Demonstrative and interactive methodology in theoretical-practical typology classes. And more active methodologies in the Laboratory Practice classes for the development of experimental skills. Problem-based learning methodology and education for understanding will be applied through educational planning based on meaningful learning scenarios (simulation) in laboratory practice classes. Use of the e-learning platform for guided study, discussion and reflection.
For the evaluation, peer feedback will be used. Continuous assessment = Frequency (60%) + Continuous Assessment Laboratory practices/simulation (40%).
Develop knowledge in the area of soft tissue mechanics, arthrokinematics and muscle contraction;
Develop un understanding of the mechanisms and effects of musculoskeletal injury, genetic pathology, environmental factors and pharmacological agents.
Apply knowledge of biomechanics applied to the study of human movement;
Apply the analysis of movement based on binomial mobility/functional stability in different human tasks, including manipulation tasks.
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Concepts and principles of tissue mechanics, arthrokinematics and different muscle contractions;
Concepts and principles of biomechanics;
Concepts and principles of the mechanisms and effects of musculoskeletal injury, genetic pathology, environmental factors and pharmacological agents;
Analysis of observational movement based on binomial mobility/functional stability in different human tasks, including manipulation tasks.
Theorical Exam: 60.0%
Pratical Exam: 40.0%
Frequency: 60.0%
Pratical Assessment: 40.0%
Abernethy Et Al. (2013) The Biophysical Foundations Of Human Movement. Champaign, Il. Human Kinetics. Everett, T., &Amp; Kell, C. (2010). Human Movement: An Introductory Text. (6Th Ed.). Churchill Livingstone.
Griffiths, I. (2006). Principles Of Biomechanics &Amp; Motion Analysis. Philadelphia, Usa: Lippicott Williams &Amp; Wilkins. Hall, S. (2010). Biomecânica Básica (5ª Edição). Rio De Janeiro, Brasil: Guanabara Koogan.
Hamill, J. &Amp; Knutzen, K. (2018). Bases Biomecânicas Do Movimento Humano. São Paulo: Manole.
Neumann, D. A. (2017). Kinesiology Of The Musculoskeletal System: Foundations Of The Rehabilitation. Elsevier
Kapandji, A. (2009). Fisiologia Articular. (Vol. 1, 2 E 3). 6ª Edição. São Paulo, Brasil: Panamericana.
Joel Emidio Duarte Marouvo