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社区主导的神经科学高等教育核心概念。

Community-Derived Core Concepts for Neuroscience Higher Education.

机构信息

Department of Neurobiology and Behavior, University of California, Irvine, Irvine, CA 92697.

Department of Psychology, Trinity University, San Antonio, TX 78212.

出版信息

CBE Life Sci Educ. 2023 Jun;22(2):ar18. doi: 10.1187/cbe.22-02-0018.

Abstract

Core concepts provide a framework for organizing facts and understanding in neuroscience higher education curricula. Core concepts are overarching principles that identify patterns in neuroscience processes and phenomena and can be used as a foundational scaffold for neuroscience knowledge. The need for community-derived core concepts is pressing, because both the pace of research and number of neuroscience programs are rapidly expanding. While general biology and many subdisciplines within biology have identified core concepts, neuroscience has yet to establish a community-derived set of core concepts for neuroscience higher education. We used an empirical approach involving more than 100 neuroscience educators to identify a list of core concepts. The process of identifying neuroscience core concepts was modeled after the process used to develop physiology core concepts and involved a nationwide survey and a working session of 103 neuroscience educators. The iterative process identified eight core concepts and accompanying explanatory paragraphs. The eight core concepts are abbreviated as communication modalities, emergence, evolution, gene-environment interactions, information processing, nervous system functions, plasticity, and structure-function. Here, we describe the pedagogical research process used to establish core concepts for the neuroscience field and provide examples on how the core concepts can be embedded in neuroscience education.

摘要

核心概念为组织神经科学高等教育课程中的事实和理解提供了框架。核心概念是概括性原则,可识别神经科学过程和现象中的模式,并可用作神经科学知识的基础支架。由于研究步伐和神经科学计划的数量都在迅速扩大,因此迫切需要社区衍生的核心概念。虽然一般生物学和生物学的许多子学科已经确定了核心概念,但神经科学尚未为神经科学高等教育确定一套社区衍生的核心概念。我们使用涉及 100 多名神经科学教育工作者的实证方法来确定核心概念列表。确定神经科学核心概念的过程是在制定生理学核心概念的过程之后进行的,涉及全国性调查和 103 名神经科学教育工作者的工作组会议。迭代过程确定了八个核心概念和相应的解释段落。这八个核心概念缩写为通讯方式、涌现、进化、基因-环境相互作用、信息处理、神经系统功能、可塑性和结构-功能。在这里,我们描述了用于为神经科学领域建立核心概念的教学研究过程,并提供了如何在神经科学教育中嵌入核心概念的示例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f80e/10228273/86c85ad82332/cbe-22-ar18-g001.jpg

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