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dc.contributor.advisor蔡志偉zh_TW
dc.contributor.advisorChi-Wei Tsaien
dc.contributor.author黃大綱zh_TW
dc.contributor.authorDa-Gang Huangen
dc.date.accessioned2025-08-22T16:08:30Z-
dc.date.available2025-08-23-
dc.date.copyright2025-08-22-
dc.date.issued2025-
dc.date.submitted2025-08-08-
dc.identifier.citation蔡坤憲。「地下家蚊 (Culex pipiens molestus) 在臺灣之分佈及生態特性之探討」。碩士論文,東海大學生物研究所,1998。https://hdl.handle.net/11296/4kg6hj。
American Heartworm Society. Canine guidelines for the prevention, diagnosis, and management of heartworm (Dirofilaria immitis) infection in dogs. American Heartworm Society. 2024
Anvari D, Narouei E, Daryani A, Sarvi S, Moosazadeh M, Hezarjaribi HZ, et al. The global status of Dirofilaria immitis in dogs: a systematic review and meta-analysis based on published articles. Res Vet Sci. 2020; 131:104-16.
Aung ST, Bawm S, Chel HM, Htun LL, Wai SS, Eshita Y, et al. The first molecular confirmation of Culex pipiens complex as potential natural vectors of Dirofilaria immitis in Myanmar. Med Vet Entomol. 2023;37 3:542-9.
Azari‐hamidian S, Yaghoobi‐Ershadi M, Javadian E, Abai M, Mobedi I, Linton YM, et al. Distribution and ecology of mosquitoes in a focus of dirofilariasis in northwestern Iran, with the first finding of filarial larvae in naturally infected local mosquitoes. Med Vet Entomol. 2009;23 2:111-21.
Bagger MS, Hagadorn KA, Misencik MJ, Arent S, Povelones M, McMillan JR, et al. Filarial parasite infection prevalence in field-caught mosquitoes from Connecticut, United States. J Med Entomol. 2025;62 2:428-434.
Becker N, Petric D, Zgomba M, Boase C, Madon M, Dahl C, et al. Mosquitoes and their control. Springer Science & Business Media; 2010.
Biggerstaff B. PooledInfRate, Version 4.0: a Microsoft® Office Excel© Add-In to compute prevalence estimates from pooled samples. Centers for Disease Control and Prevention, Fort Collins, CO. 2009. https://www.cdc.gov/mosquitoes/php/toolkit/mosquito-surveillance-software.html
Bonizzoni M, Gasperi G, Chen X, James AA. The invasive mosquito species Aedes albopictus: current knowledge and future perspectives. Trends Parasitol. 2013;29 9:460-8.
Bolling BG, Barker CM, Moore CG, Pape WJ, Eisen L. Seasonal patterns for entomological measures of risk for exposure to Culex vectors and West Nile virus in relation to human disease cases in northeastern Colorado. J Med Entomol. 2009;46 6:1519-31.
Bourguinat C, Keller K, Bhan A, Peregrine A, Geary T, Prichard R. Macrocyclic lactone resistance in Dirofilaria immitis. Vet Parasitol. 2011;181 2-4:388-92.
Brown HE, Harrington LC, Kaufman PE, McKay T, Bowman DD, Nelson CT, et al: Key factors influencing canine heartworm, Dirofilaria immitis, in the United States. Springer; 2012.
Cancrini G, Di Regalbono AF, Ricci I, Tessarin C, Gabrielli S, Pietrobelli M. Aedes albopictus is a natural vector of Dirofilaria immitis in Italy. Vet Parasitol. 2003;118 3-4:195-202.
Cancrini G, Magi M, Gabrielli S, Arispici M, Tolari F, Dell’Omodarme M, et al. Natural vectors of dirofilariasis in rural and urban areas of the Tuscan region, central Italy. J Med Entomol. 2006;43 3:574-9.
Cancrini G, Scaramozzino P, Gabrielli S, Paolo MD, Toma L, Romi R. Aedes albopictus and Culex pipiens implicated as natural vectors of Dirofilaria repens in central Italy. J Med Entomol. 2007;44 6:1064-6.
CDC, Guidelines for West Nile Virus Surveillance and Control. 2024. https://www.cdc.gov/west-nile-virus/php/surveillance-and-control-guidelines/index.html
Chambers EW, McClintock SK, Avery MF, King JD, Bradley MH, Schmaedick MA, et al. Xenomonitoring of Wuchereria bancrofti and Dirofilaria immitis infections in mosquitoes from American Samoa: trapping considerations and a comparison of polymerase chain reaction assays with dissection. Am J Trop Med Hyg. 2009;80 5:774-81.
