• Title of article

    Time-resolved and high-resolution MRA in a rabbit model of pulmonary embolism at 7 T: preliminary results

  • Author/Authors

    Mata، نويسنده , , Jaime F. and Bozlar، نويسنده , , Ugur and Mugler III، نويسنده , , John P. and Miller، نويسنده , , Grady W. and Berr، نويسنده , , Stuart S. and Hagspiel، نويسنده , , Klaus D.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    7
  • From page
    139
  • To page
    145
  • Abstract
    Purpose te feasibility of using time-resolved and high-resolution, contrast-enhanced magnetic resonance angiography (MRA) at 7 T for characterization of an animal model of pulmonary embolism. s ere performed in five rabbits using a 7-T MR scanner. Preceding the MR studies, each rabbit underwent a pulmonary artery catheterization with balloon placement. Two doses of gadodiamide were injected: first during a time-resolved MRA, immediately followed by a high-resolution acquisition. Balloon was then deflated, permitting reperfusion for 5 min. A second dose was then injected and another high-resolution MRA acquired. Measurements of signal-to-noise ratio (SNR), contrast-to-noise ratio (CNR) and vessel cross-sections down to fourth-order branches were made, among other parameters. s ion was detected in all rabbits. Despite a TE of 0.58 ms for the time-resolved MRA, regions of nonuniform enhancement attributed to susceptibility effects at the 7-T field were observed in perfused lung. Mean SNR=7.5±3.3 and 134.2±46.5 for the lung and aorta, respectively, and mean CNR=126.7±46.4 for aorta versus lung were obtained. Diameters of vessels in lung that was never occluded were not statistically different from those in reperfused lung. sion s show that time-resolved and high-resolution MRA of the lung are feasible at 7 T and provide high SNR, CNR and resolution, but TEs smaller than 0.58 ms are required to avoid susceptibility artifacts in time-resolved MRAs.
  • Keywords
    7 T , MRA , Time-resolved MRA , High-field MR , pulmonary embolism
  • Journal title
    Magnetic Resonance Imaging
  • Serial Year
    2010
  • Journal title
    Magnetic Resonance Imaging
  • Record number

    1832938