Spatial analysis and modelling for primary healthcare site selection in Midnapore town, West Bengal

GeoJournal - 2022
Bikash Dutta1, M. M. Das2, Utpal Roy3, Sutapa Das4, Sutapa Rath5
1Department of Geography, Nistarini College, Purulia, India
2Department of Remote Sensing and G.I.S, Vidyasagar University, Midnapore, India
3Department of Geography, University of Calcutta, Kolkata, India
4Department of Economics, Vidyasagar University, Midnapore, India
5Department of Geography, Vidyasagar University, Midnapore, India

Tóm tắt

Từ khóa


Tài liệu tham khảo

Abdullahi, S., & Pradhan, B. (2012). Spatial modelling of site suitability assessment for hospitals using geographical information system-based multicriteria approach at Qazvin city, Iran. Geocarto International. https://doi.org/10.1080/10106049.2012.752531

Abujayyab, S., et al. (2016). GIS modelling for new landfill sites: Critical review of employed criteria and method of selection criteria. IOP Conference Series Earth and Environmental Science, 5(2), 101–118. https://doi.org/10.1088/1755-1315/37/1/012053

Ahmed, A. H., Mahmoud, H., & Aly, A. M. M. (2016). Site suitability evaluation for sustainable distribution of hospital using spatial information technologies and AHP: A case study of Upper Egypt, Aswan City. Journal of Geographic Information System. https://doi.org/10.4236/jgis.2016.85048

Ajala, O. A., Sanni, L., & Adeyinka, S. A. (2017). Accessibility to health care facilities: A panacea for sustainable rural development in Osun State Southwestern, Nigeria. Journal of Human Ecology. https://doi.org/10.1080/09709274.2005.11905819

Alabi, M. O. (2011). Towards a sustainable distribution of health centres using GIS. American Journals of Tropical Medicine and Public Health, 1, 130–136.

Alkire, S., et al. (2015). Multidimensional poverty measurement. Oxford University Press.

Boulos, M. N. K., Roudsari, A. V., & Carson, E. R. (2001). Health geomatics: An enabling suite of technologies in health and healthcare. Journal of Biomedical Informatics, 34, 195–219. https://doi.org/10.1006/jbin.2001.1015

Cavapozzi, D., Han, W., & Miniach, R. (2015). Alternative weighting structures for multidimensional poverty assessment. Journal of Economic Inequality, 13(3), 425–447.

Chokshi, M., et al. (2016). Health system in India. Journal of Perinatology, 36, S9–S12. https://doi.org/10.1038/jp.2016.184

Christaller, W. (1966). Central places in Southern Germany. Prentice-Hall.

Danjuma, I. (2015). Locational analysis of healthcare facilities in Keffi Local Government Area of Nasarawa State, Nigeria. PhD Thesis. Retrieved from http://kubanni.abu.edu.ng/jspui/bitstream.

Das, P., Paria, B., & Firdaush, S. (2020). Consumption poverty and multidimensional poverty: A study in Indian context, social indicators research. Social Indicators Research. https://doi.org/10.1007/s11205-020-02519-0

Dinda, S., Das, K., Chatterjee, N. D., & Ghosh, S. (2018). Integration of GIS and statistical approach in mapping of urban sprawl and predicting future growth in Midnapore town. Modeling Earth Systems and Environment, 5, 331–352.

Dolui, G., Das, S., & Satpathy, S. (2014). An application of remote sensing and GIS to analyze urban expansion and land use land cover change of Midnapore Municipality, WB, India. International Research Journal of Earth Sciences, 2(5), 8–20.

Dutta, B., Roy, U., & Maity, I. (2018). Evaluating coping mechanism of slum dwellers in Midnapore municipal area, West Bengal. Asian Journal of Multidimensional Research, 7(8), 150–163.

Eldrandaly, K. A. (2014). Developing a GIS-based MCE site selection tool in ArcGIS using COM technology. May 2013.

Eyles, J. D. (1996). Poverty as inequality: A case study. Progress in Human Geography, 6, 55–64.

Fiedler, J. L. (1981). A review of the literature in access and utilization of medical care with special emphasis on rural primary care. Social Science & Medicine Part c: Medical Economics, 15, 129–142.

Geurs, K. T., & Wee, B. V. (2004). Accessibility evaluation of land-use and transport strategies: Review and research directions. Journal of Transport Geography, 12(2), 127–140. https://doi.org/10.1016/j.jtrangeo.2003.10.005

Ghobadi, M., et al. (2013). Siting MSW landfills by combining AHP with GIS in Hamedan province, western Iran. Environmental Earth Sciences, 70, 1823–1840.

Gorsevski, P. V., et al. (2012). Integrating multi-criteria evaluation techniques with geographic information systems for landfill site selection: A case study using ordered weighted average. Waste Management, 32, 287–296.

Guagliardo, M. F. (2004). Spatial accessibility of primary care: Concepts, methods and challenges. International Journal of Health Geographics, 13, 1–13.

