Shekoohishooli Fatemeh, Chella Federico, Caulo Massimo, Navarra Riccardo, Rapino Matteo, Pizzella Vittorio, Marzetti Laura
Department of Neuroscience, Imaging and Clinical Sciences, "G. d'Annunzio University" of Chieti-Pescara, 66100, Chieti, Italy.
Institute for Advanced Biomedical Technologies, "G. d'Annunzio University" of Chieti-Pescara, 66100, Chieti, Italy.
Neuroimage Rep. 2021 Sep 17;1(4):100051. doi: 10.1016/j.ynirp.2021.100051. eCollection 2021 Dec.
Gliomas disturb brain functions, contributing to abnormal neuronal activity and connectivity changes that can be effectively investigated using magnetoencephalography (MEG). In this work, we used MEG to evaluate frequency-specific alterations of brain activity and functional connectivity in glioma patients. Two consecutive 5-min sessions of eyes-closed resting-state brain activity were recorded from ten glioma patients and ten age-matched healthy subjects. Modulations of power and functional connectivity, within the patient group and between patients and the healthy control group, were assessed in terms of the Neural Activity Index and the Multivariate Interaction Measure, respectively. These quantities were calculated in individualized frequency bands (delta, theta, lower alpha, upper alpha and beta) to account for changes in spectral peaks in patients. We report a decrease in power in tumor and peri-tumor regions in the upper-alpha and beta bands with respect to the rest of the brain, paired to a decrease in lower and upper-alpha band functional connectivity of the tumor and peri-tumor regions. In comparison with healthy subjects, we observe a global enhancement in power in lower-alpha in patients. Overall, our study shows that glioma infiltration can widely influence brain local and long-range synchrony in an individualized frequency-specific manner.
神经胶质瘤会干扰大脑功能,导致神经元活动异常和连接性改变,而利用脑磁图(MEG)能够有效地对此进行研究。在本研究中,我们使用MEG来评估神经胶质瘤患者大脑活动的频率特异性改变以及功能连接性。我们对10名神经胶质瘤患者和10名年龄匹配的健康受试者进行了两次连续5分钟的闭眼静息态大脑活动记录。分别根据神经活动指数和多变量相互作用测量法,评估了患者组内以及患者与健康对照组之间的功率调制和功能连接性。这些量是在个体化的频带(δ波、θ波、低α波、高α波和β波)中计算得出的,以考虑患者频谱峰值的变化。我们报告称,相对于大脑其他区域,肿瘤及肿瘤周围区域的高α波和β波带功率下降,同时肿瘤及肿瘤周围区域的低α波和高α波带功能连接性也下降。与健康受试者相比,我们观察到患者的低α波功率整体增强。总体而言,我们的研究表明,神经胶质瘤浸润能够以个体化的频率特异性方式广泛影响大脑的局部和远程同步性。