Publications

An interactive experiment combining ultrasound, magnetic resonance imaging, and force feedback technology to physically feel the fetus during pregnancy

Published in European journal of radiology, 2019

Recommended citation: Werner, H., Arcoverde, V., Ribeiro, G., Lopes, J., Jauregui, J. J. H., Raposo, A. B., & JĂșnior, E. A. (2019). An interactive experiment combining ultrasound, magnetic resonance imaging, and force feedback technology to physically feel the fetus during pregnancy. European journal of radiology, 110, 128-129. https://www.ejradiology.com/article/S0720-048X(18)30415-7/abstract

Floating Hamster Ball: A locomotion method for free flight in virtual environments

Published in 2018 20th Symposium on Virtual and Augmented Reality, 2018

Recommended citation: Hurtado, J., Albuquerque, E., Radetic, D., Cherullo, R., Silva-Calpa, G. F. M., & Raposo, A. (2018, October). Floating Hamster Ball: A Locomotion Method for Free Flight in Virtual Environments. In 2018 20th Symposium on Virtual and Augmented Reality (SVR) (pp. 183-191). IEEE. https://ieeexplore.ieee.org/document/8802483

[paper] [slides] [video]

A proposal for combining Ultrasound, Magnetic Resonance Imaging and Force feedback technology, during the pregnancy, to physically feel the fetus

Published in International Conference on Digital Human Modeling and Applications in Health, Safety, Ergonomics and Risk Management, 2018

Recommended citation: dos Santos, J. R. L., Werner, H., Raposo, A., Hurtado, J., Arcoverde, V., & Ribeiro, G. (2018, July). A proposal for combining Ultrasound, Magnetic Resonance Imaging and Force feedback technology, during the pregnancy, to physically feel the fetus. In International Conference on Digital Human Modeling and Applications in Health, Safety, Ergonomics and Risk Management (pp. 502-512). Springer, Cham. https://link.springer.com/chapter/10.1007/978-3-319-91397-1_40