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一种用于最小化起搏器极化伪影的新算法:普遍适用于永久性起搏系统。

A new algorithm for minimizing pacemaker polarization artifact: universally applicable in permanent pacing systems.

作者信息

Curtis A B, Vance F, Quist S M, Domijan A, Keim S G, Duran A, Miller K

机构信息

University of Florida, Gainesville 32610.

出版信息

Pacing Clin Electrophysiol. 1991 Nov;14(11 Pt 2):1803-8. doi: 10.1111/j.1540-8159.1991.tb02770.x.

Abstract

Polarization artifacts that result from pacing may interfere with analysis of paced evoked responses during, e.g., automatic threshold tracking. We have developed a method for reduction of such artifacts that relies on the introduction of pacing stimuli during the refractory period of unipolar or bipolar paced captured beats after previous identification of a refractory period "template" or baseline. The refractory pacing stimuli cannot capture the heart, and thus any deviation from the template is due to polarization artifact alone. The artifact amplitude is measured and the precharge duration of the triphasic stimulus waveform is changed each time until artifact is minimized, as detected by repeated reversals in the polarity of the polarization artifact. In a series of 11 patients with unipolar and bipolar permanent pacing leads, mean initial artifact before balancing was 1.44 +/- 0.84 mV, which was reduced to 0.44 +/- 0.30 mV after balancing (P = 0.001). Initial precharge duration was 3.2 msec by design; mean final precharge duration was 3.30 +/- 0.34 msec. This algorithm is universally applicable in permanent pacing systems, as it is valid in unipolar and bipolar pacing and it does not require an intrinsic cardiac rhythm.

摘要

起搏产生的极化伪影可能会干扰例如自动阈值跟踪期间对起搏诱发反应的分析。我们已经开发出一种减少此类伪影的方法,该方法依赖于在先前识别出不应期“模板”或基线后,在单极或双极起搏捕获搏动的不应期引入起搏刺激。不应期起搏刺激无法使心脏激动,因此与模板的任何偏差都仅归因于极化伪影。测量伪影幅度,并每次改变三相刺激波形的预充电持续时间,直到通过极化伪影极性的反复反转检测到伪影最小化。在一系列11名单极和双极永久起搏导线患者中,平衡前的平均初始伪影为1.44±0.84 mV,平衡后降至0.44±0.30 mV(P = 0.001)。初始预充电持续时间设计为3.2毫秒;最终平均预充电持续时间为3.30±0.34毫秒。该算法在永久起搏系统中普遍适用,因为它在单极和双极起搏中均有效,并且不需要固有心律。

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