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Optoacoustic monitoring of real-time lesion formation during radiofrequency catheter ablation

机译:射频导管消融期间实时病变形成的光声监测

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Current radiofrequency cardiac ablation procedures lack real-time lesion monitoring guidance, limiting the reliability and efficacy of the treatment. The objective of this work is to demonstrate that optoacoustic imaging can be applied to develop a diagnostic technique applicable to radiofrequency ablation for cardiac arrhythmia treatment with the capabilities of real-time monitoring of ablated lesion size and geometry. We demonstrate an optoacoustic imaging method using a 256-detector optoacoustic imaging probe and pulsed-laser illumination in the infrared wavelength range that is applied during radiofrequency ablation in excised porcine myocardial tissue samples. This technique results in images with high contrast between the lesion volume and unablated tissue, and is also capable of capturing time-resolved image sequences that provide information on the lesion development process. The size and geometry of the imaged lesion were shown to be in excellent agreement with the histological examinations. This study demonstrates the first deep-lesion real-time monitoring for radiofrequency ablation generated lesions, and the technique presented here has the potential for providing critical feedback that can significantly impact the outcome of clinical radiofrequency ablation procedures.
机译:目前的射频心脏消融程序缺乏实时病变监测指导,限制了治疗的可靠性和功效。本作作品的目的是证明可以应用光声成像来开发适用于射频消融的诊断技术,用于心律失常治疗烧蚀病变尺寸和几何形状的能力。我们展示了使用256检测器的光声成像探针和脉冲激光照射在红外波长范围内的光声成像方法,其在切除的猪心肌组织样品中的射频消融期间应用。该技术导致损伤体积和未开放组织之间具有高对比度的图像,并且还能够捕获提供关于病变开发过程信息的时间分辨图像序列。成像病变的尺寸和几何形状被证明与组织学检查的良好一致。本研究证明了用于射频消融产生的病变的第一个深部位实时监测,并且这里呈现的技术具有提供可能显着影响临床射频消融程序的结果的关键反馈的可能性。

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