Literature DB >> 16875304

MR imaging of thymic epithelial tumors: correlation with World Health Organization classification.

Atsuo Inoue1, Noriyuki Tomiyama, Kiminori Fujimoto, Junko Sadohara, Itsuko Nakamichi, Yasuhiko Tomita, Katsuyuki Aozasa, Mitsuko Tsubamoto, Sachiko Murai, Javzandulam Natsag, Hiromitsu Sumikawa, Naoki Mihara, Osamu Honda, Seiki Hamada, Takeshi Johkoh, Hironobu Nakamura.   

Abstract

PURPOSE: The aim of this study was to determine magnetic resonance imaging (MRI) features of various subtypes of thymic epithelial tumors based on the World Health Organization classification.
MATERIALS AND METHODS: The study included 64 patients with histologically proven thymic epithelial tumors. Two observers evaluated the MRI findings in terms of tumor size, contour, lobulation, shape, homogeneity, the presence of intratumor high- and low-signal foci, enhancement degree and pattern, the presence of capsule and septum, and associated mediastinal lymphadenopathy and pleural effusion.
RESULTS: Type A tumors were more likely to have a smooth contour, round shape, distinct capsule, and smaller size compared to any other type of thymic epithelial tumor. Thymic carcinomas demonstrated a higher prevalence of low-signal foci within the mass on T2-weighted images and mediastinal lymphadenopathy than any other types. The frequency of heterogeneous intensity on T2-weighted images increased from type A tumors to thymic carcinomas.
CONCLUSION: The presence of a smooth contour, round shape, and capsule is highly suggestive of a type A tumor. Foci of low signal intensity in the mass on T2-weighted images and mediastinal lymphadenopathy are highly suggestive of thymic carcinomas.

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Year:  2006        PMID: 16875304     DOI: 10.1007/s11604-005-1530-4

Source DB:  PubMed          Journal:  Radiat Med        ISSN: 0288-2043


  38 in total

Review 1.  Thymoma classification: my opinion.

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4.  Thymoma. Histologic subclassification is an independent prognostic factor.

Authors:  L Quintanilla-Martinez; E W Wilkins; N Choi; J Efird; E Hug; N L Harris
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5.  New WHO histologic classification predicts prognosis of thymic epithelial tumors: a clinicopathologic study of 200 thymoma cases from China.

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6.  Primary thymic carcinomas.

Authors:  M R Wick; B W Scheithauer; L H Weiland; P E Bernatz
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Authors:  T Kirchner; B Schalke; J Buchwald; M Ritter; A Marx; H K Müller-Hermelink
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Review 5.  Advances in thymic carcinoma diagnosis and treatment: a review of literature.

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Review 9.  Thymomas: review of current clinical practice.

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Review 10.  Treatment of early stage thymic tumors: surgery and radiation therapy.

Authors:  Benjamin T Gielda; Rick Peng; Joy L Coleman; Charles R Thomas; Robert B Cameron
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