首页> 外文会议>Visualization, Image-Guided Procedures, and Display pt.1; Progress in Biomedical Optics and Imaging; vol.6,no.21 >Acoustic Radiation Force Impulse Imaging for Real-Time Observation of Lesion Development During Radiofrequency Ablation Procedures
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Acoustic Radiation Force Impulse Imaging for Real-Time Observation of Lesion Development During Radiofrequency Ablation Procedures

机译:射频消融过程中声波辐射力脉冲成像实时观察病变的发展

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When performing radiofrequency ablation (RFA) procedures, physicians currently have little or no feedback concerning the success of the treatment until follow-up assessments are made days to weeks later. To be successful, RFA must induce a thermal lesion of sufficient volume to completely destroy a target tumor or completely isolate an aberrant cardiac pathway. Although ultrasound, computed tomography (CT), and CT-based fluoroscopy have found use in guiding RFA treatments, they are deficient in giving accurate assessments of lesion size or boundaries during procedures. As induced thermal lesion size can vary considerably from patient to patient, the current lack of real-time feedback during RFA procedures is troublesome. We have developed a technique for real-time monitoring of thermal lesion size during RFA procedures utilizing acoustic radiation force impulse (ARFI) imaging. In both ex vivo and in vivo tissues, ARFI imaging provided better thermal lesion contrast and better overall appreciation for lesion size and boundaries relative to conventional sonography. The thermal safety of ARFI imaging for use at clinically realistic depths was also verified through the use of finite element method models. As ARFI imaging is implemented entirely on a diagnostic ultrasound scanner, it is a convenient, inexpensive, and promising modality for monitoring RFA procedures in vivo.
机译:目前,在执行射频消融(RFA)程序时,直到几天到几周后进行后续评估,医生们几乎没有或没有关于治疗成功的反馈。为了获得成功,RFA必须诱发足够体积的热损伤,以完全破坏目标肿瘤或完全隔离异常的心脏通路。尽管已经发现超声,计算机断层扫描(CT)和基于CT的荧光检查技术可用于指导RFA治疗,但它们不足以在手术过程中准确评估病变的大小或边界。由于诱发的热损伤大小可能因患者而异,因此在RFA程序中当前缺乏实时反馈是很麻烦的。我们已经开发出一种技术,可以利用声辐射力脉冲(ARFI)成像在RFA程序中实时监测热损伤大小。在离体组织和体内组织中,相对于常规超声检查,ARFI成像可提供更好的热病变对比,并更好地整体了解病变的大小和边界。还通过使用有限元方法模型验证了在临床实际深度中使用的ARFI成像的热安全性。由于ARFI成像完全在诊断超声扫描仪上实现,因此它是一种方便,便宜且有前途的方式,可用于体内监测RFA程序。

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