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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. 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 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. 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
Data from: Flying without fear: shooting disturbance has little effect on site preferences in a conflict goose species
<p>Human-modified landscapes have created opportunities for numerous taxa. Agricultural expansion has proven advantageous for several Arctic-breeding goose species, leading to increased abundance and intensified conflict with farmers. Shooting is frequently implemented as a mitigation strategy to control population and via scaring to alter the spatial distribution of conflict species. However, the efficacy of such regimes in manipulating the fear landscape is not always investigated.</p> <p>We developed resource selection functions using GPS-tracking data for Greenland barnacle geese (<em>Branta leucopsis</em>) wintering on Islay, Scotland to assess foraging site choice. We assessed overall foraging site preference and evaluated the influence of shooting management on foraging site selection of key habitats.</p> <p>Barnacle geese selected for improved grassland areas and the likelihood of utilisation varied between these fields according to field-specific management. Protected areas were strongly selected for along with newly reseeded grassland. Field-level exposure to shooting disturbance did not cause a notable change in site selection.</p> <p><strong><em>Synthesis and Applications: </em></strong>Our results demonstrate the importance of providing refuges within managed agricultural landscapes to encourage site use and minimise conflict. We highlight how low intensity shooting disturbance may be ineffective in altering winter habitat selection of high-value foraging sites (especially near roosts). If future management aimed to stimulate redistribution higher intensity shooting disturbance along with the spatial and temporal coordination of shooting effort would likely be required to create a stronger perceived gradient of disturbance risk.</p>
Fig. 4 in Molecular screening of tsetse flies and cattle reveal different Trypanosoma species including T. grayi and T. theileri in northern Cameroon
Fig. 4 Dcmtlcbutcon of Trypanosoma mpeccem cn tmetme flcem. a Relatcve abundance of tlspanomomal DNA bs mpeccem cn the gut. b Relatcve abundance of tlspanomomal DNA bs mpeccem cn plobomccm. c Collelatcon of tlspanomomal DNA cn gut and plobomccm. Abbreviations: Tg, T. grayi; Tc, T. congolense; Tb, T. brucei mmp.; Tv, T. vivax. If no amplccon wam detected, the fls wam conmcdeled to be negatcve
Fig. 3 in Molecular screening of tsetse flies and cattle reveal different Trypanosoma species including T. grayi and T. theileri in northern Cameroon
Fig. 3 The mequence of an amplccon obtacned flom tmetme fls gut wcth plcmelm mpeccfcc fol T. grayi. Speccfcc plcmelm (TGR-In plcmel met) talgeted agacnmt T. grayi amplcfced a 525 bp flagment (MG234546, Addctconal fcle 1: Table S4) flom tmetme fls gut mample (ID 237-51-00211-1-40-10, G. tachinoides, Addctconal fcle 1: Table S4). The flagment wam mequenced and alcgned wcth the collempondcng flagment of genomcc DNA flom T. grayi ANR4 (JMRU01000589)
Fig. 5 in Species Accumulation Curves And Similarity Traits Of A Species-Rich Fly (Diptera) Community
Fig. 5. Jackknifed NESS indices relating to the kth and (k + 1)th group of 50, k = 1,2,…, 19. In case of k = 8 and k = 14 samples from different years are compared
Fig. 2. Sample-based curve for 2003–2005 in Species Accumulation Curves And Similarity Traits Of A Species-Rich Fly (Diptera) Community
Fig. 2. Sample-based curve for 2003–2005. Two points, corresponding to species numbers after adding the first group of ten to the sample in 2004 and 2005 are denoted by empty symbol
Figs 38–48 in New And Little Known Species Of Moth Flies (Diptera: Psychodidae: Psychodinae) From Nicaragua
