Cardiac function and Fourier phase data from simulated Wolff-Parkinson-White syndrome in a baboon model.

I C Dormehl, A L van Gelder, N Hugo, J J Stanton, I F Redelinghuys
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Abstract

The diagnostic value of Fourier phase analysis and planar scintigraphy in Wolff-Parkinson-White (WPW) syndrome has been suspect. This study investigates phase analytical data from planar radionuclide ventriculography of six baboons with simulated WPW syndrome by means of implanted electrodes. An electrode in the atrium controlled the heart rate and a subsequent stimulation was delivered by electrodes placed at different sites on the ventricles, delayed to cause the characteristic delta wave of the WPW syndrome. Sensitivity for accurately-localizing variously-situated first points of activation (FPAs) from the Fourier phase images was found highest for premature right ventricular (RV) activation, and for atrioventricular (AV) delays around 125 msec. Other sites were subject to artifacts. Changes in cardiac function, phase delay, and histogram parameters were not statistically meaningful.

狒狒模型中模拟沃尔夫-帕金森-怀特综合征的心功能和傅立叶相位数据。
傅里叶相位分析和平面闪烁成像在Wolff-Parkinson-White (WPW)综合征中的诊断价值一直受到怀疑。本研究利用植入电极对6只模拟WPW综合征的狒狒进行平面核素脑室相分析。心房的电极控制心率,随后的刺激由放置在心室不同位置的电极传递,延迟引起WPW综合征的特征性δ波。从傅里叶相位图像中精确定位不同位置的第一激活点(fpa)的灵敏度在右心室(RV)过早激活和房室(AV)延迟约125毫秒时最高。其他的地点则受到人工制品的影响。心功能、相延迟和直方图参数的变化无统计学意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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