调整夏威夷的 STEMM:为美国最多样化的地方之一采取必要行动。

IF 4.5 2区 生物学 Q2 CELL BIOLOGY
Kit Neikirk
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引用次数: 0

摘要

夏威夷人口的多样性使其成为研究科学、技术、工程、数学和医学(STEMM)领域代表性的理想环境。实际上,夏威夷的 STEMM 入学率很低,因此 STEMM 的代表性也很低。夏威夷无法拥有一支强大的 STEMM 劳动力队伍的主要原因是缺乏 STEMM 教育、分配给 STEMM 的资源以及在 STEMM 领域取得成功的指导。文化价值观、高昂的生活成本和地理障碍等其他因素也是造成夏威夷 STEMM 入学率低的原因。为解决这些问题,我提出了鼓励 STEMM 入学的建议,如将资金用于课后教育。我还建议通过为学生和工人提供更多的在线机会来解决资源匮乏的问题。至于夏威夷指导率较低的问题,我建议在社区和大学内设立更多项目,为指导者和被指导者搭建交流平台。本手稿旨在强调这些需要改进的领域,并总结夏威夷的经验教训,从而为国际人士提供资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Adapting STEMM in Hawaiʻi: Necessary actions for one of the most diverse places in the United States

Adapting STEMM in Hawaiʻi: Necessary actions for one of the most diverse places in the United States

Hawaiʻi's diverse population prime it to be an exemplary environment to study representation in science, technology, engineering, mathematics, and medicine (STEMM). In actuality, Hawaiʻi has low STEMM enrollment and therefore, low representation in STEMM. What primarily inhibits Hawaiʻi from having a strong STEMM workforce is the lack of education in STEMM, resources allocated to STEMM, and mentorship to succeed in STEMM. Other factors such as cultural values, high costs of living, and geographical barriers also contribute to Hawaiʻi's low STEMM enrollment. To combat these issues, I offer suggestions to encourage STEMM enrollment, such as directing funds toward after-school education. I also suggest combatting the lack of resources by providing more online opportunities for students and workers. As for Hawaiʻi's low mentorship, I suggest that more programs be created within communities and universities to create a platform for mentors and mentees to network. This manuscript seeks to highlight these areas of improvement and recognize lessons to be learned from Hawaiʻi, thus serving as a resource for individuals internationally.

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来源期刊
CiteScore
14.70
自引率
0.00%
发文量
256
审稿时长
1 months
期刊介绍: The Journal of Cellular Physiology publishes reports of high biological significance in areas of eukaryotic cell biology and physiology, focusing on those articles that adopt a molecular mechanistic approach to investigate cell structure and function. There is appreciation for the application of cellular, biochemical, molecular and in vivo genetic approaches, as well as the power of genomics, proteomics, bioinformatics and systems biology. In particular, the Journal encourages submission of high-interest papers investigating the genetic and epigenetic regulation of proliferation and phenotype as well as cell fate and lineage commitment by growth factors, cytokines and their cognate receptors and signal transduction pathways that influence the expression, integration and activities of these physiological mediators. Similarly, the Journal encourages submission of manuscripts exploring the regulation of growth and differentiation by cell adhesion molecules in addition to the interplay between these processes and those induced by growth factors and cytokines. Studies on the genes and processes that regulate cell cycle progression and phase transition in eukaryotic cells, and the mechanisms that determine whether cells enter quiescence, proliferate or undergo apoptosis are also welcomed. Submission of papers that address contributions of the extracellular matrix to cellular phenotypes and physiological control as well as regulatory mechanisms governing fertilization, embryogenesis, gametogenesis, cell fate, lineage commitment, differentiation, development and dynamic parameters of cell motility are encouraged. Finally, the investigation of stem cells and changes that differentiate cancer cells from normal cells including studies on the properties and functions of oncogenes and tumor suppressor genes will remain as one of the major interests of the Journal.
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