Literature DB >> 17012191

Incorporating a new bioinformatics component into genetics at a historically black college: outcomes and lessons.

J David Holtzclaw1, Arri Eisen, Erika M Whitney, Meera Penumetcha, J Joseph Hoey, K Sean Kimbro.   

Abstract

Many students at minority-serving institutions are underexposed to Internet resources such as the human genome project, PubMed, NCBI databases, and other Web-based technologies because of a lack of financial resources. To change this, we designed and implemented a new bioinformatics component to supplement the undergraduate Genetics course at Clark Atlanta University. The outcomes of the Bioinformatics course were assessed. During the first week of the semester, students were assigned the Felder-Soloman's Index of Learning Styles Inventory. The overwhelming majority of students were visual (82.1%) and sequential (75.0%) learners. Furthermore, pre- and postcourse surveys were administered during the first and the last week of the course to assess learning, confidence level, and mental activity. These indicated students increased the number of hours spent using computers and doing homework. Students reported confidence in using computers to study genetics increased, enabling them to better visualize and understand genetics. Furthermore, students were more mentally engaged in a more social learning environment. Although the students appreciated the value of the bioinformatics component, they reported the additional work load was substantial enough to receive additional course credit.

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Year:  2006        PMID: 17012191      PMCID: PMC1635137          DOI: 10.1187/cbe.05-04-0071

Source DB:  PubMed          Journal:  CBE Life Sci Educ        ISSN: 1931-7913            Impact factor:   3.325


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Authors:  Jerry E Honts
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Journal:  Cell Biol Educ       Date:  2003

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Authors:  R J Lipshutz; S P Fodor; T R Gingeras; D J Lockhart
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  4 in total
  5 in total

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Authors:  Jennifer C Drew; Eric W Triplett
Journal:  J Microbiol Biol Educ       Date:  2008-12-17

2.  Development of an undergraduate bioinformatics degree program at a liberal arts college.

Authors:  Paramjeet S Bagga
Journal:  Yale J Biol Med       Date:  2012-09-25

3.  Barriers to integration of bioinformatics into undergraduate life sciences education: A national study of US life sciences faculty uncover significant barriers to integrating bioinformatics into undergraduate instruction.

Authors:  Jason J Williams; Jennifer C Drew; Sebastian Galindo-Gonzalez; Srebrenka Robic; Elizabeth Dinsdale; William R Morgan; Eric W Triplett; James M Burnette; Samuel S Donovan; Edison R Fowlks; Anya L Goodman; Nealy F Grandgenett; Carlos C Goller; Charles Hauser; John R Jungck; Jeffrey D Newman; William R Pearson; Elizabeth F Ryder; Michael Sierk; Todd M Smith; Rafael Tosado-Acevedo; William Tapprich; Tammy C Tobin; Arlín Toro-Martínez; Lonnie R Welch; Melissa A Wilson; David Ebenbach; Mindy McWilliams; Anne G Rosenwald; Mark A Pauley
Journal:  PLoS One       Date:  2019-11-18       Impact factor: 3.240

4.  A Model for Postdoctoral Education That Promotes Minority and Majority Success in the Biomedical Sciences.

Authors:  Arri Eisen; Douglas C Eaton
Journal:  CBE Life Sci Educ       Date:  2017       Impact factor: 3.325

5.  Making authentic science accessible-the benefits and challenges of integrating bioinformatics into a high-school science curriculum.

Authors:  Yossy Machluf; Hadas Gelbart; Shifra Ben-Dor; Anat Yarden
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  5 in total

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