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Acute neurocardiogenic injury after subarachnoid hemorrhage

Authors :
Poyee P. Tung
Alexander Kopelnik
William W. Parmley
Wade S. Smith
Jacob C. Miss
Jonathan G. Zaroff
Elyse Foster
Barbara J. Drew
Nader M. Banki
Michael W. Dae
Michael T. Lawton
Source :
Circulation. 112(21)
Publication Year :
2005

Abstract

Background— Left ventricular (LV) systolic dysfunction has been reported in humans with subarachnoid hemorrhage (SAH), and its underlying pathophysiology remains controversial. Possible mechanisms include myocardial ischemia versus excessive catecholamine release from sympathetic nerve terminals. Methods and Results— For 38 months, echocardiography and myocardial scintigraphy with technetium sestamibi (MIBI) and meta-[ 123 I]iodobenzylguanidine (MIBG) were performed on 42 patients admitted with SAH to assess myocardial perfusion and sympathetic innervation, respectively. A blinded observer interpreted the scintigraphic images. Cardiac troponin I (cTI) was measured to quantify the degree of myocyte necrosis. Blinded observers calculated the LV ejection fraction and graded each LV segment as normal (score=1), hypokinetic (score=2), or akinetic (score=3). A wall-motion score was calculated by averaging the sum of the 16 segments. All subjects with interpretable scans (N=41) had normal MIBI uptake. Twelve subjects had either global (n=9) or regional (n=3) absence of MIBG uptake. In comparison with patients with normal MIBG uptake, those with evidence of functional denervation were more likely to have LV regional wall-motion abnormalities (92% versus 52%, P =0.030) and cTI levels >1 μg/L (58% versus 21%, P =0.029). Conclusions— LV systolic dysfunction in humans with SAH is associated with normal myocardial perfusion and abnormal sympathetic innervation. These findings may be explained by excessive release of norepinephrine from myocardial sympathetic nerves, which could damage both myocytes and nerve terminals.

Details

ISSN :
15244539
Volume :
112
Issue :
21
Database :
OpenAIRE
Journal :
Circulation
Accession number :
edsair.doi.dedup.....0ca5efe6be85e2c77bd3c4d825bf8392