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A new family of variational-form-based regularizers for reconstructing epicardial potentials from body-surface mapping

机译:基于变体形式的正则化器新家族,可从体表测绘重建心外膜电位

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We propose a new family of regularizers for the inverse ECG problem, using a variational principle that underlies finite element approximation methods. As an alternative to traditional Tikhonov regularizers, the variational formulation has several advantages: 1)it enables a simple construction of the gradient operator (in a matrix form) over irregular meshes, which is often difficult to derive; 2)it achieves consistent regularization under multi-scale simulations by preserving the norm, which is evaluated by the resolution-independent L2-norm rather than the discrete Euclidean norm; and 3)it allows simultaneous application of multiple constraints efficiently. Our proposed method is validated by simulation on a realistic 3D model with clinical heart data, showing that the variational formulation may improve a broader range of potential-based electrocardiographic problems.
机译:我们使用基于有限元逼近方法的变分原理,为反心电图问题提出了一个新的正则化器系列。作为传统Tikhonov正则化器的替代方法,变分公式具有几个优点:1)它使不规则网格上的梯度算子(矩阵形式)易于构造,这通常很难推导; 2)通过保留范数,在多尺度模拟下实现一致的正则化,该范数是由与分辨率无关的L 2 范数而不是离散的欧几里得范数进行评估的; 3)它允许有效地同时应用多个约束。我们提出的方法通过在具有临床心脏数据的逼真的3D模型上进行的仿真得到了验证,结果表明,变异公式可能会改善范围广泛的基于电势的心电图问题。

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