Chang HC, Wu YC, Huang SC, Wang CW, Chu Y. Human Pulmonary Dirofilariasis: Report of a Case. Formos J Surg. 2011;44 1:18-21.
Cheong WH, Mak JW, Naidu S, Mahadevan S. Armigeres subalbatus incriminated as an important vector of the dog heartworm Dirofilaria immitis and the bird Cardiofilaria in urban Kuala Lumpur. Southeast Asian J Trop Med Public Health. 1981;12 4:611-2.
Chou CH, Yeh TM, Lu YP, Shih WL, Chang CD, Chien CH, et al. Prevalence of zoonotic pathogens by molecular detection in stray dogs in central Taiwan. Thai J Vet Med. 2014;44 3:363-75.
Colborn JM, Smith KA, Townsend J, Damian D, Nasci RS, Mutebi J-P. West Nile virus outbreak in Phoenix, Arizona—2010: entomological observations and epidemiological correlations. J Am Mosq Control Assoc. 2013;29 2:123.
Cuervo PF, Rinaldi L, Cringoli G. Modeling the extrinsic incubation of Dirofilaria immitis in South America based on monthly and continuous climatic data. Vet Parasitol. 2015;209 1-2:70-5.
Dantas-Torres F, Otranto D. Overview on Dirofilaria immitis in the Americas, with notes on other filarial worms infecting dogs. Vet Parasitol. 2020; 282:109113.
Eldridge BF, Edman JD. Medical entomology: a textbook on public health and veterinary problems caused by arthropods. Springer Science & Business Media; 2012.
Fan CK, Su KE, Lin YH, Liao CW, Du WY, Chiou HY. Seroepidemiologic survey of Dirofilaria immitis infection among domestic dogs in Taipei City and mountain aboriginal districts in Taiwan (1998–1999). Vet Parasitol. 2001;102 1-2:113-20.
Feng TH, Chou CC, Yeh TM, Su YC, Lu YP, Shih WL, et al. Molecular prevalence of zoonotic pathogens in pet and stray dogs in southern Taiwan. Thai J Vet Med. 2015;45 4:509-22.
Ferreira CAC, de Pinho Mixão V, Novo MTLM, Calado MMP, Gonçalves LAP, Belo SMD, et al. First molecular identification of mosquito vectors of Dirofilaria immitis in continental Portugal. Parasites Vectors. 2015;8 1:1-11.
Fortin J, Slocombe J. Temperature requirements for the development of Dirofilaria immitis in Aedes triseriatus and Ae. vexans. Mosq News. 1981;4 625–633.
Genchi C, Kramer LH. The prevalence of Dirofilaria immitis and D. repens in the Old World. Vet Parasitol. 2020; 280:108995.
Giangaspero A, Marangi M, Latrofa MS, Martinelli D, Traversa D, Otranto D, et al. Evidences of increasing risk of dirofilarioses in southern Italy. Parasitol Res. 2013; 112:1357-61.
Gu W, Lampman R, Novak RJ. Problems in estimating mosquito infection rates using minimum infection rate. J Med Entomol. 2003;40 5:595-6.
Holderman C, Abruzzo NO, Abdelsamad NA, Kaufman PE, DiGennaro PM. Collection and DNA detection of Dirofilaria immitis (Rhabditida Onchocercidae), using a novel primer set, in wild-caught mosquitoes from Gainesville, FL. J Med Entomol. 2021;58 3:1429-32.
Huang S, Smith DJ, Molaei G, Andreadis TG, Larsen SE, Lucchesi EF. Prevalence of Dirofilaria immitis (Spirurida: Onchocercidae) infection in Aedes, Culex, and Culiseta mosquitoes from north San Joaquin Valley, CA. J Med Entomol. 2013;50 6:1315-23.
Hsiao YH, Feng JY, Wu YC, Yeh YC, Lee YC, Chiu CH. Human Pulmonary Dirofilariasis Coexisting with Lung Cancer. Thorac Med. 2014; 29: 85-91.
