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Optimization of gradient-echo imaging parameters for intracaval filters and trapped thromboemboli

  • George P. Teitelbaum
  • , Hector V. Ortega
  • , Simon Vinitski
  • , Rachael A. Clark
  • , Alyssa T. Watanabe
  • , Alan H. Matsumoto
  • , Matthew D. Rifkin
  • , Klemens H. Barth

Research output: Contribution to journalArticlepeer-review

18 Scopus citations

Abstract

Flow-phantom magnetic resonance (MR) gradient-echo (GRE) imaging at 1.5 T was performed on a titanium Greenfield filter containing trapped blood clots with a high concentration of either deoxyhemoglobin (DHb) or methemoglobin (MHb), simulating acute and older thromboemboli, respectively. Flip angle, repetition time (TR), and echo time (TE) were varied, and a contrast-to-noise ratio between trapped clots and flowing fluid (clot-flow contrast) was determined for each set of imaging parameters. Use of very low flip angles (less than or equal to 10°) rendered MHb clots indistinguishable from flowing fluid. In general, DHb clots displayed greater clot-flow contrast than MHb clots regardless of flip angle. With increasing TE values, T2* effect was observed with MHb clots, and magnetic susceptibility artifacts increased. Overall, optimum clot-flow contrast for imaging of both DHb and MHb clots was achieved with a flip angle of 45°-60°, a TR of 50 msec, and the shortest TE possible. Using GRE parameters similar to the optimum parameters determined in vitro, the authors imaged four patients with nickel-titanium Simon filters and one dog with a titanium Greenfield filter. MR imaging was successful in demonstrating filter location, caval patency, and the presence and extent of intraluminal thrombus.

Original languageEnglish
Pages (from-to)1013-1019
Number of pages7
JournalRadiology
Volume174
Issue number3 PART 2
StatePublished - Mar 1990

Keywords

  • Blood vessels, MR studies, 982.1299
  • Hemoglobin
  • Magnetic resonance (MR), artifact
  • Magnetic resonance (MR), experimental
  • Magnetic resonance (MR), technology
  • Thrombosis, MR studies, 982.1299
  • Thrombosis, experimental, 982.751
  • Thrombosis, venous, 982.751

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