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Functional connectivity of the rodent brain using optical imaging.

机译:使用光学成像的啮齿动物大脑的功能连通性。

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摘要

The aim of this thesis is to apply functional connectivity in a variety of animal models, using several optical imaging modalities. Even at rest, the brain shows high metabolic activity: the correlation in slow spontaneous fluctuations identifies remotely connected areas of the brain; hence the term "functional connectivity". Ongoing changes in spontaneous activity may provide insight into the neural processing that takes most of the brain metabolic activity, and so may provide a vast source of disease related changes.;Brain hemodynamics may be modified during disease and affect resting-state activity. The thesis aims to better understand these changes in functional connectivity due to disease, using functional optical imaging.;The optical imaging techniques explored in the first two contributions of this thesis are Optical Imaging of Intrinsic Signals and Laser Speckle Contrast Imaging, together they can estimate the metabolic rate of oxygen consumption, that closely parallels neural activity. They both have adequate spatial and temporal resolution and are well adapted to image the convexity of the mouse cortex. In the last article, a depth-sensitive modality called photoacoustic tomography was used in the newborn rat. Optical coherence tomography and laminar optical tomography were also part of the array of imaging techniques developed and applied in other collaborations.;The first article of this work shows the changes in functional connectivity in an acute murine model of epileptiform activity. Homologous correlations are both increased and decreased with a small dependence on seizure duration. These changes suggest a potential decoupling between the hemodynamic parameters in resting-state networks, underlining the importance to investigate epileptic networks with several independent hemodynamic measures.;The second study examines a novel murine model of arterial stiffness: the unilateral calcification of the right carotid. Seed-based connectivity analysis showed a decreasing trend of homologous correlation in the motor and cingulate cortices. Graph analyses showed a randomization of the cortex functional networks, suggesting a loss of connectivity, more specifically in the motor cortex ipsilateral to the treated carotid; however these changes are not reflected in differentiated metabolic estimates. Confounds remain due to the fact that carotid rigidification gives rise to neural decline in the hippocampus as well as unilateral alteration of vascular pulsatility; however the results support the need to look at several hemodynamic parameters when imaging the brain after arterial remodeling.;The third article of this thesis studies a model of inflammatory injury on the newborn rat. Oxygen saturation and functional connectivity were assessed with photoacoustic tomography. Oxygen saturation was decreased in the site of the lesion and on the cortex ipsilateral to the injury; however this decrease is not fully explained by hypovascularization revealed by histology. Seed-based functional connectivity analysis showed that inter-hemispheric connectivity is not affected by inflammatory injury.
机译:本文的目的是使用几种光学成像方法将功能连接性应用于各种动物模型中。甚至在休息时,大脑也显示出高代谢活动:缓慢的自发波动中的相关性可以识别大脑的远距离连接区域;因此,术语“功能连接”。自发性活动的持续变化可能会提供了解大部分大脑代谢活动的神经加工的信息,因此可能提供与疾病相关的变化的大量来源。脑血流动力学可能会在疾病发生过程中发生改变并影响静止状态活动。本文旨在通过功能性光学成像来更好地理解由于疾病引起的功能连通性变化。本论文的前两个方面探讨的光学成像技术是本征信号光学成像和激光散斑对比度成像,它们可以共同估算耗氧量的代谢率,与神经活动非常相似。它们都具有足够的空间和时间分辨率,非常适合于成像鼠标皮质的凸度。在上一篇文章中,新生大鼠使用了一种称为光声断层扫描的深度敏感模式。光学相干断层扫描和层状光学断层扫描也是其他合作中开发和应用的一系列成像技术的一部分。这项工作的第一篇文章显示了急性癫痫样动物模型中功能连接的变化。同源相关性增加和减少,对癫痫发作持续时间的依赖性很小。这些变化表明静息状态网络中的血液动力学参数之间可能存在潜在的脱钩,从而强调了采用几种独立的血液动力学方法研究癫痫网络的重要性。第二项研究研究了一种新型的小鼠动脉僵硬度模型:右颈动脉的单侧钙化。基于种子的连接性分析显示运动和扣带回皮层的同源相关性下降。图分析显示皮质功能网络的随机化,表明连接性的丧失,更具体地说是在治疗的颈动脉同侧的运动皮质中;但是,这些变化未反映在差异化的代谢估计中。由于颈动脉僵化会导致海马神经衰弱以及血管搏动的单方面改变,因此仍然存在混淆。然而,这些结果支持在对动脉重构后的大脑进行成像时需要考虑几个血液动力学参数。;本论文的第三篇文章研究了新生大鼠的炎症损伤模型。用光声层析成像评估氧饱和度和功能连通性。损伤部位和与损伤同侧的皮质中的氧饱和度降低;然而,这种减少不能通过组织学揭示的血管减少来完全解释。基于种子的功能连通性分析表明,半球间连通性不受炎性损伤的影响。

著录项

  • 作者

    Guevara Codina, Edgar.;

  • 作者单位

    Ecole Polytechnique, Montreal (Canada).;

  • 授予单位 Ecole Polytechnique, Montreal (Canada).;
  • 学科 Engineering Biomedical.;Physics Optics.;Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 221 p.
  • 总页数 221
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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