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遥感技术在蚊媒传染病研究中的应用进展

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  • 1 中国科学院南京地理与湖泊研究所, 江苏 南京 210008;
    2 江苏省疾病预防控制中心
何隆华, 男, 博士, 副研究员, 主要从事遥感作物监测、医学地理及“3S”应用等。 Email: lhhe@niglas.ac.cn

收稿日期: 2013-10-23

  网络出版日期: 2014-04-20

基金资助

国家自然科学基金(41271418)

Application of remote sensing technology in researchon mosquito?borne diseases: a review

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  • 1 Nanjing Institute of Geography and Limnology, CAS, Nanjing 210008, Jiangsu Province, China;
    2 Jiangsu Center for Disease Control and Prevention

Received date: 2013-10-23

  Online published: 2014-04-20

摘要

蚊媒传染病是影响人类健康的主要疾病之一, 长期以来是疾病预防与控制领域的热点与难点问题。遥感技术在蚊媒传染病研究中有过许多成功的应用。利用遥感可以监测蚊虫栖息地的分布, 预测蚊媒病的发生、发展规律。该文回顾了基于光学、微波传感器卫星遥感用于蚊媒病研究的进展, 并结合目前存在问题探讨了遥感研究蚊媒病的前景。

关键词: 蚊媒病; 遥感; 应用; 进展

本文引用格式

何隆华, 周明浩, 褚宏亮, 杨维芳, 张细燕 . 遥感技术在蚊媒传染病研究中的应用进展[J]. 中国媒介生物学及控制杂志, 2014 , 25(2) : 184 -188 . DOI: 10.11853/j.issn.1003.4692.2014.02.028

Abstract

As one group of the important diseases affecting human health, mosquito?borne diseases have long been the difficult problems in disease control and prevention. With remote sensing (RS) technology, which has been successfully applied many times in the research on mosquito?borne diseases, the distribution of mosquito habitats can be monitored, and the development and progression of these diseases can be predicted. This paper reviews the progress in the application of optical satellite RS and passive and active microwave RS in the research on mosquito?borne diseases, and it also discusses the prospect of mosquito-borne disease research based on RS technology given the existing problems.

