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优化犬单腔起搏。第 2 部分:频率适应性起搏。

Optimizing single-chamber pacing in dogs. Part 2: Rate adaptive pacing.

机构信息

Section of Cardiology, Department of Clinical Sciences, College of Veterinary Medicine, Cornell University, Ithaca, NY 14853, USA.

Department of Physics, University of Washington, Seattle, WA 98195, USA.

出版信息

Vet J. 2021 Jun;272:105630. doi: 10.1016/j.tvjl.2021.105630. Epub 2021 Feb 12.

Abstract

Proper programming of pacemakers for dogs in the rate adaptive mode requires an understanding of the rate requirements for each individual and the interplay of programmable features. The specific advantages and disadvantages of the rate adaptive mode should be considered on a case by case basis. Fundamentally, two components are linked in the implementation of rate adaptive pacing: (1) sensing the need for a change in rate and (2) responding with the appropriate alteration in pacing rate. The programming interaction of these two components are interdependent and affected by the rates programmed. These features may be adjusted manually or automatically. In this review (Part 2 of a two-part review) the considerations required to program each aspect that optimizes the pacing rate profile are reviewed. These include the lower rate, upper sensor rate, activities of daily life rate, sensor threshold, acceleration and deceleration, slope, activities of daily life zone, exertion zone, automatic versus manual adjustments and closed loop stimulation. The programming features of pacemakers manufactured by three companies are summarized (Abbott, formerly St. Jude; Biotronik/Dextronix; Medtronic). Means of assessing the success of pacemaker programing is examined through examples of pacemaker data, Holter analysis, Poincaré plots and tachograms. Finally, the questions and considerations for rate adaptive pacing in dogs that demand investigation are proposed.

摘要

为适应率模式的狗正确编程起搏器需要了解每个个体的速率要求以及可编程功能的相互作用。应根据具体情况考虑适应率模式的具体优点和缺点。从根本上讲,在实现适应率起搏中涉及两个组件:(1)感知需要改变速率,(2)以适当的起搏速率改变做出响应。这两个组件的编程相互作用是相互依存的,并受编程速率的影响。这些功能可以手动或自动进行调整。在这篇综述中(两部分综述的第二部分),回顾了优化起搏速率曲线的每个方面的编程要求。这些方面包括下限频率、上限传感器频率、日常生活频率、传感器阈值、加速度和减速、斜率、日常生活区域、运动区域、自动与手动调整以及闭环刺激。总结了三家公司生产的起搏器的编程功能(雅培,前身为圣犹达;百多力/德克斯顿;美敦力)。通过起搏器数据、动态心电图分析、庞加莱图和心动过速图的示例来检查评估起搏器编程成功的方法。最后,提出了适应率起搏在狗中需要研究的问题和考虑因素。

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