Department of Neurophysiology, Max-Planck Institute for Brain Research, Frankfurt am Main, Germany.
Schizophr Bull. 2011 May;37(3):514-23. doi: 10.1093/schbul/sbr034.
Recent data from developmental cognitive neuroscience highlight the profound changes in the organization and function of cortical networks during the transition from adolescence to adulthood. While previous studies have focused on the development of gray and white matter, recent evidence suggests that brain maturation during adolescence extends to fundamental changes in the properties of cortical circuits that in turn promote the precise temporal coding of neural activity. In the current article, we will highlight modifications in the amplitude and synchrony of neural oscillations during adolescence that may be crucial for the emergence of cognitive deficits and psychotic symptoms in schizophrenia. Specifically, we will suggest that schizophrenia is associated with impaired parameters of synchronous oscillations that undergo changes during late brain maturation, suggesting an important role of adolescent brain development for the understanding, treatment, and prevention of the disorder.
来自发展认知神经科学的最新数据强调了在从青春期到成年的过渡期间皮质网络的组织和功能的深刻变化。虽然之前的研究集中在灰质和白质的发育上,但最近的证据表明,青春期大脑的成熟扩展到皮质回路的特性的根本变化,这反过来又促进了神经活动的精确时间编码。在当前的文章中,我们将强调青少年时期神经振荡幅度和同步性的变化,这对于精神分裂症认知缺陷和精神病症状的出现可能至关重要。具体来说,我们将表明精神分裂症与同步振荡的受损参数有关,这些参数在大脑晚期成熟过程中发生变化,这表明青少年大脑发育对于理解、治疗和预防该疾病具有重要作用。