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Non-uniform interpolation of Cardiac Navigation maps using support vector machines with autocorrelation kernel

机译:使用带有自相关内核的支持向量机对心脏导航图进行非均匀插值

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A new method for non-uniform interpolation of electro-anatomical cardiac maps from Cardiac Navigation Systems (CNS) is here proposed and benchmarked. We adapted the equations of support vector machines for estimation problems in terms of the two angular dimensions azimuth and elevation and used an autocorrelation kernel. Moreover, the influence of the number of spatial locations, its minimum number to obtain a map that precisely replicates the original or gold-standard and the effect of working in 2D from 3D were also studied. Two basic simulation scenarios were used: (a) a prolate semi-ellipsoid, yielding a geometry similar to the ventricular chamber, with different width pulse and Gaussian activations; and (b) detailed simulated models of cardiac activity in the atria. Results were compared with those obtained with other interpolation methods. In the Gaussian and pulse-like activations the largest decrease in mean absolute error (MAE) for the test set was achieved by using 150 spatial locations (MAE from 0.007 to 0.117). In the simulation models the error stabilized at 500 spatial locations (MAE from 0,002 to 0.014). The proposed method can provide improved quality for electro-anatomical maps interpolation.
机译:这里提出并基准测试了来自心脏导航系统(CNS)的电子解剖心脏贴图的非均匀插值的新方法。我们在两个角度尺寸方位角和高度方面,改编了支持向量机的等式,用于估计问题,并使用自相关内核。此外,还研究了空间位置的数量,其最小数量以获得精确复制原始或金标的地图的地图以及在3D中在3D中工作的效果的影响。使用了两个基本的模拟场景:(a)脯氨酸半椭圆体,产生与心室室类似的几何形状,具有不同的宽度脉冲和高斯激活; (b)ATRIA中的心脏活性的详细模拟模型。将结果与其他插值方法获得的结果进行了比较。在高斯和脉冲类似的激活中,通过使用150个空间位置(MAE为0.007至0.117),实现了测试集的平均绝对误差(MAE)的最大减少。在模拟模型中,在500个空间位置稳定错误(MAE为0.002至0.014)。所提出的方法可以为电解剖地图内插提供改进的质量。

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