Khanzadeh F, Khaghaninia S, Maleki-Ravasan N, Koosha M, Oshaghi MA. Molecular detection of Dirofilaria spp. and host blood-meal identification in the Simulium turgaicum complex (Diptera: Simuliidae) in the Aras River Basin, northwestern Iran. Parasites Vectors. 2020; 13:1-9.
Konishi E. Culex tritaeniorhynchus and Aedes albopictus (Diptera: Culicidae) as natural vectors of Dirofilaria immitis (Spirurida: Filariidae) in Miki city, Japan. J Med Entomol. 1989;26 4:294-300.
Konishi E. Susceptibility of Aedes albopictus and Culex tritaeniorhynchus (Diptera: Culicidae) collected in Miki City, Japan, to Dirofilaria immitis (Spirurida: Filariidae). J Med Entomol. 1989;26 5:420-4.
Lai CH, Tung KC, Ooi HK, Wang JS. Competence of Aedes albopictus and Culex quinquefasciatus as vector of Dirofilaria immitis after blood meal with different microfilarial density. Vet Parasitol. 2000;90 3:231-7.
Lai CH, Tung KC, Ooi HK, Wang JS. Susceptibility of mosquitoes in central Taiwan to natural infections of Dirofilaria immitis. Med Vet Entomol. 2001;15 1:64-7.
Ledesma N, Harrington L. Mosquito vectors of dog heartworm in the United States: vector status and factors influencing transmission efficiency. Top Companion Anim Med. 2011;26 4:178-85.
Ledesma N, Harrington L. Fine-scale temperature fluctuation and modulation of Dirofilaria immitis larval development in Aedes aegypti. Vet Parasitol. 2015;209 1-2:93-100.
Lee SE, Kim HC, Chong ST, Klein TA, Lee WJ. Molecular survey of Dirofilaria immitis and Dirofilaria repens by direct PCR for wild caught mosquitoes in the Republic of Korea. Vet Parasitol. 2007;148 2:149-55.
Lee YS, Huang CD, Yu CT, Wang CW, Kuo HP. Solitary Pulmonary Nodule Due to Dirofilariasis: A Case Report and Case Review in Taiwan. Thorac Med. 2010; 25: 203-210.
Licitra B, Chambers EW, Kelly R, Burkot TR. Detection of Dirofilaria immitis (Nematoda: Filarioidea) by polymerase chain reaction in Aedes albopictus, Anopheles punctipennis, and Anopheles crucians (Diptera: Culicidae) from Georgia, USA. J Med Entomol. 2010;47 4:634-8.
Lien JC. Pictorial keys to the mosquitoes of Taiwan. Yi Hsien Publishing Co., Ltd.
2004; 178 pp.
Lien JC, Wu TN, Lin CH, Lin CC, Weng MH. Occurrence of Culex pipiens issp. molestus Forskal, 1775 in northern Taiwan. Chin J Parasitol. 1996; 9:19-26.
Lin SL, Huang CY, Wang PJ, Chi CH. Survey of heartworm-infested dogs in Taipei City Zoo. Taipei Zoo Bulletin. 1999; 11:49-53.
Lin TH, Lu LC. Population fluctuation of Culex tritaeniorhynchus in Taiwan. Formosan Entomol. 1995; 15:1-9.
Livingston IG, Gregory TM, Hawkins EC, Cave A, Loyola A, Vaden SL, et al. Molecular discovery of filarial nematode DNA in an endangered wild Pinniped (Galapagos Sea Lion, Zalophus wollebaeki). Ecol Evol. 2024;14 11: e70596.
Lu TL, Wong JY, Tan TL, Hung YW. Prevalence and epidemiology of canine and feline heartworm infection in Taiwan. Parasites Vectors. 2017; 10:7-15.
Luis AD, Kuenzi AJ, Mills JN. Species diversity concurrently dilutes and amplifies transmission in a zoonotic host–pathogen system through competing mechanisms. Proc Natl Acad Sci U S A. 2018;115 31:7979-84.
Masetti A, Rivasi F, Bellini R. Mosquito-based survey for the detection of flaviviruses and filarial nematodes in Aedes albopictus and other anthropophilic mosquitoes collected in northern Italy. New Microbiol. 2008;31 4:457-65.
Mckay T, Bianco T, Rhodes L, Barnett S. Prevalence of Dirofilaria immitis (Nematoda: Filarioidea) in mosquitoes from northeast Arkansas, the United States. J Med Entomol. 2013;50 4:871-8.
