Displaying publications 1 - 20 of 2542 in total

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  1. Reid JA
    J Med Entomol, 1966 Dec;3(3):327-31.
    PMID: 5986753
    Matched MeSH terms: Anopheles/classification*
  2. Garcia R, Jeffery J, Rudnick A
    Med J Malaya, 1968 Sep;23(1):29-31.
    PMID: 4388067
    Matched MeSH terms: Culicidae/classification*
  3. Sivanandam S, Fredericks HJ
    Med J Malaya, 1966 Jun;20(4):337-8.
    PMID: 4224563
    Matched MeSH terms: Filarioidea/classification*
  4. Saito Y, Vasuvat C, Harinasuta C
    Med J Malaya, 1968 Mar;22(3):247.
    PMID: 4234385
    Matched MeSH terms: Ticks/classification*
  5. Reid JA
    J Med Entomol, 1967 May;4(2):175-9.
    PMID: 6052125
    Matched MeSH terms: Anopheles/classification*
  6. Nadchatram M, Lakshumy GT
    J Med Entomol, 1969 Aug;6(3):283-5.
    PMID: 5820846
    Matched MeSH terms: Mites/classification*
  7. Liu JF, Zhang ZQ
    Zootaxa, 2016 Dec 14;4208(1):zootaxa.4208.1.1.
    PMID: 27988536 DOI: 10.11646/zootaxa.4208.1.1
    This paper reveals the hotspots of new mite discovery through of a survey of type localities of new Trombidiformes species described in two journals (Systematic & Applied Acarology and Zootaxa) during the last three years (2013-2015). Taxonomically, the 491 new species of the Trombidiformes are highly unevenly distributed among 55 families with top 10 families accounting for over 66% of the total. The Eriophyidae is the top-ranked family. Geographically, these 491 new species are from 55 countries around the world and their distribution among the countries is highly uneven. The majority of these new species (69%) are from the top 10 countries and six of the top ten countries are also megadiversity countries. The top three countries are all from Asia (Iran, China and Malaysia) and they together accounted for over one third of all new species of the Trombidiformes described in the two journals during 2013-2015.
    Matched MeSH terms: Mites/classification*
  8. Rohani A, Chan ST, Abdullah AG, Tanrang H, Lee HL
    Trop Biomed, 2008 Dec;25(3):232-6.
    PMID: 19287362
    The adult population and species composition of mosquitoes collected in Ranau, Sabah are described. A total of 5956 mosquitoes representing 8 genera and 41 species were collected using human landing catch, indoor and outdoor. Anopheles maculatus was the most common species (15.6%) followed by Culex quinquefasciatus (12.8%), Culex pseudovishnui (12.1%), Anopheles balabacensis (11.1%), Culex vishnui (9.7%), Aedes vexans (9.6%), Culex tritaeniorhyncus (6.6%), Anopheles donaldi (5.6%) and others in very small percentage.
    Matched MeSH terms: Anopheles/classification; Culex/classification; Culicidae/classification*
  9. Ahmed AU, Islam MT, Ismail M, Kibria S, Arshad H
    ScientificWorldJournal, 2014;2014:253787.
    PMID: 25133214 DOI: 10.1155/2014/253787
    An artificial neural network (ANN) and affinity propagation (AP) algorithm based user categorization technique is presented. The proposed algorithm is designed for closed access femtocell network. ANN is used for user classification process and AP algorithm is used to optimize the ANN training process. AP selects the best possible training samples for faster ANN training cycle. The users are distinguished by using the difference of received signal strength in a multielement femtocell device. A previously developed directive microstrip antenna is used to configure the femtocell device. Simulation results show that, for a particular house pattern, the categorization technique without AP algorithm takes 5 indoor users and 10 outdoor users to attain an error-free operation. While integrating AP algorithm with ANN, the system takes 60% less training samples reducing the training time up to 50%. This procedure makes the femtocell more effective for closed access operation.
    Matched MeSH terms: Classification/methods*
  10. Hani AF, Baba R, Shamsuddin N, Nugroho H
    Int J Cosmet Sci, 2014 Oct;36(5):451-8.
    PMID: 24925684 DOI: 10.1111/ics.12147
    Melanin is a major skin colour pigment that is made up of eumelanin (the dark brown-black colour) and pheomelanin (the light red-yellow colour) pigments. Skin-whitening products typically contain depigmentation agents that reduce the level of pigmentation by changing the pheomelanin-eumelanin production. Similarly, in skin pigment treatment of skin disorders, the melanin production is managed accordingly. To assess and improve treatment efficacy, it is important to have a measurement tool that is capable of determining the melanin types objectively. So far, the efficacy assessment is subjective. In this study, an inverse skin reflectance pigmentation analysis system that determines eumelanin and pheomelanin content is developed and evaluated in an observational study involving 36 participants with skin photo type IV.
