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推行包容性科学:科学、技术、工程、数学和医学(STEMM)领域的文化响应式高等教育实践。

Enacting inclusive science: Culturally responsive higher education practices in science, technology, engineering, mathematics, and medicine (STEMM).

机构信息

Department of General Internal Medicine, David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, California, United States of America.

Department of Education, School of Education and Information Studies, University of California, Los Angeles, Los Angeles, California, United States of America.

出版信息

PLoS One. 2024 Jan 17;19(1):e0293953. doi: 10.1371/journal.pone.0293953. eCollection 2024.

Abstract

Novel approaches in higher education are needed to reverse underrepresentation of racial/ethnic groups in science, technology, engineering, mathematics, and medicine (STEMM). Building on theoretical frameworks for practice in diverse learning environments, this study provides evidence for Inclusive Science as a conceptual model that reflects initiatives intended to diversify biomedical research training for undergraduates. Using multiple case study design and cross-case analysis, we analyzed data from 10 higher education sites that were awarded the Building Infrastructure Leading to Diversity (BUILD) grant funded by the National Institutes of Health (NIH). We identified the following dimensions of the Inclusive Science model: promoting participation of diverse researchers; introducing diversity innovations in science and research curriculum; improving campus climate for diversity; providing tangible institutional support; creating partnerships with diverse communities; and integrating students' social identities with science identity. We illustrate each dimension of the model with examples of campus practices across BUILD sites. While many may doubt that science can be responsive to diversity, the interventions developed by these campuses illustrate how colleges and universities can actively engage in culturally responsive practices in STEMM undergraduate training that integrate trainees' identities, knowledge of diverse communities, and create a greater awareness of the climate for diversity that affects student training and outcomes. Implications include culturally responsive strategies that many more higher education institutions can employ to support scientific career training for historically excluded groups.

摘要

需要在高等教育中采用新方法来扭转少数族裔在科学、技术、工程、数学和医学(STEMM)领域代表性不足的问题。本研究以多样化学习环境实践的理论框架为基础,为包容性科学提供了证据,这是一个概念模型,反映了旨在使大学生物医学研究培训多样化的举措。本研究采用多案例研究设计和跨案例分析,对获得美国国立卫生研究院(NIH)资助的“建立多样性基础设施”(BUILD)拨款的 10 个高等教育机构的数据进行了分析。我们确定了包容性科学模型的以下维度:促进不同研究人员的参与;在科学和研究课程中引入多样性创新;改善多样性校园氛围;提供有形的机构支持;与不同社区建立伙伴关系;以及将学生的社会身份与科学身份相结合。我们用 BUILD 网站上的校园实践示例来说明模型的每个维度。尽管许多人可能怀疑科学是否能够对多样性做出反应,但这些校园的干预措施说明了学院和大学如何能够积极参与 STEMM 本科培训中的文化响应实践,将学员的身份、对不同社区的了解以及对影响学生培训和成果的多样性氛围的认识结合起来。其影响包括许多高等教育机构可以采用的文化响应策略,以支持历史上被排斥群体的科学职业培训。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e9c/10793921/deddccd5a0c3/pone.0293953.g001.jpg

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