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脑损伤影像学

Imaging brain trauma.

机构信息

Department of Anesthesiology Critical Care Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.

出版信息

Curr Opin Crit Care. 2010 Apr;16(2):92-7. doi: 10.1097/MCC.0b013e3283374900.

Abstract

PURPOSE OF REVIEW

Traumatic brain injury (TBI) is a leading cause of death and long-term cognitive and behavioral dysfunction in children and young adults, yet effective treatments are lacking, in part because critical aspects of TBI neurobiology and natural history are not understood. We review recent advances in neuroimaging and discuss how they are helping to address these fundamental gaps.

RECENT FINDINGS

Novel imaging methods provide detailed information on how TBI affects anatomical integrity (diffusion tensor imaging; voxel-based morphometry; susceptibility-weighted imaging, magnetization transfer imaging), metabolic activity (magnetic resonance spectroscopy), perfusion (positron emission tomography, perfusion computed tomography, perfusion magnetic resonance), and patterns of functional activation (functional magnetic resonance imaging). Individually and collectively, these methods can significantly enhance TBI diagnosis and outcome prediction.

SUMMARY

Refinements in neuroimaging offer a window into the complex neuroanatomical and neurophysiological disturbances induced by TBI. Research is needed to understand how these alterations evolve with time and in response to therapeutic interventions.

摘要

目的综述

颅脑损伤(TBI)是儿童和青年死亡和长期认知及行为功能障碍的主要原因,但缺乏有效的治疗方法,部分原因是 TBI 神经生物学和自然病史的关键方面尚不清楚。我们回顾了神经影像学的最新进展,并讨论了它们如何帮助解决这些基本差距。

最近的发现

新的成像方法提供了关于 TBI 如何影响解剖完整性的详细信息(弥散张量成像;体素形态计量学;磁敏感加权成像,磁化传递成像)、代谢活性(磁共振波谱)、灌注(正电子发射断层扫描,灌注计算机断层扫描,灌注磁共振)和功能激活模式(功能磁共振成像)。这些方法单独和联合使用,都可以显著提高 TBI 的诊断和预后预测能力。

总结

神经影像学的改进为 TBI 引起的复杂神经解剖和神经生理紊乱提供了一个窗口。需要研究这些改变如何随时间演变以及对治疗干预的反应。

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