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    • 9. 发明申请
    • Magnetic Resonance Imaging (MRI) With Dual Agent Characterization
    • 具有双重特征的磁共振成像(MRI)
    • US20140292328A1
    • 2014-10-02
    • US14068537
    • 2013-10-31
    • Case Western Reserve University
    • Susann Brady-KalnayVikas GulaniMark Griswold
    • G01R33/56
    • G08C23/06A61B5/0017A61B5/0073A61B5/055A61B5/4244A61K49/06G01R33/3614G01R33/3692G01R33/4822G01R33/56G01R33/5608G01R33/56366G01R33/58
    • Example apparatus and methods concern determining whether a target material appears in a region experiencing nuclear magnetic resonance. One method acquires a baseline value for a magnetic resonance parameter (MRP) while the region is not exposed to a molecular imaging agent that affects the MRP, acquiring a non-specific uptake value for the MRP while the sample is influenced by a non-specific molecular imaging agent and acquiring a specific uptake value for the MRP while the sample is influenced by a specific molecular imaging agent. The non-specific masking problem is solved by characterizing the region as a function of the baseline value, the non-specific uptake value, and the specific uptake value. The function relies on the similarities and differences between non-specific uptake of the non-specific molecular imaging agent, non-specific uptake of the specific molecular imaging agent, and specific uptake of the specific molecular imaging agent.
    • 确定目标材料是否出现在经历核磁共振的区域中的示例性设备和方法。 一种方法获得磁共振参数(MRP)的基线值,而该区域不暴露于影响MRP的分子成像剂,获得MRP的非特异性吸收值,而样品受非特异性 分子显像剂,并且在样品受特定分子显像剂影响时获得MRP的特异摄取值。 通过将该区域表征为基准值,非特异性摄取值和特异摄取值的函数来解决非特异性掩蔽问题。 该功能依赖于非特异性分子显像剂的非特异性摄取,特异性分子显像剂的非特异性摄取和特异性分子成像剂的特异性吸收之间的相似性和差异性。