Problem-based learning on cell biology and ecophysiology using integrated laboratory and computational activities

Since all the known biological systems require water for their basic biochemical processes, one can find several osmoregulation mechanisms on living organisms for adaptation to related environmental challenges. Osmosis is a cellular mechanism of water movement across membranes which is known to be p...

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Main Author: C. Sousa
Format: Article
Language:English
Published: Universidad Politécnica de Valencia 2016-03-01
Series:Multidisciplinary Journal for Education, Social and Technological Sciences
Subjects:
Online Access:http://polipapers.upv.es/index.php/MUSE/article/view/3763
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spelling doaj-825abccfde2746e284d539ed3d6ba9f32020-11-25T01:50:35ZengUniversidad Politécnica de ValenciaMultidisciplinary Journal for Education, Social and Technological Sciences2341-25932016-03-013111813210.4995/muse.2016.37633815Problem-based learning on cell biology and ecophysiology using integrated laboratory and computational activitiesC. Sousa0Universidade do PortoSince all the known biological systems require water for their basic biochemical processes, one can find several osmoregulation mechanisms on living organisms for adaptation to related environmental challenges. Osmosis is a cellular mechanism of water movement across membranes which is known to be present throughout the tree of life and occurs by either diffusion across the membrane bilayer or by a faster movement mediated by transmembrane channel proteins, called aquaporins. The expression of aquaporins is regulated at, the cellular level, by environment conditions such as hydric stress, therefore allowing the adaptation of organisms to increase salinity in soils, water deprivation and increase beverage intake.  Osmosis and diffusion concepts have been described to be difficult to learn, so, in order to promote meaningfull learning, we used a problem-based learning approach that integrates a laboratory activity and a computer simulation model of osmosis and a two phase conceptual mapping. We observed that high school students developed adequate laboratory skills and were able to communicate their results as text and using scientific drawings; and the learning environment was adequate. Therefore we presented a successful implementation case of integrated PBL, in a public portuguese school, that may constitute an example to facilitate the implementation of active inquiry strategies by other teachers, as well as the basis for future research.http://polipapers.upv.es/index.php/MUSE/article/view/3763Problem-Based Learningexperimental activitiescomputer simulationosmosis
collection DOAJ
language English
format Article
sources DOAJ
author C. Sousa
spellingShingle C. Sousa
Problem-based learning on cell biology and ecophysiology using integrated laboratory and computational activities
Multidisciplinary Journal for Education, Social and Technological Sciences
Problem-Based Learning
experimental activities
computer simulation
osmosis
author_facet C. Sousa
author_sort C. Sousa
title Problem-based learning on cell biology and ecophysiology using integrated laboratory and computational activities
title_short Problem-based learning on cell biology and ecophysiology using integrated laboratory and computational activities
title_full Problem-based learning on cell biology and ecophysiology using integrated laboratory and computational activities
title_fullStr Problem-based learning on cell biology and ecophysiology using integrated laboratory and computational activities
title_full_unstemmed Problem-based learning on cell biology and ecophysiology using integrated laboratory and computational activities
title_sort problem-based learning on cell biology and ecophysiology using integrated laboratory and computational activities
publisher Universidad Politécnica de Valencia
series Multidisciplinary Journal for Education, Social and Technological Sciences
issn 2341-2593
publishDate 2016-03-01
description Since all the known biological systems require water for their basic biochemical processes, one can find several osmoregulation mechanisms on living organisms for adaptation to related environmental challenges. Osmosis is a cellular mechanism of water movement across membranes which is known to be present throughout the tree of life and occurs by either diffusion across the membrane bilayer or by a faster movement mediated by transmembrane channel proteins, called aquaporins. The expression of aquaporins is regulated at, the cellular level, by environment conditions such as hydric stress, therefore allowing the adaptation of organisms to increase salinity in soils, water deprivation and increase beverage intake.  Osmosis and diffusion concepts have been described to be difficult to learn, so, in order to promote meaningfull learning, we used a problem-based learning approach that integrates a laboratory activity and a computer simulation model of osmosis and a two phase conceptual mapping. We observed that high school students developed adequate laboratory skills and were able to communicate their results as text and using scientific drawings; and the learning environment was adequate. Therefore we presented a successful implementation case of integrated PBL, in a public portuguese school, that may constitute an example to facilitate the implementation of active inquiry strategies by other teachers, as well as the basis for future research.
topic Problem-Based Learning
experimental activities
computer simulation
osmosis
url http://polipapers.upv.es/index.php/MUSE/article/view/3763
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