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Virtual laboratories for biomedical professional education

Abstract

In this paper, we describe the analysis we had conducted on the matter of usage of biotechnological simulations in virtual space. We used the results to design the set of requirements for mechanics, environment, visual and technological aspects of virtual labs. We also showcase our simulation of the biomedical virtual lab as an example of how methodologies we described could be implemented.

About the Authors

В. Абрамов
Казанский (Приволжский) федеральный университет
Russian Federation


В. Кугуракова
Казанский (Приволжский) федеральный университет
Russian Federation


А. Ризванов
Казанский (Приволжский) федеральный университет
Russian Federation


М. Абрамский
Казанский (Приволжский) федеральный университет
Russian Federation


Н. Манахов
Казанский (Приволжский) федеральный университет
Russian Federation


М. Евстафьев
Казанский (Приволжский) федеральный университет
Russian Federation


References

1. Balamuralithara B., Woods P.C. Virtual laboratories in engineering education: the Simulation Lab and Remote Lab // Computer Applications in Engineering Education, March 2009. V. 17, Issue 1. P. 108–118.

2. Zoric Nedic, Jan Machotka, Andrew Nafalski. Remote laboratories versus virtual and real laboratories // Frontiers in Education. 2003. FIE 2003 33rd Annual, T3E-1-T3E-6. V. 1.

3. Veljko Potkonjak, Michael Gardner, Victor Callaghan, Pasi Mattila, Christian Guetl, Vladimir M. Petrovic, Kosta Jovanovich. Virtual laboratories for education in science, technology, and engineering: a review // Computers & Education. April 2016. V. 95. P. 309–327.

4. Deanna Raineri. Virtual laboratories enhance traditional undergraduate biology laboratories // Biochemistry and Molecular Biology Education. 2001. V. 29, Issue 4. P. 160–162.

5. Daniel Fernández-Avilés, Diego Dotor, Daniel Contreras, Jose Carlos Salazar. Virtual labs: a new tool in the education: experience of Technical University of Madrid // 2016 13th International Conference on Remote Engineering and Virtual Instrumentation (REV), 24–26 Feb. 2016. P. 271–272.

6. Ruben Heradio, Luis de la Torre, Daniel Galan, Francisco Javier Cabrerizo, Enrique Herrera-Veidma, Sebastian Dormido. Virtual and remote labs in education: a bibliometric analysis // Computers & Education. July 2016. V. 98. P. 14–38.

7. Aten Virtual Biology Lab. URL: http://ateninc.com/homepage/virtual-lab. html.

8. Initiative of Ministry of Human Resource Development (MHRD). URL: http://vlab.co.in.

9. Under the National Mission on Education through ICT VIRTUAL LABS. URL: http://vlab.co.in/ba_labs_all.php?id=6.

10. Hhmi biointeractive. URL: http://www.hhmi.org/biointeractive/explore-virtual-labs.

11. Houghton Mifflin Harcourt WOW biolab. URL: https://www.classzone. com/books/hs/ca/sc/bio_07/virtual_labs/virtualLabs.html.

12. Михайлов В.Ю., Гостев В.М., Кугуракова В.В., Чугунов В.А. Виртуальная лаборатория как средство обеспечения коллективной научно-методической работы // Сб. трудов XII международной конференции «ИТО-2002». Часть IV (Москва, 4–8 ноября 2002 г.). М.: МИФИ, 2002. С. 31–34.

13. Письма Министерства образования и науки Российской Федерации от 21 апреля 2015 г. № ВК-1013/06 в акте «О направлении методических рекомендаций по реализации дополнительных профессиональных программ». URL: http:// минобрнауки.рф/документы/6250.

14. Геймплей. URL: https://ru.wikipedia. org/wiki/Геймплей.


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 ,  ,  ,  ,  ,   Virtual laboratories for biomedical professional education. Russian Digital Libraries Journal. 2016;19(3):129-148. (In Russ.)

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ISSN 1562-5419 (Online)