Control Experiment

Effect and economic cost of different intervention measures in Aedes albopictus control in residential areas:A comparative analysis

Expand
  • 1. Guangzhou Center for Disease Control and Prevention, Guangzhou, Guangdong 510440, China;
    2. Guangdong Huilimin Pest Control Engineering Co., Ltd, Guangzhou, Guangdong 510440, China

Received date: 2021-11-04

  Online published: 2022-10-14

Supported by

Guangzhou Health Science and Technology Project (No.20191A011055)

Abstract

Objective To investigate the control effect of different intervention measures on the density of Aedes albopictus in residential areas,and to provide a reference for usual control of Ae.albopictus.Methods From April to December 2019,a residential area in Guangzhou,China,was selected as the test site,which consisted of four relatively independent and homogeneous residential communities.The four communities were randomly set as control group (A),artificial breeding ground treatment group (B),group treated by Bacillus thuringiensis with mist spraying at breeding sites (C),and group treated by ultra-low volume spraying of pyrethroid insecticides to kill adult mosquitoes (D).Only mosquito monitoring were performed in the control group.Since April 11,the container index (CI) method and the mosq-ovitrap method were used to monitor the density of Ae.albopictus once every two weeks.The first treatment was conducted on May 23,and then different treatment methods were used every two weeks.The area of each treatment,the number of persons dispatched,the time spent on treatment,and the costs of insecticides were record everytime.CI and mosq-ovitrap index (MOI) were calculated,and an analysis of variance was used to compare the control effect of different intervention measures.Results Before treatment,there were no statistically significant differences between the four groups in CI (F=0.114,P=0.948) and MOI (F=0.005,P=0.999).After the first treatment for 14 days,there were statistically significant differences between the four groups in CI (F=602.371,P<0.001) and MOI (F=57.619,P=0.001).After treatment for 14 days,CI of the B group decreased rapidly from 94.29% to 3.70% and then maintained at a relatively low level (CI ≤ 3.70%),and in the D group,MOI decreased from high risk (23.00) to moderate risk (16.00).The cost of renting equipment for one treatment in the B,C,and D groups was 0.91,2.80,and 0.93 yuan/hm2,respectively.There was a difference in the economic cost required by the three intervention measures to reduce CI to low risk,with the lowest cost of 0.91 yuan/hm2 for the B group,and there was also a difference in the economic cost required to reduce MOI to low risk,with the lowest cost of 1.86 yuan/hm2 for the D group.Conclusion B group supplemented by C group can be used as the main measure for usual control of Ae.albopictus density in residential areas,so as to control the density of Ae.albopictus in an economic,environmentally friendly,and efficient manner.

Cite this article

LIU Jie, YUAN Jun, HE Shi-yu, LUO Ye-fei, LIANG Xue-ying, JANG Yi-min, CHEN Zong-qiu, HE Zheng, GAN Lu, HU Lai-gui, ZHAO Zheng-yang . Effect and economic cost of different intervention measures in Aedes albopictus control in residential areas:A comparative analysis[J]. Chinese Journal of Vector Biology and Control, 2022 , 33(5) : 753 -759 . DOI: 10.11853/j.issn.1003.8280.2022.05.026

