Semantic event fusion of computer vision and ambient sensor data for activity recognition to support dementia care
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Thanos G. Stavropoulos | Konstantinos Avgerinakis | G. Meditskos | Katerina Adam | I. Kompatsiaris | Stelios Andreadis
[1] Yiannis Kompatsiaris,et al. Activity detection using Sequential Statistical Boundary Detection (SSBD) , 2016, Comput. Vis. Image Underst..
[2] Pierluigi Ritrovato,et al. Semantic Web Technologies for Object Tracking and Video Analytics , 2015, ISVC.
[3] Thanos G. Stavropoulos,et al. Rule-based approaches for energy savings in an ambient intelligence environment , 2015, Pervasive Mob. Comput..
[4] W. Rogers,et al. Personalized Technology to Support Older Adults With and Without Cognitive Impairment Living at Home , 2015, American journal of Alzheimer's disease and other dementias.
[5] Thanos G. Stavropoulos,et al. The DemaWare service-oriented AAL platform for people with dementia , 2014, AI-AM/NetMed@ECAI.
[6] Patrick Bouthemy,et al. Action Localization with Tubelets from Motion , 2014, 2014 IEEE Conference on Computer Vision and Pattern Recognition.
[7] Hassan Foroosh,et al. Feature-Independent Action Spotting without Human Localization, Segmentation, or Frame-wise Tracking , 2014, 2014 IEEE Conference on Computer Vision and Pattern Recognition.
[8] Cordelia Schmid,et al. Efficient Action Localization with Approximately Normalized Fisher Vectors , 2014, 2014 IEEE Conference on Computer Vision and Pattern Recognition.
[9] Liming Chen,et al. Dynamic sensor data segmentation for real-time knowledge-driven activity recognition , 2014, Pervasive Mob. Comput..
[10] Nazli Ikizler-Cinbis,et al. Action Recognition and Localization by Hierarchical Space-Time Segments , 2013, 2013 IEEE International Conference on Computer Vision.
[11] Thanos G. Stavropoulos,et al. aWESoME: A web service middleware for ambient intelligence , 2013, Expert Syst. Appl..
[12] Yiannis Kompatsiaris,et al. Recognition of Activities of Daily Living for Smart Home Environments , 2013, 2013 9th International Conference on Intelligent Environments.
[13] Georgios Meditskos,et al. Ontology Patterns for Complex Activity Modelling , 2013, RuleML.
[14] Prafulla N Dawadi,et al. Automated assessment of cognitive health using smart home technologies. , 2013, Technology and health care : official journal of the European Society for Engineering and Medicine.
[15] A. Wimo,et al. The global prevalence of dementia: A systematic review and metaanalysis , 2013, Alzheimer's & Dementia.
[16] Junsong Yuan,et al. Max-Margin Structured Output Regression for Spatio-Temporal Action Localization , 2012, NIPS.
[17] Chin-Hsing Chen,et al. Wireless Sensor Networks for Vital Signs Monitoring: Application in a Nursing Home , 2012, Int. J. Distributed Sens. Networks.
[18] Kristen Grauman,et al. Efficient activity detection with max-subgraph search , 2012, 2012 IEEE Conference on Computer Vision and Pattern Recognition.
[19] Giuseppe Lo Re,et al. Sensor9k : A testbed for designing and experimenting with WSN-based ambient intelligence applications , 2012, Pervasive Mob. Comput..
[20] Chris D. Nugent,et al. A Knowledge-Driven Approach to Activity Recognition in Smart Homes , 2012, IEEE Transactions on Knowledge and Data Engineering.
[21] Yang Wang,et al. Discriminative figure-centric models for joint action localization and recognition , 2011, 2011 International Conference on Computer Vision.
[22] Lidia Fuentes,et al. FamiWare: a family of event-based middleware for ambient intelligence , 2011, Personal and Ubiquitous Computing.
[23] Claudio Bettini,et al. Is ontology-based activity recognition really effective? , 2011, 2011 IEEE International Conference on Pervasive Computing and Communications Workshops (PERCOM Workshops).
[24] Claudio Bettini,et al. COSAR: hybrid reasoning for context-aware activity recognition , 2011, Personal and Ubiquitous Computing.
