Sifis Micheloyannis, Medical Division, Research Clinical Neurophysiological Laboratory (L. Widén Laboratory), University of Crete, Iraklion/Crete 71409, Greece.
World J Psychiatry. 2012 Feb 22;2(1):1-12. doi: 10.5498/wjp.v2.i1.1.
Over the last few years, many studies have been published using modern network analysis of the brain. Researchers and practical doctors alike should understand this method and its results on the brain evaluation at rest, during activation and in brain disease. The studies are noninvasive and usually performed with elecroencephalographic, magnetoencephalographic, magnetic resonance imaging and diffusion tensor imaging brain recordings. Different tools for analysis have been developed, although the methods are in their early stages. The results of these analyses are of special value. Studies of these tools in schizophrenia are important because widespread and local network disturbances can be evaluated by assessing integration, segregation and several structural and functional properties. With the help of network analyses, the main findings in schizophrenia are lower optimum network organization, less efficiently wired networks, less local clustering, less hierarchical organization and signs of disconnection. There are only about twenty five relevant papers on the subject today. Only a few years of study of these methods have produced interesting results and it appears promising that the development of these methods will present important knowledge for both the preclinical signs of schizophrenia and the methods' therapeutic effects.
在过去的几年中,已经发表了许多使用大脑现代网络分析的研究。研究人员和实际医生都应该了解这种方法及其在静息、激活和脑疾病状态下的大脑评估中的结果。这些研究是无创的,通常使用脑电图、脑磁图、磁共振成像和弥散张量成像进行大脑记录。虽然方法尚处于早期阶段,但已经开发出了不同的分析工具。这些分析的结果具有特殊价值。对精神分裂症这些工具的研究很重要,因为通过评估整合、分离和几个结构和功能特性,可以评估广泛和局部的网络干扰。借助网络分析,可以发现精神分裂症的主要发现是网络组织较差、网络连接效率较低、局部聚类较少、层次组织较少以及连接中断的迹象。目前关于这个主题的相关论文只有大约二十五篇。对这些方法的研究只有几年,但已经产生了有趣的结果,而且这些方法的发展似乎有望为精神分裂症的临床前迹象和治疗效果提供重要知识。