1.Spread of Communicable Disease by Air Travel.
Korean Journal of Aerospace and Environmental Medicine 2003;13(1):1-6
International movement of individuals, population, and products is one of the major factors associated with the transmission of infectious diseases. Travel can be associated with disease transmission because diseases arise in an area of heavy tourism and tourists may be at heightened risk because of their activities, or because they can act as vectors to transport an agent to new areas. Rapid air travel, in particular, has increased the potential for international transmission of infectious diseases. Important aspects of this problem include the transmission of foodborne and waterborne illnesses, the translocation of insect vectors, the rapid transport of individuals with incubating illnesses, the direct transmission of diseases inside aircraft, the transmission of zoonosis through animal transport, and the transmission through human waste.
Aircraft
;
Animals
;
Communicable Diseases*
;
Humans
;
Insect Vectors
4.Analysis on the results of etiology and serology of plague in Qinghai province from 2001 to 2010.
Yonghai YANG ; Mei WANG ; Xiaolong ZHAO ; Zhongzhi ZHAO ; Aiping ZHANG ; Rongjie WEI ; Baiqing WEI ; Zuyun WANG
Chinese Journal of Preventive Medicine 2014;48(2):124-127
OBJECTIVETo analyze the results of etiology and serology of plague among human and infected animals in Qinghai province from 2001 to 2010.
METHODSThirty-seven cases of human infected with plague, 53 541 different animal samples, 5 685 sets of vector insects flea and 49 039 different animal serum samples were obtained between 2001 and 2010. A total of 7 811 samples of serum from healthy farmers and herdsmen in 14 counties in Qinghai from 2005 to 2007 were collected. Yersinia pestis (Y. pestis) were detected in visceral and secretions from human, infected animals and vector insects, respectively. Plague antigen was detected by reverse indirect hemagglutination assay (RIHA) in those samples. Indirect hemagglutination assay (IHA) was used to test plague FI antibody in serum of human and infected animals.
RESULTS37 human plague cases were confirmed, 21 strains of plague Y. pestis were isolated from human cases and 14 positive were detected out. 133 of 7 811 samples of human serum were IHA positive, with the positive rate at 1.7%. A total of 146 strains of plague were isolated from infected animals and vector insects, 99 out of which were from infected animals, with a ratio of Marmota himalayan at 72.7% (72/99) and the other 47 were from vector insects, with a ratio of callopsylla solaris at 68.1% (32/47). The number of IHA and PIHA positive were 300 and 10, respectively. A total of 3 animals and 3 insects species were identified as new epidemic hosts for plague. The natural plague focus of Microtus fuscus was discovered and confirmed and coexisted with natural focus of Marmota himalayan in Chengduo county, Yushu prefecture. The epidemic situation of plague is distributed mainly in Haixi, Yushu and Hainan prefectures.
CONCLUSIONFrom 2001 to 2010, animal infected with plague was detected in successive years and human plague was very common in Qinghai. New infected animals and vector insects species and new epidemic areas were confirmed, hence the trend of plague prevalence for humans and animals is very active in Qinghai province.
Animals ; Antibodies, Bacterial ; blood ; China ; epidemiology ; Disease Vectors ; Humans ; Insect Vectors ; microbiology ; Plague ; epidemiology ; transmission ; Yersinia pestis ; classification ; isolation & purification
5.Vector competence of Anopheles lesteri Baisas & Hu (Diptera: Cullicidae) to Plasmodium vivax in Korea.
E Hyun SHIN ; Tong Soo KIM ; Hyeong Woo LEE ; Jong Soo LEE ; Won Ja LEE
The Korean Journal of Parasitology 2002;40(1):41-44
Three anopheline mosquitoes in Korea were studied for their abilities as vectors for Plasmodium vivax. The female mosquitoes of Anopheles lesteri, An. pullus and An. sinensis were allowed to suck malaria patient blood until fully fed, and they were then bred for 2 weeks to develop from malaria parasites to sporozoites. The result from the above confirmed the sporozoites in one An. lesteri of one individual and five An. sinensis of six individuals. We also reconfirmed that An. sinensis was the main vector to transmit malaria and An. lesteri as well as An. sinensis were able to carry Korean malaria parasites. Therefore, we propose that diversified study is needed to manage malaria projects.
