首页> 外文会议>Engineering in Medicine and Biology Society, 2001. Proceedings of the 23rd Annual International Conference of the IEEE >Interhemispheric differences of hand motor cortex organization: MEG-EMG cortico-muscular coherence
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Interhemispheric differences of hand motor cortex organization: MEG-EMG cortico-muscular coherence

机译:手运动皮层组织的半球间差异:MEG-EMG皮层-肌肉相干性

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Corticomuscular coherence between cerebral cortical rhythms and the surface electromyography (EMG) has been observed both trough electrocorticogram and by electroencephalographic (EEG) and magnetoencephalographic (MEG) recordings. Corticomuscular coherence is a tool for identification and characterization of cortical districts controlling a particular body district, based on amplitude and frequency selection. MEG recordings of parietal contralateral cerebral activity and muscular activity from right and left extensor comunis digitorum (ECD) have been studied in 5 control subjects (bandpass 0.48-250 Hz, sampling rate 1000 Hz). Subject was required to contract separately left and right ECD, with 50% of maximal voluntary contraction force, for periods of 1-1.5 min. MEG-EMG coherence has been evaluated by Welch method, by windowing (Hamming) the artifact free signal in tracts lasting 2048 pt, overlapped by 60%. Tracts with high coherence were selected. Confidence limit was calculated and coherence levels above this value considered for motor control characterization. Comparison between dominant-non dominant hemispheric frequency coherence spectra and spatial coherence distribution has been performed. Preliminary results indicate in dominant hemisphere, a more concentrated frequency distribution in the coherence spectrum (higher values in a sharper frequency range) and, once selected the coherence at peck value, a more concentrated spatial distribution. Methodological optimization of the coherence procedure are discussed. These indications of dominant-non dominant hemispheric asymmetries could be feather investigated to establish physiological parameters to identify eventual alterations in the cortical motor organization induced by pathological conditions.
机译:既可通过脑电图,又可通过脑电图(EEG)和磁脑电图(MEG)记录观察到大脑皮层节律与表面肌电图(EMG)之间的皮层相干性。皮质神经相干性是一种基于幅度和频率选择来识别和表征控制特定身体部位的皮质部位的工具。 MEG记录了左右5个对照受试者(带通0.48-250 Hz,采样率1000 Hz)的左右对侧指趾伸肌(ECD)的顶对侧大脑活动和肌肉活动的MEG记录。要求受试者分别以最大自愿收缩力的50%收缩左右ECD,时间为1-1.5分钟。 MEG-EMG相干性已通过Welch方法进行了评估,方法是通过以持续2048 pt的区域(重叠60%)对无伪影信号进行开窗(Hamming)处理。选择了具有高度连贯性的道。计算了置信极限,并考虑了高于此值的相干水平以进行运动控制表征。进行了主要-非主要半球频率相干谱与空间相干分布之间的比较。初步结果表明,在优势半球中,相干谱中的频率分布更加集中(在更陡峭的频率范围内值更高),一旦选择了啄值处的相干,则空间分布就会更加集中。讨论了相干程序的方法优化。可以通过羽毛研究显性-非显性半球不对称性的这些征兆,以建立生理学参数,以识别病理条件引起的皮质运动组织的最终改变。

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