Wisconsin Alumni Research Foundation

Technology

UW-Madison researchers have developed an automated process to accurately quantitate breast density using MR images.  The methods assess tissue properties within a region of interest (ROI) us...
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Scott Reeder, Roberta Strigel | P160101US01

Technology

Improved Phantom for Iron and Fat Quantification MRI

The ability to quantify fat concentration in the body has become increasingly important given the rise in obesity and related comorbidities. Likewise, the ability to quantify iron concentration is imp...
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Scott Reeder, Diego Hernando Arribas, Samir Sharma | P150328US01

Technology

Improved Phantom for Quantitative Diffusion MRI

Among numerous magnetic resonance imaging contrast mechanisms, the insights that diffusion-weighted MRI provides into microstructural tissue changes make it an excellent biomarker for detection and ev...
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Scott Reeder, Diego Hernando Arribas, Xiaoke Wang | P150322US01

Technology

Clearer MRI Near Metallic Implants

More than a million joint replacements were performed in the Unites States in 2012 and more than four million implant surgeries are expected in 2030. Such implants pose a challenge to magnetic resonan...
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Scott Reeder, Nathan Artz, Matthew Smith | P140004US01

Technology

Magnetic Resonance Imaging of Metabolites

In magnetic resonance imaging (MRI), tissue is scanned using magnetic fields that excite atoms and cause them to emit signals. These nuclear magnetic resonance (NMR) signals can be processed into an i...
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Scott Reeder | P06190US

Technology

Detecting Iron Overload with MRI

Iron is an essential nutrient for the human body but is toxic in excess. Iron overload is a particular hazard to patients requiring regular blood transfusions. Treatment for patients with iron overloa...
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Scott Reeder, Diego Hernando Arribas | P120356US01

Technology

Accelerated MRI Scanning Using Spectral Sensitivity

Magnetic resonance imaging (MRI) of metallic implants can be challenging because metal and surrounding tissue impact the main magnetic field differently. Such magnetic field inhomogeneities cause off-...
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Scott Reeder, Matthew Smith, Nathan Artz | P120310US01

WARF