Montarsi F, Ciocchetta S, Devine G, Ravagnan S, Mutinelli F, Frangipane di Regalbono A, et al. Development of Dirofilaria immitis within the mosquito Aedes (Finlaya) koreicus, a new invasive species for Europe. Parasites Vectors. 2015; 8:1-9.
Morchón R, Carretón E, González-Miguel J, Mellado-Hernández I. Heartworm disease (Dirofilaria immitis) and their vectors in Europe–new distribution trends. Front Physiol. 2012; 3:196.
Moroni B, Rossi L, Meneguz PG, Orusa R, Zoppi S, Robetto S, et al. Dirofilaria immitis in wolves recolonizing northern Italy: are wolves competent hosts? Parasites Vectors. 2020; 13:1-7.
Mullen GR, Durden LA. Medical and veterinary entomology. Academic Press; 2009.
Murata K, Yanai T, Agatsuma T, Uni S. Dirofilaria immitis infection of a snow leopard (Uncia uncia) in a Japanese zoo with mitochondrial DNA analysis. J Vet Med Sci. 2003;65 8:945-7.
Napoli E, Panarese R, La Russa F, Cambera I, Mendoza-Roldan J, Otranto D, et al. Detection of Dirofilaria DNA and host blood-meal identification in Culicoides paolae biting midges. Parasitology. 2022;149 7:968-72.
Panarese R, Iatta R, Latrofa MS, Zatelli A, Ćupina AI, Montarsi F, et al. Hyperendemic Dirofilaria immitis infection in a sheltered dog population: an expanding threat in the Mediterranean region. Int J Parasitol. 2020;50 8:555-9.
Paras K, O'brien V, Reiskind M. Comparison of the vector potential of different mosquito species for the transmission of heartworm, Dirofilaria immitis, in rural and urban areas in and surrounding Stillwater, Oklahoma, USA. Med Vet Entomol. 2014;28 S1:60-7.
Perles L, Dantas-Torres F, Krücken J, Morchón R, Walochnik J, Otranto D. Zoonotic dirofilariases: one, no one, or more than one parasite. Trends Parasitol. 2024;40 3:257-70.
Riahi SM, Yusuf MA, Azari-Hamidian S, Solgi R. Prevalence of Dirofilaria immitis in mosquitoes (Diptera)–systematic review and meta-analysis. J Nematol. 2021;53: e2021-12.
Rishniw M, Barr SC, Simpson KW, Frongillo MF, Franz M, Alpizar JLD. Discrimination between six species of canine microfilariae by a single polymerase chain reaction. Vet Parasitol. 2006;135 3-4:303-14.
Russell RC, Geary MJ. The susceptibility of the mosquitoes Aedes notoscriptus and Culex annulirostris to infection with dog heartworm Dirofilaria immitis and their vector efficiency. Med Vet Entomol. 1992;6 2:154-8.
Russell RC, Geary MJ. The influence of microfilarial density of dog heartworm Dirofilaria immitis on infection rate and survival of Aedes notoscriptus and Culex annulirostris from Australia. Med Vet Entomol. 1996;10 1:29-34.
Sano Y, Aoki M, Takahashi H, Miura M, Komatsu M, Abe Y, et al. The first record of Dirofilaria immitis infection in a Humboldt penguin, Spheniscus humboldti. J Parasitol. 2005;91 5:1235-7.
Scoles GA, Kambhampati S. Polymerase chain reaction-based method for the detection of canine heartworm (Filarioidea: Onchocercidae) in mosquitoes (Diptera: Culicidae) and vertebrate hosts. J Med Entomol. 1995;32 6:864-9.
Shaikevich E, Bogacheva A, Ganushkina L. Dirofilaria and Wolbachia in mosquitoes (Diptera: Culicidae) in central European Russia and on the Black Sea coast. Parasite. 2019; 26:2.
Silaghi C, Beck R, Capelli G, Montarsi F, Mathis A. Development of Dirofilaria immitis and Dirofilaria repens in Aedes japonicus and Aedes geniculatus. Parasites Vectors. 2017; 10:1-13.
Simón F, Diosdado A, Siles‐Lucas M, Kartashev V, González‐Miguel J. Human dirofilariosis in the 21st century: a scoping review of clinical cases reported in the literature. Transbound Emerg Dis. 2022;69 5:2424-39.
Simón F, Siles-Lucas M, Morchón R, González-Miguel J, Mellado I, Carretón E, et al. Human and animal dirofilariasis: the emergence of a zoonotic mosaic. Clin Microbiol Rev. 2012;25 3:507-44.
