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The extraction of olfactory evoked potentials in human brain using Independent Component Analysis - based Approach

机译:基于独立分量分析的方法提取人脑嗅觉诱发电位。

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Patients suffering from olfaction impairment are incapable of judging the smell of delicious food and fragrance. Their lack of smell vigilance might also make them unaware of danger environments, e.g., the leakage of carbon-oxide (CO). Traditional examination in clinics uses Sniffin sticks, which store odorants in sticks, and requests subjects to subjectively report what smell they have sensed. Nevertheless, subject's subjective feeling may inevitably bias the examination results. Accordingly, a objective method for olfactory examinations in otolaryngology clinics is needed. In this study, we tried to develop an objective method on magnetoencephalography (MEG) for olfaction examination by extraction olfactory evoked fields (OEF). Owing to the high noise level in MEG data, independent component analysis (ICA) was adopted to removal OEF-unrelated noises. ICA can decompose the measured EEG data into different independent components (IC). ICs were clustered into different groups based on their spatial weight over MEG channels, and only those ICs with spatial mapping closed to second somatosensory area (SII) were utilized for signal reconstruction. The source locations of extracted OEF signals were superimposed on individual anatomical MRI for display purpose. The proposed method may provide an efficacious way to enhance the SNR of OEFs.
机译:嗅觉障碍患者无法判断美味的食物和香味的气味。他们缺乏警惕性也可能使他们没有意识到危险环境,例如,二氧化碳(CO)的泄漏。诊所中的传统检查使用嗅探棒,将嗅味剂存储在棒中,并要求受试者主观地报告他们感觉到的气味。然而,受试者的主观感觉可能不可避免地使检查结果产生偏差。因此,需要一种在耳鼻喉科诊所进行嗅觉检查的客观方法。在这项研究中,我们尝试通过提取嗅觉诱发磁场(OEF)来开发一种客观的磁脑电图法(MEG),用于嗅觉检查。由于MEG数据中的高噪声水平,因此采用了独立成分分析(ICA)来消除与OEF无关的噪声。 ICA可以将测得的EEG数据分解为不同的独立成分(IC)。根据IC在MEG通道上的空间权重,将其分为不同的组,只有那些空间映射接近第二体感区域(SII)的IC才能用于信号重建。将提取的OEF信号的源位置叠加在单个解剖MRI上以进行显示。所提出的方法可以提供一种有效的方法来增强OEF的SNR。

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