References

[1] Gratz NG. Critical review of the vector status of Aedes albopictus[J]. Med Vet Entomol,2004,18(3):215-227. DOI:10.1111/j.0269-283X.2004.00513.x.
[2] Paupy C,Delatte H,Bagny L,et al. Aedes albopictus,an arbovirus vector:From the darkness to the light[J]. Microbes Infect,2009,11(14/15):1177-1185. DOI:10.1016/j.micinf.2009.05.005.
[3] 杨舒然,刘起勇.白纹伊蚊的全球分布及扩散趋势[J].中国媒介生物学及控制杂志,2013,24(1):1-4. Yang SR,Liu QY. Trend in global distribution and spread of Aedes albopictus[J]. Chin J Vector Biol Control,2013,24(1):1-4.(in Chinese)
[4] 陆宝麟.中国动物志.昆虫纲.第八卷.双翅目:蚊科(上卷)[M].北京:科学出版社,1997:243. Lu BL. Fauna Sinica Insecta Vol.8 Diptera:Culicidae 1[M]. Beijing:Science Press,1997:243.(in Chinese)
[5] 严子锵,胡志刚,江毅民,等.广州地区白纹伊蚊自然种群幼虫的分布特征[J].中国媒介生物学及控制杂志,2007,18(3):193-195. DOI:10.3969/j.issn.1003-4692.2007.03.005. Yan ZQ,Hu ZG,Jiang YM,et al. The larva distribution characteristics of Aedes albopictus population in Guangzhou[J]. Chin J Vector Biol Control,2007,18(3):193-195. DOI:10.3969/j.issn.1003-4692.2007.03.005.(in Chinese)
[6] 徐友祥,王韶华.室外废旧轮胎白纹伊蚊的越冬情况调查[J].中国媒介生物学及控制杂志,2006,17(3):175-176. DOI:10.3969/j.issn.1003-4692.2006.03.005. Xu YX,Wang SH. The hibernating investigation of Aedes albopictus in abandon and shabby tyre outdoor[J]. Chin J Vector Biol Control,2006,17(3):175-176. DOI:10.3969/j.issn.1003-4692.2006.03.005.(in Chinese)
[7] 杨思嘉,马晓,朱光锋,等.宁波市2016年白纹伊蚊越冬孳生地调查及影响因素分析[J].中国媒介生物学及控制杂志,2017,28(1):69-71. DOI:10.11853/j.issn.1003.8280.2017. 01.019. Yang SJ,Ma X,Zhu GF,et al. Analysis of the breeding sources of overwintering Aedes albopictus and influencing factors in Ningbo city,2016[J]. Chin J Vector Biol Control,2017,28(1):69-71. DOI:10.11853/j.issn.1003.8280.2017.01.019.(in Chinese)
[8] 曹敏,刘荣兴,江珊毅,等.上海浦东机场蚊幼孳生地的调查[J].中华卫生杀虫药械,2007,13(1):44-45. DOI:10.3969/j.issn.1671-2781.2007.01.014. Cao M,Liu RX,Jiang SY,et al. Investigation on mosquito larvae breeding sites at Pudong international airport of Shanghai[J]. Chin J Hyg Insec Equip,2007,13(1):44-45. DOI:10.3969/j.issn.1671-2781.2007.01.014.(in Chinese)
[9] 潘志明,严子锵,唐锡美,等.广州市蚊幼虫自然种群孳生状况的研究[J].中国媒介生物学及控制杂志,2003,14(5):351-353. DOI:10.3969/j.issn.1003-4692.2003.05.010. Pan ZM,Yan ZQ,Tang XM,et al. Study of the breeding state of the natural mosquito population in Guangzhou[J]. Chin J Vector Biol Control,2003,14(5):351-353. DOI:10.3969/j.issn.1003-4692.2003.05.010.(in Chinese)
[10] 林立辉,黄兆鹏,白志军,等.广东登革热媒介白纹伊蚊孳生容器类型及其防制效果研究[J].解放军预防医学杂志,2000,18(4):261-264. DOI:10.13704/j.cnki.jyyx.2000.04.010. Lin LH,Huang ZP,Bai ZJ,et al. Observation on breeding container types of vectorial Aedes albopictus of dengue and their control effects in Guangdong province[J]. J Prev Med Chin People's Liberation Army,2000,18(4):261-264. DOI:10. 13704/j.cnki.jyyx.2000.04.010.(in Chinese)
[11] Weaver SC,Reisen WK. Present and future arboviral threats[J]. Antiviral Res,2010,85(2):328-345. DOI:10.1016/j.antiviral. 2009.10.008.
[12] 叶建杰,胡利明,褚邵杰,等.登革热流行病学概况[J].中国预防医学杂志,2007,8(4):506-508. DOI:10.3969/j.issn.1009-6639.2007.04.077. Ye JJ,Hu LM,Chu SJ,et al. Epidemiological survey of dengue fever[J]. Chin Prev Med,2007,8(4):506-508. DOI:10.3969/j.issn.1009-6639.2007.04.077.(in Chinese)
