Paul T, Moak J P, Morris C, Garson A
Department of Pediatric Cardiology, Children's Hospital, Medizinische Hochschule Hannover, Federal Republic of Germany.
Pacing Clin Electrophysiol. 1990 Mar;13(3):285-92. doi: 10.1111/j.1540-8159.1990.tb02042.x.
Epicardial ventricular mapping was performed in 5 dogs during sinus rhythm with a sock array containing 41 electrodes. Maps were generated with a computer-assisted mapping system using four different definitions of local epicardial activation: (1) maximal negative slope (intrinsic deflection) of the unipolar electrogram, (2) maximal slope of the bipolar electrogram, (3) maximal amplitude of the bipolar electrogram, and (4) first onset by 45 degrees from the baseline of the bipolar electrogram. The site of earliest and latest epicardial activation was identical with maximal negative slope in the unipolar electrogram and maximal slope and maximal amplitude of the bipolar electrogram in all five animals. Times of earliest and latest epicardial activation calculated with maximal amplitude of the bipolar electrogram were most similar to those evaluated with maximal negative slope of the unipolar electrogram. Using onset of the bipolar electrogram, activation times were measured 10 to 12 msec earlier than with each of the other three definitions of local activation, and in two of the five animals, first epicardial breakthrough was mapped to a different site than with the three other methods.
(1) Maximal amplitude of the bipolar electrogram coincided with maximal negative slope of the unipolar electrogram; (2) Using onset of the bipolar electrogram, timing and location of earliest epicardial activation may be misinterpreted.
在5只犬的窦性心律期间,使用包含41个电极的袜套阵列进行心外膜心室标测。使用计算机辅助标测系统,根据四种不同的局部心外膜激动定义生成标测图:(1)单极电图的最大负斜率(固有偏转);(2)双极电图的最大斜率;(3)双极电图的最大振幅;(4)双极电图从基线起45度的首次起始。在所有5只动物中,最早和最晚心外膜激动的部位与单极电图的最大负斜率以及双极电图的最大斜率和最大振幅一致。用双极电图最大振幅计算的最早和最晚心外膜激动时间与用单极电图最大负斜率评估的时间最为相似。使用双极电图的起始点,激动时间比其他三种局部激动定义测量的时间早10至12毫秒,并且在5只动物中的2只中,首次心外膜突破映射到与其他三种方法不同的部位。
(1)双极电图的最大振幅与单极电图的最大负斜率一致;(2)使用双极电图的起始点,最早心外膜激动的时间和位置可能会被误解。