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In vivo visualization of mesoscopic anatomy of healthy and pathological lymph nodes using 7T MRI: a feasibility study.

作者信息

Freitag Martin T, Breithaupt Mathies, Berger Moritz, Umathum Reiner, Nagel Armin M, Hassel Jessica, Ladd Mark E, Schlemmer Heinz-Peter, Semmler Wolfhard, Stieltjes Bram

机构信息

Section Quantitative Imaging Based Disease Characterization, Department of Radiology, German Cancer Research Center (DKFZ), Heidelberg, Germany.

出版信息

J Magn Reson Imaging. 2015 May;41(5):1405-12. doi: 10.1002/jmri.24686. Epub 2014 Jun 26.

Abstract

PURPOSE

To evaluate whether inguinal lymph nodes (LNs) may be visualized in vivo using 7T magnetic resonance imaging (MRI) at high spatial resolution.

MATERIALS AND METHODS

Twelve healthy controls and six patients with LN metastasis of melanoma were included. Examinations were performed using a 7T MRI and a transmit/receive loop coil. The protocol included a B0 -map, B1 -map, and T1 -weighted-3D-fast low-angle shot (FLASH), T1 w-Dixon-volumetric interpolated breath-hold examination (VIBE) and T2 w sequences lasting 34.4 ± 0.5 minutes. Signal- and contrast-to-noise of LNs, artery, muscle, and fat were quantified in controls. Metastatic features of LNs (hypervascularization, lymph vessels, fat hilus sign, tumor bulk, number of metastases, and size) were classified in patients.

RESULTS

Mesoscopic LN architecture such as central blood vessels and peripheral lymph vessels were observed in healthy controls with 0.5 mm(3) isotropic resolution for T1 w and 0.2 × 0.2 × 2 mm(3) for T2 w sequences. Mean signal-to-noise using 3D FLASH, Dixon VIBE and T2 TSE of healthy LN (27.2 ± 7.5, 35.3 ± 11.9, 31.7 ± 11.1), muscle (17.6 ± 4.6, 31.5 ± 9.3, 7.3 ± 5.4), artery (37.7 ± 5.9, 42.7 ± 19.7, 3.7 ± 3.9), and saturated fat (3.7 ± 0.9, 5.4 ± 1.9, 9.3 ± 5.2) and mean contrast-to-noise LN/fat (24.4 ± 6.7, 39.6 ± 11.1, 23.3 ± 6.1) were adequate. In patients, multiple signs of metastasis could be clearly visualized.

CONCLUSION

We present a protocol with which inguinal LNs and their mesoscopic anatomy may be visualized in vivo using 7T MRI.

摘要

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