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- W2556249570 abstract "N. Todd, S. Kim, E. Jeong, D. Parker Physics, University of Utah, Salt Lake City, UT, United States, Radiology, University of Utah, Salt Lake City, UT, United States INTRODUCTION Temperature sensitive properties that can be measured using MRI techniques include the proton resonant frequency (PRF) shift , T1 relaxation time , and the diffusion coefficient of water molecules . Molecular diffusivity in MRI has been measured most accurately by using conventional 2D singleshot diffusion weightedEPI (2D ss-DWEPI), because of its immunity to motion artifacts. However, 2D ss-DWEPI is limited to intracranial applications far from the sinus, due to the severe geometric distortion caused by strong non-linear local magnetic fields at or near tissue/air or tissue/bone interfaces. Although susceptibility induced distortions can be reduced by using multishot DW acquisition techniques, these multishot techniques, in general, suffer from artifacts caused by phase errors induced by small local or global motions coupled with the large diffusion gradients. These artifacts (motion and susceptibility artifacts) cause inaccuracy in diffusion measurement. In this report, temperature measurement using 3D singleshot DW stimulated echo planar imaging (3D ss-DWSTEPI) is presented . 3D ss-DWSTEPI is a rapid 3D singleshot imaging technique that is almost free from both artifacts, therefore temperature distributions can be measured rapidly and accurately. This technique may be useful for feedback applications to control temperature, such as ablation using HIFU, RF, or microwave." @default.
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- W2556249570 date "2006-01-01" @default.
- W2556249570 modified "2023-09-24" @default.
- W2556249570 title "Rapid Diffusion-Weighted Thermometry (DWT) using 3D singleshot Stimulated EPI" @default.
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