Electrophysiology lab efficiency using cryoballoon for pulmonary vein isolation in central and eastern Europe: A sub-analysis of the cryo global registry study.

Cardiology journal Pub Date : 2024-01-01 Epub Date: 2024-08-13 DOI:10.5603/cj.98292
Csaba Földesi, Dejan Kojić, Adriana Sudzinova, Marcin Kuniewicz, Petr Neužil, Zoltan Csanadi, Martin Škamla, Martin Svetlošák, Janusz Romanek, Reece Holbrook, Martin Stefanic, Alicia Sale, Thomas R Holmes, Paweł Ptaszyński
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Abstract

Background: Cryoballoon ablation for treatment of atrial fibrillation (AF) reduces procedure times, but limited data is available about its impact on electrophysiology (EP) lab efficiency in Central and Eastern Europe (CEE). Using CEE-specific procedure data, the present study modeled cryoballoon ablation procedures on EP lab resource consumption to improve efficiency.

Methods: A discrete event simulation model was developed to assess EP efficiency with cryoballoon ablation. Model inputs were taken from CEE sites within the Cryo Global Registry, namely Czech Republic, Hungary, Poland, Serbia, and Slovakia. The main endpoints were percentage of days that resulted in overtime and percentage of days with time for one extra simple EP procedure. Use of the 'figure of 8' (Fo8) closure technique to reduce procedure time was also examined.

Results: The mean lab occupancy time across all CEE sites was 133 ± 47 minutes (min: 104 minutes, max:181 minutes). Cryoballoon ablation in the base-case scenario resulted in 14.6% of days with overtime and 64.8% of days with time for an extra simple EP procedure. Use of the Fo8 closure technique enhanced these values to 5.5% and 85.3%, respectively. Model endpoints were most sensitive to changes in lab occupancy times and overtime start time.

Conclusions: In this CEE-specific analysis of EP lab efficiency it was found that 3 cryoballoon ablation procedures could be performed in 1 lab day, leaving time for a 4th simple EP procedure on most days. As such, use cryoballoon ablation for PVI is an effective way to improve EP lab efficiency.

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中欧和东欧使用冷冻球囊进行肺静脉隔离的电生理学实验室效率:冷冻全球注册研究子分析。
背景:低温球囊消融术治疗心房颤动(房颤)可缩短手术时间,但有关其对中欧和东欧(CEE)电生理学(EP)实验室效率影响的数据有限。本研究利用中欧和东欧特定的手术数据,模拟了冷冻气球消融手术对电生理学实验室资源消耗的影响,以提高效率:方法:开发了一个离散事件模拟模型来评估急诊室冷冻气球消融术的效率。模型输入来自冷冻全球注册中心的中欧和东欧地区,即捷克共和国、匈牙利、波兰、塞尔维亚和斯洛伐克。主要终点是导致加班的天数百分比和有时间进行一次额外简单 EP 手术的天数百分比。此外,还考察了使用 "8 字形"(Fo8)闭合技术缩短手术时间的情况:所有 CEE 站点的平均实验室占用时间为 133 ± 47 分钟(最短:104 分钟,最长:181 分钟)。在基本情况下,冷冻气球消融术导致14.6%的超时天数和64.8%的超时天数用于额外的简单急诊手术。使用 Fo8 封闭技术后,这些数值分别增加到 5.5% 和 85.3%。模型终点对实验室占用时间和加班开始时间的变化最为敏感:在这项针对急诊心电图实验室效率的 CEE 分析中发现,在实验室的一天内可以完成 3 个冷冻气球消融手术,在大多数情况下还能留出时间进行第 4 个简单的急诊心电图手术。因此,使用冷冻气球消融术进行 PVI 是提高 EP 实验室效率的有效方法。
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