Deng Cheri X, Qu Fujian, Nikolski Vladimir P, Zhou Yun, Efimov Igor R
Department of Biomedical Engineering, Case Western Reserve University, Cleveland, OH 44106-7207, USA.
Ann Biomed Eng. 2005 Oct;33(10):1352-9. doi: 10.1007/s10439-005-6806-4.
Side effects and limitations of radio-frequency ablation of cardiac arrhythmias prompted search for alternative energy sources and means of their application. High-intensity focused ultrasound (HIFU) is becoming an increasingly attractive modality for ablation because of its unique ability for non-invasive or minimally invasive, non-contact focal ablation in 3D volume without affecting intervening and surrounding cells. The purpose of this study is to develop a real-time monitoring technique to elucidate HIFU-induced modifications of electrical conduction in cardiac tissues and to investigate the HIFU cardiac ablation process to help to achieve optimal HIFU ablation outcome. We conducted experimental studies applying HIFU at 4.23 MHz to ablate the atrio-ventricular (AV) node and ventricular tissue of Langendorff-perfused rabbit hearts. We employed fluorescent voltage-sensitive dye imaging and surface electrodes to monitor the electrical conduction activity induced by HIFU application in real time. In ventricular epicardium HIFU ablation, fluorescent imaging revealed gradual reduction of the plateau phase and amplitude of the action potential. Subsequently, conduction block and cell death were observed at the site of ablation. When HIFU was applied to the AV node, fluorescent imaging and electrograms revealed the development of the AV block. The study establishes that real-time fluorescent imaging provides novel monitoring and assessment to study HIFU cardiac ablation, which may be able to provide improved understanding of HIFU cardiac ablation process and mechanism useful for development of successful clinical applications.
心律失常的射频消融术的副作用和局限性促使人们寻找替代能源及其应用方法。高强度聚焦超声(HIFU)因其具有独特能力,可在三维空间内进行非侵入性或微创、非接触式局部消融,而不影响中间和周围细胞,正成为一种越来越有吸引力的消融方式。本研究的目的是开发一种实时监测技术,以阐明HIFU引起的心脏组织电传导变化,并研究HIFU心脏消融过程,以帮助实现最佳的HIFU消融效果。我们进行了实验研究,应用4.23MHz的HIFU消融Langendorff灌注兔心脏的房室(AV)结和心室组织。我们采用荧光电压敏感染料成像和表面电极实时监测HIFU应用引起的电传导活动。在心室心外膜HIFU消融中,荧光成像显示动作电位的平台期和幅度逐渐降低。随后,在消融部位观察到传导阻滞和细胞死亡。当HIFU应用于房室结时,荧光成像和心电图显示房室传导阻滞的发生。该研究表明,实时荧光成像为研究HIFU心脏消融提供了新的监测和评估方法,这可能有助于更好地理解HIFU心脏消融过程和机制,对成功的临床应用开发具有重要意义。