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Noam Morningstar-Kywi; Denise N. Morris; Rebecca M. Romero; Ian S. Haworth – Advances in Physiology Education, 2023
Physiologically based pharmacokinetic (PBPK) modeling requires an understanding of chemical, physiologic, and pharmacokinetic principles. Active learning with PBPK modeling software (GastroPlus) may be useful to teach these scientific principles while also teaching software operation. To examine this issue, a graduate-level course was designed…
Descriptors: Physiology, Science Instruction, Teaching Methods, Graduate Students
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Toscanini, MariaA.; Recoulat Angelini, Alvaro A.; Troncoso, Maria F.; Curto, Lucrecia M. – Journal of Chemical Education, 2021
Understanding the relationship between protein structure and function can be challenging for students. Molecular visualization software aids students in this problem by allowing manipulation of structures from new and deeper perspectives. In this communication, an activity using iMolview Lite, structure visualization software for portable devices,…
Descriptors: Science Instruction, Molecular Structure, Visualization, Computer Software
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Timothy Rosencrans; Ryan Jones; Daniel Griffin; India Loyd; Anna Grady; Mary Moon; Frederick Miller – Advances in Physiology Education, 2024
Medical students face challenging but important topics they must learn in short periods of time, such as autonomic pharmacology. Autonomic pharmacology is difficult in that it requires students to synthesize detailed anatomy, physiology, clinical reasoning, and pharmacology. The subject poses a challenge to learn as it is often introduced early in…
Descriptors: Pharmacology, Medical Students, Student Attitudes, Web Based Instruction
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Romero, Rebecca M.; Bolger, Michael B.; Morningstar-Kywi, Noam; Haworth, Ian S. – Journal of Chemical Education, 2020
Drug design and development requires collaboration among scientists with diverse expertise. In early-stage drug design, establishment of promising drug candidates requires integration of structure-based molecular design with biopharmaceutics and ADMET (absorption, distribution, metabolism, excretion, and toxicity) principles. Much of this work is…
Descriptors: Computer Software, Educational Technology, Technology Uses in Education, Pharmacology
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Fidalgo-Neto, Antonio Augusto; Alberto, Anael Viana Pinto; Bonavita, André Gustavo Calvano; Bezerra, Rômulo José Soares; Berçot, Felipe Faria; Lopes, Renato Matos; Alves, Luiz Anastacio – Advances in Physiology Education, 2014
Information and communication technologies have become important tools for teaching scientific subjects such as anatomy and histology as well as other, nondescriptive subjects like physiology and pharmacology. Software has been used to facilitate the learning of specific concepts at the cellular and molecular levels in the biological and health…
Descriptors: Pharmacology, Computer Software, Computer Uses in Education, Undergraduate Students
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Thompsett, Andrew; Ahluwalia, Jatinder – Bioscience Education, 2010
Research on undergraduate bioscience students and the incidence of plagiarism is still in its infancy and a key problem arises in gauging the perception of undergraduate students on plagiarism and collusion in biosciences subjects because of the lack of empirical data. The aim of this study was to provide qualitative data on the perceptions of…
Descriptors: Undergraduate Students, Plagiarism, Pharmacology, Ethics
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Moore, Leon; And Others – Academic Medicine, 1991
HyperPharm, a computer program consisting of about 1,500 faculty-prepared questions designed as a study aid in pharmacology, was found to be popular with medical students and easy to use, but not as effective as predicted in improving student (n=162) performance. (MSE)
Descriptors: Computer Assisted Instruction, Computer Software, Higher Education, Instructional Effectiveness