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Computer simulation of effect of bipolar electrode tip to ring spacing on P wave and far field R wave sensing in atrium

机译:双极电极尖端振动对鸟腹P波和远场R波感应振铃间距的计算机模拟

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Even though sensing ventricular and atrial signals for arrhythmia detection have been widely used in patients, there are issues that need to be resolved to optimize sensing. One of these issues is the detection of the far field R wave (EFRW) signal in the atria which can result in the delivery of inappropriate therapies. In the experimental setting, variables that affect near field atrial signal (P wave) and FFRW are difficult to separate. Few investigators have analyzed the issue of optimal bipolar electrode spacing for P/FFRW differentiation. A better understanding of the variables that effect P/FlFRW ratio is important for optimizing lead design and placement. In this paper, a theoretical model (see Weimin Sun and Xiaoyi Min, IEEE Trans. Biomed. Eng., vol. BME-44, p. 1237-42, 1997) of the sensed signal was utilized. This study focuses on the effect of bipolar electrode tip to ring spacing on P wave and FFRW amplitude and derivative as well as the P/FFRW ratio. Comparison between bipolar and unipolar sensing is also investigated. The model results show that the peak amplitude of P wave varies with the orientation of a bipolar electrode respect to the propagation direction of a wavefront and becomes plateau at tip to ring spacing of 10 mm or greater. However, the far field R wave amplitude increases with greater bipole spacing. Better acute signal to noise can be achieved with smaller bipole spacing. Bipolar signals have higher slew rate and comparable peak amplitude compared with unipolar signals.
机译:尽管感测心律失常检测心室和心房信号已经在患者中广泛应用,有问题需要被解决,以优化感知。一个的这些问题是在其可导致不适当的治疗的递送心房远场R波(EFRW)信号的检测。在实验设置中,影响近场心房信号(P波)和FFRW变量是难以分离。几个研究者已分析最佳双极电极间距为P / FFRW分化的问题。更好地了解变量是影响P / FlFRW比率是优化铅的设计和布局非常重要。在本文中,一个理论模型(参见伟民Sun和孝义敏,硕士论文。生物医学主机,第BME-44,第1237至1242年,1997年)所感测的信号的被利​​用。本研究着重于双极电极尖端上的P波和FFRW振幅和衍生物以及所述P / FFRW比的影响到环间距。双极和单极感测之间的比较进行了研究。模拟结果表明,P波的峰值幅度与双极电极相对于波前的传播方向的方向而变化,并在尖端变得高原环间距为10毫米或更大。然而,远场R波具有更大的间距双极振幅增加。更好急性信噪比可以与较小的双极的间隔来实现。与单极信号相比,双极性信号有更高的转换率和可比的峰值。

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