Division of Cardiology, Department of Internal Medicine, Samsung Changwon Hospital, Sungkyunkwan University School of Medicine, Changwon, Republic of Korea.
Division of Cardiology, Department of Internal Medicine, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Republic of Korea.
J Interv Card Electrophysiol. 2022 Mar;63(2):303-309. doi: 10.1007/s10840-021-00979-z. Epub 2021 Mar 27.
It has been known that ventricular conduction delays play a key role in the cardiac resynchronization therapy (CRT) response of patients with advanced heart failure (HF). However, no study to our knowledge has yet evaluated the serial changes in conduction times measured between different electrodes of CRT devices.
The Reduction or Extension of Conduction Time with Ventricular Electromechanical Remodeling (RECOVER) study (NCT04397224) was designed to investigate serial changes in interelectrode conduction times and to elucidate their prognostic value. We plan to enroll 100 patients implanted with CRT systems with endocardial quadripolar left ventricular leads. Patients will be scheduled for follow-up every 3 months over a period of 2 years, where they will undergo measurement of interelectrode conduction times to evaluate their serial changes. The primary outcome of the RECOVER study is the correlation between the degree of conduction time changes and the CRT response as defined by echocardiography. The time course and prognostic value of the serial changes in conduction times will be investigated as well.
The RECOVER study is investigating whether serial changes in interelectrode conduction times can be useful parameters in predicting the CRT response or detecting worsening HF at an early stage.
已知心室传导延迟在晚期心力衰竭(HF)患者的心脏再同步治疗(CRT)反应中起着关键作用。然而,据我们所知,尚无研究评估 CRT 设备不同电极之间测量的传导时间的连续变化。
减少或延长心室机电重塑时的传导时间(RECOVER)研究(NCT04397224)旨在研究电极间传导时间的连续变化,并阐明其预后价值。我们计划招募 100 名植入具有心内膜四极左心室导线的 CRT 系统的患者。患者将在 2 年内每 3 个月安排一次随访,在此期间将测量电极间的传导时间,以评估其连续变化。RECOVER 研究的主要结局是传导时间变化的程度与超声心动图定义的 CRT 反应之间的相关性。还将研究传导时间连续变化的时间过程和预后价值。
RECOVER 研究正在研究电极间传导时间的连续变化是否可以作为预测 CRT 反应或早期检测 HF 恶化的有用参数。