Fujikura Kana, Otsuka Ryo, Kalisz Andrew, Ketterling Jeffrey A, Jin Zhezhen, Sciacca Robert R, Marboe Charles C, Wang Jie, Muratore Robert, Feleppa Ernest J, Homma Shunichi
Department of Biomedical Engineering, Columbia University, Columbia Presbyterian Medical Center, New York, NY 10032, USA.
J Ultrasound Med. 2006 Nov;25(11):1375-86. doi: 10.7863/jum.2006.25.11.1375.
This study evaluated variables relevant to creating myocardial lesions using high-intensity focused ultrasound (HIFU). Without an effective means of tracking heart motion, lesion formation in the moving ventricle can be accomplished by intermittent delivery of HIFU energy synchronized by electrocardiographic triggering. In anticipation of future clinical applications, multiple lesions were created by brief HIFU pulses in calf myocardial tissue ex vivo.
Experiments used f-number 1.1 spherical cap HIFU transducers operating near 5 MHz with in situ spatial average intensities of 13 and 7.4 kW/cm2 at corresponding depths of 10 and 25 mm in the tissue. The distance from the HIFU transducer to the tissue surface was measured with a 7.5-MHz A-mode transducer coaxial and confocal with the HIFU transducer. After exposures, fresh, unstained tissue was dissected to measure visible lesion length and width. Lesion dimensions were plotted as functions of pulse parameters, cardiac structure, tissue temperature, and focal depth.
Lesion size in ex vivo tissue depended strongly on the total exposure time but did not depend strongly on pulse duration. Lesion width depended strongly on the pulse-to-pulse interval, and lesion width and length depended strongly on the initial tissue temperature.
High-intensity focused ultrasound creates well-demarcated lesions in ex vivo cardiac muscle without damaging intervening or distal tissue. These initial studies suggest that HIFU offers an effective, noninvasive method for ablating myocardial tissues to treat several important cardiac diseases.
本研究评估了与使用高强度聚焦超声(HIFU)创建心肌损伤相关的变量。由于缺乏有效的心脏运动跟踪手段,通过心电图触发同步间歇性输送HIFU能量可在运动的心室中形成损伤。为了预期未来的临床应用,在体外小牛心肌组织中通过短暂的HIFU脉冲创建了多个损伤。
实验使用f数为1.1的球形帽HIFU换能器,工作频率接近5MHz,在组织中相应深度10mm和25mm处的原位空间平均强度分别为13kW/cm²和7.4kW/cm²。使用与HIFU换能器同轴且共焦的7.5MHz A型换能器测量从HIFU换能器到组织表面的距离。暴露后,解剖新鲜的未染色组织以测量可见损伤的长度和宽度。将损伤尺寸绘制为脉冲参数、心脏结构、组织温度和焦深的函数。
体外组织中的损伤大小强烈依赖于总暴露时间,但对脉冲持续时间的依赖性不强。损伤宽度强烈依赖于脉冲间间隔,损伤宽度和长度强烈依赖于初始组织温度。
高强度聚焦超声可在体外心肌中创建界限分明的损伤,而不会损伤中间或远端组织。这些初步研究表明,HIFU为消融心肌组织以治疗几种重要的心脏疾病提供了一种有效、无创的方法。