arXiv:2608.27638cs.AIcs.HC2026-08

GenAI让本科生科研项目更自主、协作更高效,同时保持科学判断力。

Generative AI Expands the Intellectual Reach of Course Based Undergraduate Research Experiences (CUREs)

  • 用AI提供个性化支持,学生可自主设计研究课题。
  • AI助团队协作,提升跨专业沟通效率且不削弱专长分工。
  • 学生主动评估和修正AI建议,科研独立性反而增强。

课程型本科生科研体验(CURE)通过教师动态支持,使复杂研究问题向更多学生开放。生成式人工智能(GenAI)或可通过提供可调节的个性化协助,进一步扩展这一支持。但将GenAI嵌入CURE全过程对学生的探究行为、合作方式及科学推理的影响尚不清楚。本研究基于三个学期的生物信息学与基因组学CURE中收集的纵向质性数据,发现GenAI以三种方式拓展了科研体验的智力边界:其一,个性化即时引导使学生突破教师知识局限,将个人兴趣转化为可研究课题,所有小组均发展出自选项目而非采用教师指定主题;其二,GenAI成为研究团队分布式认知系统的一部分,帮助新手在专业差异下实现有效沟通与协调,同时保留了专业分工;其三,能力扩展并未取代学科判断力,学生越来越多地验证、修改或拒绝AI生成内容,研究独立性正是通过保有智力责任而形成。结果表明,GenAI能通过扩大可探究议题范围、优化协作模式、提升责任承担水平,延伸CURE的影响力,同时保障真实科学研究中人类判断的核心地位。

原文摘要 · Abstract (English)

Course-based undergraduate research experiences (CUREs) broaden access to authentic scientific inquiry through responsive instructor support as research problems become increasingly complex. Generative artificial intelligence (GenAI) may extend this support by providing individualized assistance that can adapt as student needs change. However, how embedding GenAI within a CURE to provide support across the research process impacts student inquiry, collaboration, and scientific reasoning remains unresolved. Here we use longitudinal qualitative data collected across three semesters of a bioinformatics and genomics CURE to show that GenAI expanded the intellectual reach of the research experience in three distinct ways. First, personalized, on-demand scaffolding allowed students to move beyond the boundaries of instructor expertise and transform their own interests into researchable inquiry, with all teams developing distinct self-directed projects rather than selecting instructor-provided topics. Second, GenAI became part of the distributed cognitive system of research teams, helping novice researchers communicate and coordinate across differentiated expertise without eliminating specialization. Third, expanded capability did not replace the need for disciplinary judgment. Students increasingly validated, revised, or rejected AI-generated contributions, such that research independence emerged through retained intellectual responsibility. Together, these findings suggest that GenAI can extend the reach of CUREs by expanding what novice researchers can investigate, how they can collaborate, and the level of responsibility they can assume while preserving human judgment central to authentic scientific inquiry.

生成式AI本科生科研教育技术认知协作

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