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使用高强度聚焦超声形成心肌损伤

Myocardial lesion formation using high-intensity focused ultrasound.

作者信息

Engel David J, Muratore Robert, Hirata Kumiko, Otsuka Ryo, Fujikura Kana, Sugioka Kenichi, Marboe Charles, Lizzi Frederic L, Homma Shunichi

机构信息

Division of Cardiology, Columbia Presbyterian Medical Center, New York, New York 10032, USA.

出版信息

J Am Soc Echocardiogr. 2006 Jul;19(7):932-7. doi: 10.1016/j.echo.2006.02.012.

Abstract

BACKGROUND

The potential therapeutic uses of ultrasound energy in cardiac disease have not been extensively studied. We have developed a means to deliver high-intensity focused ultrasound (HIFU) to myocardial tissue. Unlike other therapy modalities such as radiofrequency catheter ablation, this system has the advantages of not requiring direct tissue contact and the ability to focus intense energy within a small volume.

METHODS

Sections of left and right ventricles from freshly excised canine hearts were treated in vitro with HIFU pulses. Lesions were created using 1-second HIFU pulses with ultrasonic powers ranging from 19.8 to 45.8 W.

RESULTS

There was a dose-response relationship between the applied HIFU energy and lesion size (r = 0.70, P < .001). Myocardial lesion formation with HIFU was also performed in vivo in a canine open-chest beating heart model. With 200-millisecond HIFU pulses gated to the electrocardiogram, focal myocardial lesions were created ranging in length from 2 to 6 mm depending on the dose used. Furthermore, both in vitro and in vivo, focal lesions were successfully formed in the midmyocardial wall that spared both the endocardial and epicardial surfaces.

CONCLUSION

HIFU is a novel means to create focal myocardial lesions without direct tissue contact. HIFU energy delivery can be gated to the electrocardiogram in an in vivo model, and lesions can be formed intramyocardially. Further application of this technology may prove to be useful for the ablation of myocardial lesions such as arrhythmogenic foci and the hypertrophic ventricular septum in hypertrophic cardiomyopathy. The potential therapeutic uses of ultrasound energy in cardiac diseases have not been well studied. We tested a novel system to deliver high-intensity focused ultrasound energy in vitro and in vivo to canine myocardial samples without direct contact with the target tissue. Focal myocardial lesions were formed in a dose-dependent manner, and myocardial lesions were created. This technology may prove useful for ablation of focal intramyocardial lesions such as arrhythmogenic foci and the hypertrophic left ventricular septum in hypertrophic cardiomyopathy.

摘要

背景

超声能量在心脏病治疗中的潜在用途尚未得到广泛研究。我们已经开发出一种将高强度聚焦超声(HIFU)传递至心肌组织的方法。与其他治疗方式如射频导管消融不同,该系统具有无需直接组织接触以及能够在小体积内聚焦高强度能量的优点。

方法

用HIFU脉冲对新鲜切除的犬心脏的左心室和右心室切片进行体外处理。使用1秒的HIFU脉冲、超声功率范围为19.8至45.8瓦来制造损伤。

结果

施加的HIFU能量与损伤大小之间存在剂量反应关系(r = 0.70,P <.001)。在犬开胸跳动心脏模型中也进行了HIFU诱导的心肌损伤形成实验。利用与心电图同步的200毫秒HIFU脉冲,根据所用剂量产生了长度为2至6毫米不等的局灶性心肌损伤。此外,无论在体外还是体内,均成功在心肌中层壁形成了局灶性损伤,而心内膜和心外膜表面均未受影响。

结论

HIFU是一种无需直接组织接触即可制造局灶性心肌损伤的新方法。在体内模型中,HIFU能量传递可与心电图同步,并且可在心肌内形成损伤。该技术的进一步应用可能对消融心肌损伤(如肥厚型心肌病中的致心律失常病灶和肥厚的室间隔)有用。超声能量在心脏病中的潜在治疗用途尚未得到充分研究。我们测试了一种新型系统,可在体外和体内将高强度聚焦超声能量传递至犬心肌样本,而无需与靶组织直接接触。局灶性心肌损伤以剂量依赖方式形成,成功制造出心肌损伤。该技术可能对消融肥厚型心肌病中的局灶性心肌内损伤(如致心律失常病灶和肥厚的左心室间隔)有用。

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