...
首页> 外文期刊>Cardiology >Uni- and bipolar pacing threshold measurements with capturecontrol, a new automatic pacemaker function for capture verification. Comparison of the automatic and the manual pacing threshold measurement.
【24h】

Uni- and bipolar pacing threshold measurements with capturecontrol, a new automatic pacemaker function for capture verification. Comparison of the automatic and the manual pacing threshold measurement.

机译:具有CaptureControl的单极和双极起搏阈值测量功能,这是一种用于捕获验证的新型自动起搏器功能。自动和手动起搏阈值测量的比较。

获取原文
获取原文并翻译 | 示例
           

摘要

It is mandatory in pacemaker patients to determine the pacing threshold at each follow-up visit. To facilitate the pacing threshold measurements, complete automatic pacemaker tests are being developed. A new pacemaker algorithm for automatic capture verification (Capturecontrol) detects the presence of the evoked response signal 70-100 ms after the pacing pulse. The aim of this study was to determine the uni- and bipolar pacing thresholds using this automatic pacemaker function and compare them with the manually determined threshold. The study included 14 patients with the DDD pacemaker Logos (Biotronik) connected to the high-ohmic ventricular pacing lead Synox SX 60-BP (Biotronik). At predischarge and 8, 14, 20 and 26 weeks after implantation the uni- and bipolar pacing thresholds were assessed manually and with the automatic pacemaker function at 0.4 ms duration. Mean pacing thresholds determined with the automatic pacemaker function were not different from the manually measured values. This applied to uni- and bipolar pacing. Seventy percent of all unipolar and 67% of all bipolar measurements had no deviation. A deviation of 0.1 V between manual and automatic threshold measurement was observed in 25% (unipolar) and 28% (bipolar), respectively. A 0.2-volt difference occurred in 3% in the unipolar measurements. Deviations >/=0.3 V were found in 2% of all unipolar and in 5% of all bipolar measurements. In conclusion, automatic pacing threshold measurements using the Capturecontrol algorithm were similar compared to the manually determined thresholds. The excellent agreement between the two methods was observed for bipolar as well as unipolar pacing and on condition that all patients had a high-ohmic ventricular pacing lead. Therefore, fewer requirements are necessary for Capturecontrol than for presently available systems. Such pacemaker functions can help to speed up the measurements during follow-up visits. Copyright 2000 S. Karger AG, Basel
机译:起搏器患者必须在每次随访中确定起搏阈值。为了方便起搏阈值的测量,正在开发完整的自动起搏器测试。一种用于自动捕获验证(Capturecontrol)的新起搏器算法,可以在起搏脉冲后70-100 ms内检测到诱发的响应信号的存在。这项研究的目的是使用此自动起搏器功能确定单极和双极起搏阈值,并将其与手动确定的阈值进行比较。这项研究包括14位DDD起搏器徽标(Biotronik)与高欧姆心室起搏导线Synox SX 60-BP(Biotronik)连接的患者。在出院前和植入后第8、14、20和26周,手动评估单极和双极起搏阈值,并在0.4 ms的持续时间内使用自动起搏器功能。用自动起搏器功能确定的平均起搏阈值与手动测量的值没有区别。这适用于单极和双极起搏。所有单极测量的70%和所有双极测量的67%没有偏差。手动和自动阈值测量之间的偏差为0.1 V,分别为25%(单极性)和28%(双极性)。在单极测量中,出现0.2%的电压差(3%)。在所有单极测量的2%和所有双极测量的5%中发现> / = 0.3 V的偏差。总之,与手动确定的阈值相比,使用Capturecontrol算法的自动起搏阈值测量结果相似。对于双极起搏和单极起搏,在所有患者均具有高欧姆心室起搏导联的情况下,观察到两种方法之间的极佳一致性。因此,与目前可用的系统相比,Capturecontrol所需的需求更少。这样的起搏器功能可以帮助加快随访过程中的测量速度。版权所有2000 S. Karger AG,巴塞尔

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号