Abstract
Abstract
Background
Laboratory biosafety should be a priority in all healthcare institutions. In traditional laboratory safety teaching students typically receive knowledge passively from their teachers without active involvement. The combination of experiential learning and mobile learning may provide students with greater engagement, retention, and application of knowledge. To address this issue, we developed and conducted a convergent mixed methods study to assess the feasibility and usability of a WeChat mini program (WMP) named WeMed for laboratory biosafety education for medical laboratory students at Guangzhou Medical University (GMU).
Methods
The study was conducted between November 2022 and October 2023 among second-year undergraduate students at GMU. It involved the concurrent collection, analysis, and interpretation of both qualitative and quantitative data to assess feasibility and usability. In the quantitative strand, two evaluations were conducted via online surveys from students (n = 67) after a four-week study period. The System Usability Scale (SUS) was used to evaluate usability, while self-developed questions were used to assess feasibility. Additionally, a knowledge test was administered 6 months after the program completion. In the qualitative strand, fourteen semi-structured interviews were conducted, whereby a reflexive thematic analysis was utilized to analyze the interview data.
Results
The overall SUS score is adequate (M = 68.17, SD = 14.39). The acceptability of the WeMed program is in the marginal high range. Most students agreed that WeMed was useful for learning biosafety knowledge and skills (13/14, 93%), while 79% (11/14) agreed it was easy to use and they intended to continue using it. After 6 months, a significant difference in the knowledge test scores was observed between the WeMed group (n = 67; 2nd year students) and the traditional training group (n = 90; 3rd year students). However, the results should be interpreted cautiously due to the absence of a pretest.
Conclusion
The combination of experiential learning and mobile learning with WMP is a feasible tool for providing laboratory biosafety knowledge and skills. Ongoing improvements should be made in order to increase long-term acceptance.
Funder
Guangzhou Municipal Science and Technology Bureau
Department of Education of Guangdong Province
Publisher
Springer Science and Business Media LLC
Reference42 articles.
1. Ibeh I, Enitan S, Akele R, Isitua C. A review of the COVID-19 pandemic and the role of medical laboratory scientists in containment. J Med Lab Sci. 2020;30(1):68–89.
2. Song L, Gao J, Wu Z. Laboratory-acquired infections with brucella bacteria in China. Biosaf Health. 2021;3(02):101–4.
3. Kaiser J. The catalyst. In.: American Association for the Advancement of Science; 2014.
4. Yang Q-F, Lian L-W, Zhao J-H. Developing a gamified artificial intelligence educational robot to promote learning effectiveness and behavior in laboratory safety courses for undergraduate students. Int J Educational Technol High Educ. 2023;20(1):18.
5. Hill DJ, Williams OF, Mizzy DP, Triumph TF, Brennan CR, Mason DC, Lawrence DS. Introduction to laboratory safety for graduate students: an active-learning endeavor. J Chem Educ. 2019;96(4):652–9.
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