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先进的磁共振成像技术有助于增进我们对经验诱导神经可塑性的理解。

Advanced MRI techniques to improve our understanding of experience-induced neuroplasticity.

作者信息

Tardif Christine Lucas, Gauthier Claudine Joëlle, Steele Christopher John, Bazin Pierre-Louis, Schäfer Andreas, Schaefer Alexander, Turner Robert, Villringer Arno

机构信息

Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.

Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany; PERFORM Centre/Department of Physics, Concordia University, Montreal, Canada.

出版信息

Neuroimage. 2016 May 1;131:55-72. doi: 10.1016/j.neuroimage.2015.08.047. Epub 2015 Aug 28.

Abstract

Over the last two decades, numerous human MRI studies of neuroplasticity have shown compelling evidence for extensive and rapid experience-induced brain plasticity in vivo. To date, most of these studies have consisted of simply detecting a difference in structural or functional images with little concern for their lack of biological specificity. Recent reviews and public debates have stressed the need for advanced imaging techniques to gain a better understanding of the nature of these differences - characterizing their extent in time and space, their underlying biological and network dynamics. The purpose of this article is to give an overview of advanced imaging techniques for an audience of cognitive neuroscientists that can assist them in the design and interpretation of future MRI studies of neuroplasticity. The review encompasses MRI methods that probe the morphology, microstructure, function, and connectivity of the brain with improved specificity. We underline the possible physiological underpinnings of these techniques and their recent applications within the framework of learning- and experience-induced plasticity in healthy adults. Finally, we discuss the advantages of a multi-modal approach to gain a more nuanced and comprehensive description of the process of learning.

摘要

在过去二十年中,众多关于神经可塑性的人类磁共振成像(MRI)研究已在活体中显示出令人信服的证据,证明经验可引发广泛且快速的大脑可塑性。迄今为止,这些研究大多只是简单地检测结构或功能图像中的差异,而很少关注其缺乏生物学特异性的问题。最近的综述和公开辩论强调,需要先进的成像技术来更好地理解这些差异的本质——描述它们在时间和空间上的范围、其潜在的生物学和网络动态。本文的目的是为认知神经科学家群体概述先进的成像技术,以帮助他们设计和解释未来关于神经可塑性的MRI研究。该综述涵盖了能够更具特异性地探测大脑形态、微观结构、功能和连通性的MRI方法。我们强调了这些技术可能的生理基础及其在健康成年人学习和经验诱导可塑性框架内的最新应用。最后,我们讨论了采用多模态方法以更细致、全面地描述学习过程的优势。

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