System and method for vastly undersampled isotropic projection reconstruction with inversion recovery

Described here are a system and method for obtaining a time series of images that depict a subject using an inversion recovery ("IR") pulse sequence with a unique data acquisition scheme that allows for the retrospective identification of an image having an optimal tissue contrast. Data ac...

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Main Authors KECSKEMETI STEVEN RYAN, ALEXANDER ANDREW L
Format Patent
LanguageEnglish
Published 14.06.2016
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Abstract Described here are a system and method for obtaining a time series of images that depict a subject using an inversion recovery ("IR") pulse sequence with a unique data acquisition scheme that allows for the retrospective identification of an image having an optimal tissue contrast. Data acquisition is performed using a radial acquisition scheme such as, preferably, a vastly undersampled isotropic projection reconstruction ("VIPR") scheme. Using VIPR and IR, combined with a unique projection ordering, a series of three-dimensional, high spatial resolution images with multiple different image contrasts can be obtained.
AbstractList Described here are a system and method for obtaining a time series of images that depict a subject using an inversion recovery ("IR") pulse sequence with a unique data acquisition scheme that allows for the retrospective identification of an image having an optimal tissue contrast. Data acquisition is performed using a radial acquisition scheme such as, preferably, a vastly undersampled isotropic projection reconstruction ("VIPR") scheme. Using VIPR and IR, combined with a unique projection ordering, a series of three-dimensional, high spatial resolution images with multiple different image contrasts can be obtained.
Author KECSKEMETI STEVEN RYAN
ALEXANDER ANDREW L
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Snippet Described here are a system and method for obtaining a time series of images that depict a subject using an inversion recovery ("IR") pulse sequence with a...
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MEASURING ELECTRIC VARIABLES
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Title System and method for vastly undersampled isotropic projection reconstruction with inversion recovery
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