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Advances in MRI-Based Detection of Cerebrovascular Changes after Experimental Traumatic Brain Injury

机译:实验性脑外伤后基于MRI的脑血管变化研究进展

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摘要

Traumatic brain injury is a heterogeneous and multifaceted neurological disorder that involves diverse pathophysiological pathways and mechanisms. Thorough characterization and monitoring of the brain’s status after neurotrauma is therefore highly complicated. Magnetic resonance imaging (MRI) provides a versatile tool for in vivo spatiotemporal assessment of various aspects of central nervous system injury, such as edema formation, perfusion disturbances and structural tissue damage. Moreover, recent advances in MRI methods that make use of contrast agents have opened up additional opportunities for measurement of events at the level of the cerebrovasculature, such as blood–brain barrier permeability, leukocyte infiltration, cell adhesion molecule upregulation and vascular remodeling. It is becoming increasingly clear that these cerebrovascular alterations play a significant role in the progression of post-traumatic brain injury as well as in the process of post-traumatic brain repair. Application of advanced multiparametric MRI strategies in experimental, preclinical studies may significantly aid in the elucidation of pathomechanisms, monitoring of treatment effects, and identification of predictive markers after traumatic brain injury.
机译:颅脑外伤是一种涉及多种病理生理途径和机制的异质性和多方面的神经系统疾病。因此,对神经创伤后的大脑状态进行全面的表征和监视非常复杂。磁共振成像(MRI)为体内时空评估中枢神经系统损伤的各个方面(例如水肿形成,灌注障碍和结构性组织损伤)提供了一种通用的工具。此外,利用造影剂的MRI方法的最新进展为测量脑血管系统水平的事件提供了更多的机会,例如血脑屏障通透性,白细胞浸润,细胞粘附分子上调和血管重塑。越来越清楚的是,这些脑血管改变在创伤后脑损伤的进展以及创伤后脑修复的过程中起着重要作用。先进的多参数MRI策略在实验,临床前研究中的应用可能会极大地帮助阐明病理机制,监测治疗效果并确定脑外伤后的预测指标。

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