The community based controlling for the widely spread of dengue haemorhagic fever (DHF) in North Sumatra

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Research Paper 01/12/2018
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The community based controlling for the widely spread of dengue haemorhagic fever (DHF) in North Sumatra

Indra Chahaya, Devi Nuraini Santi, Novrial
Int. J. Biosci. 13(6), 1-12, December 2018.
Copyright Statement: Copyright 2018; The Author(s).
License: CC BY-NC 4.0

Abstract

The widely spread of the Dengue Haemorhagic Fever (DHF) in North Sumatra made a field work study on this topic was very important. It was reported that the Dengue Haemorhagic Fever (DHF) is an acute fever in 2 until 7 days with two or more manifestations such as headache, retro-orbital pain, mialgia, atralgia, skin rash, and haemorhagic manifestation. A case study of the Community Based Control was carried to know the responsible factors of the widely spread of DHF and the way of controlling its by applied Comunity Based Model. This study basically sought the influential factors of the widely spread of DHF such as rainfall, air humadity, air temperature, and wind velocity that might be possible to be anticipated by Community and government.  Thus, the effectiveness of Community Based Controlling Model was also presented. The combination of recorded cases and a field observation was proceeded  to the liniar regression test; so it was known that there was an association between air temperature and DHF case in Binjai Municipality 2011-2015 because the p value was 0,038 (p < 0.05). The association between wind velocity and DHF cases showed a strongly significant association (r = 0,899) and patterned positively.it is necessary to eradicate the mosquito breeding place in a high number of DHF case.

Achmadi UF. 2012. Basics of Environmental Based Disease. Jakarta: Rajawali Press.

Ali K. 2016. Study of Factors Caused Dengue Haemorrhagic Fever Case Study: Pasuruan, Jawa Timur Indonesia. Journal of Medical and Bioengineering 5(2), 108-112.

Dickerson CZ. 2007. The Effects Of Temperature And Humidity On The Eggs Of Aedes Aegypti (L.) And Aedes Albopictus (Skuse) In Texas. Dissertation Office of Graduate Studies of Texas A&M University.

Fan J. 2015. A Systematic Review and Meta-Analysis of Dengue Risk with Temperature Change. International Journal of Environmental Research and Public Health 12, 1-15. http://dx.doi.org/10.3390/ijerph120100001.

Guerdan BR. 2010. Dengue Fever/Dengue Hemorrhagic Fever. American Journal of Clinical Medicine 7(2), 51-53.

Harel D, Hadar F, Alik S1, Shelly G, Kobi Shilo. 2014. The Effect of Mean Daily Temperature and Relative Humidity on Pollen, Fruit Set and Yield of Tomato Grown in Commercial Protected Cultivation. Agronomy 2014, 4, 167-177. http://dx.doi.org/10.3390/agronomy4010167

Hii YL. 2013. Climate and Dengue Fever: Early warning based on temperature and rainfall. Department of Public Health and Clinical Medicine Epidemiology and Global Health Umeå University, Sweden.

José G. 1998. Dengue and dengue haemorrhagic fever. The Lancet 352(19).

Makara MWK, Ngumbi PM, Lee DK. 2015. Effects of Temperature on the Growth and Development of Culex pipiens Complex Mosquitoes (Diptera: Culicidae). IOSR Journal of Pharmacy and Biological Sciences 10(6), 01-10. http://dx.doi.org/10.9790/3008-10620110

Monika Sitepu S. 2013. Temporal Patterns And A Disease Forecasting Model Of Dengue Hemorrhagic Fever In Jakarta Based On 10 Years Of Surveillance Data. Southeast Asian Journal Tropical Medical Public Health 44(2).

Parajuli A. 2016. A Statistical Analysis of Wind Speed and Power Density Based on Weibull and Rayleigh Models of Jumla, Nepal. Energy and Power Engineering 8, 271-282. http://dx.doi.org/10.4236/epe.2016.87026

Rasham AM. 2016. Analysis of Wind Speed Data and Annual Energy Potential at Three locations in Iraq. International Journal of Computer Applications 137(11), 5-16.

Thammapalo S. 2005. The Climatic Factors Influencing  The Occurrence Of Dengue Hemorrhagic Fever In Thailand. Southeast Asian Journal Tropical Medical Public Health 36(1), 191-196.

WHO. 1997. Dengue hemorrhagic fever Diagnosis, treatment, prevention and control; Second Edition. WHO Library Cataloguing in Publication Data. England.

WHO. 2011. Comprehensive Guidelines for Prevention and Control of Dengue and Dengue Hemorrhagic Fever. World Health Organization, Regional Office for South-East Asia, Indraprastha Estate, New Delhi, India.

Yousif TA, Tahir HMM. 2013. The Relationship between Relative Humidity and the Dew point Temperature in Khartoum State, Sudan. Journal of Applied and Industrial Sciences 1(5), 20-23.

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