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Gao, Lei; Guo, Miao – Biochemistry and Molecular Biology Education, 2023
With rapid development of sequencing technology and the continuous accumulation of biological big data, people who are capable of using bioinformatic skills to analyze omics data and work out biological problems are urgently needed in the workforce, which highlights the importance of developing bioinformatics skills early in the undergraduate…
Descriptors: Undergraduate Students, Student Research, Student Experience, Biology
Tapprich, William E.; Reichart, Letitia; Simon, Dawn M.; Duncan, Garry; McClung, William; Grandgenett, Neal; Pauley, Mark A. – Biochemistry and Molecular Biology Education, 2021
The lack of an instructional definition of bioinformatics delays its effective integration into biology coursework. Using an iterative process, our team of biologists, a mathematician/computer scientist, and a bioinformatician together with an educational evaluation and assessment specialist, developed an instructional definition of the…
Descriptors: Scoring Rubrics, Definitions, Genetics, Biology
Burian, Alexis N.; Zhao, Wufan; Lo, Te-Wen; Thurtle-Schmidt, Deborah M. – Biochemistry and Molecular Biology Education, 2021
To fully appreciate genetics, one must understand the link between genotype (DNA sequence) and phenotype (observable characteristics). Advances in high-throughput genomic sequencing technologies and applications, so-called "-omics," have made genetic sequencing readily available across fields in biology from applications in…
Descriptors: Genetics, Science Instruction, Teaching Methods, Biology
Naicker, Ramona – Education for Information, 2022
Racial bias in research impacts a study's relevancy, validity and reliability, though presently this aspect is not addressed in critical appraisal tools, and consequently appraisers may not take racial bias into account when assessing a paper's quality. Drawing on critical race theory (CRT) tenets that racism is ubiquitous and race a social…
Descriptors: Racism, Critical Race Theory, Disproportionate Representation, Minority Groups
Ageitos, Noa; Puig, Blanca – Journal of Biological Education, 2021
Though argumentation is a key component of scientific knowledge construction practices, it rarely occurs in classrooms worldwide. Moreover, related literature in the context of genetics and evolution learning primarily addresses them separately. In contrast, this paper is part of broader research on genetics and evolution instruction taught…
Descriptors: Diseases, Genetics, Science Instruction, Biology
Procko, Carl; Morrison, Steven; Dunar, Courtney; Mills, Sara; Maldonado, Brianna; Cockrum, Carlee; Peters, Nathan Emmanuel; Huang, Shao-shan Carol; Chory, Joanne – CBE - Life Sciences Education, 2019
Next-generation sequencing (NGS)-based methods are revolutionizing biology. Their prevalence requires biologists to be increasingly knowledgeable about computational methods to manage the enormous scale of data. As such, early introduction to NGS analysis and conceptual connection to wet-lab experiments is crucial for training young scientists.…
Descriptors: Undergraduate Students, Data Analysis, Biology, Information Science
Eagle, Michael; Corbett, Albert; Stamper, John; Mclaren, Bruce – International Educational Data Mining Society, 2018
In this work we use prior to tutor-session data to generate an individualized student knowledge model. Intelligent learning environments use student models to individualize curriculum sequencing and help messages. Researchers decompose the learning tasks into sets of Knowledge Components (KCs) that represent individual units of knowledge; the…
Descriptors: Individualized Instruction, Models, Data Analysis, Knowledge Level
Next-Generation Teaching: A Template for Bringing Genomic and Bioinformatic Tools into the Classroom
Hotaling, Scott; Slabach, Brittany L.; Weisrock, David W. – Journal of Biological Education, 2018
The recent increase in accessibility and scale of genetic data available through next-generation sequencing (NGS) technology has transformed biological inquiry. As a direct result, the application and analysis of NGS data has quickly become an important skill for future scientists. However, the steep learning curve for applying NGS technology to…
Descriptors: Biology, Genetics, Data Analysis, Technology Integration
Chen, Xin – ProQuest LLC, 2012
Probabilistic topic models have been developed for applications in various domains such as text mining, information retrieval and computer vision and bioinformatics domain. In this thesis, we focus on developing novel probabilistic topic models for image mining and bioinformatics studies. Specifically, a probabilistic topic-connection (PTC) model…
Descriptors: Information Science, Biology, Visual Aids, Data Analysis
Davenport, K. D.; Milks, Kirstin Jane; Van Tassell, Rebecca – American Biology Teacher, 2015
Analyzing evolutionary relationships requires that students have a thorough understanding of evidence and of how scientists use evidence to develop these relationships. In this lesson sequence, students work in groups to process many different lines of evidence of evolutionary relationships between ungulates, then construct a scientific argument…
Descriptors: Science Instruction, Evaluation, Misconceptions, Scientific Concepts
Makarevitch, Irina; Frechette, Cameo; Wiatros, Natalia – CBE - Life Sciences Education, 2015
Integration of inquiry-based approaches into curriculum is transforming the way science is taught and studied in undergraduate classrooms. Incorporating quantitative reasoning and mathematical skills into authentic biology undergraduate research projects has been shown to benefit students in developing various skills necessary for future…
Descriptors: Student Research, Research Projects, Data Analysis, Research Skills
Albayrak, Cem; Jones, K. C.; Swartz, James R. – Journal of Science Education and Technology, 2013
Cell-free protein synthesis (CFPS) has emerged as a practical method for producing a broad variety of proteins. In addition, the direct accessibility to the reaction environment makes CFPS particularly suitable as a learning vehicle for fundamental biological concepts. Here, we describe its implementation as a teaching tool for a high school…
Descriptors: Science Instruction, Secondary School Science, High School Students, Biotechnology
Bartlett, Joan C.; Ishimura, Yusuke; Kloda, Lorie A. – Information Research: An International Electronic Journal, 2011
Purpose: The objective was to identify and understand the factors involved in scientists' selection of preferred bioinformatics tools, such as databases of gene or protein sequence information (e.g., GenBank) or programs that manipulate and analyse biological data (e.g., BLAST). Methods: Eight scientists maintained research diaries for a two-week…
Descriptors: Scientists, Criteria, Decision Making, Research
Wu, Daniel Duanqing – ProQuest LLC, 2010
Biology has been revolutionized in recent years by an explosion in the availability of data. Transforming this new wealth of data into meaningful biological insights and clinical breakthroughs requires a complete overhaul both in the questions being asked and the methodologies used to answer them. A major challenge in organizing and understanding…
Descriptors: Network Analysis, Interaction, Biology, Data Analysis
Hay, M. Cameron, Ed. – University of Chicago Press, 2016
To do research that really makes a difference--the authors of this book argue--social scientists need questions and methods that reflect the complexity of the world. Bringing together a consortium of voices across a variety of fields, "Methods that Matter" offers compelling and successful examples of mixed methods research that do just…
Descriptors: Mixed Methods Research, Social Science Research, Case Studies, Holistic Approach
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