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首页> 外文期刊>NeuroImage >Ballistocardiogram artifact reduction in the simultaneous acquisition of auditory ERPS and fMRI.
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Ballistocardiogram artifact reduction in the simultaneous acquisition of auditory ERPS and fMRI.

机译:同时获取听觉ERPS和fMRI的心搏描记图伪影减少。

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Electroencephalography (EEG) and functional magnetic resonance imaging (fMRI) are now being combined to analyze brain function. Confounding the EEG signal acquired in the MR environment is a ballistocardiogram artifact (BA), which is predominantly caused by cardiac-related body movement. The objective of this study was to develop and evaluate a method for reducing these MR-induced artifacts to retrieve small auditory event-related potentials (ERPs) from EEG recorded during fMRI. An algorithm for BA reduction was developed that relies on timing information obtained from simultaneous electrocardiogram (ECG) recordings and subsequent creation of an adaptive BA template. The BA template is formed by median-filtering 10 consecutive BA events in the EEG signal. The continuously updated template is then subtracted from each BA in the EEG. The auditory ERPs are obtained through signal averaging of the remaining EEG signal. Experimental and simulated ERP data were estimated to assess effectiveness of the BA reduction. Simulation showed that the algorithm reduced BA without significantly altering the morphology of a signal periodically inserted in the EEG. Auditory ERP data, obtained in a 1.5-T scanner during a passive auditory oddball paradigm and processed with the BA reduction algorithm, were comparable to data recorded in a mock scanner outside the magnetic field with the same experimental paradigm. It is concluded that through adequate reduction of the BA, relatively small auditory ERPs can be acquired in the MR environment.
机译:脑电图(EEG)和功能磁共振成像(fMRI)现在被结合起来以分析脑功能。 MR环境中采集到的EEG信号是心电图伪影(BA),这主要是由与心脏相关的身体运动引起的。这项研究的目的是开发和评估一种方法,以减少这些MR引起的伪影,以便从fMRI记录的脑电图中检索与听觉事件相关的小电位(ERP)。开发了一种用于BA减少的算法,该算法依赖于从同步心电图(ECG)记录和随后创建的自适应BA模板获得的定时信息。 BA模板是通过对EEG信号中的10个连续BA事件进行中值滤波而形成的。然后从EEG中的每个BA中减去连续更新的模板。听觉ERP是通过对其余EEG信号进行信号平均而获得的。估计了实验和模拟的ERP数据以评估BA降低的有效性。仿真表明,该算法在不显着改变周期性插入EEG的信号形态的情况下降低了BA。在被动听觉奇异球范例期间在1.5-T扫描仪中获得的听觉ERP数据,并通过BA缩减算法进行处理,与在磁场相同条件下在模拟扫描仪中记录的数据具有可比性。结论是,通过适当降低BA可以在MR环境中获得相对较小的听觉ERP。

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