Department of Cardiology, Institut Clínic del Tòrax, Institut d'Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS) Hospital Clínic de Barcelona, Universitat de Barcelona (UB), Villarroel, 170, 08036, Barcelona, Spain.
J Cardiovasc Transl Res. 2013 Aug;6(4):616-22. doi: 10.1007/s12265-013-9464-1. Epub 2013 Apr 30.
Animal models that mimic human electrical and mechanical dyssynchrony often associated with chronic heart failure would provide an essential tool to investigate factors influencing response to cardiac resynchronization therapy. A standardized closed-chest porcine model of left bundle branch block (LBBB) was developed using 16 pigs. Radiofrequency applications were performed to induce LBBB, which was confirmed by QRS widening, a surface electrocardiogram pattern concordant with LBBB, and a prolonged activation time from endocardial. Echocardiography confirmed abnormal motion of the septum, which was not present at the baseline echocardiogram. High susceptibility of pigs to ventricular fibrillation during the endocardial ablation was overcome by applying high-rate pacing during radiofrequency applications. This is the first study to devise a closed-chest porcine model of LBBB that closely reproduces abnormalities found in patients with electrical and mechanical cardiac dyssynchrony, and provides a useful tool to investigate the basic mechanisms underlying cardiac resynchronization therapy benefits in heart failure.
常与慢性心力衰竭相关的模拟人类电机械不同步的动物模型将为研究影响心脏再同步治疗反应的因素提供重要工具。使用 16 头猪开发了一种标准化的左束支传导阻滞(LBBB)闭合胸腔猪模型。通过应用射频来诱导 LBBB,通过 QRS 增宽、与 LBBB 一致的体表心电图模式以及心内膜的延长激活时间来确认。超声心动图证实了间隔的异常运动,而在基线超声心动图上不存在这种异常运动。通过在射频应用期间应用高心率起搏,可以克服猪在心内膜消融期间易发生心室颤动的问题。这是第一项设计左束支传导阻滞闭合胸腔猪模型的研究,该模型紧密复制了在电机械心脏不同步的患者中发现的异常,并为研究心力衰竭中心脏再同步治疗益处的基本机制提供了有用的工具。