Tracking and visualization of space-time activities for a micro-scale flu transmission study
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[1] James H. Spencer,et al. Avian Influenza (H5N1) and the Evolutionary and Social Ecology of Infectious Disease Emergence , 2006, EcoHealth.
[2] Gail K. Auslander,et al. What can we learn about the mobility of the elderly in the GPS era , 2010 .
[3] Albert-László Barabási,et al. Understanding individual human mobility patterns , 2008, Nature.
[4] W. Getz,et al. Curtailing transmission of severe acute respiratory syndrome within a community and its hospital† , 2003, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[5] Randall Guensler,et al. Elimination of the Travel Diary: Experiment to Derive Trip Purpose from Global Positioning System Travel Data , 2001 .
[6] R M Prothero,et al. Disease and mobility: a neglected factor in epidemiology. , 1977, International journal of epidemiology.
[7] N. Shoval,et al. Application of Tracking Technologies to the Study of Pedestrian Spatial Behavior* , 2006 .
[8] J. Fortenberry,et al. International Journal of Health Geographics Open Access Using Gps-enabled Cell Phones to Track the Travel Patterns of Adolescents , 2022 .
[9] J. Robins,et al. Transmission Dynamics and Control of Severe Acute Respiratory Syndrome , 2003, Science.
[10] Menno-Jan Kraak,et al. A Visualization Environment for the Space-Time-Cube , 2004, SDH.
[11] Torsten Hägerstraand. WHAT ABOUT PEOPLE IN REGIONAL SCIENCE , 1970 .
[12] Melody Oliver,et al. Linking GPS and travel diary data using sequence alignment in a study of children's independent mobility. , 2011, International journal of health geographics.
[13] J. Brownstein,et al. Empirical Evidence for the Effect of Airline Travel on Inter-Regional Influenza Spread in the United States , 2006, PLoS medicine.
[14] F. Chapin,et al. Human Activity Patterns in the City: Things People Do in Time and Space. , 1976 .
[15] Feng Qi,et al. Trajectory data analyses for pedestrian space-time activity study. , 2013, Journal of visualized experiments : JoVE.
[16] Taylor Francis,et al. ANNALS of the Association of American Geographers , 2004 .
[17] Aaron Renenger. Satellite Tracking and the Right to Privacy , 2002 .
[18] Prothero Rm,et al. Disease and Mobility: A Neglected Factor in Epidemiology , 1977 .
[19] Peter F. Fisher,et al. Classics from IJGIS : twenty years of the International journal of geographical information science and systems , 2006 .
[20] Maged N Kamel Boulos,et al. Descriptive review of geographic mapping of severe acute respiratory syndrome (SARS) on the Internet , 2004, International journal of health geographics.
[21] G. Schofield,et al. Combining GPS with heart rate monitoring to measure physical activity in children: A feasibility study. , 2009, Journal of science and medicine in sport.
[22] B. C. Choi,et al. A simple approximate mathematical model to predict the number of severe acute respiratory syndrome cases and deaths , 2003, Journal of epidemiology and community health.
[23] Ulrike Gretzel,et al. Capturing the Beaten Paths: A Novel Method for Analysing Tourists' Spatial Behaviour at an Urban Destination , 2006, ENTER.
[24] Peter V. Nielsen,et al. Spatial Distribution of Infection Risk of SARS Transmission in a Hospital Ward , 2009 .
[25] Noel Cressie,et al. Hierarchical statistical modelling of influenza epidemic dynamics in space and time , 2002, Statistics in medicine.
[26] H. Laamrani,et al. The study of human behavior and schistosomiasis transmission in an irrigated area in Morocco. , 1998, Social science & medicine.
[27] Maged N Kamel Boulos,et al. International Journal of Health Geographics Open Access towards Evidence-based, Gis-driven National Spatial Health Information Infrastructure and Surveillance Services in the United Kingdom , 2022 .
[28] Gennady L. Andrienko,et al. Interactive analysis of event data using space-time cube , 2004, Proceedings. Eighth International Conference on Information Visualisation, 2004. IV 2004..
[29] Hongbo Yu,et al. A Space‐Time GIS Approach to Exploring Large Individual‐based Spatiotemporal Datasets , 2008, Trans. GIS.
[30] Menno-Jan Kraak,et al. Space time visualization for epidemiological research , 2007 .
[31] Philippe Terrier,et al. Journal of Neuroengineering and Rehabilitation Open Access How Useful Is Satellite Positioning System (gps) to Track Gait Parameters? a Review , 2022 .
[32] Michael Fox,et al. Transport planning and the human activity approach , 1995 .
[33] Pascal Crépey,et al. Detecting robust patterns in the spread of epidemics: a case study of influenza in the United States and France. , 2007, American journal of epidemiology.
[34] L. Anselin,et al. Toward Spatially Integrated Social Science , 2000 .
[35] F. Oswald,et al. The use of advanced tracking technologies for the analysis of mobility in Alzheimer's disease and related cognitive diseases , 2008, BMC geriatrics.
[36] Uriel Kitron,et al. The Role of Human Movement in the Transmission of Vector-Borne Pathogens , 2009, PLoS neglected tropical diseases.
[37] F. Chapin. Human activity patterns in the city , 1974 .
[38] Dino Pedreschi,et al. A Visual Analytics Toolkit for Cluster-Based Classification of Mobility Data , 2009, SSTD.
[39] Pip Forer,et al. Activities, ringmaps and geovisualization of large human movement fields , 2008, Inf. Vis..
[40] T. Hägerstrand. What about people in Regional Science? , 1970 .
[41] C. Mendis,et al. The Matola malaria project: a temporal and spatial study of malaria transmission and disease in a suburban area of Maputo, Mozambique. , 1997, The American journal of tropical medicine and hygiene.
