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January 1, 1994Stroke206 citations

Autonomic consequences of cerebral hemisphere infarction.

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SBStephen BarronZRZ RogovskiJHJ.A. Hemli

Structured PICO

Does right-hemisphere ischemic stroke cause a greater reduction in cardiac parasympathetic innervation compared to left-hemisphere stroke or healthy controls?

P
Population
80 individuals: 20 patients with right-hemisphere ischemic stroke, 20 patients with left-hemisphere ischemic stroke (confirmed by computerized tomography), and 40 age- and sex-matched healthy controls.
I
Intervention
Right-hemisphere ischemic stroke
C
Comparator
Left-hemisphere ischemic stroke and healthy controls
O
Outcome
Total cardiac autonomic innervation and cardiac parasympathetic innervation (measured via power spectrum analysis of 256 consecutive ECG RR intervals)surrogate

Ischemic stroke reduces cardiac parasympathetic innervation, with right-hemisphere strokes causing a significantly greater reduction, which may explain the increased risk of sympathetically-driven arrhythmias.

Abstract

BACKGROUND AND PURPOSE: Recently, supraventricular tachycardia has been reported following right hemisphere stroke, suggesting a reduction in parasympathetic cardiac innervation after stroke of the right hemisphere. We performed power spectrum analysis of fluctuations in RR interval duration in the electrocardiogram in an attempt to determine how ischemic stroke influences autonomic cardiac innervation. METHODS: Power spectrum analysis of the variation in 256 consecutive electrocardiographic RR intervals was performed using the fast-Fourier transformation. The area under the spectral curve from 0 to 0.5 Hz and the area under the portion of the curve produced by parasympathetically mediated respiratory variations were determined in 20 patients with right-hemisphere and 20 patients with left-hemisphere ischemic stroke confirmed by computerized tomography. Data were compared with 40 age- and sex-matched healthy controls. RESULTS: Total cardiac autonomic innervation was reduced after a stroke of either hemisphere without regard to laterality. Cardiac parasympathetic innervation was reduced after stroke of either hemisphere with a significantly greater reduction after stroke on the right (P = 2.9 x 10(-5). CONCLUSIONS: Power spectral analysis of heart rate variability can detect autonomic consequences of stroke. The spectral data predict that, to the degree that cardiac arrhythmia is produced by unbalanced cardiac autonomic activity favoring the sympathetic system, such arrhythmias could be seen after stroke of either hemisphere and would be more common after cerebral infarction on the right. This is consistent with evidence from the recent literature.

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Cite This Study

Barron et al. (1994) studied this question.

synapsesocial.com/papers/6a205eafe9ca693ff1e73b11https://doi.org/10.1161/01.str.25.1.113
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