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91 results for “Sand fly”
High-resolution spatiotemporal modelling of sand fly abundance in Cyprus in 2015
<p>The expected population size of <em>P. papatasi</em> in Cyprus in 2015 was simulated using the stochastic climate-driven population dynamics model of the species presented in Erguler <em>et al.</em> (2019). The model was simulated with air temperature and relative humidity obtained from WRF-ARW. Two sets of parameters, one for Steni and one for Geri - each with 1000 alternative configurations - were used to simulate the average number of adult females per day per trap (a proxy to expected population size).</p>
Fig. 6 in Morphological and DNA-based description of TRiChophoRomyiA peixotoi n. sp. (Diptera: Psychodidae), a new sand fly species from the Brazilian Amazon
Fig. 6 Phylogenetic gene tree based on COI DNA barcodes of Trichophoromyia spp. Numbers near nodes indicate bootstrap values above 50. Lateral grey bars indicate the MOTU species delimitation partitions made by the algorithms ABGD and RESL
Fig. 5 Trichophoromyia peixotoi n in Morphological and DNA-based description of TRiChophoRomyiA peixotoi n. sp. (Diptera: Psychodidae), a new sand fly species from the Brazilian Amazon
Fig. 5 Trichophoromyia peixotoi n. sp. holotype. Genital filaments, with a focus on the apex of aedeagal duct (scale bar: 200 μm)
Fig. 2 in Morphological description of Pintomyia (Pifanomyia) veintemillaSi n. sp., a new sand fly species from the sub-Andean region of Bolivia
Fig. 2 Pintomyia (Pif.) veintemillasi n. sp. female. a head frontal view; b antennomer fII; c cibarium and pharynx; d cibarium; e laciniae of the maxillae; f sternite 2; g spermatheca; h rapid view of a complete genitalia; i wing. Scales are in mm
Fig. 1 in Morphological description of Pintomyia (Pifanomyia) veintemillaSi n. sp., a new sand fly species from the sub-Andean region of Bolivia
Fig. 1 Pintomyia (Pif.) veintemillasi n. sp. male. a Head frontal view; b antennomer fII; c cibarium and pharynx; d sternite 2; e genitalia profile; f paramere and aedeagus, in lateral view; g genital pump and genital filaments; h wing. Scales are in mm
Fig. 4 Trichophoromyia peixotoi n in Morphological and DNA-based description of TRiChophoRomyiA peixotoi n. sp. (Diptera: Psychodidae), a new sand fly species from the Brazilian Amazon
Fig. 4 Trichophoromyia peixotoi n. sp. holotype (A and C), and paratype M2 (E-16395) (B and D): A, B Male terminalia, lateral view (scale bar: 100 μm). C, D Paramere, lateral view (scale bar: 20 μm)
Fig. 7 Phlebotomus creticus n in Sand fly fauna of Crete and the description of PhleboToMUS (AdleRIUS) CReTICUS n. sp. (Diptera: Psychodidae)
Fig. 7 Phlebotomus creticus n. sp. female. a Head. b Mouth parts (mandible, maxilla, hypopharynx and labrum, respectively). c labial furca. d Palp. e Third palpal article. f Flagellomeres 1, 2, 3, 12, 13 and 14; G pharynx. h Cibarium. i Spermathecae. j Genital fork. k Body of the spermathecae. l Wing
Fig. 6 Phlebotomus creticus n in Sand fly fauna of Crete and the description of PhleboToMUS (AdleRIUS) CReTICUS n. sp. (Diptera: Psychodidae)
Fig. 6 Phlebotomus creticus n. sp. male. a Genitalia. b Sperm pump and aedeagal ducts. c Top of the aedeagal ducts. d Parameral sheath. e Sperm pump
Fig. 5 Phlebotomus creticus n in Sand fly fauna of Crete and the description of PhleboToMUS (AdleRIUS) CReTICUS n. sp. (Diptera: Psychodidae)
Fig. 5 Phlebotomus creticus n. sp. male. a Head. b Pharynx. c Cibarium. d Flagellomeres 1, 2 and 3. e Flagellomeres 12, 13 and 14. f Palp. g Third palpal article. h Labial furca. i Labrum. j Wing