[13] 潘志明,邱季春,陈小霜,等.广州市1995年登革热暴发流行特征分析[J].疾病监测,1997,12(12):445-447. Pan ZM,Qiu JC,Chen XS,et al. Epidemiological analysis on characteristics of a dengue fever outbreak,Guangzhou,1995[J]. Dis Surveill,1997,12(12):445-447.(in Chinese)
[14] 周端华,王鸣,邱季春,等.广州市2002年登革热爆发疫情流行病学特征分析[J].热带医学杂志,2004,4(5):559-562. DOI:10.3969/j.issn.1672-3619.2004.05.017. Zhou DH,Wang M,Qiu JC,et al. The epidemic situation analysis on the outbreak of dengue fever in Guangzhou in 2002[J]. J Trop Med,2004,4(5):559-562. DOI:10.3969/j.issn.1672-3619. 2004.05.017.(in Chinese)
[15] 罗雷,杨智聪,王玉林,等.广州市2006年登革热疫情流行病学特征分析[J].华南预防医学,2007,33(5):11-14. DOI:10.3969/j.issn.1671-5039.2007.05.004. Luo L,Yang ZC,Wang YL,et al. Analysis on characteristics of dengue fever epidemic in Guangzhou,2006[J]. South China J Prev Med,2007,33(5):11-14. DOI:10.3969/j.issn.1671-5039. 2007.05.004.(in Chinese)
[16] 刘杰,方艳,黄喜明,等. 2010-2014年广东省登革热突发公共卫生事件监测信息与防控对策分析[J].华南预防医学,2017,43(2):132-135. DOI:10.13217/j.scjpm.2017.0132. Liu J,Fang Y,Huang XM,et al. Control strategies and surveillance of emergent public health events of dengue fever in Guangdong province,2010-2014[J]. South China J Prev Med,2007,43(2):132-135. DOI:10.13217/j.scjpm.2017.0132.(in Chinese)
[17] 刘杰,黄加豪,肖晓玲,等.越秀区白纹伊蚊密度监测结果分析[J].中华卫生杀虫药械,2017,23(4):340-344. DOI:10.19821/j.1671-2781.2017.04.014. Liu J,Huang JH,Xiao XL,et al. Analysis on the monitoring results of Aedes albopictus density in Yuexiu district[J]. Chin J Hyg Insect Equip,2017,23(4):340-344. DOI:10.19821/j.1671-2781.2017.04.014.(in Chinese)
[18] 刘杰,吴俊秋,李剑森,等.广东省一起工地登革热暴发疫情调查处置[J].中国媒介生物学及控制杂志,2016,27(1):80-83. DOI:10.11853/j.issn.1003.4692.2016.01.026. Liu J,Wu JQ,Li JS,et al. Investigation and response of the dengue outbreak on a construction site in Guangdong province[J]. Chin J Vector Biol Control,2016,27(1):80-83. DOI:10.11853/j.issn.1003.4692.2016.01.026.(in Chinese)
[19] 严子锵,胡志刚,江毅民,等.广州市登革热媒介的监测分析[J].中华卫生杀虫药械,2010,16(1):42-44. DOI:10.19821/j.1671-2781.2010.01.016. Yan ZQ,Hu ZG,Jiang YM,et al. Surveillance for the vector of dengue fever in Guangzhou[J]. Chin J Hyg Insect Equip,2010,16(1):42-44. DOI:10.19821/j.1671-2781.2010.01.016.(in Chinese)
[20] 邹钦.广东省2014年登革热疫情防控实践与思考[J].中华卫生杀虫药械,2015,21(6):630-632. DOI:10.19821/j.1671-2781.2015.06.029. Zou Q. Practice and thinking for dengue fever epidemic prevention and control of Guangdong province in 2014[J]. Chin J Hyg Insect Equip,2015,21(6):630-632. DOI:10.19821/j.1671-2781.2015.06.029.(in Chinese)
[21] Marini F,Caputo B,Pombi M,et al. Study of Aedes albopictus dispersal in Rome,Italy,using sticky traps in mark-release-recapture experiments[J]. Med Vet Entomol,2010,24(4):361-368. DOI:10.1111/j.1365-2915.2010.00898.x.
[22] 林立丰,卢文成,蔡松武,等.新型登革热媒介监测诱蚊诱卵器的设计及效果研究[J].中国媒介生物学及控制杂志,2005,16(1):26-28. DOI:10.3969/j.issn.1003-4692.2005.01.009. Lin LF,Lu WC,Cai SW,et al. The design and efficacy observation of new mosq-ovitrap for monitoring of vector of dengue fever[J]. Chin J Vector Biol Control,2005,16(1):26-28. DOI:10.3969/j.issn.1003-4692.2005.01.009.(in Chinese)
[23] 广州市爱国卫生运动委员会.广州市蚊媒密度分级及响应工作指引(2019年版)[Z].广州:广州市爱国卫生运动委员会办公室,2019:1-12. Guangzhou Patriotic Health Campaign Committee. Guidelines for mosquito density classification and response in Guangzhou (2019)[Z]. Guangzhou:Guangzhou Patriotic Health Campaign Committee Office,2019:1-12.
