The use of 3D web-based models allows researchers to explore interesting characteristics searching for the increase of quality in the anatomy education. This chapter aims to present the design of a serious game for human anatomy education that can assist the students in the understanding of the anatomical structures as well as the relationship between them in a virtual environment. The digital game design and development was carried out in partnership with specialists in human anatomy for the study of the lower limb bones (skeletal system), vessels and arteries (cardiovascular system), and lower limb skeletal muscles (muscular system). A case study was performed with students of physiotherapy undergraduate program in the course of anatomy through usability assessment techniques. Based on the results obtained it was possible to identify fundamental and innovative features that have to be present in the design of serious games for the teaching of health sciences.
The study aims to investigate the effects of a serious game on the performance of health science students in the education of the cardiovascular system anatomy. Experiments were performed using a serious game to teach the cardiovascular system anatomy to Physiotherapy undergraduate students. Data collection was performed through pre and post-tests with a study group using knowledge questionnaires of the cardiovascular system anatomy. In addition, a usability scale and open-ended questions were answered by students and human anatomy experts following experiments in the computer lab. From the data analysis, it has been observed an increase in the educational performance of the students with the use of the serious game to aid teaching of the cardiovascular system anatomy in a virtual 3D Web environment.
The use of 3D web-based models allows researchers to explore interesting characteristics searching for the increase of quality in the anatomy education. This chapter aims to present the design of a serious game for human anatomy education that can assist the students in the understanding of the anatomical structures as well as the relationship between them in a virtual environment. The digital game design and development was carried out in partnership with specialists in human anatomy for the study of the lower limb bones (skeletal system), vessels and arteries (cardiovascular system), and lower limb skeletal muscles (muscular system). A case study was performed with students of physiotherapy undergraduate program in the course of anatomy through usability assessment techniques. Based on the results obtained it was possible to identify fundamental and innovative features that have to be present in the design of serious games for the teaching of health sciences.
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