[Effect of integrated control of schistosomiasis in Shashi District from 2009 to 2013].
Jinming Liu, Xian-chao Liao
Abstract
Jinming Liu, Xian-chao Liao
Abstract
OBJECTIVE: To evaluate the effect of integrated schistosomiasis control in Shashi District from 2009 to 2013, so as to provide the evidence for the development and adjustment of schistosomiasis control strategies. METHODS: The data of integrated schistosomiasis control from 2009 to 2013 were collected and analyzed for the epidemic situations of human, livestock and Oncomelania hupensis snails. RESULTS: From 2009 to 2013, the infection rates of human and cattle decreased from 2.24% and 1.92% to 0.63% and 0, with decrease rates of 71.88% and 100%, respectively; the area with snails decreased from 760.40 hm2 to 715.08 hm2, with a decrease rate of 5.69%; the occurrence rate of frames with living snails and the average density of living snails decreased from 26.32% and 0.67 snail/0.1 m2 to 18.30% and 0.53 snail/0.1 mi2, with decrease rates of 30.47% and 20.90%, respectively. No infected living snails were found from 2012 to 2013. CONCLUSION: The integrated schistosomiasis prevention and control strategies with emphasis on infectious source control could effectively reduce the infection rates of human and cattle as well as the snail situation.
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OBJECTIVE: To evaluate the effect of integrated schistosomiasis control in Shashi District from 2009 to 2013, so as to provide the evidence for the development and adjustment of schistosomiasis control strategies. METHODS: The data of integrated schistosomiasis control from 2009 to 2013 were collected and analyzed for the epidemic situations of human, livestock and Oncomelania hupensis snails. RESULTS: From 2009 to 2013, the infection rates of human and cattle decreased from 2.24% and 1.92% to 0.63% and 0, with decrease rates of 71.88% and 100%, respectively; the area with snails decreased from 760.40 hm2 to 715.08 hm2, with a decrease rate of 5.69%; the occurrence rate of frames with living snails and the average density of living snails decreased from 26.32% and 0.67 snail/0.1 m2 to 18.30% and 0.53 snail/0.1 mi2, with decrease rates of 30.47% and 20.90%, respectively. No infected living snails were found from 2012 to 2013. CONCLUSION: The integrated schistosomiasis prevention and control strategies with emphasis on infectious source control could effectively reduce the infection rates of human and cattle as well as the snail situation.
Key concepts: Oncomelania hupensis, Snail, Schistosomiasis, Oncomelania, Infection rate, Biology, Schistosoma, Veterinary medicine