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ADAPTIVE STIMULUS ARTIFACT AND ECG REDUCTION IN SOMATOSENSORY EVOKED POTENTIAL STUDIES

机译:体感诱发电位研究中的自适应刺激伪影和心电图降低

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摘要

Somatosensory Evoked Potentials (SEPs) are an important class of bioelectric signals which contain clinically valuable information. However, surface measurements of these signals are often contaminated by the stimulus artifact which, depending on the stimulating and recording measurement characteristics, may obscure some of the information contained in the SEPs. In addition, the SEP recordings on the spinal cord are also influenced by the more powerful ECG interference. The purpose of this paper is two fold - firstly, we apply a nonlinear adaptive filter based on the second order Volterra series to iteratively minimize the stimulus artifact. Secondly, a two stage adaptive filter structure is proposed to simultaneously reduce the ECG and stimulus artifact components for spinal cord SEPs. Preliminary experimental results showing the effectiveness of the proposed filter structures are included.
机译:体感诱发电位(SEP)是一类重要的生物电信号,包含临床上有价值的信息。但是,这些信号的表面测量结果经常被刺激伪影所污染,刺激伪影取决于刺激和记录的测量特性,可能会使SEP中包含的某些信息模糊不清。另外,脊髓上的SEP记录也受到更强大的ECG干扰的影响。本文的目的有两个方面-首先,我们基于二阶Volterra级数应用非线性自适应滤波器来迭代地最小化刺激伪影。其次,提出了一种两阶段自适应滤波器结构,以同时减少脊髓SEP的ECG和刺激伪影分量。初步实验结果显示了所提出的滤波器结构的有效性。

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