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335 results for “Ixodidae”
Figure 1 in Is Geckobiella stamii (Acari: Pterygosomatidae) a hyperparasite or phoretic on Amblyomma dissimile (Acari: Ixodidae) associated with Iguana iguana from Panama?
Figure 1 Map of the locations where Geckobiella stamii was found associated withAmblyomma dissimile. 1: Corozal, Panama province; 2: Bugaba, Chiriquí province; 3: Tonosí, Los Santos province.
Figure 2 in Factors influencing the level of infestation of Ixodes ricinus (Acari: Ixodidae) on Lacerta agilis and Zootoca vivipara (Squamata: Lacertidae)
Figure 2 Mean number (± SE) of ticks per body size class (I to IV), and sex-age category (juv: juvenile; F: female, M: male), found in (A) transformed conditions and (B) natural conditions.
Figure 1 in Factors influencing the level of infestation of Ixodes ricinus (Acari: Ixodidae) on Lacerta agilis and Zootoca vivipara (Squamata: Lacertidae)
Figure 1 Mean number (± SE) of ticks per body size class (I to IV) and Sex-age category (juv: juvenile; F: female, M: male), found on (A) Zootoca viviparaand (B)Lacerta agilis.
Figure 3 in Factors influencing the level of infestation of Ixodes ricinus (Acari: Ixodidae) on Lacerta agilis and Zootoca vivipara (Squamata: Lacertidae)
Figure 3 Mean number of ticks found on different locations on the lizards bodies (± standard errors).
Figure 2 in An instance of Boiga dendrophila dendrophila (Boie, 1827) (Reptilia: Colubridae) being parasitized by Amblyomma helvolum Koch, 1844 (Acari: Ixodidae), with comments about the attachment sites of this tick species
Figure 2 An Amblyomma sp. nymph attached under a lateral mid-body scale of theBoiga dendrophila dendrophila(Photo by Jean-Jay Mao).
Figure 1 in An instance of Boiga dendrophila dendrophila (Boie, 1827) (Reptilia: Colubridae) being parasitized by Amblyomma helvolum Koch, 1844 (Acari: Ixodidae), with comments about the attachment sites of this tick species
Figure 1 Two Amblyomma helvolum females attached to the neck of theBoiga dendrophila dendrophila(Photo by Jean-Jay Mao).
Figure 1 in Effects of commercial oils on the camel tick, Hyalomma dromedarii (Acari: Ixodidae) and their enzyme activities
Figure 1. Mortality percentages of Hyalomma dromedarii semi-engorged females treated with different concentrations of four oils at five successive days after treatment – A. Rosemary; B. Garlic; C. Neem; D. Cyperus. a, b, … etc. indicate significant differences between concentrations (%) of each oil for each day according to Tukey test (P <0.001).
Figure 3. Amblyomma scutatum A in Amblyomma scutatum Neumann, 1899 (Ixodida: Ixodidae) parasitizing Ctenosaura similis (Gray, 1831) (Squamata: Iguanidae) in Costa Rica
Figure 3. Amblyomma scutatum A. Dorsal view, female, B. Ventral view, female. C. Dorsal view, male, D. Ventral view, male.
Figure 2 in Amblyomma scutatum Neumann, 1899 (Ixodida: Ixodidae) parasitizing Ctenosaura similis (Gray, 1831) (Squamata: Iguanidae) in Costa Rica
Figure 2. Ctenosaura similis parasitized by Amblyomma scutatum. A. Group of ticks at the ventral base of the tail, B. Partially and fully engorged females on the left side of the neck.
Figure 1 in Amblyomma scutatum Neumann, 1899 (Ixodida: Ixodidae) parasitizing Ctenosaura similis (Gray, 1831) (Squamata: Iguanidae) in Costa Rica
Figure 1. Distribution of Amblyomma scutatum in Costa Rica. Past collection sites in descending order: Santa Rosa, Hacienda la Norma, Liberia, Parque Nacional Palo Verde, Bebedero, Monteverde, Puntarenas, Curú, Jacó, Quepos (red circles), and current collection site: Diriá (white triangle).
