Identifying geographical variations in poverty-obesity relationships: empirical evidence from Taiwan
Submitted: 22 December 2014
Accepted: 22 December 2014
Published: 1 May 2010
Accepted: 22 December 2014
Abstract Views: 3356
PDF: 1353
Publisher's note
All claims expressed in this article are solely those of the authors and do not necessarily represent those of their affiliated organizations, or those of the publisher, the editors and the reviewers. Any product that may be evaluated in this article or claim that may be made by its manufacturer is not guaranteed or endorsed by the publisher.
All claims expressed in this article are solely those of the authors and do not necessarily represent those of their affiliated organizations, or those of the publisher, the editors and the reviewers. Any product that may be evaluated in this article or claim that may be made by its manufacturer is not guaranteed or endorsed by the publisher.
Similar Articles
- David Taylor, Stefan Kienberger, Jack B. Malone, Adrian M. Tompkins, Health, environmental change and adaptive capacity; mapping, examining and anticipating future risks of water-related vector-borne diseases in eastern Africa , Geospatial Health: Vol. 11 No. s1 (2016): HEALTHY FUTURES
- Benyamin Hoseini, Nasser Bagheri, Behzad Kiani, Amirabbas Azizi, Hamed Tabesh, Mahmood Tara, Access to dialysis services: A systematic mapping review based on geographical information systems , Geospatial Health: Vol. 13 No. 1 (2018)
- Ahmed Akakba, Belkacem Lahmar, Identification and analysis of spatial access disparities related to primary healthcare in Batna City, Algeria , Geospatial Health: Vol. 18 No. 2 (2023)
- David Gikungu, Jacob Wakhungu, Donald Siamba, Edward Neyole, Richard Muita, Bernard Bett, Dynamic risk model for Rift Valley fever outbreaks in Kenya based on climate and disease outbreak data , Geospatial Health: Vol. 11 No. 2 (2016)
- Stephen Thielke, Christopher G. Slatore, William A. Banks, Quantifying altitude of human habitation in studies of human health using geographical name server data , Geospatial Health: Vol. 11 No. 3 (2016)
- Jose Antonio Quesada, Inmaculada Melchor, Andreu Nolasco, Point process methods in epidemiology: application to the analysis of human immunodeficiency virus/acquired immunodeficiency syndrome mortality in urban areas , Geospatial Health: Vol. 12 No. 1 (2017)
- Paulina Pui Yun Wong, Chien-Tat Low, Poh-Chin Lai, The impact of geographic mobility on the spread of COVID-19 in Hong Kong , Geospatial Health: Vol. 17 No. s1 (2022): Special issue on COVID-19
- Verónica Andreo, Juan Rosa, Karina Ramos, O. Daniel Salomón, Ecological characterization of a cutaneous leishmaniasis outbreak through remotely sensed land cover changes , Geospatial Health: Vol. 17 No. 1 (2022)
- Adina Iftimi, Francisco Martínez-Ruiz, Ana Míguez Santiyán, Francisco Montes, Spatio-temporal cluster detection of chickenpox in Valencia, Spain in the period 2008-2012 , Geospatial Health: Vol. 10 No. 1 (2015)
- Yvonne Walz, Martin Wegmann, Benjamin Leutner, Stefan Dech, Penelope Vounatsou, Eliézer K. N'Goran, Giovanna Raso, Jürg Utzinger, Use of an ecologically relevant modelling approach to improve remote sensing-based schistosomiasis risk profiling , Geospatial Health: Vol. 10 No. 2 (2015)
<< < 11 12 13 14 15 16 17 18 19 20 > >>
You may also start an advanced similarity search for this article.