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Cardiac tissue ablation with catheter-based microwave heating.

机译:心脏组织消融和基于导管的微波加热。

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摘要

The common condition of atrial fibrillation is often treated by cutting diseased cardiac tissue to disrupt abnormal electrical conduction pathways. Heating abnormal tissue with electromagnetic power provides a minimally invasive surgical alternative to treat these cardiac arrhythmias. Radio frequency ablation has become the method of choice of many physicians. Recently, microwave power has also been shown to have great therapeutic benefit in medical treatment requiring precise heating of biological tissue. Since microwave power tends to be deposited throughout the volume of biological media, microwave heating offers advantages over other heating modalities that tend to heat primarily the contacting surface. It is also possible to heat a deeper volume of tissue with more precise control using microwaves than with purely thermal conduction or RF electrode heating. Microwave Cardiac Ablation (MCA) is used to treat heart tissue that allows abnormal electrical conduction by heating it to the point of inactivation. Microwave antennas that fit within catheter systems can be positioned close to diseased tissue. Specialized antenna designs that unfurl from the catheter within the heart can then radiate specifically shaped fields, which overcome problems such as excessive surface heating at the contact point. The state of the art in MCA is reviewed in this paper and a novel catheter-based unfurling wide aperture antenna is described. This antenna consists of the centre conductor of a coaxial line, shaped into a spiral and insulated from blood and tissue by a non-conductive fluid filled balloon. Initially stretched straight inside a catheter for transluminal guiding, once in place at the cardiac target, the coiled spiral antenna is advanced into the inflated balloon. Power is applied in the range of 50-150 W at the reserved industrial, scientific and medical (ISM) frequency of 915 MHz for 30-90 s to create an irreversible lesion. The antenna is then retracted back into the catheter for removal. Simulated and experimental measurements on phantoms, in vitro animal organ tissue and living animals have shown that these microwave applicators deliver the intended therapeutic lesions that are both wider and deeper than those generated by RF ablation or other recently reported microwave applicators.
机译:通常通过切割患病的心脏组织以破坏异常的电传导途径来治疗房颤的常见状况。用电磁功率加热异常组织提供了一种微创手术替代方法来治疗这些心律不齐。射频消融已成为许多医生的选择方法。近来,微波功率也已经显示出在需要精确加热生物组织的医学治疗中具有巨大的治疗益处。由于微波功率倾向于沉积在整个生物介质的整个体积中,因此微波加热相对于倾向于主要加热接触表面的其他加热方式具有优势。与纯热传导或RF电极加热相比,使用微波通过更精确的控制来加热更深的组织也是可能的。微波心脏消融术(MCA)用于治疗心脏组织,该组织通过将其加热到失活点而允许异常导电。可以将适合导管系统的微波天线放置在靠近患病组织的位置。从心脏内的导管中脱出的专门天线设计可以辐射出特定形状的场,从而克服了诸如接触点表面过热等问题。本文回顾了MCA的最新技术,并描述了一种新型的基于导管的展开式宽孔径天线。该天线由同轴线的中心导体组成,该中心导体成形为螺旋形,并通过不导电的充满液体的气球与血液和组织绝缘。最初,笔直地伸入导管内以进行腔内引导,一旦放置在心脏靶材上,盘绕的螺旋形天线就会进入充气气球中。在保留的915 MHz工业,科学和医学(ISM)频率下,在30-90 s内施加50-150 W的功率,以形成不可逆的病变。然后,将天线缩回导管中以便取出。在体模,体外动物器官组织和活体动物上进行的仿真和实验测量表明,这些微波施加器比射频消融或其他最近报道的微波施加器产生的治疗损伤更宽,更深。

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