Literature DB >> 7841394

[Dynamic 3D MR mammography using a rapid gradient-echo sequence].

M Müller-Schimpfle1, A Rieber, S Kurz, W Stern, C D Claussen.   

Abstract

Up to now, MR mammography is performed by two different methods: 2-D techniques with high temporal resolution and 3-D techniques with high spatial resolution. This article investigates whether a dynamic examination of the breast using a novel 3-D-gradient-echo sequence is feasible with sufficient spatial and temporal resolution. MR imaging was performed on a 1.0 Tesla imager using a gradient field strength of 15 mT/m. Phantom measurements were done to evaluate the correlation between signal intensity and contrast medium concentration for different sequences. Subsequently, 40 patients with 22 histologically verified lesions were examined using the double breast coil and a novel FLASH3D sequence (TR/TE/fa 9/3/50 degrees). Reading of the films in standardized documentation, multiplanar reconstruction (MPR), calculation and maximum intensity projection (MIP) of subtraction images as well as signal-to-time curve calculations in selected ROIs were performed for data evaluation. In the phantom measurements the FLASH3D-9/3/50 degrees sequence yielded the best correlation between signal intensity and Gd-DTPA concentration. The sequence provided good visualization even of small lesions. The 3-D postprocessing procedures facilitated the detection and localization of the lesions. Therefore, the new FLASH3D-9/3/50 degrees sequence enables a dynamic 3-D examination of the breast with a sufficient spatial and temporal resolution.

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Year:  1995        PMID: 7841394     DOI: 10.1055/s-2007-1015827

Source DB:  PubMed          Journal:  Rofo        ISSN: 1438-9010


  1 in total

1.  Prediction and monitoring of the response to chemoradiotherapy in oral squamous cell carcinomas using a pharmacokinetic analysis based on the dynamic contrast-enhanced MR imaging findings.

Authors:  Toru Chikui; Shintaro Kawano; Toshiyuki Kawazu; Masamitsu Hatakenaka; Syouzou Koga; Masahiro Ohga; Yoshio Matsuo; Syunya Sunami; Tsuyoshi Sugiura; Yoshiyuki Shioyama; Makoto Obara; Kazunori Yoshiura
Journal:  Eur Radiol       Date:  2011-03-12       Impact factor: 5.315

  1 in total

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