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正常体重和异常体重受试者的静息状态皮质脑电图节律。

Resting state cortical electroencephalographic rhythms in subjects with normal and abnormal body weight.

机构信息

Department of Biomedical Sciences, Bioagromed, University of Foggia, Foggia, Italy.

出版信息

Neuroimage. 2011 Sep 15;58(2):698-707. doi: 10.1016/j.neuroimage.2011.05.080. Epub 2011 Jun 17.

DOI:10.1016/j.neuroimage.2011.05.080
PMID:21704716
Abstract

It is well known that resting state regional cerebral blood flow is abnormal in obese when compared to normal-weight subjects but the underlying neurophysiological mechanisms are poorly known. To address this issue, we tested the hypothesis that amplitude of resting state cortical electroencephalographic (EEG) rhythms differ among underweight, normal-weight, and overweight/obese subjects as a reflection of the relationship between cortical neural synchronization and regulation of body weight. Eyes-closed resting state EEG data were recorded in 16 underweight subjects, 25 normal-weight subjects, and 18 overweight/obese subjects. All subjects were psychophysically healthy (no eating disorders or major psychopathologies). EEG rhythms of interest were delta (2-4Hz), theta (4-8Hz), alpha 1 (8-10.5Hz), alpha 2 (10.5-13Hz), beta 1 (13-20Hz), beta 2 (20-30Hz), and gamma (30-40Hz). EEG cortical sources were estimated by low-resolution brain electromagnetic tomography (LORETA). Statistical results showed that parietal and temporal alpha 1 sources fitted the pattern underweight>normal-weight>overweight/obese (p<0.004), whereas occipital alpha 1 sources fitted the pattern normal-weight>underweight>overweight/obese (p<0.00003). Furthermore, amplitude of the parietal, occipital, and temporal alpha 2 sources was stronger in the normal-weight subjects than in the underweight and overweight/obese subjects (p<0.0007). These results suggest that abnormal weight in healthy overweight/obese subjects is related to abnormal cortical neural synchronization at the basis of resting state alpha rhythms and fluctuation of global brain arousal.

摘要

众所周知,与正常体重受试者相比,肥胖者的静息状态区域性脑血流异常,但潜在的神经生理机制知之甚少。为了解决这个问题,我们检验了这样一个假设,即静息状态皮质脑电图(EEG)节律的幅度在体重不足、正常体重和超重/肥胖受试者之间存在差异,这反映了皮质神经同步与体重调节之间的关系。在 16 名体重不足的受试者、25 名正常体重的受试者和 18 名超重/肥胖的受试者中记录了闭眼静息状态 EEG 数据。所有受试者的精神健康状况良好(没有饮食失调或主要精神病理学)。感兴趣的 EEG 节律包括 delta(2-4Hz)、theta(4-8Hz)、alpha1(8-10.5Hz)、alpha2(10.5-13Hz)、beta1(13-20Hz)、beta2(20-30Hz)和 gamma(30-40Hz)。通过低分辨率脑电磁层析成像(LORETA)估计 EEG 皮质源。统计结果表明,顶叶和颞叶 alpha1 源符合体重不足>正常体重>超重/肥胖的模式(p<0.004),而枕叶 alpha1 源符合正常体重>体重不足>超重/肥胖的模式(p<0.00003)。此外,正常体重受试者的顶叶、枕叶和颞叶 alpha2 源的振幅比体重不足和超重/肥胖受试者更强(p<0.0007)。这些结果表明,健康超重/肥胖受试者的异常体重与静息状态 alpha 节律和大脑整体觉醒波动的基础上的皮质神经同步异常有关。

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