Literature DB >> 3565591

Segmental vascular responses to acute hypertension in cerebrum and brain stem.

F M Faraci, W G Mayhan, D D Heistad.   

Abstract

The goal of this study was to examine hemodynamic mechanisms that contribute to regional differences in autoregulation during acute hypertension. We measured blood flow (microspheres) and pressure in pial arteries (approximately 160 microns) of anesthetized cats and calculated resistance of large and small vessels in cerebrum and brain stem. Moderate elevation of aortic pressure increased resistance of both large and small vessels in cerebrum but only small vessels in brain stem. During severe hypertension, resistance of both large and small vessels in cerebrum decreased and blood flow increased markedly. In contrast, in the brain stem large artery resistance did not change, small vessel resistance increased, and blood flow increased only modestly during severe hypertension. Pial artery pressure was 20 mmHg higher in brain stem than cerebrum during control conditions and 30-50 mmHg higher during moderate and severe hypertension. We conclude that resistance of large arteries is less and thus pial artery pressure is higher in brain stem than cerebrum under control conditions. More effective autoregulation in the brain stem than cerebrum during severe hypertension is due to greater resistance of small, not large, cerebral vessels.

Entities:  

Mesh:

Year:  1987        PMID: 3565591     DOI: 10.1152/ajpheart.1987.252.4.H738

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  22 in total

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Review 6.  Vascular actions of relaxin: nitric oxide and beyond.

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7.  Identification of a region of rat chromosome 1 that impairs the myogenic response and autoregulation of cerebral blood flow in fawn-hooded hypertensive rats.

Authors:  Mallikarjuna R Pabbidi; Julio Juncos; Luis Juncos; Marija Renic; Hurtis J Tullos; Jozeph Lazar; Howard J Jacob; David R Harder; Richard J Roman
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Review 8.  Integrative regulation of human brain blood flow.

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9.  Enhanced large conductance K+ channel activity contributes to the impaired myogenic response in the cerebral vasculature of Fawn Hooded Hypertensive rats.

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10.  Resistance artery adaptation to pregnancy counteracts the vasoconstricting influence of plasma from normal pregnant women.

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