参考文献

[1] 刘起勇. 气候变化对媒介生物性传染病的影响[J]. 中华卫生杀虫药械, 2013, 19(1):1-12.
[2] 王五一, 杨林生, 李海蓉. 我国的环境变化与健康风险[J]. 科学对社会的影响, 2007(4):22-28.
[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.
[4] World Health Organization. World malaria report 2011
[R]. Geneva:WHO, 2011.
[5] 中国疾病预防控制中心公共卫生监测和信息服务中心. 2006年12月甲乙类传染病报告[J]. 疾病监测, 2007, 22(1):1-4.
[6] Haque U, Magalhaes RJ, Reid HL, et al. Spatial prediction of malaria prevalence in an endemic area of Bangladesh[J]. Malar J, 2010, 9(1):120-125.
[7] 易彬樘, 徐德忠, 张治英, 等. 联合使用SRS、GIS与PCA研究登革热及媒介分布[J]. 疾病控制杂志, 2003, 7(6):509-514.
[8] 张小萍, 金小林, 杨国静, 等. 江苏省疟疾流行态势的空间分析[J]. 中国人兽共患病杂志, 2002, 18(1):120-121.
[9] 周晓农, 胡晓抒. 信息技术与卫生信息系统的发展[J]. 中国寄生虫学与寄生虫病杂志, 2003, 21(1):6-8.
[10] 苏永强, 张志英, 徐德忠, 等. 运用空间局部内插研究海南省疟疾空间分布特征[J]. 中华流行病学杂志, 2003, 24(4):269-271.
[11] 于国伟, 汤林华. 遥感地理信息系统技术在疟疾研究中的应用 [J]. 中国寄生虫学与寄生虫病杂志, 2004, 22(2):119-121.
[12] 戚晓鹏, 吕繁, 何武. 地理信息系统在流行病中的应用及开发[J].中华流行病学杂志, 2004, 25(11):997-999.
[13] 杨德平, 郭家钢. 应用遥感技术快速确定钉螺孳生地[J]. 国际医学寄生虫病杂志, 2006, 33(5):268-272.
[14] 牛红峰, 郭家钢. 地理信息系统和遥感在人类健康和流行病学中的应用[J]. 国际医学寄生虫病杂志, 2006, 33(4):188-190.
[15] 李婵娟, 李维民. 遥感和地理信息系统在流行病学领域中的应用[J]. 卫生研究, 2007, 36(3):398-399.
[16] 李静, 牟婵, 胡崇伟, 等. 遥感技术在虫媒传播疾病监测中的应用[J]. 中国兽医杂志, 2009, 45(11):44-46.
[17] 杨林生, 李海蓉, 李永华, 等. 医学地理和环境健康研究的主要领域与进展[J]. 地理科学进展, 2010, 29(1):31-44.
[18] Cline BL. New eyes for epidemiologists:aerial photography and other remote sensing techniques[J]. Am J of Epide, 1970, 92(2):85-89.
[19] Wagner VE, Hill?Rowley R, Narlock SA, et al. Remote sensing: a rapid and accurate method of data acquisition for a newly formed mosquito control district[J]. Mosq News, 1979, 39(2):283-287.
[20] Fleetwood SC, Chambers MD, Terracina L. An effective and economical mapping system for the monitoring of Psorphora columbiae in rice and fallow fields in southwestern Louisiana[J]. Mosq News, 1981(41):174-177.
[21] Welch JB, Olson JK, Yates MM, et al. Use of aerial color IR as a survey tech?nique for Psorophora columbiae oviposition habitats in Texas(USA) ricelands[J]. J Am Mosq Control Assoc, 1989, 5(2):147-160.
[22] 王晓东, 赵彤言. 3S技术简介及在研究蚊及蚊媒传染病分布和控制中的应用[J]. 中国媒介生物学及控制杂志, 2004, 15(3):241-244.
[23] 王晓东, 刘美德, 宋锋林, 等. 应用遥感及地理信息系统技术研究水稻种植区蚊虫分布和地理景观因素之间的关系[J]. 中国媒介生物学及控制杂志, 2008, 19(5):396-399.
[24] Hayes RO, Maxwell EL, Mitchell CI, et al. Detection, identification, and classification of mosquito larval habitats using remote sensing scanners in earth?orbiting satellites[J]. Bull WHO, 1985, 63(2):361-374.
[25] Wood BL, Washino R, Beck L, et al. Distinguishing high and low anopheline?producing rice fields using remote sensing and GIS technologies[J]. Prevent Vet Med, 1991, 11(3):277-288.
[26] Wood BL, Beck L, Washino R, et al. Spectral and spatial characterization of rice field mosquito habitat[J]. Int J RS, 1991, 12(4):621-626.
[27] Wood BL, Beck L, Washino R, et al. Estimating high mosquito?producing rice fields using spectral and spatial data[J]. Int J RS, 1992, 13(5):2813-2826.
[28] Wood BL, Beck L, Dister S, et al. Global monitoring and disease prediction program[J]. Sistema Terra, 1994, 3(1):38-39.
[29] Linthicum KJ, Bailey CL, Davies FG, et al. Detection of rift valley fever viral activity in Kenya by satellite remote sensing imagery[J]. Science, 1987, 235(4):1656-1659.
[30] Linthicum KJ, Bailey C, Tucker C, et al. Application of polar?orbiting meteorological satellite data to detect flooding in rift valley fever virus vector mosquito habitats in Kenya[J]. Med Vet Entomol, 1990, 4(4):433-438.
