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Calcium Dynamics in Astrocytes: From Oscillations to Alzheimer's.

机译:星形胶质细胞中的钙动力学:从振荡到老年痴呆症。

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摘要

Astrocytes in the central nervous system engage in bi-directional signaling with neurons, and have been shown to be able to sense and modulate activity. While not elecrically excitable like neurons, astrocytes display a form of calcium excitability, with complex dynamic oscillations in the cytoplasmic calcium concentration. Even though some of the biophysical details of these interactions have been observed, the systems-level role of these signals are poorly understood, with much debate as to whether they participate actively in information processing, inflammatory processes, or even how these signals arise.;This thesis presents a multi-faceted attempt to further understand the role of astrocytes in central nervous system operation both under normal physiological conditions and under pathological insult, specifically focusing on Alzheimer's. Of particular interest in this work are the mechanisms and roles or intercellular calcium waves propagating through the astrocytic network. The functional role of this signaling is unknown, and this thesis attempts to shed light on astrocyte signaling through a combination of detailed mathematical modeling and experimental trials. We develop and apply models to in silico cultures of astrocytes to predict how calcium waves spontaneously form in Alzheimer's, compare to experimental results, and propose models for signal propagation within these networks. We also develop novel methods of numerically solving difficult fractional order differential equations with the goal of incorporating these techniques into our modeling of the complex interactions in the CNS.
机译:中枢神经系统中的星形胶质细胞与神经元进行双向信号传导,并已被证明能够感知和调节活动。星形胶质细胞虽然不像神经元那样被电激发,却表现出一种钙兴奋性,在细胞质钙浓度中具有复杂的动态振荡。尽管已经观察到了这些相互作用的某些生物物理细节,但对这些信号在系统层面上的作用却知之甚少,关于它们是否积极参与信息处理,炎症过程甚至这些信号如何产生的争论还很多。本论文提出了一个多方面的尝试,以进一步了解星形胶质细胞在正常生理条件和病理损伤下的中枢神经系统操作中的作用,特别是针对阿尔茨海默氏症。在这项工作中特别感兴趣的是通过星形细胞网络传播的机制和作用或细胞间钙波。该信号传导的功能作用尚不清楚,并且本文试图通过详细的数学建模和实验试验相结合来阐明星形胶质细胞信号传导。我们开发并将模型应用于星形胶质细胞的计算机模拟,以预测钙波如何在阿尔茨海默氏症中自发形成,并与实验结果进行比较,并提出在这些网络中传播信号的模型。我们还开发了新的方法来对困难的分数阶微分方程进行数值求解,目的是将这些技术纳入我们对CNS中复杂相互作用的建模中。

著录项

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Biology Neuroscience.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 190 p.
  • 总页数 190
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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