Spence Beaulieu MR, Federico JL, Reiskind MH. Mosquito diversity and dog heartworm prevalence in suburban areas. Parasites Vectors. 2020; 13:1-12.
Spence Beaulieu MR, Reiskind MH. Comparative vector efficiency of two prevalent mosquito species for dog heartworm in North Carolina. J Med Entomol. 2020;57 2:608-14.
Staley M, Dorman KS, Bartholomay LC, Fernández-Salas I, Farfan-Ale JA, Loroño-Pino MA, et al. Universal primers for the amplification and sequence analysis of actin-1 from diverse mosquito species. J Am Mosq Control Assoc. 2010;26 2:214.
Șuleșco T, Von Thien H, Toderaș L, Toderaș I, Lühken R, Tannich E. Circulation of Dirofilaria repens and Dirofilaria immitis in Moldova. Parasites Vectors. 2016; 9:1-10.
Tahir D, Bittar F, Barré-Cardi H, Sow D, Dahmani M, Mediannikov O, et al. Molecular survey of Dirofilaria immitis and Dirofilaria repens by new real-time TaqMan® PCR assay in dogs and mosquitoes (Diptera: Culicidae) in Corsica (France). Vet Parasitol. 2017; 235:1-7.
Theis J, Kovaltchouk JG, Fujioka KK, Saviskas B. Vector competence of two species of mosquitoes (Diptera: Culicidae) from southern California for Dirofilaria immitis (Filariidea: Onchocercidae). J Med Entomol. 2000;37 2:295-7.
Theis J, Gilson A, Simon GE, Bradshaw B, Clark D. Case report: Unusual location of Dirofilaria immitis in a 28-year-old man necessitates orchiectomy. Am J Trop Med Hyg. 2001;64 5:317-22.
Theis J. Public health aspects of dirofilariasis in the United States. Vet Parasitol. 2005;133 2-3:157-80.
Tiawsirisup S, Nithiuthai S. Vector competence of Aedes aegypti (L.) and Culex quinquefasciatus (Say) for Dirofilaria immitis (Leidy). Southeast Asian journal of tropical medicine and public health. 2006; 37:110.
Torres-Chable OM, Baak-Baak CM, Cigarroa-Toledo N, Blitvich BJ, Brito-Argaez LG, Alvarado-Kantun YN, et al. Molecular detection of Dirofilaria immitis in dogs and mosquitoes in Tabasco, Mexico. J Vector Borne Dis. 2018;55 2:151-8.
Tsung SH, Liu CC. Human pulmonary dirofilariasis in Taiwan. J Formos Med Assoc. 2003;102 1:42-5.
Turell MJ, Dohm DJ, Sardelis MR, O’guinn ML, Andreadis TG, Blow JA. An update on the potential of North American mosquitoes (Diptera: Culicidae) to transmit West Nile virus. J Med Entomol. 2005;42 1:57-62.
Vezzani D, Eiras DF, Wisnivesky C. Dirofilariasis in Argentina: historical review and first report of Dirofilaria immitis in a natural mosquito population. Vet Parasitol. 2006;136 3-4:259-73.
Vezzani D, Mesplet M, Eiras DF, Fontanarrosa MF, Schnittger L. PCR detection of Dirofilaria immitis in Aedes aegypti and Culex pipiens from urban temperate Argentina. Parasitol Res. 2011;108 4:985-9.
Wang D, Bowman DD, Brown HE, Harrington LC, Kaufman PE, McKay T, et al. Factors influencing US canine heartworm (Dirofilaria immitis) prevalence. Parasites Vectors. 2014; 7:1-18.
Wang LC. Canine filarial infections in north Taiwan. Acta Trop. 1997;68 1:115-20.
Wang LC. Comparison of a whole-blood agglutination test and an ELISA for the detection of the antigens of Dirofilaria immitis in dogs. Ann Trop Med Parasitol. 1998;92 1:73-7.
Wang LC. Comparison of a whole-blood agglutination test and an ELISA for the detection of the antigens of Dirofilaria immitis in dogs. Annals of Tropical Medicine & Parasitology. 1998;92 1:73-7.
Watts K, Courtney C, Reddy G. Development of a PCR-and probe-based test for the sensitive and specific detection of the dog heartworm, Dirofilaria immitis, in its mosquito intermediate host. Mol Cell Probes. 1999;13 6:425-30.
