首页> 外文期刊>International journal of imaging systems and technology >Real-time ballistocardiographic artifact reduction using the k-teager energy operator detector and multi-channel referenced adaptive noise cancelling
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Real-time ballistocardiographic artifact reduction using the k-teager energy operator detector and multi-channel referenced adaptive noise cancelling

机译:使用k-teager能量算子检测器和多通道参考自适应降噪技术实时减少心动描记

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The simultaneous electroencephalogram (EEG) and functional magnetic resonance imaging (fMRI) recording technique has recently received considerable attention and has been used in many studies on cognition and neurological disease. EEG-fMRI simultaneous recording has the advantage of enabling the monitoring of brain activity with both high temporal resolution and high spatial resolution in real time. The successful removal of the ballistocardiographic (BCG) artifact from the EEG signal recorded during an MRI is an important prerequisite for real-time EEG-fMRI joint analysis. We have developed a new framework dedicated to BCG artifact removal in real-time. This framework includes a new real-time R-peak detection method combining a k-Teager energy operator, a thresholding detector, and a correlation detector, as well as a real-time BCG artifact reduction procedure combining average artifact template subtraction and a new multi-channel referenced adaptive noise cancelling method. Our results demonstrate that this new framework is efficient in the real-time removal of the BCG artifact. The multi-channel adaptive noise cancellation (mANC) method performs better than the traditional ANC method in eliminating the BCG residual artifact. In addition, the computational speed of the mANC method fulfills the requirements of real-time EEG-fMRI analysis. (c) 2016 Wiley Periodicals, Inc. Int J Imaging Syst Technol, 26, 209-215, 2016
机译:同时脑电图(EEG)和功能磁共振成像(fMRI)记录技术最近受到了广泛关注,并已用于认知和神经系统疾病的许多研究中。 EEG-fMRI同时记录的优点是可以实时监控高时间分辨率和高空间分辨率的大脑活动。从MRI期间记录的EEG信号中成功清除心电图(BCG)伪影是进行实时EEG-fMRI联合分析的重要前提。我们已经开发了一个专门用于实时清除BCG伪影的新框架。该框架包括结合了k-Teager能量算子,阈值检测器和相关检测器的新的实时R峰检测方法,以及结合了平均伪像模板减法和新的多点检测的实时BCG伪像减少程序。通道参考的自适应噪声消除方法。我们的结果表明,该新框架在实时移除BCG工件方面是有效的。在消除BCG残留伪影方面,多通道自适应噪声消除(mANC)方法的性能优于传统的ANC方法。此外,mANC方法的计算速度可以满足实时EEG-fMRI分析的要求。 (c)2016 Wiley Periodicals,Inc.国际成像技术有限公司,26,209-215,2016

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