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Abstract

MR Imaging of Primary Tumors of Trigeminal Nerve and Meckel's Cave

William T. C. Yuh, David C. Wright, Thomas J. Barloon, David H. Schultz, Yutaka Sato and Charles A. Cervantes
American Journal of Neuroradiology July 1988, 9 (4) 665-670;
William T. C. Yuh
1Department of Radiology, The University of Iowa Hospitals and Clinics, Iowa City, IA 52242. Address reprint requests to W. T. C. Yuh
2Magnetic Resonance Imaging Medical Group, 1863 Business Center Dr., Duarte, CA 91010
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David C. Wright
1Department of Radiology, The University of Iowa Hospitals and Clinics, Iowa City, IA 52242. Address reprint requests to W. T. C. Yuh
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Thomas J. Barloon
1Department of Radiology, The University of Iowa Hospitals and Clinics, Iowa City, IA 52242. Address reprint requests to W. T. C. Yuh
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David H. Schultz
2Magnetic Resonance Imaging Medical Group, 1863 Business Center Dr., Duarte, CA 91010
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Yutaka Sato
1Department of Radiology, The University of Iowa Hospitals and Clinics, Iowa City, IA 52242. Address reprint requests to W. T. C. Yuh
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Charles A. Cervantes
2Magnetic Resonance Imaging Medical Group, 1863 Business Center Dr., Duarte, CA 91010
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Abstract

MR imaging features of 11 primary tumors of the trigeminal nerve and Meckel's cave were analyzed. The tumors consisted of two trigeminal schwannomas, five meningiomas, one lipoma, and three epidermoid tumors. The trigeminal schwannomas had homogeneously decreased signal intensity on T1-weighted images and increased signal intensity on T2-weighted images. Three of the five meningiomas had signal intensity similar to that of surrounding brain on both T1- and T2-weighted images. One meningioma had decreased signal intensity on T1-weighted images and increased signal intensity on T2-weighted images. The other had relatively low signal intensity on both T1- and T2-weighted images owing to heavy calcification demonstrated on CT. The lipoma had homogeneous signal intensity that was isointense with orbital and subcutaneous fat on both T1- and T2-weighted images. The epidermoid tumors had decreased signal intensity on T1-weighted images and markedly increased signal intensity on T2-weighted images. In addition, the epidermoids had an insinuating growth pattern and minimal mass effect. The extent of involvement in the trigeminal nerve distribution was well demonstrated in each case.

Because of its multiplanar capability, exquisite anatomic detail, and characteristic tissue signal intensity, we conclude that MR is helpful in the differential diagnosis of primary tumors of the trigeminal nerve and Meckel's cave and in the evaluation of tumor involvement for preoperative planning.

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American Journal of Neuroradiology
Vol. 9, Issue 4
1 Jul 1988
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Cite this article
William T. C. Yuh, David C. Wright, Thomas J. Barloon, David H. Schultz, Yutaka Sato, Charles A. Cervantes
MR Imaging of Primary Tumors of Trigeminal Nerve and Meckel's Cave
American Journal of Neuroradiology Jul 1988, 9 (4) 665-670;

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MR Imaging of Primary Tumors of Trigeminal Nerve and Meckel's Cave
William T. C. Yuh, David C. Wright, Thomas J. Barloon, David H. Schultz, Yutaka Sato, Charles A. Cervantes
American Journal of Neuroradiology Jul 1988, 9 (4) 665-670;
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