Publications
3D layout propagation to improve object recognition in egocentric videos. In European Conference in Computer Vision Workshops (ECCVW). Springer.
. (2014). 3D spatial layout propagation in a video sequence. In International Conference on Image Analysis and Recognition (ICIAR). Springer.
. (2014). Adapting a real-time monocular visual slam from conventional to omnidirectional cameras. In International Conference on Computer Vision Workshops (ICCV Workshops). IEEE.
. (2011). Age-related preference for geometric cues during real-world navigation: behavioral and neuroimaging correlates. In Interdisciplinary Navigation Symposium (iNav). Mont-Tremblant, Canada: Mont-Tremblant, Canada.
. (2018). Age-related preference for geometric cues during real-world navigation: behavioral and neuroimaging correlates. In Spatial Cognition. Tübingen, Germany: Tübingen, Germany.
. (2018). Age-related preference for geometric cues during real-world navigation: behavioral and neuroimaging correlates. In Interdisciplinary Navigation Symposium (iNav). Mont-Tremblant, Canada: Mont-Tremblant, Canada.
. (2018). Age-related preference for geometric cues during real-world navigation: behavioral and neuroimaging correlates. In Spatial Cognition. Tübingen, Germany: Tübingen, Germany.
. (2018). Age-related preference for geometric cues: when aging does not impair allocentric strategies. In iSCAN. Magdeburg, Germany: Magdeburg, Germany.
. (2018). An Audio-Based 3D Spatial Guidance AR System for Blind Users. In 17th International Conference on Computers Helping People with Special Needs.
. (2020). A bayesian network framework for relational shape matching. In Computer Vision, 2003. Proceedings. Ninth IEEE International Conference on (pp. 671–678). IEEE.
. (2003). Cognitive-motor interference in older adults while navigating in an ecological environment. In Internationa Society for Posture and Gait Research (ISPGR). Edinburgh, UK: Edinburgh, UK.
. (2019). Comparison of omnidirectional and conventional monocular systems for visual SLAM. In Workshop on Omnidirectional Vision, Camera Networks and Non-classical Cameras (OMNIVIS) (Best paper award). Retrieved from http://robots.unizar.es/data/documentos/ARituertoLPuigJJGuerrero{\_}OMNIVIS2010.pdf
. (2010). Enabling independent navigation for visually impaired people through a wearable vision-based feedback system. In IEEE International Conference on Robotics and Automation (pp. 6533–6540).
. (2017). Human navigation assistance with a RGB-D sensor. In VI Congreso Internacional de Diseño, Redes de Investigación y Tecnología para todos DRT4ALL.
. (2015). Line image signature for scene understanding with a wearable vision system. In International SenseCam & Pervasive Imaging Conference. ACM.
. (2013). Line-based global descriptor for omnidirectional vision. In International Conference on Image Processing (ICIP). IEEE.
. (2014). Towards a Sign-Based Indoor Navigation System for People with Visual Impairments. In 18th International ACM SIGACCESS Conference on Computers and Accessibility. ACM: Reno, NV.
. (2016). Visual slam with an omnidirectional camera. In International Conference on Pattern Recognition (ICPR). IEEE.
. (2010). Wearable omnidirectional vision system for personal localization and guidance. In Conference on Computer Vision and Pattern Recognition Workshops (CVPRW). IEEE.
. (2012). 3D discomfort from vertical and torsional disparities in natural images. Is&t/spie Electronic Imaging. Retrieved from http://doi.org/10.1117/12.915466
. (2012). Acclimatization in wide dynamic range multichannel compression and linear amplification hearing aids. Journal Of Rehabilitation Research And Development, 43, 517.
. (2006). Adjustable rectus muscle recession surgery: a follow-up study. Archives Of Ophthalmology, 95, 817–820.
. (1977). An alternative view of dual-tasking in older adults: Cognitive-motor interference while navigating in an ecological environment. Neurophysiologie Clinique, 49, 414. http://doi.org/https://doi.org/10.1016/j.neucli.2019.10.161
. (2019). Bimedial recession in high AC/A esotropia: a long-term follow-up. Archives Of Ophthalmology, 91, 251–253.
. (1974). Building an Enhanced Vocabulary of the Robot Environment with a Ceiling Pointing Camera. Sensors. Special Issue Robotic Sensory Systems For Environment Protection And Conservation, 16, 493. http://doi.org/10.3390/s16040493
. (2016).