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The vast potential and bright future of neuroimaging

机译:神经影像的巨大潜力和光明的未来

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摘要

Significant advances in anatomical and functional neuroimaging techniques have allowed researchers and clinicians to visualize the brain in action. The field of neuroimaging currently includes newer and faster scanners, improved image quality, higher spatial and temporal resolution and diverse methods of acquisition and analysis. Beyond simply imaging brain structures, these developments enable quantitative assessment of the microstructural and functional architecture, perfusion and metabolism of the brain. The resultant highly granular data have the potential to greatly improve characterization of neurological, neurosurgical and psychiatric disorders without invasive neurosurgery. However, the surge in neuroimaging data that can be collected over a relatively short acquisition period has led to a "big data" problem, where novel methods are needed to appropriately extract and analyze information and integrate data with other types of big data, such as genomic and proteomic data. Another challenge is the translation of these new technologies from basic science into clinical practice, so that they can be leveraged to improve patient outcomes and alleviate human disease. Critical to this endeavor is research comparing the effectiveness and outcomes of these advancements to allow widespread acceptance in the modern, economically constrained healthcare system. This review aims to illustrate the different facets of cutting edge neuroimaging techniques, as well as the potential role of these methods as clinical tools for evaluating the breadth of diseases that affect the brain.
机译:解剖和功能性神经影像学技术的显着进展使研究人员和临床医生可以在行动中可视化大脑。 Neuroimaging领域目前包括更新,更快的扫描仪,改善图像质量,更高的空间和时间分辨率以及不同的采集和分析方法。除了简单的成像脑结构之外,这些发展使得能够定量评估大脑的微观结构和功能结构,灌注和代谢。所得高度粒度的数据具有大大提高神经外科和精神病疾病的表征而无需侵入性神经外科。然而,可以在相对较短的采集周期内收集的神经影像数据的浪涌导致了“大数据”问题,其中需要新的方法来适当提取和分析信息并与其他类型的大数据集成数据,例如基因组和蛋白质组学数据。另一个挑战是这些新技术从基础科学转化为临床实践,以便可以利用,以改善患者的结果和减轻人类疾病。对这一努力至关重要的是研究比较这些进步的有效性和结果,以便在现代经济限制的医疗系统中普遍接受。该审查旨在说明切削刃神经影像技术的不同方面,以及这些方法作为评估影响大脑的疾病广度的临床工具的潜在作用。

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