认知负荷
计算机科学
教学设计
工作记忆
认知
认知心理学
认知建筑学
模式
德雷福斯技能获得模型
人机交互
心理学
多媒体
社会学
经济增长
经济
神经科学
社会科学
作者
Jeroen J G Van Merrià nboer,John Sweller
标识
DOI:10.1111/j.1365-2923.2009.03498.x
摘要
CONTEXT: Cognitive load theory aims to develop instructional design guidelines based on a model of human cognitive architecture. The architecture assumes a limited working memory and an unlimited long-term memory holding cognitive schemas; expertise exclusively comes from knowledge stored as schemas in long-term memory. Learning is described as the construction and automation of such schemas. Three types of cognitive load are distinguished: intrinsic load is a direct function of the complexity of the performed task and the expertise of the learner; extraneous load is a result of superfluous processes that do not directly contribute to learning, and germane load is caused by learning processes that deal with intrinsic cognitive load. OBJECTIVES: This paper discusses design guidelines that will decrease extraneous load, manage intrinsic load and optimise germane load. DISCUSSION: Fifteen design guidelines are discussed. Extraneous load can be reduced by the use of goal-free tasks, worked examples and completion tasks, by integrating different sources of information, using multiple modalities, and by reducing redundancy. Intrinsic load can be managed by simple-to-complex ordering of learning tasks and working from low- to high-fidelity environments. Germane load can be optimised by increasing variability over tasks, applying contextual interference, and evoking self-explanation. The guidelines are also related to the expertise reversal effect, indicating that design guidelines for novice learners are different from guidelines for more experienced learners. Thus, well-designed instruction for novice learners is different from instruction for more experienced learners. Applications in health professional education and current research lines are discussed.
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