized object in a first imaging mode to capture a first image, and second means for imaging the immobilized object in a second imaging mode to capture a second image. The first imaging mode is selected from the group: x-ray mode and radio isotopic mode. The second imaging mode is selected from the group: bright-field mode and dark-field mode. The first and second means for imaging may be included in a capture system having a camera, a first mirror on a first side of the support member for reflecting light to capture the first and second images and a second mirror on a second, opposite side of the support member for reflecting light to capture a third image from an opposite side of the object. A movable phosphor screen is employed when the first image is captured and not employed when the second image is captured. The phosphor screen is adapted to be movable without moving the immobilized object and support member. The system can further include means for generating a third image comprised of the first and second images.
    • 一种用于对固定物体进行成像的成像系统和方法。 成像系统包括适于在固定状态下接收物体的支撑构件。 该系统还包括用于在第一成像模式下成像固定的物体以捕获第一图像的第一装置,以及用于在第二成像模式下成像固定的物体以捕获第二图像的第二装置。 第一种成像模式选自x射线模式和放射同位素模式。 第二种成像模式选自明场模式和暗场模式。 用于成像的第一和第二装置可以包括在具有照相机的捕获系统中,在支撑构件的第一侧上的第一反射镜用于反射光以捕获第一和第二图像,并且在第二反射镜的第二相对侧 用于反射光以从物体的相对侧捕获第三图像的支撑构件。 当捕获第一图像时采用可移动荧光屏,并且当捕获第二图像时不采用可移动荧光屏。 荧光屏适于可移动而不移动固定的物体和支撑构件。 该系统还可以包括用于生成由第一和第二图像组成的第三图像的装置。
    • 7. 发明申请
    • FLUORESCENT NIRF ACTIVATABLE PROBES FOR DISEASE DETECTION
    • 用于疾病检测的荧光近红外激活探针
    • US20110293529A1
    • 2011-12-01
    • US13101370
    • 2011-05-05
    • Tao JiWarren M. LeevyWilliam E. McLaughlinYawfui Yong
    • Tao JiWarren M. LeevyWilliam E. McLaughlinYawfui Yong
    • A61K49/00C12Q1/68C12Q1/37G01N33/53B82Y15/00
    • G01N33/587A61K49/0485B82Y5/00B82Y15/00C12Q1/34G01N33/542
    • Fluorescent activatable probes for imaging biological processes and disease detection in vitro and in vivo. There is also described a method for detecting the presence of an enzyme. A sample is contacted with a nanoparticle including a monomer, at least one cleavable spacer comprising at least one fluorescence activation site, and at least two dyes of at least two types. The cleavable spacer is attached at one end to the nanoparticle. The at least two types comprise an energy donor type and an energy acceptor type. At least one dye of one type is embedded in the nanoparticle and the cleavable spacer has at least one dye of the other type attached. The at least two dyes comprise at least one matched pair capable of fluorescence resonance energy transfer. Fluorescence is detected by exposing the sample to a light source, and detecting emitted light with a detector.
    • 用于成像生物过程和体外和体内疾病检测的荧光可激活探针。 还描述了检测酶的存在的方法。 将样品与包含单体的纳米颗粒,至少一个可切割间隔基包含至少一个荧光活化位点和至少两种至少两种类型的染料接触。 可切割间隔物的一端连接到纳米颗粒。 至少两种类型包括能量供体类型和能量受体类型。 至少一种一种染料被包埋在纳米颗粒中,并且可切割间隔物具有至少一种所连接的另一种类型的染料。 所述至少两种染料包含能够进行荧光共振能量转移的至少一个匹配对。 通过将样品暴露于光源并用检测器检测发射光来检测荧光。
    • 9. 发明授权
    • Fluorescent NIRF activatable probes for disease detection
    • 用于疾病检测的荧光NIRF可激活探针
    • US08834846B2
    • 2014-09-16
    • US13101370
    • 2011-05-05
    • Tao JiWarren M. LeevyWilliam E. McLaughlinYawfui Yong
    • Tao JiWarren M. LeevyWilliam E. McLaughlinYawfui Yong
    • A61B5/00
    • G01N33/587A61K49/0485B82Y5/00B82Y15/00C12Q1/34G01N33/542
    • Fluorescent activatable probes for imaging biological processes and disease detection in vitro and in vivo. There is also described a method for detecting the presence of an enzyme. A sample is contacted with a nanoparticle including a monomer, at least one cleavable spacer comprising at least one fluorescence activation site, and at least two dyes of at least two types. The cleavable spacer is attached at one end to the nanoparticle. The at least two types comprise an energy donor type and an energy acceptor type. At least one dye of one type is embedded in the nanoparticle and the cleavable spacer has at least one dye of the other type attached. The at least two dyes comprise at least one matched pair capable of fluorescence resonance energy transfer. Fluorescence is detected by exposing the sample to a light source, and detecting emitted light with a detector.
    • 用于成像生物过程和体外和体内疾病检测的荧光可激活探针。 还描述了检测酶的存在的方法。 将样品与包含单体的纳米颗粒,至少一个可切割间隔基包含至少一个荧光活化位点和至少两种至少两种类型的染料接触。 可切割间隔物的一端连接到纳米颗粒。 至少两种类型包括能量供体类型和能量受体类型。 至少一种一种染料被包埋在纳米颗粒中,并且可切割间隔物具有至少一种所连接的另一种类型的染料。 所述至少两种染料包含能够进行荧光共振能量转移的至少一个匹配对。 通过将样品暴露于光源并用检测器检测发射光来检测荧光。