Zeemering S, Maesen B, Nijs J, Lau D H, Granier M, Verheule S, Schotten U
Department of Physiology, Maastricht University, P.O. Box 616, 6200 MD, Maastricht, The Netherlands.
Annu Int Conf IEEE Eng Med Biol Soc. 2012;2012:6357-60. doi: 10.1109/EMBC.2012.6347448.
The analysis of high-density activation maps of atrial fibrillation (AF) provides fundamental insights into the fibrillation wave propagation patterns and thus the mechanisms of AF. Current annotation of local activations in unipolar atrial electrograms and the construction of fibrillation waves require labor-intensive manual editing. To enhance the possibilities for spatiotemporal analysis of AF, we developed a rapid and fully automated procedure to accurately identify local, intrinsic atrial deflections and construct fibrillation waves based on these deflections. In this study, the automated procedure was validated using manually annotated electrograms and wave maps. We show that the novel procedure accurately detects intrinsic deflections (sensitivity=87%, positive predictive value=89%) and that reconstructed wave maps correlate well with manually edited wave maps in terms of number of waves (r=0.96), intra-wave conduction velocity (r=0.97), AF cycle length (r=0.97), and wave size (r=0.96) (p<0.01 in all cases). The automated procedure is therefore an adequate substitute for manual annotation.
心房颤动(AF)高密度激活图的分析为颤动波传播模式以及AF机制提供了基本见解。目前对单极心房电图中局部激活的注释以及颤动波的构建需要大量人工编辑。为了增加AF时空分析的可能性,我们开发了一种快速且完全自动化的程序,以准确识别局部、内在的心房偏转,并基于这些偏转构建颤动波。在本研究中,使用人工注释的电图和波图对该自动化程序进行了验证。我们表明,该新程序能准确检测内在偏转(灵敏度=87%,阳性预测值=89%),并且重建的波图在波的数量(r=0.96)、波内传导速度(r=0.97)、AF周期长度(r=0.97)和波大小(r=0.96)方面与人工编辑的波图具有良好的相关性(所有情况下p<0.01)。因此,该自动化程序是人工注释的合适替代方法。