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Cloud-controlled microscopy enables remote project-based biology education in underserved Latinx communities

Project-based learning (PBL) has long been recognized as an effective way to teach complex biology concepts. However, not all institutions have the resources to facilitate effective project-based coursework for students. We have developed a framework for facilitating PBL using remote-controlled inte...

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Autores principales: Baudin, Pierre V., Sacksteder, Raina E., Worthington, Atesh K., Voitiuk, Kateryna, Ly, Victoria T., Hoffman, Ryan N., Elliott, Matthew A.T., Parks, David F., Ward, Rebecca, Torres-Montoya, Sebastian, Amend, Finn, Montellano Duran, Natalia, Vargas, Paola A., Martinez, Guadalupe, Ramirez, Sandra M., Alvarado-Arnez, Lucia Elena, Ehrlich, Drew, Rosen, Yohei M., Breevoort, Arnar, Schouten, Tallulah, Kurniawan, Sri, Haussler, David, Teodorescu, Mircea, Mostajo-Radji, Mohammed A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9681640/
https://www.ncbi.nlm.nih.gov/pubmed/36439758
http://dx.doi.org/10.1016/j.heliyon.2022.e11596
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author Baudin, Pierre V.
Sacksteder, Raina E.
Worthington, Atesh K.
Voitiuk, Kateryna
Ly, Victoria T.
Hoffman, Ryan N.
Elliott, Matthew A.T.
Parks, David F.
Ward, Rebecca
Torres-Montoya, Sebastian
Amend, Finn
Montellano Duran, Natalia
Vargas, Paola A.
Martinez, Guadalupe
Ramirez, Sandra M.
Alvarado-Arnez, Lucia Elena
Ehrlich, Drew
Rosen, Yohei M.
Breevoort, Arnar
Schouten, Tallulah
Kurniawan, Sri
Haussler, David
Teodorescu, Mircea
Mostajo-Radji, Mohammed A.
author_facet Baudin, Pierre V.
Sacksteder, Raina E.
Worthington, Atesh K.
Voitiuk, Kateryna
Ly, Victoria T.
Hoffman, Ryan N.
Elliott, Matthew A.T.
Parks, David F.
Ward, Rebecca
Torres-Montoya, Sebastian
Amend, Finn
Montellano Duran, Natalia
Vargas, Paola A.
Martinez, Guadalupe
Ramirez, Sandra M.
Alvarado-Arnez, Lucia Elena
Ehrlich, Drew
Rosen, Yohei M.
Breevoort, Arnar
Schouten, Tallulah
Kurniawan, Sri
Haussler, David
Teodorescu, Mircea
Mostajo-Radji, Mohammed A.
author_sort Baudin, Pierre V.
collection PubMed
description Project-based learning (PBL) has long been recognized as an effective way to teach complex biology concepts. However, not all institutions have the resources to facilitate effective project-based coursework for students. We have developed a framework for facilitating PBL using remote-controlled internet-connected microscopes. Through this approach, one lab facility can host an experiment for many students around the world simultaneously. Experiments on this platform can be run on long timescales and with materials that are typically unavailable to high school classrooms. This allows students to perform novel research projects rather than just repeating standard classroom experiments. To investigate the impact of this program, we designed and ran six user studies with students worldwide. All experiments were hosted in Santa Cruz and San Francisco, California, with observations and decisions made remotely by the students using their personal computers and cellphones. In surveys gathered after the experiments, students reported increased excitement for science and a greater desire to pursue a career in STEM. This framework represents a novel, scalable, and effective PBL approach that has the potential to democratize biology and STEM education around the world.
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spelling pubmed-96816402022-11-24 Cloud-controlled microscopy enables remote project-based biology education in underserved Latinx communities Baudin, Pierre V. Sacksteder, Raina E. Worthington, Atesh K. Voitiuk, Kateryna Ly, Victoria T. Hoffman, Ryan N. Elliott, Matthew A.T. Parks, David F. Ward, Rebecca Torres-Montoya, Sebastian Amend, Finn Montellano Duran, Natalia Vargas, Paola A. Martinez, Guadalupe Ramirez, Sandra M. Alvarado-Arnez, Lucia Elena Ehrlich, Drew Rosen, Yohei M. Breevoort, Arnar Schouten, Tallulah Kurniawan, Sri Haussler, David Teodorescu, Mircea Mostajo-Radji, Mohammed A. Heliyon Research Article Project-based learning (PBL) has long been recognized as an effective way to teach complex biology concepts. However, not all institutions have the resources to facilitate effective project-based coursework for students. We have developed a framework for facilitating PBL using remote-controlled internet-connected microscopes. Through this approach, one lab facility can host an experiment for many students around the world simultaneously. Experiments on this platform can be run on long timescales and with materials that are typically unavailable to high school classrooms. This allows students to perform novel research projects rather than just repeating standard classroom experiments. To investigate the impact of this program, we designed and ran six user studies with students worldwide. All experiments were hosted in Santa Cruz and San Francisco, California, with observations and decisions made remotely by the students using their personal computers and cellphones. In surveys gathered after the experiments, students reported increased excitement for science and a greater desire to pursue a career in STEM. This framework represents a novel, scalable, and effective PBL approach that has the potential to democratize biology and STEM education around the world. Elsevier 2022-11-15 /pmc/articles/PMC9681640/ /pubmed/36439758 http://dx.doi.org/10.1016/j.heliyon.2022.e11596 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Baudin, Pierre V.
Sacksteder, Raina E.
Worthington, Atesh K.
Voitiuk, Kateryna
Ly, Victoria T.
Hoffman, Ryan N.
Elliott, Matthew A.T.
Parks, David F.
Ward, Rebecca
Torres-Montoya, Sebastian
Amend, Finn
Montellano Duran, Natalia
Vargas, Paola A.
Martinez, Guadalupe
Ramirez, Sandra M.
Alvarado-Arnez, Lucia Elena
Ehrlich, Drew
Rosen, Yohei M.
Breevoort, Arnar
Schouten, Tallulah
Kurniawan, Sri
Haussler, David
Teodorescu, Mircea
Mostajo-Radji, Mohammed A.
Cloud-controlled microscopy enables remote project-based biology education in underserved Latinx communities
title Cloud-controlled microscopy enables remote project-based biology education in underserved Latinx communities
title_full Cloud-controlled microscopy enables remote project-based biology education in underserved Latinx communities
title_fullStr Cloud-controlled microscopy enables remote project-based biology education in underserved Latinx communities
title_full_unstemmed Cloud-controlled microscopy enables remote project-based biology education in underserved Latinx communities
title_short Cloud-controlled microscopy enables remote project-based biology education in underserved Latinx communities
title_sort cloud-controlled microscopy enables remote project-based biology education in underserved latinx communities
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9681640/
https://www.ncbi.nlm.nih.gov/pubmed/36439758
http://dx.doi.org/10.1016/j.heliyon.2022.e11596
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