一般化
心理学
基质(化学分析)
自闭症
名词
动词
跳跃的
对角矩阵
对角线的
人工智能
认知心理学
算术
发展心理学
计算机科学
数学
医学
生理学
数学分析
材料科学
几何学
复合材料
作者
Sarah E. Frampton,Sarah C. Wymer,Bethany A. Hansen,M. Alice Shillingsburg
摘要
Matrix training consists of planning instruction by arranging components of desired skills across 2 axes. After training with diagonal targets that each combine 2 unique skill components, responses to nondiagonal targets, consisting of novel combinations of the components, may emerge. A multiple-probe design across participants was used to evaluate matrix training with known nouns (e.g., cat) and verbs (e.g., jumping) with 5 children with autism spectrum disorders (ASD). Following baseline of Matrix 1 and a generalization matrix, diagonal targets within Matrix 1 were trained as noun-verb combinations (e.g., cat jumping). Posttests showed recombinative generalization within Matrix 1 and the generalization matrix for 4 participants. For 1 participant, diagonal training across multiple matrices was provided until correct responding was observed in the generalization matrix. Results support the use of matrix training to promote untrained responses for learners with ASD and offer a systematic way to evaluate the extent of generalization within and across matrices.
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