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        Design and Development of Dual Tuned 19F and 1H RF Birdcage Coils for Small Animal MRI at 3T 

        Gajawada, Gowtham (2015)
        Conventional proton (1H) magnetic resonance imaging (MRI) is generally insensitive to the lung due to the low tissue density and other complicating factors. On the other hand, inhaled inert fluorinated gas MRI is a ...
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        Functional Imaging of the Lungs using Magnetic Resonance Imaging of Inert Fluorinated Gases 

        Couch, Marcus (2016)
        Fluorine-19 (19F) magnetic resonance imaging (MRI) of the lungs using inhaled inert fluorinated gases can potentially provide high quality anatomical and functional images of the lungs. This technique is able to visualize ...
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        HyperCEST MR studies of Xenon-129 (129Xe) biosensors and MRI detection of 129Xe in the brain 

        Wade, Alanna (2019)
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        Medical applications of fluorine-19 and hyperpolarized xenon129 magnetic resonance imaging 

        Shepelytskyi, Yurii (2020)
        Multinuclear magnetic resonance imaging (MRI) is currently under extensive development. Although conventional proton MRI is mostly known as an anatomical medical imaging modality with an excellent soft tissue contrast, ...
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        The medical applications of hyperpolarized Xe and nonproton magnetic resonance imaging 

        Grynko, Vira (2024)
        Hyperpolarized 129Xe (HP 129Xe) magnetic resonance imaging (MRI) is a relatively young field which is experiencing significant advancements each year. Conventional proton MRI is widely used in clinical practice as an ...
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        RF coils design for small animal MRI lung imaging at 3T using hyperpolarized 129Xe and inert fluorinated gases 

        Li, Tao (2014-01-22)
        This thesis described the investigation, construction and testing of two sets of RF coils for their applications in novel lung MRI imaging techniques. In the first part of the thesis, a quadrature-driven birdcage coil for ...
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        Theory and Production of Hyperpolarized Xenon Gas 

        Fitterman, Avner (2015-12-03)
        Conventional magnetic resonance imaging (MRI) modality is based on the magnetization that is formed by the influence of a strong polarizing magnetic field on the spin of protons, typically those of water molecules within ...

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