    Matched MeSH terms: Melanins/classification*
  11. Shashikiran U, Sudha V, Jayaprakash B
    Med J Malaysia, 2004 Mar;59(1):130-3; quiz 134.
    PMID: 15535353
    Matched MeSH terms: Obesity/classification*
  12. Jia M, Wei Y, Ma Y, Shen Y, Zhang Y
    Zhongguo Zhong Yao Za Zhi, 1997 Aug;22(8):454-8, 510.
    PMID: 11038909
    Through the investigation on botanical origin, output and sales of Togcao in producing areas, it has been proved that there are twenty-two species of six families used as Tongcao. The medicinal parts are the pith of stems or petioles. The provinces featuring more species and larger output of Tongcao are Sichuan, Yunnan, Guizhou, Guangxi, Hunan and Shaanxi. A hundred and two pieces of commercial samples collected from twenty-six provinces in China, Hongkong area, Japan, Malaysia, Thailand, Singapore and Republic of Korea have been identified. The result shows that both Xiaotongcao and Datongcao are called by the same name Tongcao. The main species is Xiaotongcao, which takes a proportion of 70% in Tongcao. And the Tongcao(Tetrapanax papyriferus, taking a proportion of 20%) as recorded in the Chinese Pharmacopoeia (1995 edition) is seldom used.
    Matched MeSH terms: Angiosperms/classification
  13. Reid JA
    Med J Malaysia, 1980 Jun;34(4):399-402.
    PMID: 7219271
    Facts are presented which suggest that mosquitoes of the Anopheles barbirostris species group that gave me a very uncomfortable night in 1941, whilst serving with the Volunteer forces, were probably A. donaldi. This species is now known to be a vector of human filariasis and probably malaria. Some of the steps are described by which I was led, sixteen years later, to recognise and later name donaldi as a new species. Reasons are given for thinking that around 1918 A. donaldi was present in some numbers at the railway town of Gemas where malaria was a serious problem. H.P. Hacker made a survey at Gemas in 1918 and though the principal vector was probably A. maculatus, 'umbrosus' and 'barbirostris' were the commonest larvae he found.
    Matched MeSH terms: Anopheles/classification*
  14. Stekolnikov AA
    Zootaxa, 2021 Jan 19;4913(1):zootaxa.4913.1.1.
    PMID: 33756596 DOI: 10.11646/zootaxa.4913.1.1
    Chigger mites (Acariformes: Trombiculidae) of Southeast Asia, including Myanmar, Malaysia, Brunei, Singapore, Indonesia, Thailand, Cambodia, Vietnam, and the Philippines have been revised based on reference data and examination of type materials in European collections of chiggers. For 450 species of 49 genera synonymy, collection data on types, lists of known host species and lists of countries are given. The lists of hosts include in total 649 valid species and subspecies of mammals, birds, reptiles, amphibians, and arthropods. Two new synonyms were established: Doloisia (Doloisia) Oudemans, 1910 (= Doloisia (Trisetoisia) Vercammen-Grandjean, 1968, syn. nov.) and Gahrliepia lui Chen and Hsu, 1955 (= Gahrliepia (Gateria) octosetosa Chen, Hsu and Wang, 1956, syn. nov.). Twenty-seven new combinations were proposed: Walchia (Ripiaspichia) biliranensis (Brown, 1997), comb. nov., Walchia (Ripiaspichia) huberti (Upham and Nadchatram, 1968), comb. nov., Walchia (Ripiaspichia) parmulaseta (Brown, 1997), comb. nov., and Walchia (Ripiaspichia) serrata (Brown and Goff, 1988), comb. nov., transferred from Gahrliepia Oudemans, 1912; Farrellioides consuetum (Womersley, 1952), comb. nov. (originally in Trombicula Berlese, 1905), Farrellioides nakatae (Nadchatram and Traub, 1964), comb. nov. (originally in Leptotrombidium Nagayo, Miyagawa, Mitamura and Imamura, 1916), and Farrellioides striatum (Nadchatram and Traub, 1964), comb. nov. (originally in Leptotrombidium), transferred from Euschoengastia Ewing, 1938; Guntheria (Phyllacarus) bushlandi (Philip, 1947), comb. nov. (originally in Ascoschoengastia Ewing, 1946), transferred from Guntherana Womersley and Heaslip, 1943 (syn. of Guntheria Womersley, 1939); Kayella masta (Traub and Sundermeyer, 1950), comb. nov. (originally in Ascoschoengastia), transferred from Cordiseta Hoffmann, 1954; Neoschoengastia stekolnikovi (Kalúz, 2016), comb. nov., transferred from Hypogastia Vercammen-Grandjean, 1967; Susa chiropteraphilus (Brown, 1997), comb. nov., Susa masawanensis (Brown, 1998), comb. nov., and Susa palawanensis (Brown and Goff, 1988), comb. nov., transferred from Cheladonta Lipovsky, Crossley and Loomis, 1955; Ericotrombidium cosmetopode (Vercammen-Grandjean and Langston, 1971), comb. nov., transferred from Leptotrombidium; Eutrombicula gigarara (Brown, 1997), comb. nov., transferred from Siseca Audy, 1956; Microtrombicula eltoni (Audy, 1956), comb. nov., transferred from Eltonella Audy, 1956; Trombiculindus alethrix (Traub and Nadchatram, 1967), comb. nov., Trombiculindus cuteanum (Vercammen-Grandjean and Langston, 1976), comb. nov., Trombiculindus frondosum (Traub and Nadchatram, 1967), comb. nov., Trombiculindus hastatum (Gater, 1932), comb. nov., Trombiculindus lepismatum (Traub and Nadchatram, 1967), comb. nov., Trombiculindus limi (Traub and Nadchatram, 1967), comb. nov., Trombiculindus maxwelli (Traub and Nadchatram, 1967), comb. nov., Trombiculindus roseannleilaniae (Brown, 1992), comb. nov., Trombiculindus sarisatum (Traub and Nadchatram, 1967), comb. nov., Trombiculindus vanpeeneni (Hadi and Carney, 1977), comb. nov., and Trombiculindus yooni (Traub and Nadchatram, 1967), comb. nov., transferred from Leptotrombidium.
