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使用心电图成像技术估计心脏激活图中的线路阻塞伪影:源模型和估计方法的比较。

Reducing Line-of-Block Artifacts in Cardiac Activation Maps Estimated Using ECG Imaging: A Comparison of Source Models and Estimation Methods.

出版信息

IEEE Trans Biomed Eng. 2022 Jun;69(6):2041-2052. doi: 10.1109/TBME.2021.3135154. Epub 2022 May 19.

Abstract

OBJECTIVE

To investigatecardiac activation maps estimated using electrocardiographic imaging and to find methods reducing line-of-block (LoB) artifacts, while preserving real LoBs.

METHODS

Body surface potentials were computed for 137 simulated ventricular excitations. Subsequently, the inverse problem was solved to obtain extracellular potentials (EP) and transmembrane voltages (TMV). From these, activation times (AT) were estimated using four methods and compared to the ground truth. This process was evaluated with two cardiac mesh resolutions. Factors contributing to LoB artifacts were identified by analyzing the impact of spatial and temporal smoothing on the morphology of source signals.

RESULTS

AT estimation using a spatiotemporal derivative performed better than using a temporal derivative. Compared to deflection-based AT estimation, correlation-based methods were less prone to LoB artifacts but performed worse in identifying real LoBs. Temporal smoothing could eliminate artifacts for TMVs but not for EPs, which could be linked to their temporal morphology. TMVs led to more accurate ATs on the septum than EPs. Mesh resolution had anegligible effect on inverse reconstructions, but small distances were important for cross-correlation-based estimation of AT delays.

CONCLUSION

LoB artifacts are mainly caused by the inherent spatial smoothing effect of the inverse reconstruction. Among the configurations evaluated, only deflection-based AT estimation in combination with TMVs and strong temporal smoothing can prevent LoB artifacts, while preserving real LoBs.

SIGNIFICANCE

Regions of slow conduction are of considerable clinical interest and LoB artifacts observed in non-invasive ATs can lead to misinterpretations. We addressed this problem by identifying factors causing such artifacts.

摘要

目的

研究使用心电图成像估计的心脏激活图,并找到减少线路阻塞(LoB)伪影的方法,同时保留真实的 LoB。

方法

为 137 个模拟心室兴奋计算了体表电位。随后,通过求解逆问题获得了细胞外电位(EP)和跨膜电压(TMV)。从这些中,使用四种方法估计了激活时间(AT),并与真实值进行了比较。使用两种心脏网格分辨率评估了此过程。通过分析空间和时间平滑对源信号形态的影响,确定了导致 LoB 伪影的因素。

结果

使用时空导数的 AT 估计比使用时间导数的效果更好。与基于偏转的 AT 估计相比,基于相关的方法不易受到 LoB 伪影的影响,但在识别真实的 LoB 方面表现不佳。时间平滑可以消除 TMV 的伪影,但不能消除 EP 的伪影,这可能与它们的时间形态有关。TMV 比 EP 更准确地在间隔上定位 AT。网格分辨率对逆重建的影响可以忽略不计,但对于基于互相关的 AT 延迟估计,小距离很重要。

结论

LoB 伪影主要是由逆重建的固有空间平滑效应引起的。在所评估的配置中,只有基于偏转的 AT 估计与 TMV 和强时间平滑相结合才能防止 LoB 伪影,同时保留真实的 LoB。

意义

缓慢传导区域具有相当大的临床意义,非侵入性 AT 中观察到的 LoB 伪影可能导致错误解释。我们通过确定导致此类伪影的因素来解决此问题。

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