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Influences of Land-Use Dynamics and Surface Water Systems Interactions on Water-Related Infectious Diseases-A Systematic Review

期刊

WATER
卷 12, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/w12030631

关键词

review study; land-use change; water quality; diarrhea; schistosomiasis; infectious diseases

资金

  1. Ministry of Culture and Science, North Rhine-Westphalia, Germany, though the Forschungskolleg One Health and Urban Transformation

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Human interactions with surface water systems, through land-use dynamics, can influence the transmission of infectious water-related diseases. As a result, the aim of our study was to explore and examine the state of scientific evidence on the influences of these interactions on water-related infectious disease outcomes from a global perspective. A systematic review was conducted, using 54 peer-reviewed research articles published between 1995 and August 2019. The study revealed that there has been an increase in the number of publications since 2009; however, few of these publications (n = 6) made explicit linkages to the topic. It was found that urban and agricultural land-use changes had relatively high adverse impacts on water quality, due to high concentrations of fecal matter, heavy metals, and nutrients in surface water systems. Water systems were found as the common vehicle for infectious disease transmission, which in turn had linkages to sanitation and hygiene conditions. The study found explicit linkages between human-surface water interaction patterns and the transmission of water-based disease. However, weak and complex linkages were found between land-use change and the transmission of water-borne disease, due to multiple pathways and the dynamics of the other determinants of the disease. Therefore, further research studies, using interdisciplinary and transdisciplinary approaches to investigate and enhance a deeper understanding of these complexities and linkages among land use, surface water quality, and water-related infectious diseases, is crucial in developing integrated measures for sustainable water quality monitoring and diseases prevention.

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