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Cultivating Diversity and Competency in STEM: Challenges and Remedies for Removing Virtual Barriers to Constructing Diverse Higher Education Communities of Success.培养STEM领域的多样性与能力:消除构建多元化高等教育成功社区的虚拟障碍所面临的挑战及补救措施
J Undergrad Neurosci Educ. 2012 Fall;11(1):A44-51. Epub 2012 Oct 15.
2
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本文引用的文献

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More Than "Getting Us Through:" A Case Study in Cultural Capital Enrichment of Underrepresented Minority Undergraduates.不止于“帮助我们度过难关”:对少数族裔本科生文化资本丰富的案例研究
Res High Educ. 2011;52(4):370-394. doi: 10.1007/s11162-010-9198-8. Epub 2010 Nov 3.
2
"We Do Science Here": Underrepresented Students' Interactions with Faculty in Different College Contexts.“我们在这里做科研”:不同大学环境中代表性不足的学生与教师的互动
J Soc Issues. 2011 Sep;67(3):553-579. doi: 10.1111/j.1540-4560.2011.01714.x.
3
Diversifying Science: Underrepresented Student Experiences in Structured Research Programs.多元化科学:在结构化研究项目中代表性不足的学生经历。
Res High Educ. 2009 Mar;50(2):189-214. doi: 10.1007/s11162-008-9114-7.
4
Establishing a new paradigm for diversity: a case for restructuring the academic training environment.建立多元化的新范式:重塑学术培训环境的理由。
J Undergrad Neurosci Educ. 2009 Fall;8(1):A82-5. Epub 2009 Oct 15.
5
SOMAS-URM: The Evolution of a Mentoring and Summer Research Program.SOMAS-URM:一个指导与暑期研究项目的演变
J Undergrad Neurosci Educ. 2009 Fall;8(1):A69-72. Epub 2009 Oct 15.
6
Integrating theory and practice to increase scientific workforce diversity: a framework for career development in graduate research training.将理论与实践相结合,增加科学劳动力多样性:研究生研究培训职业发展框架。
CBE Life Sci Educ. 2011 Winter;10(4):357-67. doi: 10.1187/cbe.10-12-0145.
7
Enhancing the Number of African Americans Who Pursue STEM PhDs: Meyerhoff Scholarship Program Outcomes, Processes, and Individual Predictors.增加追求STEM博士学位的非裔美国人数量:迈耶霍夫奖学金计划的成果、过程及个体预测因素
J Women Minor Sci Eng. 2009;15(1):15-37. doi: 10.1615/JWomenMinorScienEng.v15.i1.20.
8
Diversifying Biomedical Training: A Synergistic Intervention.多元化生物医学培训:一种协同干预措施。
J Women Minor Sci Eng. 2010;16(3):215-235. doi: 10.1615/JWomenMinorScienEng.v16.i3.20.
9
Diversifying the biological sciences: past efforts and future challenges.生物科学多样化:过去的努力与未来的挑战。
Mol Biol Cell. 2010 Nov 15;21(22):3767-9. doi: 10.1091/mbc.E10-05-0414.
10
Underrepresentation of underrepresented minorities in academic medicine: the need to enhance the pipeline and the pipe.少数族裔在学术医学中的代表性不足:需要加强人才储备和管道。
Gastroenterology. 2010 Jan;138(1):19-26.e1-3. doi: 10.1053/j.gastro.2009.11.017. Epub 2009 Nov 26.

培养STEM领域的多样性与能力:消除构建多元化高等教育成功社区的虚拟障碍所面临的挑战及补救措施

Cultivating Diversity and Competency in STEM: Challenges and Remedies for Removing Virtual Barriers to Constructing Diverse Higher Education Communities of Success.

作者信息

Whittaker Joseph A, Montgomery Beronda L

机构信息

School of Computer, Mathematical & Natural Sciences, Morgan State University, Baltimore, Maryland 21251;

出版信息

J Undergrad Neurosci Educ. 2012 Fall;11(1):A44-51. Epub 2012 Oct 15.

PMID:23493445
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3592737/
Abstract

The need to increase the number of college graduates in Science, Technology, Engineering, and Mathematics (STEM) disciplines is a national issue. As the demographics of the United States' population grow increasingly more diverse, the recognition that students of color are disproportionately under-represented among those individuals successful at completing STEM degrees requires exigent and sustained intervention. Although a range of efforts and funding have been committed to increasing the success of under-represented minority (URM) students at primarily white, or majority, institutions, widespread progress has been slow. Simultaneously, Historically Black Colleges and Universities and Minority Serving Institutions have demonstrated disproportionate successes in graduating URM students with STEM degrees and those that proceed to completing graduate-level degrees in the sciences. The differential successes of particular institutions with promoting the achievement of diverse individuals in obtaining academic STEM degrees suggest that with committed and strategic leadership, advancements in creating academic communities that promote the success of a diverse range of students in STEM can be achieved in part through assessing and mitigating environmental barriers that impede success at majority institutions. In this paper, we address issues related to the engagement of URM students in majority settings and describe some efforts that have shown success for promoting diversity in STEM and highlight continuing issues and factors associated with cultivating diversity in academic STEM disciplines at majority institutions. Recommended efforts include addressing academic assistance, professional and cultural socialization issues and institutional environmental factors that are associated with success or lack thereof for URMs in STEM.

摘要

增加科学、技术、工程和数学(STEM)学科的大学毕业生数量是一个国家问题。随着美国人口结构日益多样化,人们认识到,在成功获得STEM学位的人群中,有色人种学生的代表性严重不足,这需要紧急且持续的干预。尽管已经做出了一系列努力并投入了资金,以提高在主要为白人或多数族裔的院校中代表性不足的少数族裔(URM)学生的成功率,但广泛的进展一直很缓慢。与此同时,历史悠久的黑人学院和大学以及少数族裔服务机构在培养获得STEM学位的URM学生以及那些继续攻读科学领域研究生学位的学生方面取得了不成比例的成功。特定机构在促进不同个体获得学术STEM学位方面的不同成功表明,通过坚定而有战略的领导,部分可以通过评估和减轻阻碍多数族裔机构学生成功的环境障碍,来实现创建促进各类学生在STEM领域取得成功的学术社区方面的进展。在本文中,我们讨论了与URM学生在多数族裔环境中的参与相关的问题,描述了一些在促进STEM领域多样性方面取得成功的努力,并强调了在多数族裔机构培养学术STEM学科多样性方面持续存在的问题和因素。建议的努力包括解决学术援助、专业和文化社会化问题以及与URM学生在STEM领域的成功或失败相关的机构环境因素。