Fig. 1 Trichophoromyia peixotoi n in Morphological and DNA-based description of TRiChophoRomyiA peixotoi n. sp. (Diptera: Psychodidae), a new sand fly species from the Brazilian Amazon
Fig. 1 Trichophoromyia peixotoi n. sp. holotype: A Head, dorsal view (scale bar: 100 μm). B Flagellomeres FX–FXIV (scale bar: 50 μm)
Fig. 3 in Sand fly fauna of Crete and the description of PhleboToMUS (AdleRIUS) CReTICUS n. sp. (Diptera: Psychodidae)
Fig. 3 Bayesian inference phylogenetic tree, including posterior probabilities computed in the BI analysis (values> 0.95 are shown) and bootstrap values computed in the ML analysis (values> 70 are shown)
Fig. 2 in Sand fly fauna of Crete and the description of PhleboToMUS (AdleRIUS) CReTICUS n. sp. (Diptera: Psychodidae)
Fig. 2 Percentages of species collected per prefecture in both published literature and present samplings
Fig. 3 in Morphological and DNA-based description of TRiChophoRomyiA peixotoi n. sp. (Diptera: Psychodidae), a new sand fly species from the Brazilian Amazon
Fig. 3 Lateral view of male terminalia of the holotype (A) and the paratype M2 (E-16395) (B) of Trichophoromyia peixotoi n. sp. (scale bar: 200 μm)
Fig. 1 in Sand fly fauna of Crete and the description of PhleboToMUS (AdleRIUS) CReTICUS n. sp. (Diptera: Psychodidae)
Fig. 1 Measurements of male genitalia. a Measurements of the length of the gonocoxite (in black), beginning of the internal tuft of setae (in blue) and ending of the internal tuft of setae (in red). b Area of the internal tuft of setae of the gonocoxite. c Parameral sheath length (in red) and distance from the tubercle to the top of the parameral sheath (in black)
Fig. 3 in Morphological description of Pintomyia (Pifanomyia) veintemillaSi n. sp., a new sand fly species from the sub-Andean region of Bolivia
Fig. 3 Comparative representation showing the pigmentation of the thorax profile of females (scale is in mm): a Pi. (Pif.) maranonensis; b Pi. (Pif.) veintemillasi; c Pi. (Pif.) nevesi
Fig. 4 in Sand fly fauna of Crete and the description of PhleboToMUS (AdleRIUS) CReTICUS n. sp. (Diptera: Psychodidae)
Fig. 4 MALDI-TOF mass spectrometry of Phlebotomus creticus n. sp. a Dendrogram obtained by cluster analysis of MALDI-TOF MS protein profiles of 28 sand fly specimens collected in Crete. Distances are displayed in relative units. b Comparison of protein spectra of Ph. creticus n. sp. with four species of the subgenus Adlerius, zoomed mass range 4–15 kDa
Fig. 5 in Sand fly fauna of South-Eastern Romania, with the description of PhlebotomUS (TranSphlebotomUS) Simonahalepae n. sp. (Diptera: Psychodidae)
Fig. 5 Female of Phlebotomus simonahalepae n. sp. Holotype. Included in the ML tree according to Fig. 4. a Head. b Flagellomeres 1, 2, 3. c Labrum—epipharynx, maxillary lacinia, mandible, hypopharynx (from left to right). d Pharynx. e Spermathecae. f Genital furca and spermathecae
Fig. 1 in Sand fly fauna of South-Eastern Romania, with the description of PhlebotomUS (TranSphlebotomUS) Simonahalepae n. sp. (Diptera: Psychodidae)
Fig. 1 Canaraua Fetii, Dobrogea Region, Romania. a Cave entrance. b, c, d Limestone formations. e The specific collection site for the current study. f General view of the natural reserve
Fig. 3 in Sand fly fauna of South-Eastern Romania, with the description of PhlebotomUS (TranSphlebotomUS) Simonahalepae n. sp. (Diptera: Psychodidae)
Fig. 3 Morphological details of the spermathecae for the female specimen of the Phlebotomus simonahalepae n. sp.
Fig. 2 in Sand fly fauna of South-Eastern Romania, with the description of PhlebotomUS (TranSphlebotomUS) Simonahalepae n. sp. (Diptera: Psychodidae)
Fig. 2 Morphological details of the pharynx for the female specimen of the Phlebotomus simonahalepae n. sp.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.