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Abstract

Histochemical Characterization and Functional Significance of the Hyperintense Signal on MR Images of the Posterior Pituitary

John Kucharczyk, Walter Kucharczyk, Isabelle Berry, Jack de Groot, William Kelly, David Norman and T. H. Newton
American Journal of Neuroradiology November 1988, 9 (6) 1079-1083;
John Kucharczyk
1Department of Radiology, L371, University of California, San Francisco, 505 Parnassus, San Francisco, CA 94143. Address reprint requests to J. Kucharczyk
2Department of Physiology, University of Ottawa, Ottawa, Ontario, Canada K1H 8M5
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Walter Kucharczyk
3Department of Radiology, The Toronto Hospital, Toronto, Ontario, Canada M5G 2C4
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Isabelle Berry
1Department of Radiology, L371, University of California, San Francisco, 505 Parnassus, San Francisco, CA 94143. Address reprint requests to J. Kucharczyk
4Service de Neuroradiologie, Hopital Purpan, Tourlouse, France
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Jack de Groot
5Department of Anatomy, University of California, San Francisco, CA 94043
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William Kelly
6Department of Radiology, David Grant USAF Hospital, Travis Air Force Base, CA 94535
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David Norman
1Department of Radiology, L371, University of California, San Francisco, 505 Parnassus, San Francisco, CA 94143. Address reprint requests to J. Kucharczyk
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T. H. Newton
1Department of Radiology, L371, University of California, San Francisco, 505 Parnassus, San Francisco, CA 94143. Address reprint requests to J. Kucharczyk
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Abstract

MR imaging of the pituitary fossa characteristically shows a well-circumscribed area of high signal intensity in the posterior lobe on T1-weighted images. We used a combination of high-field MR, electron microscopy, and histologic techniques in experimental animals to determine whether the hyperintensity of the posterior lobe might be functionally related to hormone neurosecretory processes, and to attempt to establish its chemical nature. Histologic sections of a dog's pituitary gland processed with lipid-specific markers showed intense staining in the posterior lobe but not in the anterior lobe, thus documenting the location of fat in the posterior pituitary. Administration of vasoactive drugs known to influence vasopressin secretion to anesthetized cats produced changes in the volume of high-intensity signal in the posterior pituitary. Subsequent electron microscopy showed a significant increase in posterior lobe glial cell lipid droplets and neurosecretory granules in dehydration-stimulated cats.

The data suggest that the pituitary hyperintensity represents intracellular lipid signal in the glial cell pituicytes of the posterior lobe or neurosecretory granules containing vasopressin. The volume of the signal may, in turn, reflect the functional state of hormonal release from the neurohypophysis.

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American Journal of Neuroradiology
Vol. 9, Issue 6
1 Nov 1988
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John Kucharczyk, Walter Kucharczyk, Isabelle Berry, Jack de Groot, William Kelly, David Norman, T. H. Newton
Histochemical Characterization and Functional Significance of the Hyperintense Signal on MR Images of the Posterior Pituitary
American Journal of Neuroradiology Nov 1988, 9 (6) 1079-1083;

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Histochemical Characterization and Functional Significance of the Hyperintense Signal on MR Images of the Posterior Pituitary
John Kucharczyk, Walter Kucharczyk, Isabelle Berry, Jack de Groot, William Kelly, David Norman, T. H. Newton
American Journal of Neuroradiology Nov 1988, 9 (6) 1079-1083;
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