[42] S. Thacker,et al. Spatial Aspects of Influenza Epidemics , 1987 .
[43] M. Kwan. The Uncertain Geographic Context Problem , 2012 .
[44] Shigui Ruan,et al. Simulating the SARS outbreak in Beijing with limited data , 2003, Journal of Theoretical Biology.
[45] Kai Elgethun,et al. Time-location analysis for exposure assessment studies of children using a novel global positioning system instrument. , 2003, Environmental health perspectives.
[46] S. Riley. Large-Scale Spatial-Transmission Models of Infectious Disease , 2007, Science.
[47] Colin Ware,et al. Information Visualization: Perception for Design , 2000 .
[48] T. Geisel,et al. Forecast and control of epidemics in a globalized world. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[49] H. Miller. A MEASUREMENT THEORY FOR TIME GEOGRAPHY , 2005 .
[50] A. Tjoa,et al. Information and Communication Technologies in Tourism , 1996, Springer Vienna.
[51] Mei-Po Kwan,et al. Interactive geovisualization of activity-travel patterns using three-dimensional geographical information systems: a methodological exploration with a large data set , 2000 .
[52] C. Fraser,et al. Epidemiological determinants of spread of causal agent of severe acute respiratory syndrome in Hong Kong , 2003, The Lancet.
[53] M. Newman,et al. Network theory and SARS: predicting outbreak diversity , 2004, Journal of Theoretical Biology.
[54] J. Hudson. A DIAMOND ANNIVERSARY , 1979 .
[55] Peter Haggett,et al. The changing shape of island epidemics: historical trends in Icelandic infectious disease waves, 1902–1988 , 2009 .
[56] David Ogilvie,et al. Use of global positioning systems to study physical activity and the environment: a systematic review. , 2011, American journal of preventive medicine.
[57] Alfredo Morabia,et al. Air pollution and activity during transportation by car, subway, and walking. , 2009, American journal of preventive medicine.
[58] Scott Duncan,et al. Using global positioning systems in health research: a practical approach to data collection and processing. , 2011, American journal of preventive medicine.
[59] Maged N Kamel Boulos,et al. Real-time locating systems (RTLS) in healthcare: a condensed primer. , 2012, International journal of health geographics.
[60] Peter S. Fader,et al. An Exploratory Look at Supermarket Shopping Paths , 2005 .
[61] Prostitution In Nevada,et al. ANNALS of the Association of American Geographers , 1974 .
[62] Tijs Neutens,et al. The Prism of Everyday Life: Towards a New Research Agenda for Time Geography , 2011 .
[63] Alexander R. Vaccaro,et al. Assessing the Outcomes of Spine Surgery Using Global Positioning Systems , 2011, Spine.
[64] Bryan J Boruff,et al. Using GPS technology to (re)-examine operational definitions of ‘neighbourhood’ in place-based health research , 2012, International Journal of Health Geographics.
[65] Noam Shoval,et al. Sequence Alignment as a Method for Human Activity Analysis in Space and Time , 2007 .
[66] Xing Liu,et al. A Software Client for Wi-Fi Based Real-Time Location Tracking of Patients , 2007, MIMI.
[67] Pierre Abraham,et al. The Inter- and Intra-Unit Variability of a Low-Cost GPS Data Logger/Receiver to Study Human Outdoor Walking in View of Health and Clinical Studies , 2012, PloS one.
[68] Trish Berglund,et al. Changing patterns of infectious disease , 1986 .
[69] George W. Williams,et al. Spatial Aspects of Influenza Epidemics. , 1988 .
[70] Gennady L. Andrienko,et al. Spatio-temporal aggregation for visual analysis of movements , 2008, 2008 IEEE Symposium on Visual Analytics Science and Technology.
[71] Aravind Srinivasan,et al. Modelling disease outbreaks in realistic urban social networks , 2004, Nature.
[72] Alessandro Vespignani,et al. Modeling the Worldwide Spread of Pandemic Influenza: Baseline Case and Containment Interventions , 2007, PLoS medicine.
[73] C. Dye,et al. Epidemiology. Modeling the SARS epidemic. , 2003, Science.
[74] Mark Gahegan,et al. The case for inductive and visual techniques in the analysis of spatial data , 2000, J. Geogr. Syst..
[75] David Mountain,et al. Visualizing, Querying and Summarizing Individual Spatio-Temporal Behaviour , 2005 .
[76] Pierre Abraham,et al. Measurement of Walking Distance and Speed in Patients With Peripheral Arterial Disease: A Novel Method Using a Global Positioning System , 2008, Circulation.
[77] A. Fauci,et al. The challenge of emerging and re-emerging infectious diseases , 2004, Nature.
[78] M. Kwan. Gis methods in time‐geographic research: geocomputation and geovisualization of human activity patterns , 2004 .
[79] Tim Schwanen,et al. ‘I like to go out to be energised by different people’: an exploratory analysis of mobility and wellbeing in later life , 2011, Ageing and Society.
[80] Anthony J McMichael,et al. Social and environmental risk factors in the emergence of infectious diseases , 2004, Nature Medicine.
[81] Mark A. Miller,et al. Synchrony, Waves, and Spatial Hierarchies in the Spread of Influenza , 2006, Science.
[82] U. Kitron,et al. Risk maps: transmission and burden of vector-borne diseases. , 2000, Parasitology today.
[83] Mei-Po Kwan,et al. From place-based to people-based exposure measures. , 2009, Social science & medicine.
[84] Pierre Abraham,et al. The Accuracy of a Simple, Low-Cost GPS Data Logger/Receiver to Study Outdoor Human Walking in View of Health and Clinical Studies , 2011, PloS one.
[85] S. Morse,et al. Factors in the emergence of infectious diseases. , 1995, Emerging infectious diseases.