Adult
;
Animals
;
Culicidae/*parasitology/*physiology
;
Female
;
Humans
;
*Insect Vectors
;
Korea
;
Malaria/parasitology/transmission
;
Male
;
*Plasmodium vivax
6.The biology and demographic parameters of Aedes albopictus in northern peninsular Malaysia.
H Nur AIDA ; Hamady DIENG ; Abu Hassan AHMAD ; Tomomitsu SATHO ; A T NURITA ; M R Che SALMAH ; Fumio MIAKE ; B NORASMAH
Asian Pacific Journal of Tropical Biomedicine 2011;1(6):472-477
OBJECTIVETo generate life table characteristics for the dengue vector Aedes albopictus (A. albopictus) under uncontrolled conditions, incorporating both the aquatic and the adult stages.
METHODSTen females derived from wild pupae were allowed to fully blood-feed on restrained mice. 774 eggs were hatched in seasoned water. F1 larvae were followed for development until their F2 counterparts emerged as adults. Some population parameters were monitored (F1) or estimated (F2).
RESULTSA. albopictus exhibited increased fecundity and egg hatch success. Immature development was quick. Immature survival was high, with lowest rate in the pupal stage. Adult emergence was about 81% and sex ratio was close to 1:1. Generational mortality (K) was about 28%. A high proportion of females completed a reproductive cycle and the obtained parity rate was predicted to lead to higher fecundity in the next generation.
CONCLUSIONSIt can be concluded that natural A. albopictus populations in Penang seem largely determined by quick development in combination with low immature loss and increased oviposition.
Aedes ; growth & development ; physiology ; Animals ; Female ; Insect Vectors ; Malaysia ; Male ; Mice ; Vital Statistics
7.Study on vector ability of Nosopsyllus wualis leizhouensis in the transmission of plague.
Han-biao OU ; Rong-xuan SHEN ; Hai MAI ; Guang-xiang DAI ; Man-qing ZHANG ; Hua-yuan YANG ; Yu-lian LI ; Min ZENG ; Xiang-ming YU
Chinese Journal of Epidemiology 2003;24(6):487-490
OBJECTIVETo find out the vector ability and function of Nosopsyllus wualis leizhouensis in the transmitting plague.
METHODSIn T: 19 degrees C +/- 1 degrees C, RH: 85% +/- 5%, data regarding the vector ability as cluster spreading, single flea spreading, single flea transmitting plague to single animal, formative bacterial embolus and infection fleas life-span through experiments was gathered.
RESULTSThe rate of infection on fleas was 94.64%, with 100% transmission rate of colony to spread, and 30% from single flea spreading to single animal. In the experiment of single flea transmission, all of the 388 rattus loseas were bitten by the fleas with bacterial, but only 9 animals were characteristically infected with the transmission potential, vector efficiency, survival potential of embolus, vector index as 0.360, 0.257, 0.868 and 0.223 respectively. The mean survive days of infected flea feed with blood were 17.58 (1 - 58), and the mean survive days of hunger infected flea were 7.25 (1 - 16). Formative bacterial embolus days were 8.80 (2 - 16) and the rate of embolus flea was 78.12%.
CONCLUSIONNosopsyllus wualis leizhouensis could serve as vector and important in the mode of plague transmittion.
Animals ; Female ; Insect Vectors ; microbiology ; Male ; Plague ; transmission ; Rats ; Siphonaptera ; microbiology
8.Cutaneous Microflora from Geographically Isolated Groups of Bradysia agrestis, an Insect Vector of Diverse Plant Pathogens.
