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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

Bioinformatics, a discipline that combines aspects of biology, statistics, mathematics, and computer science, is becoming increasingly important for biological research. However, bioinformatics instruction is not yet generally integrated into undergraduate life sciences curricula. To understand why...

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Autores principales: Williams, Jason J., Drew, Jennifer C., Galindo-Gonzalez, Sebastian, Robic, Srebrenka, Dinsdale, Elizabeth, Morgan, William R., Triplett, Eric W., Burnette, James M., Donovan, Samuel S., Fowlks, Edison R., Goodman, Anya L., Grandgenett, Nealy F., Goller, Carlos C., Hauser, Charles, Jungck, John R., Newman, Jeffrey D., Pearson, William R., Ryder, Elizabeth F., Sierk, Michael, Smith, Todd M., Tosado-Acevedo, Rafael, Tapprich, William, Tobin, Tammy C., Toro-Martínez, Arlín, Welch, Lonnie R., Wilson, Melissa A., Ebenbach, David, McWilliams, Mindy, Rosenwald, Anne G., Pauley, Mark A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6860448/
https://www.ncbi.nlm.nih.gov/pubmed/31738797
http://dx.doi.org/10.1371/journal.pone.0224288
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author Williams, Jason J.
Drew, Jennifer C.
Galindo-Gonzalez, Sebastian
Robic, Srebrenka
Dinsdale, Elizabeth
Morgan, William R.
Triplett, Eric W.
Burnette, James M.
Donovan, Samuel S.
Fowlks, Edison R.
Goodman, Anya L.
Grandgenett, Nealy F.
Goller, Carlos C.
Hauser, Charles
Jungck, John R.
Newman, Jeffrey D.
Pearson, William R.
Ryder, Elizabeth F.
Sierk, Michael
Smith, Todd M.
Tosado-Acevedo, Rafael
Tapprich, William
Tobin, Tammy C.
Toro-Martínez, Arlín
Welch, Lonnie R.
Wilson, Melissa A.
Ebenbach, David
McWilliams, Mindy
Rosenwald, Anne G.
Pauley, Mark A.
author_facet Williams, Jason J.
Drew, Jennifer C.
Galindo-Gonzalez, Sebastian
Robic, Srebrenka
Dinsdale, Elizabeth
Morgan, William R.
Triplett, Eric W.
Burnette, James M.
Donovan, Samuel S.
Fowlks, Edison R.
Goodman, Anya L.
Grandgenett, Nealy F.
Goller, Carlos C.
Hauser, Charles
Jungck, John R.
Newman, Jeffrey D.
Pearson, William R.
Ryder, Elizabeth F.
Sierk, Michael
Smith, Todd M.
Tosado-Acevedo, Rafael
Tapprich, William
Tobin, Tammy C.
Toro-Martínez, Arlín
Welch, Lonnie R.
Wilson, Melissa A.
Ebenbach, David
McWilliams, Mindy
Rosenwald, Anne G.
Pauley, Mark A.
author_sort Williams, Jason J.
collection PubMed
description Bioinformatics, a discipline that combines aspects of biology, statistics, mathematics, and computer science, is becoming increasingly important for biological research. However, bioinformatics instruction is not yet generally integrated into undergraduate life sciences curricula. To understand why we studied how bioinformatics is being included in biology education in the US by conducting a nationwide survey of faculty at two- and four-year institutions. The survey asked several open-ended questions that probed barriers to integration, the answers to which were analyzed using a mixed-methods approach. The barrier most frequently reported by the 1,260 respondents was lack of faculty expertise/training, but other deterrents—lack of student interest, overly-full curricula, and lack of student preparation—were also common. Interestingly, the barriers faculty face depended strongly on whether they are members of an underrepresented group and on the Carnegie Classification of their home institution. We were surprised to discover that the cohort of faculty who were awarded their terminal degree most recently reported the most preparation in bioinformatics but teach it at the lowest rate.
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spelling pubmed-68604482019-12-07 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 Williams, Jason J. Drew, Jennifer C. Galindo-Gonzalez, Sebastian Robic, Srebrenka Dinsdale, Elizabeth Morgan, William R. Triplett, Eric W. Burnette, James M. Donovan, Samuel S. Fowlks, Edison R. Goodman, Anya L. Grandgenett, Nealy F. Goller, Carlos C. Hauser, Charles Jungck, John R. Newman, Jeffrey D. Pearson, William R. Ryder, Elizabeth F. Sierk, Michael Smith, Todd M. Tosado-Acevedo, Rafael Tapprich, William Tobin, Tammy C. Toro-Martínez, Arlín Welch, Lonnie R. Wilson, Melissa A. Ebenbach, David McWilliams, Mindy Rosenwald, Anne G. Pauley, Mark A. PLoS One Research Article Bioinformatics, a discipline that combines aspects of biology, statistics, mathematics, and computer science, is becoming increasingly important for biological research. However, bioinformatics instruction is not yet generally integrated into undergraduate life sciences curricula. To understand why we studied how bioinformatics is being included in biology education in the US by conducting a nationwide survey of faculty at two- and four-year institutions. The survey asked several open-ended questions that probed barriers to integration, the answers to which were analyzed using a mixed-methods approach. The barrier most frequently reported by the 1,260 respondents was lack of faculty expertise/training, but other deterrents—lack of student interest, overly-full curricula, and lack of student preparation—were also common. Interestingly, the barriers faculty face depended strongly on whether they are members of an underrepresented group and on the Carnegie Classification of their home institution. We were surprised to discover that the cohort of faculty who were awarded their terminal degree most recently reported the most preparation in bioinformatics but teach it at the lowest rate. Public Library of Science 2019-11-18 /pmc/articles/PMC6860448/ /pubmed/31738797 http://dx.doi.org/10.1371/journal.pone.0224288 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Williams, Jason J.
Drew, Jennifer C.
Galindo-Gonzalez, Sebastian
Robic, Srebrenka
Dinsdale, Elizabeth
Morgan, William R.
Triplett, Eric W.
Burnette, James M.
Donovan, Samuel S.
Fowlks, Edison R.
Goodman, Anya L.
Grandgenett, Nealy F.
Goller, Carlos C.
Hauser, Charles
Jungck, John R.
Newman, Jeffrey D.
Pearson, William R.
Ryder, Elizabeth F.
Sierk, Michael
Smith, Todd M.
Tosado-Acevedo, Rafael
Tapprich, William
Tobin, Tammy C.
Toro-Martínez, Arlín
Welch, Lonnie R.
Wilson, Melissa A.
Ebenbach, David
McWilliams, Mindy
Rosenwald, Anne G.
Pauley, Mark A.
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
title 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
title_full 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
title_fullStr 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
title_full_unstemmed 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
title_short 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
title_sort 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
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6860448/
https://www.ncbi.nlm.nih.gov/pubmed/31738797
http://dx.doi.org/10.1371/journal.pone.0224288
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