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Modeling oscillatory dynamics in brain microcircuits as a way to help uncover neurological disease mechanisms: A proposal

机译:脑微电路振荡动力学的建模作为一种帮助揭示神经疾病机制的一种方法:提案

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摘要

There is an undisputed need and requirement for theoretical and computational studies in Neuroscience today. Furthermore, it is clear that oscillatory dynamical output from brain networks is representative of various behavioural states, and it is becoming clear that one could consider these outputs as measures of normal and pathological brain states. Although mathematical modeling of oscillatory dynamics in the context of neurological disease exists, it is a highly challenging endeavour because of the many levels of organization in the nervous system. This challenge is coupled with the increasing knowledge of cellular specificity and network dysfunction that is associated with disease. Recently, whole hippocampus in vitro preparations from control animals have been shown to spontaneously express oscillatory activities. In addition, when using preparations derived from animal models of disease, these activities show particular alterations. These preparations present an opportunity to address challenges involved with using models to gain insight because of easier access to simultaneous cellular and network measurements, and pharmacological modulations. We propose that by developing and using models with direct links to experiment at multiple levels, which at least include cellular and microcircuit, a cycling can be set up and used to help us determine critical mechanisms underlying neurological disease. We illustrate our proposal using our previously developed inhibitory network models in the context of these whole hippocampus preparations and show the importance of having direct links at multiple levels.
机译:今天神经科学的理论和计算研究有一项无可争议的需求和要求。此外,很明显,脑网络的振荡动态输出是各种行为状态的代表,并且变得明显,可以将这些产出视为正常和病理脑状态的衡量标准。尽管在神经系统疾病的背景下存在振荡动力学的数学建模,但由于神经系统中的许多组织,这是一种高度挑战的努力。这种挑战与随着疾病相关的细胞特异性和网络功能障碍的增加,加上了越来越多的知识。最近,已经显示出从对照动物的体外制剂的整个海马制剂自发地表达振荡活动。此外,当使用源自疾病的动物模型的制剂时,这些活动表现出特别的改变。这些准备工作提供了解决使用模型涉及的挑战来获得洞察力的机会,因为更容易获得同时蜂窝和网络测量和药理调制。我们提出通过在多个水平开发和使用具有直接链路的模型,该模型至少包括细胞和微电路,可以设置循环并用于帮助我们确定神经疾病的关键机制。我们在这些整个海马制剂的背景下使用先前开发的抑制网络模型来说明我们的提案,并表明了在多个层面具有直接链接的重要性。

著录项

  • 来源
    《Chaos》 |2013年第4期|共11页
  • 作者

    F. K. Skinner; K. A. Ferguson;

  • 作者单位

    Toronto Western Research Institute University Health Network Krembil Discovery Tower Toronto Western Hospital 60 Leonard Street 7th floor 7KD411 Toronto Ontario M5T 2S8 Canada;

    Toronto Western Research Institute University Health Network Krembil Discovery Tower Toronto Western Hospital 60 Leonard Street 7th floor 7KD411 Toronto Ontario M5T 2S8 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

    Modeling; oscillatory; proposal;

    机译:建模;振荡;提案;

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