Watts K, Reddy G, Holmes R, Lok J, Knight D, Smith G, et al. Seasonal prevalence of third-stage larvae of Dirofilaria immitis in mosquitoes from Florida and Louisiana. J Parasitol. 2001;87 2:322-9.
Wu CC, Chen CC, Fan PC. Natural infection of mosquitoes with Dirofilaria immitis in northern Taiwan. J Chin Soc Vet Sci. 1997;23 1:12-20.
Wu CC, Fan PC. Prevalence of canine dirofilariasis in Taiwan. J Helminthol. 2003;77 1:83-8.
Yang S, Wang L, Fahn H, Lee Y, Chien K. Solitary pulmonary nodule caused by Dirofilaria immitis. A case report and literature review. Formos J Surg. 1993;26 2:1713-8.
Yildirim A, Inci A, Duzlu O, Biskin Z, Ica A, Sahin I. Aedes vexans and Culex pipiens as the potential vectors of Dirofilaria immitis in Central Turkey. Vet Parasitol. 2011;178 1-2:143-7.
Younes L, Barré-Cardi H, Bedjaoui S, Ayhan N, Varloud M, Mediannikov O, et al. Dirofilaria immitis and Dirofilaria repens in mosquitoes from Corsica Island, France. Parasites Vectors. 2021;14 1:427.
Yuasa Y, Hsu TH, Chou CC, Huang CC, Huang WC, Chang CC. The comparison of spatial variation and risk factors between mosquito-borne and tick-borne diseases: Seroepidemiology of Ehrlichia canis, Anaplasma species, and Dirofilaria immitis in dogs. Comp Immunol Microbiol Infect Dis. 2012;35 6:599-606.
Zohdy S, Valenta K, Rabaoarivola B, Karanewsky CJ, Zaky W, Pilotte N, et al. Causative agent of canine heartworm (Dirofilaria immitis) detected in wild lemurs. Int J Parasitol Parasites Wildl. 2019; 9:119-21.
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dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/99313-
dc.description.abstract犬 心 絲 蟲 症 (dirofilariasis) 是 由 小 桿 目 蟠 尾 絲 蟲 科 (Rhabditida: Onchocercidae) 的犬心絲蟲 (Dirofilaria immitis) 感染寄生所引起,屬於一種蚊媒性人畜共通傳染病。主要宿主為犬隻,成蟲棲息於犬隻的右心室和肺動脈,臨床症狀包括咳嗽、呼吸困難,甚至死亡。犬心絲蟲也可以感染貓、狼、郊狼和其他哺乳動物。本研究的主要目標在持續監測 2023 年 6 月至 2025 年 5 月臺北地區蚊子感染犬心絲蟲的情形。本研究於臺北市內湖區與木柵區使用以乾冰為誘餌的 CDC 捕蚊燈採集蚊子,每兩週採集一個晚上。蚊子鑒定和分池 (pool) 之後,以巢式聚合酶連鎖反應 (nested PCR) 分析可能參與犬心絲蟲傳播的蚊子種類及其族群動態。本研究共收集 1926 隻,417 池,包含 9 屬 31 種蚊子。以 nested PCR 檢測犬心絲蟲感染,得到 78 池陽性,共計 15 種蚊子感染犬心絲蟲,兩年均有感染。在 Culex quinquefasciatus、 Aedes albopictus 和 Cx. pipiens molestus 物種中發現的陽性池數量最多。臺北市蚊子感染率的偏差校正最大似然估計值 (bias-corrected MLE) 為 7.6% (95% 信賴區間: 6.2% - 9.1%)。此外,本研究也首次發現 Culex 屬、 Mansonia 屬、 Uranotaenia 屬共 9 種蚊蟲可以被犬心絲蟲感染。本研究所建立之犬心絲蟲病媒蚊族群動態資料將有助於了解犬心絲蟲在臺北地區流行之情形及與病媒蚊之間的交互作用,可提供病媒防治、獸醫及公共衛生領域防疫政策之重要資訊。zh_TW
dc.description.abstractCanine heartworm, Dirofilaria immitis (Rhabditida: Onchocercidae), is a mosquito-borne parasitic nematode that resides in the right ventricle and pulmonary arteries of infected dogs, leading to canine dirofilariasis. Clinical signs of D. immitis infection include cough, difficulty breathing, and potentially death. Although dogs are the primary hosts, D. immitis can infect cats, wolves, coyotes, and other mammals. To investigate potential mosquito vectors of D. immitis in Taipei, Taiwan, adult mosquitoes were collected from June 2023 to May 2025 using CDC light traps baited with dry ice. Detection of D. immitis in mosquito samples was performed using nested PCR. A total of 1926 mosquitoes, grouped into 417 pools representing 31 species from 9 genera, were collected. Among these, 78 pools tested positive for D. immitis. Infections were identified in 15 mosquito species and occurred