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A multi-front eikonal model of cardiac electrophysiology for interactive simulation of radio-frequency ablation

机译:用于射频消融的交互式仿真的心脏电生理的多前沿电子模型

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摘要

Virtual reality-based therapy simulation meets a growing interest from the medical community due to its potential impact for the training of medical residents and the planning of therapies. However, computer models of the human anatomy are often very computationally demanding, thus incompatible with the constraints of such interactive simulations. In this paper, we propose a fast model of the cardiac electrophysiology based on an eikonal formulation implemented with an anisotropic fast marching method. We demonstrate the use of this model in the context of a simulator of radio-frequency ablation of cardiac arrhythmia from patientspecific medical imaging data. Indeed, this therapy can be very effective for patients but still suffers from a rather low success rate. Being able to test different ablation strategies on a patient-specific model can have a great clinical impact. In our setting, thanks to a haptic 3D user interface, the user can interactively measure the local extracellular potential, pace locally the myocardium or simulate the burning of cardiac tissue as done in radio-frequency ablation interventions.
机译:基于虚拟现实的治疗模拟由于其对医疗居民的培训和治疗计划的潜在影响,越来越引起医学界的关注。但是,人体解剖学的计算机模型通常在计算上要求很高,因此与这种交互式模拟的约束条件不兼容。在本文中,我们提出了一种基于各向异性快进方法实现的常规公式的心脏电生理快速模型。我们在从患者特定的医学成像数据中对心律不齐进行射频消融的模拟器中证明了该模型的使用。实际上,这种疗法对患者可能非常有效,但成功率仍然很低。能够在特定于患者的模型上测试不同的消融策略可能会对临床产生重大影响。在我们的环境中,借助3D触觉用户界面,用户可以交互式地测量局部细胞外电位,局部调节心肌的速度或模拟射频消融干预中心脏组织的燃烧。

著录项

  • 来源
    《Computers & Graphics》 |2011年第2期|p.431-440|共10页
  • 作者单位

    INRIA, Asclepios Team, 2004 route des Lucioles, 06902 Sophia-Amipolis, France;

    INRIA, Asclepios Team, 2004 route des Lucioles, 06902 Sophia-Amipolis, France,King's College London, St Thomas' Hospital, UK;

    Microsoft Research, Cambridge, UK;

    INRIA, Asclepios Team, 2004 route des Lucioles, 06902 Sophia-Amipolis, France;

    INRIA, Asclepios Team, 2004 route des Lucioles, 06902 Sophia-Amipolis, France;

    INRIA, Asclepios Team, 2004 route des Lucioles, 06902 Sophia-Amipolis, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    medical interactive simulation; modelling of the heart; haptic device;

    机译:医学互动模拟;心脏建模;触觉装置;

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