    Matched MeSH terms: Trombiculidae/classification*
  15. Figueroa A, Low MEY
    Zootaxa, 2021 Apr 01;4951(1):zootaxa.4951.1.10.
    PMID: 33903421 DOI: 10.11646/zootaxa.4951.1.10
    The snake genus Cylindrophis Wagler, 1828 belongs to the  monogeneric family Cylindrophiidae comprising 15 species distributed predominately throughout SE Asia, with one extralimital species occurring in Sri Lanka (Bernstein et al. 2020: 535). Cylindrophis lineatus is a rare species known from only eight museum specimens (discussed herein), and a photograph of one live individual from Kuching, Sarawak, East Malaysia (Stuebing et al. 2014: 63). Despite being originally described with Singapore as the type-locality (Blanford 1881: 217, 218), it is currently understood that C. lineatus is endemic to western Sarawak, East Malaysia (Stuebing et al. 2014: 63). Wallach et al. (2014: 204) stated that C. lineatus is also found in Kalimantan, but did not provide any references. This appears to have been followed by Bernstein et al. (2020: 537), who provide a map indicating C. lineatus occurrences in Kalimantan. The original description of Cylindrophis lineatus is conventionally cited as Blanford (1881: 217, 218, pl. 20). Herein, we demonstrate that the authorship and date of publication of this taxon should correctly be Cylindrophis lineatus Dennys, 1880b, and discuss that the type locality should be changed to "Borneo".
    Matched MeSH terms: Snakes/classification*
  16. Jałoszyński P
    Zootaxa, 2021 Apr 30;4966(1):115.
    PMID: 34186639 DOI: 10.11646/zootaxa.4966.1.1
    Six new species of the cephenniine genus Hlavaciellus Jałoszyński are described: H. cincinnalis sp. n. (Malaysia: Sabah); H. carinatus sp. n. (Malaysia: Pahang); H. microtuberculatus sp. n. (Malaysia: Pahang); H. diversipilosus sp. n. (Malaysia: Pahang); H. concavus sp. n. (Indonesia: Sumatra); and H. sumatranus sp. n. (Indonesia: Sumatra). An updated key to identification of males of all nominal species of Hlavaciellus is given.
    Matched MeSH terms: Beetles/classification*
  17. Kazantsev SV
    Zootaxa, 2021 Apr 29;4965(3):437460.
    PMID: 34186647 DOI: 10.11646/zootaxa.4965.3.2
    A new genus and five new species of neotenic lyropaeine net-winged beetles, Plycus prosvirovi gen. nov., sp. nov., Platerodrilus (s. str.) brastagicola sp. nov., P. (s. str.) gorbunovi sp. nov., P. (s. str.) kambanganus sp. nov. and P. (Duliticola) berastagiensis sp. nov., are described from Malaysia and Indonesia. Horakiella Bocakova, 2006, syn. nov. is proposed as a junior synonym of Atamania Kazantsev, 2005. Descriptions of little known members of the subfamily, Lybnopaeus avernus (Kazantsev, 1997), Lyropaeus (Lyroneces) orcinus Kazantsev, 1998, Miniduliticola nelsoni Kazantsev, 2002, Platerodrilus (Zhelongia) grootaerti Kazantsev, 2009, P. (Zh.) holynskae Kazantsev, 2009, P. (Duliticola) svetae Kazantsev, 2009, P. (D.) strbai Kazantsev, 2009, Atamania tembeling Kazantsev, 2002 and Sinodulia gressitti Kazantsev, 2002, are complemented with macrophotographs. Lists of Platerodrilus and Atamania species are provided.
    Matched MeSH terms: Beetles/classification*
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