Department of Biomedical Engineering, University of Utah, Salt Lake City, Utah; Nora Eccles Harrison Cardiovascular Research and Training Institute, University of Utah, Salt Lake City, Utah.
Nora Eccles Harrison Cardiovascular Research and Training Institute, University of Utah, Salt Lake City, Utah.
J Surg Res. 2024 Jan;293:196-203. doi: 10.1016/j.jss.2023.09.003. Epub 2023 Sep 29.
Despite advances in antiarrhythmia therapies, ventricular tachycardia (VT) is a leading cause of sudden cardiac death. Investigation into the characteristics and new treatments for this arrhythmia is required to improve outcomes and a reproducible model of VT would be useful in these endeavors. We therefore created a canine model of ischemia-induced VT.
A pacing lead was implanted in the right ventricle in canines (n = 13) and the left anterior descending artery was occluded in two locations for 2 h and subsequently released to create an ischemia-reperfusion injury. In the 10 dogs that survived the first 48 h following the initial study, a terminal study was conducted 4-7 d later and VT was induced using premature stimulation or burst pacing through the right ventricle lead. The arrhythmia was terminated using either antitachycardia pacing or a defibrillatory shock. Multiple inductions into sustained VT were attempted.
Sustained VT was induced in eight of 10 dogs with an average cycle length of 335 ± 70 bpm. Multiple episodes of VT were induced. Episodes of VT exhibited different electrocardiogram morphologies and cycle lengths in individual animals.
This canine model provides a consistent technique for inducing multiple episodes of sustained VT. It may be useful for investigating VT mechanisms and testing novel therapeutics and treatments for patients with VT.
尽管抗心律失常治疗取得了进展,但室性心动过速(VT)仍是导致心源性猝死的主要原因。需要研究这种心律失常的特征和新的治疗方法,以改善预后,而复制 VT 模型将有助于这些研究。因此,我们建立了一种犬缺血性 VT 模型。
在犬(n=13)中植入右心室起搏导联,并在左前降支的两个部位闭塞 2 小时,然后再释放以造成缺血再灌注损伤。在最初研究后 48 小时存活下来的 10 只犬中,在 4-7 天后进行了终期研究,并通过右心室导联使用早搏刺激或burst 起搏来诱发 VT。使用抗心动过速起搏或除颤电击来终止心律失常。尝试了多次诱导持续 VT。
10 只犬中有 8 只成功诱导出持续 VT,平均心动周期长度为 335±70 bpm。可诱导出多次 VT 发作。在个体动物中,VT 发作的心电图形态和心动周期长度不同。
这种犬模型提供了一种用于诱导多次持续 VT 的可靠技术。它可能有助于研究 VT 机制,并测试 VT 患者的新型治疗方法和治疗。