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基于具有最小均方系数更新的自适应实时滤波器抑制电生理信号上的磁共振梯度伪影。

Suppression of MR gradient artefacts on electrophysiological signals based on an adaptive real-time filter with LMS coefficient updates.

作者信息

Abächerli R, Pasquier C, Odille F, Kraemer M, Schmid J-J, Felblinger J

机构信息

Interventional and Diagnostic Adaptive Imaging (IADI), Tour Drouet CHU Nancy Brabois, Vandocuvre-les-Nancy, France.

出版信息

MAGMA. 2005 Mar;18(1):41-50. doi: 10.1007/s10334-004-0093-1. Epub 2005 Feb 7.

Abstract

Electrocardiogram (ECG) acquisition is still a challenge as gradient artefacts superimposed on the electrophysiological signal can only be partially removed. The signal shape of theses artefacts can be similar to the QRS-complex, causing possible misinterpretation during patient monitoring and false triggering/gating of the MRI. For their real-time suppression, an adaptive filter is proposed. The adaptive filter is based on the noise-canceller configuration with LMS coefficient updates. The references of the noise canceller are the three gradient signals that are acquired simultaneously with the noisy ECG. Tests were done on patients, on volunteers and using an MR-safe ECG simulator. The noise canceller's performance was measured offline, simulating real-time processing by point-by-point operations. To create worst-case scenarios, clinical sequences with strong- and fast-switching gradients have been chosen. The noise-cancelling filter reduces the gradient artefacts' peak amplitudes by 80-99% after adaptation, without changing the desired ECG signal shape. The estimated reduction of total average power of the MR gradient artefacts is 62-98%. The proposed filter is capable of reducing artefacts due to strong- and fast-switching gradients in real-time applications and worst-case situations. The quality of the ECG is sufficiently high that a standard one-lead QRS-detector can be used for gating/triggering the MRI. For permanent patient monitoring, further improvements are needed.

摘要

心电图(ECG)采集仍然是一项挑战,因为叠加在电生理信号上的梯度伪影只能部分去除。这些伪影的信号形状可能与QRS波群相似,在患者监测期间可能导致误判,以及在MRI中产生误触发/门控。为了实时抑制这些伪影,提出了一种自适应滤波器。该自适应滤波器基于具有最小均方(LMS)系数更新的噪声消除器配置。噪声消除器的参考信号是与有噪声的ECG同时采集的三个梯度信号。对患者、志愿者进行了测试,并使用了磁共振安全心电图模拟器。通过逐点操作模拟实时处理,离线测量噪声消除器的性能。为了创建最坏情况场景,选择了具有强且快速切换梯度的临床序列。自适应后,噪声消除滤波器将梯度伪影的峰值幅度降低了80% - 99%,而不会改变所需的ECG信号形状。估计磁共振梯度伪影的总平均功率降低了62% - 98%。所提出的滤波器能够在实时应用和最坏情况下减少由强且快速切换梯度引起的伪影。ECG的质量足够高,以至于可以使用标准的单导联QRS检测器来门控/触发MRI。对于长期患者监测,还需要进一步改进。

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