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2,120 results for “fly species”
Fig. 3 in The Taxonomy And Phylogenetic Relationships Of Species In The Bactrocera Musae Complex Of Fruit Flies (Diptera: Tephritidae: Dacinae) In Papua New Guinea
Fig. 3. Bactrocera (Bactrocera) ramuensis, new species.
Figs 1–7. Epistrophe spp. 1–4 – E in A new species of the hover flies genus Epistrophe Walker, 1852 (Diptera: Syrphidae) from the Russian Far East
Figs 1–7. Epistrophe spp. 1–4 – E. lentiggini sp. n., female, holotype; 5–7 – E.
Figure 2 in DNA barcoding for the identification of Limonia crane flies (Diptera: Limoniidae) from China, including a new species and a newly recorded species
Figure 2. Barcoding gap of Limonia COI sequences.
Supplementary data to publication "Growth efficiency, intestinal biology, and nutrient utilization and requirements of black soldier fly (Hermetia illucens) larvae compared to monogastric livestock species: a review"
<p>The datasets provided in the excel file were used to generate Table 2 and Fig. 2 in the publication entitled "Growth efficiency, intestinal biology, and nutrient utilization and requirements of black soldier fly (Hermetia illucens) larvae compared to monogastric livestock species: a review" by Seyedalmoosavi et al., 2022 published in Journal of Animal Science and Biotechnology. https://doi.org/10.1186/s40104-022-00682-7</p>
Fig. 37 in Eight new species of marine dolichopodid flies of Thinophilus Wahlberg, 1844 (Diptera: Dolichopodidae) from peninsular Thailand
Fig. 37. Thinophilus variabilis sp. nov., ♀, habitus.
Fig. 1 in Mining Flies Of The Subfamily Agromyzinae (Diptera, Agromyzidae) Of Ukrainian Transcarpathia, With The Description Of Three New Species
Fig. 1. Collecting sites in Transcarpathia of Ukraine.
Fig. 1–3. C. absinthi. 1 in Fruit Flies Of The Genus Campiglossa (Diptera, Tephritidae) In Iran, With The Key To Species
Fig. 1–3. C. absinthi. 1 — ♀, habitus, right; 2 — mesonotum, dorsally; 3 — wing (SIZK).
Fig. 35–36 in Fruit Flies Of The Genus Campiglossa (Diptera, Tephritidae) In Iran, With The Key To Species
Fig. 35–36. Campiglossa sp. 35 — ♀, habitus, right; 36 — wing (SMNC).
Distinct decision-making properties underlying the species specificity of group formation of flies
<p>Many animal species form groups. Group characteristics differ between species, suggesting that the decision-making of individuals for grouping varies across species. However, the actual decision-making properties that lead to interspecific differences in group characteristics remain unclear. Here, we compared the group formation processes of two Drosophilinae fly species, Colocasiomyia alocasiae and Drosophila melanogaster, which form dense and sparse groups, respectively. A high-throughput tracking system revealed that C. alocasiae flies formed groups faster than D. melanogaster flies, and the probability of C. alocasiae remaining in groups was far higher than that of D. melanogaster. C. alocasiae flies joined groups even when the group size was small, whereas D. melanogaster flies joined groups only when the group size was sufficiently large. C. alocasiae flies attenuated their walking speed when the inter-individual distance between flies became small, whereas such behavioural properties were not clearly observed in D. melanogaster. Furthermore, depriving C. alocasiae flies of visual input affected grouping behaviours, resulting in a severe reduction in group formation. These findings show that C. alocasiae decision-making regarding grouping, which greatly depends on vision, is significantly different from D. melanogaster, leading to species-specific group-formation properties.</p>
Integrative species delimitation reveals fine-scale allopatric speciation in a good-flying insect: A case study on Cylindera pseudocylindriformis complex (Coleoptera, Cicindelidae)
<p>Alpha taxonomy is fundamental for many biological fields. Delineation of species boundary, however, can be challenging in a species complex, where different species share a similar morphology and diagnostic characters may not be available. In this context, integrative approaches that incorporate molecular and morphological data sets and account for speciation history can be helpful to alpha taxonomy. Different approaches to species delimitation based on different assumptions are complementary, and by integrating the results from multiple approaches we can generate a more reliable and objective taxonomic decision. In this study, we applied three molecular approaches to species delimitation and inferred the demographic history based on an isolation with migration model to test a morphologically based taxonomic hypothesis for the <em>Cylindera</em> <em>pseudocylindriformis</em> complex. We discuss the association between genetic divergence and microhabitat specialization, and we further corroborated that <em>C</em>. <em>subtilis</em> sp. nov. is a valid new species by integrating the results from model-based species delimitation and the genealogical divergence index. We argue that genetic endemism can form at a small geographic scale, even in a winged insect-like tiger beetle. Our results also indicated that there may still be undocumented species diversity of Taiwanese <em>Cylindera</em> remaining to be discovered.</p>
Figs 1–8 in The long-legged flies (Diptera: Dolichopodidae) from Kurile Islands, with description of a new species of the genus Sciapus Zeller, 1842
Figs 1–8. Sciapus spp.: 1–6 – S. basarukini sp. n., holotype, male: 1 – habitus; 2 – anten-
Figs 1–3 in A list of hover-flies of Bolshoi Shantar Island (the Sea of Okhotsk) with description of a new species of the genus Platycheirus Lepeletier et Serville, 1828 (Diptera: Syrphidae)
Figs 1–3. Platycheirus shantar sp. n., holotype male. 1 – external appearance, dorsal
Figure 7 in A New Species of Teratomyza, the First Fern Fly from New Guinea (Diptera, Teratomyzidae)
Figure 7. Teratomyza ismayi sp. nov., right prothoracic leg of male, lateral view.
Figure 4 in A New Species of Teratomyza, the First Fern Fly from New Guinea (Diptera, Teratomyzidae)
Figure 4. Teratomyza ismayi, inner claw of left prothoracic tarsus of male.
Figure 3 in A New Species of Teratomyza, the First Fern Fly from New Guinea (Diptera, Teratomyzidae)
Figure 3. Teratomyza ismayi, outer claw of left prothoracic tarsus of male.
Figure 14 in New and Poorly Known Species of Crane Flies (Diptera: Limoniidae) from New South Wales, Australia
Figure 14. Teucholabis (Teucholabis) reginae, female, general habitus.
Figures 23 in New and Poorly Known Species of Crane Flies (Diptera: Limoniidae) from New South Wales, Australia
Figures 23. Hexatoma metallica female (23) ovipositor, lateral, with hypogynial valve inset.
Figure 44 in New and Poorly Known Species of Crane Flies (Diptera: Limoniidae) from New South Wales, Australia
Figure 44. Orimarga joana female, ovipositor, lateral.
Figure 9 in New and Poorly Known Species of Crane Flies (Diptera: Limoniidae) from New South Wales, Australia
Figure 9. Molophilus (Molophilus) opulus, female, ovipositor, lateral.
Figure 4 in New and Poorly Known Species of Crane Flies (Diptera: Limoniidae) from New South Wales, Australia
Figure 4. Molophilus (Molophilus) flavocingulatus, male, general habitus.
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.