Figs 38–48. Platyplastinx tango Quate et Brown, 2004, male. 38 = head, frontal view; 39 = frons and facets in detail, frontal view; 40 = terminal flagellomeres and ascoids; 41 = maxilla and palpus maxillaris; 42 = terminal lobes of labium; 43 = thoracic sclerites, lateral view; 44 = tarsal claw of P 1, lateral view; 45 = epandrium and epandrial clasping lobe, lateral view; 46 = gonopod, lateral view; 47 = aedeagal complex and gonopods, dorsal view; 48 = distal part of aedeagal complex, inner view. Scale bars: 38, 43 = 0.3 mm; 40, 41 = 0.2 mm; 39,
Figs 31–37 in New And Little Known Species Of Moth Flies (Diptera: Psychodidae: Psychodinae) From Nicaragua
Figs 31–37. Arisemus venustus Ježek, Oboňa et Le Pont sp. n., male. 31 = scape, pedicel and basal flagellomeres; 32 = terminal lobes of labium; 33 = thoracic sclerites, lateral view; 34 = halter, lateral view; 35 = wing; 36 = aedeagal complex and gonopod, lateral view; 37 = dissected left distal part of aedeagal complex in detail, lateral view. Scale bars: 35 = 0.5 mm;
Figs 1–11 in New And Little Known Species Of Moth Flies (Diptera: Psychodidae: Psychodinae) From Nicaragua
Figs 1–11. Arisemus atrasetus (Rapp, 1945), male. 1 = head, frontal view; 2 = frons and fac- ets in detail, frontal view; 3 = terminal flagellomeres (16th antennomere missing, not ob- served); 4 = maxilla and palpus maxillaris; 5 = cibarium, labrum and epipharynx; 6 = thoracic sclerites, lateral view; 7 = halter, lateral view; 8 = tarsal claw of P 1, lateral view; 9 =
Figures 9-10 in A new species of Triphleba Rondani (Diptera: Phoridae) from Kyrgyzstan with some other scuttle flies from the region
Figures 9-10. Pictures of habitats. 9: Tien Shan Mts, Kakshaal-Too Range, above Kok-Kyya River Valley, 40.804750N, 76.471861E, 3600 m, 16 August 2010, high-mountain grass society/rocks. Photo by N. Simov; 10: Tien Shan Mts, Kakshaal-Too Range, near Kol-Suu Lake, 40.704694N, 76.389389E, 3500 m, 15 August 2010, highmountain grass society. Photo by N. Simov.
Figures 1-4 in A new species of Triphleba Rondani (Diptera: Phoridae) from Kyrgyzstan with some other scuttle flies from the region
Figures 1-4 Triphleba simovi sp. n. male: 1: head and thorax; 2: wing; 3: left face of hypopygium; 4: right face of hypopygium.
Figures 5-8 in A new species of Triphleba Rondani (Diptera: Phoridae) from Kyrgyzstan with some other scuttle flies from the region
Figures 5-8. Triphleba simovi sp. n. female: 5: general view; 6: head and thorax; 7: sternite 7; 8: wing.
Fig. 8 in Empidoid flies from Cabo Verde (Diptera, Empidoidea, Dolichopodidae and Hybotidae) are not only composed of Old World tropical species
Fig. 8. Crossopalpus complicatus sp. nov., male holotype, terminalia (leg. P. Grootaert and I. Van de Velde, RBINS). A. Right surstyli. B. Lateral view of right epandrial lamella. C. Dorsal view of epandrium, with detail of left surstyli. D. Tip of right surstylus from inside. Scales: 0.1 mm.
Fig. 1 in Empidoid flies from Cabo Verde (Diptera, Empidoidea, Dolichopodidae and Hybotidae) are not only composed of Old World tropical species
Fig. 1. Aphrosylus salensis sp. nov., male holotype, habitus (leg. P. Grootaert and I. Van de Velde, RBINS).
Fig. 2 in Empidoid flies from Cabo Verde (Diptera, Empidoidea, Dolichopodidae and Hybotidae) are not only composed of Old World tropical species
Fig. 2. Aphrosylus salensis sp. nov., male holotype, terminalia. A. Epandrium, lateral view. B. Cerci, dorsal view. C. Ventral surstylus, lateral view. D. Ventral view of epandrium, below the epandrial lobes. E. Ventral view of epandrium. Scales: 0.1 mm.
Fig. 5 in Empidoid flies from Cabo Verde (Diptera, Empidoidea, Dolichopodidae and Hybotidae) are not only composed of Old World tropical species
Fig. 5. Crossopalpus salensis sp. nov., male paratype, terminalia (leg. P. Grootaert and I. Van de Velde, RBINS). A. Right epandrial lamella with right surstylus. B. Dorsal view of epandrium. C. Tip of right surstylus, with left surstyli below. D. Left surstyli, lateral view. Scales: 0.1 mm.
Fig. 7 in Empidoid flies from Cabo Verde (Diptera, Empidoidea, Dolichopodidae and Hybotidae) are not only composed of Old World tropical species
Fig. 7. Crossopalpus complicatus sp. nov., male holotype, habitus (leg. P. Grootaert and I. Van de Velde, RBINS).
ScienceDex guides
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.