[24] Suter TT,Flacio E,Fariña BF,et al. Surveillance and control of Aedes albopictus in the Swiss-Italian border region:Differences in egg densities between intervention and non-intervention areas[J]. PLoS Negl Trop Dis,2016,10(1):e0004315. DOI:10.1371/journal.pntd.0004315.
[25] 徐仁权,徐宏,李洪宝,等.居民区控制登革热媒介蚊虫的方法与效果探索[J].中国媒介生物学及控制杂志,2008,19(4):287-290. DOI:10.3969/j.issn.1003-4692.2008.04.004. Xu RQ,Xu H,Li HB,et al. Study on the control methods and control effect of the vector of dengue fever in residential area in Shanghai[J]. Chin J Vector Biol Control,2008,19(4):287-290. DOI:10.3969/j.issn.1003-4692.2008.04.004.(in Chinese)
[26] Abeyewickreme W,Wickremasinghe AR,Karunatilake K,et al. Community mobilization and household level waste management for dengue vector control in Gampaha district of Sri Lanka;an intervention study[J]. Pathog Glob Health,2012,106(8):479-487. DOI:10.1179/2047773212Y.0000000060.
[27] Sun DB,Williges E,Unlu I,et al. Taming a tiger in the city:Comparison of motorized backpack applications and source reduction against the Asian tiger mosquito,Aedes albopictus[J]. J Am Mosq Control Assoc,2014,30(2):99-105. DOI:10.2987/13-6394.1.
[28] 胡志刚,严子锵,江毅民,等.广州市近年来登革热及其媒介防治情况分析[J].中华卫生杀虫药械,2009,15(5):375-378. DOI:10.19821/j.1671-2781.2009.05.012. Hu ZG,Yan ZQ,Jiang YM,et al. Analysis on the dengue fever and its vector control in Guangzhou city in recent years[J]. Chin J Hyg Insect Equip,2009,15(5):375-378. DOI:10.19821/j.1671-2781.2009.05.012.(in Chinese)
[29] 林岩,张山鹰,许龙善,等.福建省登革热流行影响因素的logistic回归分析[J].海峡预防医学杂志,2009,15(5):4-6. Lin Y,Zhang SY,Xu LS,et al. Study on epidemiological factors of dengue fever by logistic regression analysis in Fujian[J]. Strait J Prev Med,2009,15(5):4-6.(in Chinese)
[30] 陈平华,张萌,钟新光,等.东莞市首起社区登革热暴发疫情流行病学调查[J].皖南医学院学报,2012,31(1):63-65. DOI:10.3969/j.issn.1002-0217.2012.01.021. Chen PH,Zhang M,Zhong XG,et al. Epidemiological investigation on the first outbreak of dengue fever in a community of Dongguan city[J]. Acta Acad Med Wannan,2012,31(1):63-65. DOI:10.3969/j.issn.1002-0217.2012.01.021.(in Chinese)
[31] 徐建敏,梁雪莹,严子锵,等.白纹伊蚊对3种拟除虫菊酯类杀虫剂的抗药性调查[J].中华卫生杀虫药械,2014,20(5):439-440,443. DOI:10.19821/j.1671-2781.2014.05.014. Xu JM,Liang XY,Yan ZQ,et al. Resistance of Aedes albopictus to three pyrethroids insecticides[J]. Chin J Hyg Insectic Equip,2014,20(5):439-440,443. DOI:10.19821/j.1671-2781.2014. 05.014.(in Chinese)
[32] 蔡松武,林立丰,段金花,等.广东省白纹伊蚊抗药性现状与抗性治理对策[J].中国媒介生物学及控制杂志,2006,17(4):274-276. DOI:10.3969/j.issn.1003-4692.2006.04.005. Cai SW,Lin LF,Duan JH,et al. Resistance of Aedes albopictus to insecticides and it's resistance management in Guangdong province[J]. Chin J Vector Biol Control,2006,17(4):274-276. DOI:10.3969/j.issn.1003-4692.2006.04.005.(in Chinese)
[33] 周毅彬,赵彤言,冷培恩.孳生地治理对控制白纹伊蚊效果的研究[J].中国媒介生物学及控制杂志,2009,20(1):3-6. Zhou YB,Zhao TY,Leng PE. Evaluation on the control efficacy of source reduction to Aedes albopictus in Shanghai,China[J]. Chin J Vector Biol Control,2009,20(1):3-6.(in Chinese)
[34] Abramides GC,Roiz D,Guitart R,et al. Effectiveness of a multiple intervention strategy for the control of the tiger mosquito (Aedes albopictus) in Spain[J]. Trans Roy Soc Trop Med Hyg,2011,105(5):281-288. DOI:10.1016/j.trstmh.2011.01.003.
Outlines

/