Jong Myong PARK ; Young Hyun YOU ; Jong Han PARK ; Hyeong Hwan KIM ; Sa Youl GHIM ; Chang Gi BACK
Mycobiology 2017;45(3):160-171
Larvae of Bradysia agrestis, an insect vector that transports plant pathogens, were sampled from geographically isolated regions in Korea to identify their cutaneous fungal and bacterial flora. Sampled areas were chosen within the distribution range of B. agrestis; each site was more than 91 km apart to ensure geographical segregation. We isolated 76 microbial (fungi and bacteria) strains (site 1, 29; site 2, 29; site 3, 18 strains) that were identified on the basis of morphological differences. Species identification was molecularly confirmed by determination of universal fungal internal transcribed spacer and bacterial 16S rRNA gene sequences in comparison to sequences in the EzTaxon database and the NCBI GenBank database, and their phylogenetic relationships were determined. The fungal isolates belonged to 2 phyla, 5 classes, and 7 genera; bacterial species belonged to 23 genera and 32 species. Microbial diversity differed significantly among the geographical groups with respect to Margalef's richness (3.9, 3.6, and 4.5), Menhinick's index (2.65, 2.46, and 3.30), Simpson's index (0.06, 0.12, and 0.01), and Shannon's index (2.50, 2.17, and 2.58). Although the microbial genera distribution or diversity values clearly varied among geographical groups, common genera were identified in all groups, including the fungal genus Cladosporium, and the bacterial genera Bacillus and Rhodococcus. According to classic principles of co-evolutionary relationship, these genera might have a closer association with their host insect vector B. agrestis than other genera identified. Some cutaneous bacterial genera (e.g., Pseudomonas) displaying weak interdependency with insect vectors may be hazardous to agricultural environments via mechanical transmission via B. agrestis. This study provides comprehensive information regarding the cutaneous microflora of B. agrestis, which can help in the control of such pests for crop management.
Bacillus
;
Biodiversity
;
Cladosporium
;
Databases, Nucleic Acid
;
Genes, rRNA
;
Insect Vectors*
;
Insects*
;
Korea
;
Larva
;
Plants*
;
Rhodococcus
9.Filamentous Fungi Isolated from Platypus koryoensis, the Insect Vector of Oak Wilt Disease in Korea.
Dong Yeon SUH ; Min Woo HYUN ; Seong Hwan KIM ; Sang Tae SEO ; Kyung Hee KIM
Mycobiology 2011;39(4):313-316
The ambrosia beetle, Platypus koryoensis, is a serious pest of oak trees in Korea. In this study we investigated filamentous fungi present in the body of the beetle. Fourteen genera of filamentous fungi belonging to Ascomycota and Basidiomycota were isolated. Among the isolated fungi, some were able to produce wood degrading enzymes. This is first report of fungi associated with P. koryoensis.
Ambrosia
;
Ascomycota
;
Basidiomycota
;
Beetles
;
Fungi
;
Insect Vectors
;
Insects
;
Korea
;
Platypus
;
Quercus
;
Wood
10.Malaria transmission potential by Anopheles sinensis in the Republic of Korea.
Hee Il LEE ; Jong Soo LEE ; E Hyun SHIN ; Won Ja LEE ; Yoon Young KIM ; Kyung Ro LEE
The Korean Journal of Parasitology 2001;39(2):185-192
To evaluate the factors that determine the transmission level of vivax malaria using vectorial capacity, entomological surveys were conducted from June to August, 2000. From 6 nights of human-bait collection in Paju, the human biting rate (ma) was counted as 87.5 bites/man/night. The parity of Anopheles sinensis from human baiting collections fluctuated from 41% to 71% (average 48.8%) of which the rate gradually increased as time passed on: 35.2% in Jun.; 55.0% in July; 66.2% in Aug. From this proportion of parous, we could estimate the probability of daily survival rate of An. sinensis to be 0.79 assumed with 3 days gonotrophic cycle and the expectancy of infective life through 11 days could be defined as 0.073. Blood meal analysis was performed using ELISA to determine the blood meal source. Only 0.8% of blood meals were from human hosts. We could conclude that An. sinensis is highly zoophilic (cow 61.8%). Malaria is highly unstable (stability index < 0.5) in this area. From these data, vectorial capacity (VC) was determined to be 0.081. In spite of a high human biting rate (ma), malaria transmission potential is very low due to a low human blood index. Therefore, we could conclude that malaria transmission by An. sinensis is resulted by high population density, not by high transmission potential. For this reason, we need more effort to decrease vector population and vector-human contact to eradicate malaria in Korea.
Animals
;
Anopheles/*parasitology
;
Human
;
Insect Vectors
;
Korea
;
Malaria, Vivax/parasitology/*transmission
;
Parity
;
Plasmodium vivax/*pathogenicity/physiology
;
Population Density