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Functional MRI and Diffusion Tensor Imaging of Brain Reorganization After Experimental Stroke

机译:实验性中风后大脑重组的功能性MRI和扩散张量成像

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摘要

The potential of the adult brain to reorganize after ischemic injury is critical for functional recovery and provides a significant target for therapeutic strategies to promote brain repair. Despite the accumulating evidence of brain plasticity, the interaction and significance of morphological and physiological modifications in post-stroke brain tissue remain mostly unclear. Neuroimaging techniques such as functional MRI (fMRI) and diffusion tensor imaging (DTI) enable in vivo assessment of the spatial and temporal pattern of functional and structural changes inside and outside ischemic lesion areas. This can contribute to the elucidation of critical aspects in post-stroke brain remodeling. Task/stimulus-related fMRI, resting-state fMRI, or pharmacological MRI enables direct or indirect measurement of neuronal activation, functional connectivity, or neurotransmitter system responses, respectively. DTI allows estimation of the structural integrity and connectivity of white matter tracts. Together, these MRI methods provide an unprecedented means to (a) measure longitudinal changes in tissue structure and function close by and remote from ischemic lesion areas, (b) evaluate the organizational profile of neural networks after stroke, and (c) identify degenerative and restorative processes that affect post-stroke functional outcome. Besides, the availability of MRI in clinical institutions as well as research laboratories provides an optimal basis for translational research on stroke recovery. This review gives an overview of the current status and perspectives of fMRI and DTI applications to study brain reorganization in experimental stroke models.
机译:成年脑在缺血性损伤后重组的潜力对于功能恢复至关重要,并为促进脑修复的治疗策略提供了重要目标。尽管有越来越多的关于大脑可塑性的证据,但在卒中后脑组织中形态和生理学改变的相互作用和重要性仍不清楚。功能性MRI(fMRI)和扩散张量成像(DTI)等神经影像技术可以对缺血性病变区域内外的功能和结构变化的时空格局进行体内评估。这可以有助于阐明中风后大脑重塑的关键方面。与任务/刺激相关的功能磁共振成像,静息状态功能磁共振成像或药理磁共振成像可分别直接或间接测量神经元激活,功能连接性或神经递质系统反应。 DTI可以估算白质区域的结构完整性和连通性。总之,这些MRI方法提供了一种前所未有的手段:(a)测量缺血性病变区域附近或远离缺血性病变区域的组织结构和功能的纵向变化,(b)评估中风后神经网络的组织结构,以及(c)识别变性和影响中风后功能结局的修复过程。此外,临床机构和研究实验室中MRI的可用性为中风恢复的转化研究提供了最佳的基础。这篇综述概述了功能磁共振成像和DTI在研究中风模型中的大脑重组方面的应用现状和前景。

著录项

  • 来源
    《Translational Stroke Research》 |2012年第1期|36-43|共8页
  • 作者单位

    Biomedical MR Imaging and Spectroscopy Group Image Sciences Institute University Medical Center Utrecht Utrecht The Netherlands;

    Biomedical MR Imaging and Spectroscopy Group Image Sciences Institute University Medical Center Utrecht Utrecht The Netherlands;

    Biomedical MR Imaging and Spectroscopy Group Image Sciences Institute University Medical Center Utrecht Utrecht The Netherlands;

    Department of Neurology Maastricht University Medical Center and Atrium Medical Center Heerlen Maastricht/Heerlen The Netherlands;

    Biomedical MR Imaging and Spectroscopy Group Image Sciences Institute University Medical Center Utrecht Utrecht The Netherlands;

    Biomedical MR Imaging and Spectroscopy Group Image Sciences Institute University Medical Center Utrecht Utrecht The Netherlands;

    Biomedical MR Imaging and Spectroscopy Group Image Sciences Institute University Medical Center Utrecht Utrecht The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Brain plasticity; Functional connectivity; Diffusion tensor imaging; Functional MRI; Neuronal network; Stroke;

    机译:脑可塑性;功能连接性;弥散张量成像;功能性MRI;神经网络;中风;

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