arXiv:2510.09677cs.CYcs.AI2025-10中稿 · and published in t…综述

系统梳理高校计算思维教育中AI应用现状与挑战

AI in Computational Thinking Education in Higher Education: A Systematic Literature Review

  • 通过系统综述识别高校计算思维教育中的AI应用实践
  • 发现AI可提升教学效率但可能抑制学生创造力
  • 为教师提供可借鉴的AI+CT教学策略与方向

计算思维(CT)是高等教育学生应对日益技术化未来和职场的关键能力。尽管过去十年间K12阶段的CT教育研究迅速发展,但高等教育领域的相关研究仍显不足,导致教师在CT教学方面缺乏全面认知与支持。人工智能(AI)在教育机构的普及展现出支持跨学科教学活动的巨大潜力,包括CT教育。然而,目前尚无全面综述系统呈现高等教育中AI融入CT教育的各个层面。为此,本研究开展系统文献回顾,旨在识别高等教育中应用AI的CT教育举措,并探索其教学策略、覆盖的CT要素、使用的AI技术与模型,以及带来的优势与挑战。研究结果为教育社区提供实用与科学贡献,包括一份可供教师参考的基于AI的CT教育举措清单,对整合AI于CT教育的多维度分析(如重塑教育潜力与削弱创造力风险),以及在AI背景下对计算思维的新理解(如解码法与编码法并行)。

原文摘要 · Abstract (English)

Computational Thinking (CT) is a key skill set for students in higher education to thrive and adapt to an increasingly technology-driven future and workplace. While research on CT education has gained remarkable momentum in K12 over the past decade, it has remained under-explored in higher education, leaving higher education teachers with an insufficient overview, knowledge, and support regarding CT education. The proliferation and adoption of artificial intelligence (AI) by educational institutions have demonstrated promising potential to support instructional activities across many disciplines, including CT education. However, a comprehensive overview outlining the various aspects of integrating AI in CT education in higher education is lacking. To mitigate this gap, we conducted this systematic literature review study. The focus of our study is to identify initiatives applying AI in CT education within higher education and to explore various educational aspects of these initiatives, including the benefits and challenges of AI in CT education, instructional strategies employed, CT components covered, and AI techniques and models utilized. This study provides practical and scientific contributions to the CT education community, including an inventory of AI-based initiatives for CT education useful to educators, an overview of various aspects of integrating AI into CT education such as its benefits and challenges (e.g., AI potential to reshape CT education versus its potential to diminish students creativity) and insights into new and expanded perspectives on CT in light of AI (e.g., the decoding approach alongside the coding approach to CT).

计算思维AI教育高等教育系统综述

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