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所在平台: Coursera |
课程主页: https://www.coursera.org/learn/neuroscience-neuroimaging
课程评论:没有评论
课程名称:基础神经科学与神经影像学 课程概述:随着神经影像学方法在临床实践和基础研究中的日益普及,本课程旨在介绍应用于人类受试者研究的神经影像学基本原理,并介绍理解神经影像应用所需的神经科学概念和术语。课程内容包括神经影像学的历史、影像学物理学入门及图像形成方法,以及不同神经影像学应用的概述,包括功能性MRI、扩散张量成像、磁共振波谱成像、灌注成像和正电子发射断层成像。每种方法都会从信号来源、目标和局限性等方面进行审视。课程还将介绍理解神经影像学方法实施所必需的基本神经科学概念,包括人类结构和功能神经解剖学、认知领域及实验设计。 课程大纲: 1. 人脑结构神经解剖学 - 本周将介绍神经科学基本术语及人脑的结构神经解剖学。 2. 人脑功能神经解剖学 - 本周将介绍人脑的功能神经解剖学,包括认知领域和认知的神经心理评估。 3. 神经影像学的原理与方法 - 本周将介绍神经影像学的基本原理及其在结构与功能神经影像学中的应用。 4. 神经影像学中的实验设计与特定应用 - 本周将介绍功能神经影像学中的实验设计及神经影像学中的特定方法,包括功能连接性MRI、扩散张量成像和波谱成像。 此课程适合学生和专业人士,旨在加强对神经影像学研究的理解与应用。
Name:Structural Neuroanatomy of the Human Brain
Description:This week will introduce basic terminology in neuroscience and structural neuroanatomy of the human brain.
Name:Functional Neuroanatomy of the Human Brain
Description:This week will introduce functional neuroanatomy of the human brain including cognitive domains and neuropsychological assessment of cognition.
Name:Principles and Methods of Neuroimaging
Description:This week will introduce the principles of neuroimaging and applications in structural and functional neuroimaging.
Name:Experimental design and special applications in neuroimaging
Description:This week will introduce experimental design in functional neuroimaging and special methods in neuroimaging, including functional connectivity MRI, diffusion tensor imaging and spectroscopy imaging.
Neuroimaging methods are used with increasing frequency in clinical practice and basic research. Designed for students and professionals, this course will introduce the basic principles of neuroimaging methods as applied to human subjects research and introduce the neuroscience concepts and terminology necessary for a basic understanding of neuroimaging applications. Topics include the history of neuroimaging, an introduction to neuroimaging physics and image formation, as well as an overview of different neuroimaging applications, including functional MRI, diffusion tensor imaging, magnetic resonance spectroscopy, perfusion imaging, and positron emission tomography imaging. Each will be reviewed in the context of their specific methods, source of signal, goals, and limitations. The course will also introduce basic neuroscience concepts necessary to understand the implementation of neuroimaging methods, including structural and functional human neuroanatomy, cognitive domains, and experimental design.