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Abnormal Neural Connectivity in Schizophrenia and fMRI-Brain-Computer Interface as a Potential Therapeutic Approach

机译:精神分裂症和功能磁共振成像-脑-计算机界面异常的神经连接作为一种潜在的治疗方法

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摘要

Considering that single locations of structural and functional abnormalities are insufficient to explain the diverse psychopathology of schizophrenia, new models have postulated that the impairments associated with the disease arise from a failure to integrate the activity of local and distributed neural circuits: the “abnormal neural connectivity hypothesis.” In the last years, new evidence coming from neuroimaging have supported and expanded this theory. However, despite the increasing evidence that schizophrenia is a disorder of neural connectivity, so far there are no treatments that have shown to produce a significant change in brain connectivity, or that have been specifically designed to alleviate this problem. Brain-Computer Interfaces based on real-time functional Magnetic Resonance Imaging (fMRI-BCI) are novel techniques that have allowed subjects to achieve self-regulation of circumscribed brain regions. In recent studies, experiments with this technology have resulted in new findings suggesting that this methodology could be used to train subjects to enhance brain connectivity, and therefore could potentially be used as a therapeutic tool in mental disorders including schizophrenia. The present article summarizes the findings coming from hemodynamics-based neuroimaging that support the abnormal connectivity hypothesis in schizophrenia, and discusses a new approach that could address this problem.
机译:考虑到结构和功能异常的单个位置不足以解释精神分裂症的多种心理病理学,因此新模型假设与疾病相关的损伤是由于未能整合局部和分布式神经回路的活动而引起的:“异常神经连通性”假设。”近年来,来自神经影像学的新证据支持并扩展了这一理论。然而,尽管有越来越多的证据表明精神分裂症是一种神经连通性疾病,但迄今为止,尚无任何疗法能够使大脑的连通性产生显着变化,也没有专门为缓解这一问题而设计的疗法。基于实时功能磁共振成像(fMRI-BCI)的脑机接口是允许受试者实现外接脑区域自我调节的新技术。在最近的研究中,使用这项技术的实验得出了新发现,表明该方法可用于训练受试者以增强大脑的连通性,因此有可能被用作精神分裂症(包括精神分裂症)的治疗工具。本文总结了来自基于血流动力学的神经影像学的发现,这些发现支持了精神分裂症的异常连通性假设,并讨论了可以解决该问题的新方法。

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