throughout two years. The highest number of positive pools were found in species Culex quinquefasciatus, Aedes albopictus, and Cx. pipiens molestus. The bias-corrected maximum likelihood estimation (bias-corrected MLE) of the mosquito infection rate in Taipei was 7.6% (95% confidence interval: 6.2–9.1%). Notably, this study is the first to report natural D. immitis infections in 9 mosquito species belonging to the genera Culex, Mansonia, and Uranotaenia. The infection prevalence data presented in this study provide valuable insights into the transmission patterns of D. immitis in Taipei and its interactions with diverse mosquito species. These findings provide critical information to enhance vector control strategies and support the development of disease prevention policies in both veterinary and public health contexts.en
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dc.description.tableofcontents口試委員會審定書 i
致謝 ii
中文摘要 iii
Abstract iv
Contents v
List of figures vii
List of tables viii
1. Introduction 1
2. Materials and methods 7
2.1. Study sites 7
2.2. Mosquito collection and identification 8
2.3. DNA extraction 9
2.4. Dirofilaria immitis positive control 9
2.5. PCR detection of the COI gene-based barcode of mosquitoes 10
2.6. PCR detection of the actin-1 gene of mosquitoes 11
2.7. Nested PCR detection of D. immitis in mosquitoes 11
2.8. Dirofilaria immitis confirmation 12
2.9. Infection rate of D. immitis in mosquitoes 12
2.10. Vector index 13
2.11. Heartworm development units 13
3. Results 14
3.1. Mosquito abundance 14
3.2. Detection of the mosquito actin-1 gene 14
3.3. Prevalence of Dirofilaria immitis infection in mosquitoes 15
3.4. Geospatial patterns of D. immitis infection in mosquitoes 16
3.5. Temporal dynamics of mosquito population and D. immitis infection 16
3.6. Estimation of D. immitis transmission risk by mosquitoes 17
4. Discussion 18
4.1. Mosquito abundance 18
4.2. Prevalence of Dirofilaria immitis infection in mosquitoes 20
4.3. Geospatial patterns of D. immitis infection in mosquitoes 23
4.4. Temporal dynamics of mosquito population and D. immitis infection 24
4.5. Estimation of D. immitis transmission risk by mosquitoes 25
4.6. Applications and future work 26
5. References 30
6. Appendix 52
6.1. Meteorological data from Taipei, Taiwan 52
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dc.language.isoen-
dc.subject犬心絲蟲zh_TW
dc.subject犬心絲蟲症zh_TW
dc.subject病媒zh_TW
dc.subject巢式聚合酶連鎖反應zh_TW
dc.subject蚊子zh_TW
dc.subjectmosquitoen
dc.subjectnested PCRen
dc.subjectvectoren
dc.subjectcanine heartwormen
dc.subjectDirofilaria immitisen
dc.title臺灣臺北野外蚊蟲中犬心絲蟲之盛行率zh_TW
dc.titlePrevalence of canine heartworm in mosquitoes from Taipei, Taiwanen
dc.typeThesis-
dc.date.schoolyear113-2-
dc.description.degree碩士-
dc.contributor.oralexamcommittee蔡坤憲;劉威廷zh_TW
dc.contributor.oralexamcommitteeKun-Hsien Tsai;Wei-Ting Liuen
dc.subject.keyword犬心絲蟲症,犬心絲蟲,蚊子,巢式聚合酶連鎖反應,病媒,zh_TW
dc.subject.keywordDirofilaria immitis,canine heartworm,mosquito,nested PCR,vector,en
dc.relation.page52-
dc.identifier.doi10.6342/NTU202503410-
dc.rights.note同意授權(全球公開)-
dc.date.accepted2025-08-12-
dc.contributor.author-college生物資源暨農學院-
dc.contributor.author-dept昆蟲學系-
dc.date.embargo-lift2025-08-23-
顯示於系所單位:昆蟲學系

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