Figure 1 in A massive infestation of the long-legged buzzard, Buteo rufinus (Cretzschmar), by Hyalomma marginatum Koch (Acari: Ixodidae) ticks in Türkiye
Figure 1. The long-legged buzzard, Buteo rufinus, presents massive infestation by nymphs of Hyalomma marginatum ticks.
Figure 1 in Abnormal morphology of a larva of Ixodes lividus Koch, 1844 (Acari: Ixodidae)
Figure 1. Micrographs of the Ixodes lividus Koch, 1844 – A. The normal larva with a single anus; B. The larva with two anuses. Scale bars: 100 μm
Figure 5 in Multiplex-PCR differentiation of two Hyalomma and two Haemaphysalis species (Acari: Ixodidae)
Figure 5. One percent agarose gel electrophoresis stained with Cyber Safe® showing ITS2 fragments amplified using primer pairs Fanas/Ran for Hyalomma anatolicum (amplicon size 749 bp) and Fanas/Ras for Hy. asiaticum (amplicon size 408 bp) (A), COI fragments amplified using primer pairs Fsul/Rpun and Fsul/Rsul for Haemaphysalis punctata (amplicon size 524 bp) and Ha. sulcata (amplicon size 614 bp) (B). (100 bp DNA ladder).
Figure 2 in Multiplex-PCR differentiation of two Hyalomma and two Haemaphysalis species (Acari: Ixodidae)
Figure 2. The ventral morphological aspect of representative male specimens of Haemaphysalis punctata (A) collected from Mazandaran province and Ha. sulcata (B) collected from Lorestan province; white arrows showing position of character spur of coxa IV (size of specimens was not considered).
Figure 1 in Multiplex-PCR differentiation of two Hyalomma and two Haemaphysalis species (Acari: Ixodidae)
Figure 1. The dorsal morphological aspect of representative male specimens of Hyalomma anatolicum (A) and Hy. asiaticum (B) both collected from Lorestan province; white and red arrows showing position of characters cervical grooves and dorsal posterior margin of the basis capituli, respectively (size of specimens was not considered).
Figure 2 in Dermacentor (Acari: Ixodidae) species that we deal with in Iran: Polymorphic D. Marginatus or more distinct species
Figure 2. Phylogenetic relationships among Dermacentor taxa derived from Bayesian inference (BI) analysis of ITS2 sequence data; numbers below each node show posterior probability value in BI analysis (1,000 replicates). Taxon labels give the species name followed by (in turn) GenBank accession numbers in parentheses; taxa of Iran are highlighted in bold. The main clade of the tree is shown on the right side. Posterior probability values are inserted in the place of nodes. Branch lengths are proportional to the evolutionary changes. The phylogeny is rooted with
Figure 4 in Multiplex-PCR differentiation of two Hyalomma and two Haemaphysalis species (Acari: Ixodidae)
Figure 4. Fourth female coxal spur of Haemaphysalis sulcata (A) and Ha. punctata (B), both collected from Mazandaran province, Iran.
Figure 3 in Multiplex-PCR differentiation of two Hyalomma and two Haemaphysalis species (Acari: Ixodidae)
Figure 3. General schema of representative female dorsal scutum of Hyalomma anatolicum (A) and Hy. asiaticum (B), both collected from Lorestan province (size of specimens was not considered).
Figure 1 in Dermacentor (Acari: Ixodidae) species that we deal with in Iran: Polymorphic D. Marginatus or more distinct species
Figure 1. Morphological variability in scutal pattern of Dermacentor specimens collected from different parts of Iran.
Figure 4 in The parasitism of Persian jird by immature stages of Hyalomma asiaticum (Acari: Ixodidae) and its identification using molecular approaches in Iran
Figure 4. One percent agarose gel electrophoresis stained with Cyber Safe® showing 5.8S/ITS2 gene fragments amplified using Fanas/Ras for H. asiaticum with amplicon size 408 bp (100 bp DNA ladder). Numbers below bands representing location of collected specimens according to Fig. 4.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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