[25] Cordelia Schmid,et al. Human Focused Action Localization in Video , 2010, ECCV Workshops.
[26] Richard P. Wildes,et al. Efficient action spotting based on a spacetime oriented structure representation , 2010, 2010 IEEE Computer Society Conference on Computer Vision and Pattern Recognition.
[27] Grigoris Antoniou,et al. A Reasoning Framework for Ambient Intelligence , 2010, SETN.
[28] Jadwiga Indulska,et al. A survey of context modelling and reasoning techniques , 2010, Pervasive Mob. Comput..
[29] Chris D. Nugent,et al. Ontology-based activity recognition in intelligent pervasive environments , 2009, Int. J. Web Inf. Syst..
[30] Jean Ponce,et al. Automatic annotation of human actions in video , 2009, 2009 IEEE 12th International Conference on Computer Vision.
[31] Raphaël Troncy,et al. LODE: Linking Open Descriptions of Events , 2009, ASWC.
[32] Peter Rosengren,et al. A Development Platform for Integrating Wireless Devices and Sensors into Ambient Intelligence Systems , 2009, 2009 6th IEEE Annual Communications Society Conference on Sensor, Mesh and Ad Hoc Communications and Networks Workshops.
[33] Ying Wu,et al. Discriminative subvolume search for efficient action detection , 2009, 2009 IEEE Conference on Computer Vision and Pattern Recognition.
[34] Paddy Nixon,et al. Ontonym: a collection of upper ontologies for developing pervasive systems , 2009, CIAO '09.
[35] Patrick Pérez,et al. Retrieving actions in movies , 2007, 2007 IEEE 11th International Conference on Computer Vision.
[36] Simon A. Dobson,et al. Ontology-based models in pervasive computing systems , 2007, The Knowledge Engineering Review.
[37] Paul Müller,et al. Ambient Intelligence in Assisted Living: Enable Elderly People to Handle Future Interfaces , 2007, HCI.
[38] Yarden Katz,et al. Pellet: A practical OWL-DL reasoner , 2007, J. Web Semant..
[39] Sakuko Otake,et al. Monitoring daily living activities of elderly people in a nursing home using an infrared motion-detection system. , 2006, Telemedicine journal and e-health : the official journal of the American Telemedicine Association.
[40] Michael Friedewald,et al. Perspectives of ambient intelligence in the home environment , 2005, Telematics Informatics.
[41] William C. Mann,et al. The Gator Tech Smart House: a programmable pervasive space , 2005, Computer.
[42] Ramakant Nevatia,et al. An Ontology for Video Event Representation , 2004, 2004 Conference on Computer Vision and Pattern Recognition Workshop.
[43] Jacques Demongeot,et al. Multi-sensors acquisition, data fusion, knowledge mining and alarm triggering in health smart homes for elderly people. , 2002, Comptes rendus biologies.
[44] Christophe Le Gal,et al. Smart Office: Design of an Intelligent Environment , 2001, IEEE Intell. Syst..
[45] T Tamura,et al. Fully automated health monitoring system in the home. , 1998, Medical engineering & physics.
[46] Pierluigi Ritrovato,et al. Abnormal Event Recognition: A Hybrid Approach Using Semantic Web , 2016, CVPR 2016.
[47] Andrew Zisserman,et al. The devil is in the details: an evaluation of recent feature encoding methods , 2011, BMVC.
[48] Birgitta König-Ries,et al. openAAL 1the open source middleware for ambient-assisted living ( AAL ) , 2010 .
[49] Simon A. Dobson,et al. LOC8: A Location Model and Extensible Framework for Programming with Location , 2010, IEEE Pervasive Computing.
[50] Kiriakos N. Kutulakos,et al. Trends and Topics in Computer Vision , 2010, Lecture Notes in Computer Science.
[51] Antonio Capone,et al. A New Architecture for Reduction of Energy Consumption of Home Appliances , 2009 .
[52] Luc Van Gool,et al. Exemplar-based Action Recognition in Video , 2009, BMVC.
[53] Jeff Z. Pan,et al. Rules and Rule Markup Languages for the Semantic Web , 2003, Lecture Notes in Computer Science.
[54] James H. Aylor,et al. Computer for the 21st Century , 1999, Computer.