Guiqin, W., et al. (2009). Landfill site selection using spatial information technologies and AHP: A case study in Beijing, China. Journal of Environmental Management, 90, 2414–2421.

Hao, Q. L., & Dai, R. (2013). Dalian LNG terminal port site selection based on fuzzy evaluation. Journal of Dalian Maritime University, 39(103–106), 111.

Jordan, H., Roderick, P., Martin, D., & Barnett, S. (2004). Distance, rurality, and the need for care: access to health services in South West England. International Journal of Health Geographics, 3(21), 1–9.

Hu, R., Dong, S., Zhao, Y., Hu, H., & Li, Z. (2013). Assessing potential spatial accessibility of health services in rural China: A case study of Donghai county. International Journal for Equity in Health, 12, 1–11.

Jamal, I. A. (2016). Multi-criteria GIS analysis for school site selection in Gorno-Badakhshan Autonomous Oblast, Tajikistan. 55.

Jones, S. G., Ashby, A. J., Momin, S. R., & Naidoo, A. (2009). Spatial implications associated with using Euclidean distance measurements and geographic centroid imputation in health care research. Health Services Research, 45, 316–327. https://doi.org/10.1111/j.1475-6773.2009.01044.x

Khan, A. A. (1992). An integrated approach to measuring potential spatial access to health care services. Socioeconomic Planning Sciences, 26(4), 275–287. https://doi.org/10.1016/0038-0121(92)90004-O

Kim, Y., Byon, Y., & Yeo, H. (2018). Enhancing healthcare accessibility measurements using GIS: A case study in Seoul, Korea. PLoS ONE, 13, 1–19.

Korpela, J., & Tuominen, M. (1996). A decision aid in warehouse site selection. International Journal of Production Economics, 45, 169–180.

Langford, M., & Higgs, G. (2006). Measuring potential access to primary healthcare services: The influence of alternative spatial representations of population. The Professional Geographer, 58, 294–306.

Lawal, O., & Anyiam, F. E. (2019). Modelling geographic accessibility to Primary Health Care Facilities: Combining open data and geospatial analysis. Geo-Spatial Information Science, 22(3), 174–184. https://doi.org/10.1080/10095020.2019.1645508

Luo, W. (2004). Using a GIS-based floating catchment method to assess areas with shortage of physicians. Health & Place, 10, 1–11. https://doi.org/10.1016/S1353-8292(02)00067-9

Malczewski, J. (2006). GIS based multi-criteria decision analysis: A survey of the literature. International Journal of Geographical Information Science, 20(7), 703–726.

Mansour, S. (2016). Spatial analysis of public health facilities in Riyadh Governorate, Saudi Arabia: A GIS-based study to assess geographic variations of service provision and accessibility. Geo-Spatial Information Science, 5020, 1–13. https://doi.org/10.1080/10095020.2016.1151205

McGrail, M. R., & Humphreys, J. S. (2014). Measuring spatial accessibility to primary health care services: Utilising dynamic catchment sizes. Applied Geography, 54, 182–188. https://doi.org/10.1016/j.apgeog.2014.08.005

Moisi, J. C., et al. (2010). Geographic access to care is not a determinant of child mortality in a rural Kenyan setting with high health facility density. BMC Public Health, 10, 1–9. https://doi.org/10.1186/1471-2458-10-142

Muller, I., Smith, T., Mellor, S., & Genton, B. (1998). The effect of distance from home on attendance at a small rural health centre in Papua New Guinea. International Journal of Epidemiology, 27, 878–884.

Murad, A. A. (2008). Defining health catchment areas in Jeddah city, Saudi Arabia: An example demonstrating the utility of geographical information systems. Geospatial Health, 2(2), 151–160.

Murseli, R. (2014). Land suitability location analysis for housing development using GIS.

Nikolakaki, P. A. (2004). GIS site-selection process for habitat creation: Estimating connectivity of habitat patches. Landscape and Urban Planning, 68, 77–94.

Okwaraji, Y. B., Mulholland, K., Schellenberg, J. R. M. A., Andarge, G., Admassu, M., & Edmond, K. M. (2012). The association between travel time to health facilities and childhood vaccine coverage in rural Ethiopia. A community based cross sectional study. BMC Public Health, 12, 1–9.

Onokerhoraye, A. G. (1999). Access and utilization of modern health cares facilities in the petroleum-proucing region of Nigeria: The case study of Bayelsa State. Retrieved from http://www.hspl.harvard.edu/research/taken./file/rep162.pdfj.