[31] Linthicum KJ, Bailey C, Tucker C, et al. Towards real?time prediction of Rift Valley fever epidemics in Africa[J]. Prevent Vet Med, 1991, 11(1):325-334.
[32] 杨国静, 周晓农, Malone JB, 等. 多因素空间复合模型预测我国疟疾流行态势[J]. 中国寄生虫学与寄生虫病杂志, 2002, 20(3):145-147.
[33] 杨国静, 周晓农, Malone JB, 等. 江苏省疟疾流行地理信息系统预测模型的研究[J]. 中华预防医学杂志, 2002, 36(2):103-105.
[34] 易彬樘, 徐德忠, 张治英, 等. 广东省伊蚊密度与AVHRR卫星图像中植被指数的关系[J]. 第四军医大学学报, 2003, 24(18):1720-1724.
[35] 易彬樘, 徐德忠. RS在蚊媒传染病监测中的应用及发展现状[J].中国公共卫生, 2004, 19(3):355-357.
[36] 温亮, 徐德忠, 王善青, 等. 卫星遥感植被指数与海南省疟疾流行地区分布的相关性研究[J]. 中华流行病学杂志, 2005, 26(4) :263-267.
[37] Beck LR, Rodriguez MH, Dister SW, et al. Remote?sensing as a landscape epidemiologic tool to identify villages at high?risk for malaria transmission[J]. Am J Trop Med Hyg, 1994, 51(3):271-280.
[38] Beck LR, Lobitz BM, Wood BL. Remote sensing and human health: new sensors and new opportunities[J]. Emerg Infect Dis, 2000(6):217-227.
[39] Sharma VP, Dhiman RC, Ansari MA, et al. Study on the feasibility of delineating mosquitogenic conditions in and around Delhi using Indian remote sensing satellite data[J]. Indian J Malar, 1996, 33(3):107-125.
[40] Brown HE, Diuk?Wasser MA, Guan YT, et al. Comparison of three satellite sensors at three spatial scales to predict larval mosquito presence in Connecticut wetlands[J]. RS Env, 2008(112):2301-2308.
[41] Rejmánková E, Roberts DR, Pawley A, et al. Predictions of adult Anopheles albimanus densities in villages based on distance to remotely sensed larval habitats[J]. Am J Trop Meg Hyg, 1995, 53(5):482-488.
[42] Masuoka PM, Claborn DM, Andre RG, et al. Use of IKONOS and Landsat for malaria control in the Republic of Korea[J]. RS Env, 2003, 88(1):187-194.
[43] Jacob BG, Griffith D, Muturi E, et al. Describing Anopheles arabiensis aquatic habitats in two Riceland agro?ecosystems in Mwea, Kenya using a negative binomial regression model with a non?homogenous mean[J]. Acta Tropica, 2009, 109(1):17-26.
[44] Chuang TW, Henebry GM, Kimball GS, et al. Satellite microwave remote sensing for environmental modeling of mosquito population dynamics[J]. Remote Sens Env, 2012(125):147-156.
[45] Kaya S, Pultz TJ, Mbogo CM, et al. The Use of radar remote sensing for identifying environmental factors associated with malaria risk in coastal Kenya, Inter Geos and RS Symp (IGARSS’02)[C].Toronto:IEEE International, 2002.
[46] Pope KO, Sheffner EJ, Linthicum KJ, et al. Identification of central Kenyan rift valley fever virus vector habitats with landsat TM and evaluation of their flooding status with airborne imaging radar[J]. RS Env, 1992, 40(7):185-196.
[47] Pope KO, Rejmánková E, Savage HM, et al. Remote sensing of tropical wetlands for malaria control in Chiapas, Mexico[J]. Eco App, 1993, 4(1):81-90.
[48] 刘美德, 王学忠, 赵彤言, 等. 云南南部地区三带喙库蚊与伪杂鳞库蚊种群与环境因素关系的地理信息系统分析[J]. 寄生虫与医学昆虫学报, 2007, 14(2):98-103.
[49] 李森, 陶海燕, 秦雁, 等. 基于遥感与地理信息技术的登革热环境风险因子标识[J]. 中华疾病控制杂志, 2010, 14(9):869-873.
[50] 刘美德, 王学忠, 赵彤言, 等. 云南省中华按蚊、杰普尔按蚊种群与环境因素关系的地理信息系统分析[J]. 中国媒介生物学及控制杂志, 2008, 19(4):275-279.
[51] 毕艳, 王金亮, 张再兴. 3S技术在疟疾预防与控制中的应用[J].中国寄生虫病防治杂志, 2004, 17(3):186-188.
[52] 魏庆宽, 张清国, 黄炳成. 地理信息系统在疟疾控制研究中的应用[J]. 中国媒介生物学及控制杂志, 2010, 21(4):391-394.
[53] 宫鹏, 徐冰, 梁松. 用遥感和地理信息系统研究传染病时空分布[J]. 中国科学(C辑), 2006, 36(2):184-192.
[54] 王丽萍, 金水高. GIS空间分析技术在疟疾研究中的应用[J]. 中国公共卫生, 2008, 24(6):745-747.
[55] 吴崧霖, 王德全. GIS 和 RS 技术在蚊媒传染病研究中的应用进展[J]. 实用预防医学, 2012, 19(1):157-160.
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