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The contrary Russian flu: London 1890-1892
311PDF: 169HTML: 5 -
Mapping livestock systems, bovine and caprine diseases in Mayo-Kebbi Ouest Province, Chad
3699PDF: 1250Supplementary Materials: 607HTML: 195 -
Integrating agent-based disease, mobility and wastewater models for the study of the spread of communicable diseases
2377PDF: 617Supplementary Materials: 390HTML: 218 -
To what extent does climate explain variations in reported malaria cases in early 20th century Uganda?
4633PDF: 1314Appendix: 548HTML: 1226 -
Flexible scan statistic with a restricted likelihood ratio for optimized COVID-19 surveillance
899PDF: 288Supplementary Materials: 134HTML: 26 -
Global spreading of Omicron variant of COVID-19
1960PDF: 850HTML: 50 -
The effects of population mobility on Chinese HIV epidemics in spill-over and influx risks perspectives: a spatial epidemiology analysis
775PDF: 394Supplementary materials: 70HTML: 25 -
Reducing bias in risk indices for COVID-19
3043PDF: 523Appendix: 432HTML: 37 -
Assessing spatial patterns of HIV prevalence and interventions in semi-urban settings in South Africa. Implications for spatially targeted interventions
2225PDF: 573Supplementary 1: 143Supplementary 2: 336HTML: 163 -
Spread of Ebola virus disease based on the density of roads in West Africa
2529PDF: 805APPENDIX: 540HTML: 1237 -
Socioeconomic determinants of pandemics: a spatial methodological approach with evidence from COVID-19 in Nice, France
760PDF: 315Supplementary materials: 72HTML: 19 -
Geospatial tools and data for health service delivery: opportunities and challenges across the disaster management cycle
6438PDF: 809Supplementary Materials: 259HTML: 118 -
Dynamic location model for designated COVID-19 hospitals in China
1124PDF: 382Supplementary Materials: 270HTML: 72 -
Impact of climate change on dengue fever: a bibliometric analysis
2725PDF: 909Supplementary Materials: 364HTML: 127 -
Spatial comparison of London’s three waves of Spanish flu
1448PDF: 700HTML: 579 -
Spatial autocorrelation and heterogenicity of demographic and healthcare factors in the five waves of COVID-19 epidemic in Thailand
1676PDF: 903Supplementary Materials: 140HTML: 68 -
Balancing geo-privacy and spatial patterns in epidemiological studies
4042PDF: 1273APPENDIX: 542HTML: 955 -
A dynamic, climate-driven model of Rift Valley fever
4770PDF: 2046Appendix: 573HTML: 1591 -
Global Mpox spread due to increased air travel
2401PDF: 801HTML: 256 -
Associations between rocky mountain spotted fever and veterinary care access, climatic factors and landscape in the State of Arizona, USA
990PDF: 499Supplementary Materials: 97HTML: 101 -
The food environment and adult obesity in US metropolitan areas
6208PDF: 2843HTML: 1225 -
Spatio-temporal analysis of fox rabies cases in Germany 2005-2006
2862PDF: 1252HTML: 1212 -
Impacts of sample ratio and size on the performance of random forest model to predict the potential distribution of snail habitats
2054PDF: 886Supplementary Materials: 152HTML: 59 -
Random forest variable selection in spatial malaria transmission modelling in Mpumalanga Province, South Africa
4233PDF: 1869APPENDIX 1: 455APPENDIX 2: 476HTML: 1647 -
Geospatial Health: achievements, innovations, priorities
1904PDF: 717HTML: 97 -
Climate impact on malaria in northern Burkina Faso
2783PDF: 932HTML: 745 -
Spatial association between the incidence rate of COVID-19 and poverty in the São Paulo municipality, Brazil
7463PDF: 1469Appendix: 177HTML: 31