Oppio, A., Buffoli, M., Ovo, M. D., & Capolongo, S. (2016). Addressing decisions about new hospitals’ siting: A multidimensional evaluation approach. Annali Dell’istituto Superiore Di Sanita, 52(1), 78–87. https://doi.org/10.4415/ANN

Parry, J. A., Ganaie, S. A., & Bhat, M. S. (2018). GIS based land suitability analysis using AHP model for urban services planning in Srinagar and Jammu urban centers of J&K, India. Journal of Urban Management, 7(2), 46–56. https://doi.org/10.1016/j.jum.2018.05.002

Pyrialakou, V. D., Gkritza, K., & Fricker, J. D. (2016). Accessibility, mobility, and realized travel behavior: Assessing transport disadvantage from a policy perspective. Journal of Transport Geography, 51, 252–269. https://doi.org/10.1016/j.jtrangeo.2016.02.001

Rahimi, F., Goli, A., & Rezaee, R. (2017). Hospital location-allocation in Shiraz using Geographical Information System (GIS). Shiraz E-Medical Journal. https://doi.org/10.5812/semj.57572.Research

Ravallion, M. (2011). On multidimensional indices of poverty. The Journal of Economic Inequality, 9(2), 235–248. https://doi.org/10.1007/s10888-011-9173-4.hdl:10986/3346

Roy, U. (2016). Causative factors of social inequality and its impact on community health: A neighbourhood level study in Midnapore municipal area, West Bengal, India. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences. https://doi.org/10.5194/isprs-archives-XLI-B8-1417-2016

Saaty, T. (1980). The analytical hierarchy process (pp. 20–25). McGraw-Hill.

Saaty, T. (1994). Highlights and critical points in the theory and application of the analytic hierarchy process. European Journal of Operational Research, 74(3), 426–447.

Saeed, M. O., et al. (2012). An integrated AHP-GIS technique for landfill siting: A case study in Malaysia. Kuwait Journal of Science and Engineering, 39, 23–46.

Sandipan, D., Anirban, B., & Sagar, M. (2013). Study on urban land suitability assessment using remote sensing and GIS: A case study of Khairagarh, Chhattisgarh. International Journal of Computer Applications, 74(10), 20–26.

Sedenu, A. H., et al. (2016). Spatial analysis of the distribution pattern of primary healthcare facilities in Ile-Ife metropolis using geographic information system. Journal of Scientific Research and Reports. https://doi.org/10.9734/JSRR/2016/22339

Shannon, G. W., Bashshur, R. L., & Metzner, C. (1969). The concept of distance as a factor in accessibility and utilization of health care. Medical Care Research and Review, 26, 143–161.

Sharma. N. C. (2020). Why smaller cities in India witnessing faster growth?

Shukla, A., Kumar, V., & Jain, K. (2017). Site suitability evaluation for urban development using remote sensing, GIS and analytic hierarchy process (AHP). Proceedings of International Conference on Computer Vision and Image Processing. https://doi.org/10.1007/978-981-10-2107-7_34

Siddiqui, M. Z., Everett, J. W., & Vieux, B. E. (1996). Landfill siting using geographic information systems: A demonstration. Journal of Environmental Engineering, 122(6), 515–523.

Soltani, A., & Marandi, E. (2010). Hospital site selection using two-stage fuzzy multicriteriadecision making process. Journal of Urban and Environmental Engineering, 5(1), 32–43.

Uyan, M. (2014). MSW landfill site selection by combining AHP with GIS for Konya, Turkey. Environmental Earth Sciences, 71, 1629–1639.

Uzochukwu, B., Onwujekwe, O., Mbachu, C., Okwuosa, C., Etiaba, E., Nyström, M. E., & Gilson, L. (2016). The challenge of bridging the gap between researchers and policy makers: Experiences of a health policy research group in engaging policy makers to support evidence informed policy making in Nigeria. Globalization and Health, 12(1), 67. https://doi.org/10.1186/s12992-016-0209-1

Wang, F., & Luo, W. (2005). Assessing spatial and nonspatial factors for healthcare access: Towards an integrated approach to defining health professional shortage areas. Health & Place, 11, 131–146. https://doi.org/10.1016/j.healthplace.2004.02.003

Wang, L., Fan, H., & Wang, Y. (2018). Site selection of retail shops based on spatial accessibility and hybrid BP neural network. ISPRS International Journal of Geo-Information. https://doi.org/10.3390/ijgi7060202

Wong, N. S., Lee, S. S., & Lin, H. (2010). Assessing the spatial distribution of methadone clinic clients and their access to treatment. Harm Reduction Journal, 7, 1–6.

Yang, D. H., et al. (2006). Comparing GIS-based methods of measuring spatial accessibility to health services. Journal of Medical Systems, 30(1), 23–32. https://doi.org/10.1007/s10916-006-7400-5

Youzi, H., Nemati, G., & Emamgholi, S. (2017). The optimized location of hospital using an integrated approach GIS and analytic hierarchy process: A case study of Kohdasht City. International Journal of Economics, 7(1), 1–6. https://doi.org/10.4172/2162-6359.1000500

Zarkesh, M. K. (2005). Decision support system for floodwater spreading site selection in Iran. ITC.

Zhou, L., & Wu, J. (2012). GIS-based multi-criteria analysis for hospital site selection in Haidian district of Beijing.