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Detection of atrial fibrillation in implanted devices by automatic scanning of sensing threshold and cycle length

机译:通过自动扫描感测阈值和循环长度的植入装置中心房颤动的检测

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A new approach is presented for computationally efficient detection of atrial fibrillation in which atrial rate is measured as the pacemaker sensing and cycle length threshold are independently varied. This extends the "threshold scanning" rate curve into a two dimensional integer function. A similarity metric is used to compare the shape of this function to one typical of atrial fibrillation. The algorithm correctly identified 26 of 29 episodes of atrial fibrillation and incorrectly identified as atrial fibrillation 3 of 83 episodes of other rhythms, for a sensitivity of 90% and specificity 96%. The integer character of the discriminating function as well as the simplicity of the implementation make this algorithm suitable for implantable devices.
机译:提出了一种新方法,用于计算上高效地检测心房颤动,其中测量心房感测和循环长度阈值独立变化。这将“阈值扫描”速率曲线扩展为二维整数函数。相似度量用于将该功能的形状与典型的心房颤动的形状进行比较。该算法正确鉴定了29个心房颤动发作的29个剧集,并且不正确地鉴定为其他节奏的83发作的心房颤动3,敏感性为90%和特异性96%。鉴别功能的整数特征以及实现的简单性使得这种算法适用于可植入设备。

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