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使用体表电位时对起搏标测空间分辨率的评估。

Assessment of spatial resolution of pace mapping when using body surface potentials.

作者信息

Hren R, Punske B B, Stroink G

机构信息

Institute of Mathematics, Physics, and Mechanics, University of Ljubljana, Slovenia.

出版信息

Med Biol Eng Comput. 1999 Jul;37(4):477-81. doi: 10.1007/BF02513333.

Abstract

Using computer simulations and statistical methods, the resolution of pace mapping when used in combination with body surface potentials was systematically investigated. In an anatomical model of the human ventricular myocardium, pre-excitation sequences were initiated at 69 sites positioned along the atrioventricular (AV) ring and corresponding body surface potential maps (BSPMs) were calculated at 32 leads placed on the anterior torso. For each time after the onset of pre-excitation (every 4 ms to 40 ms) and each root-mean-square (RMS) noise level (5, 10, 20 and 50 microV), BSPMs were cros-correlated and the spatial resolution defined as the largest pacing site separation at which the differences in correlation coefficients were not statistically significant (level p > or = 0.05). The findings indicate that when random RMS noise of 5 microV was added to the simulated BSPMs, average spatial resolution over all 60 sites was at 20 ms after the onset of pre-excitation within 3.5 +/- 0.9 mm. The results provide theoretical evidence that statistical analysis of BSPMs obtained during pace mapping can offer improved means for subcentimetre identification of accessory pathways located along the AV ring.

摘要

运用计算机模拟和统计方法,系统地研究了将起搏标测与体表电位相结合时的分辨率。在人类心室心肌的解剖模型中,沿房室(AV)环设置的69个位点启动预激序列,并在置于前胸的32个导联处计算相应的体表电位图(BSPM)。对于预激开始后的每个时间点(每4毫秒至40毫秒)以及每个均方根(RMS)噪声水平(5、10、20和50微伏),对BSPM进行互相关分析,空间分辨率定义为相关系数差异无统计学意义(p≥0.05水平)时的最大起搏位点间距。研究结果表明,当在模拟的BSPM中加入5微伏的随机RMS噪声时,在预激开始后20毫秒时,所有60个位点的平均空间分辨率在3.5±0.9毫米范围内。这些结果提供了理论证据,表明在起搏标测过程中对BSPM进行统计分析可为沿房室环定位的旁路进行亚厘米级识别提供改进方法。

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