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2,120 results for “fly species”
Figure 1 50 in Phylogenetic relationships of the bacchine Flower Flies (Diptera: Syrphidae) based on molecular characters, with a description of a new species of Melanostoma (Schiner, 1860)
Figure 1 50% majority rule consensus cladogram produced from Bayesian analysis of COI data. Bayesian posterior probabilities are shown at each node.
Figure 3 in Phylogenetic relationships of the bacchine Flower Flies (Diptera: Syrphidae) based on molecular characters, with a description of a new species of Melanostoma (Schiner, 1860)
Figure 3 Melanostoma janeceki Mengual, sp. nov. A, male holotype (ZFMK-DIP-00015940), lateral view; B, female paratype (ZFMK-DIP-00015958), lateral view; C, male holotype, habitus; D, female paratype (ZFMK-DIP-00015958), habitus; E, male holotype, frontal Downloadedview; F, fromfemale Brill.com paratype12/12 (/ ZFMK- 2023 03:06:37PM DIP-00015958), frontal view; G,via maleOpen holotype Access,. labels This; H is, an femaleopenparatype access (article ZFMK-DIP-distributed 00015958), underlabelsthe. terms of the CC-BY 4.0 License. https://creativecommons.org/licenses/by/4.0/
Figure 7 in DNA barcoding for the identification of Limonia crane flies (Diptera: Limoniidae) from China, including a new species and a newly recorded species
Figure 7. Limonia macrostigma (Schummel, 1829). A. Male hypopygium, dorsal view; B. Male hypopygium, ventral view. Scale bars = 0.2 mm.
Figure 6. Limonia juvenca Alexander, 1935. A in DNA barcoding for the identification of Limonia crane flies (Diptera: Limoniidae) from China, including a new species and a newly recorded species
Figure 6. Limonia juvenca Alexander, 1935. A. Male hypopygium, dorsal view; B. Male hypopygium, ventral view. Scale bars = 0.2 mm.
Figure 5. Limonia juvenca Alexander, 1935. A in DNA barcoding for the identification of Limonia crane flies (Diptera: Limoniidae) from China, including a new species and a newly recorded species
Figure 5. Limonia juvenca Alexander, 1935. A. Habitus of male, lateral view; B. Head, lateral view; C. Thorax, dorsal view; D. Wing; E. Female ovipositor, lateral view. Scale bars: A = 2.0 mm; B, E = 0.3 mm; C = 0.5 mm; D = 1.0 mm.
Figure 4 in DNA barcoding for the identification of Limonia crane flies (Diptera: Limoniidae) from China, including a new species and a newly recorded species
Figure 4. Limonia albiterminalis Lü, Ren & Zhang, sp. nov. A. Male hypopygium, dorsal view; B. Male hypopygium, ventral view. Scale bars = 0.2 mm.
Figure 3 in DNA barcoding for the identification of Limonia crane flies (Diptera: Limoniidae) from China, including a new species and a newly recorded species
Figure 3. Limonia albiterminalis Lü, Ren & Zhang, sp. nov. A. Habitus of male, lateral view; B. Head, lateral view; C. Thorax, dorsal view; D. Wing; E. Female ovipositor, lateral view. Scale bars: A = 2.0 mm; B, E = 0.3 mm; C = 0.5 mm; D = 1.0 mm.
Figure 1 in DNA barcoding for the identification of Limonia crane flies (Diptera: Limoniidae) from China, including a new species and a newly recorded species
Figure 1. Maximum likelihood (A) and Neighbor-joining (B) trees of Limonia species from the Oriental and Palaearctic Regions. All sequences of L. albiterminalis Lü, Ren & Zhang, sp. nov. and L. juvenca Alexander, 1935 and the sequence of L. macrostigma (Schummel, 1829) in red color were obtained in this study.
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. griseofasciata, female, holotype; 1, 5 – habitus, lateral view; 2 – habitus, dorsal view, 3, 7 – fore- and mesolegs; 4, 6 – head, frontal view. Scale bar: 1 mm.
Figures 1–9 in A new genus of scuttle flies (Diptera: Phoridae) from China, with description of a new species
Figures 1–9. Corniphora yanbianensis gen. & sp. nov. 1. Body, left view. 2. Head, anterior view. 3. Head, anterior view, showing pedicel. 4. Wing. 5. Fore leg, posterior view. 6. Mid leg, anterior view. 7. Hind leg, anterior view. 8. Male terminalia, left view. 9. Male terminalia, right view. Scale bars: 1 = 1.0 mm; 2–7 = 0.2 mm; 8–9 = 0.1 mm.
Fig. 3 in Observations On Species Abundance Distribution In Fly Collections
Fig. 3. Frequency polygons of 2-moving averaged frequencies. X and Y refer to the artificial collection containing the first 46 319 individuals and the last 46 524 individuals in the combined collection
Fig. 4 in Observations On Species Abundance Distribution In Fly Collections
Fig. 4. Further frequency polygons of 2-moving averaged frequencies. A, B and C refer to artificial collections mentioned in the text. Details see at Fig. 1.
Fig. 2 in Observations On Species Abundance Distribution In Fly Collections
Fig. 2. Frequency polygons of 2-moving averaged frequencies relating to combined collections. The 2003–2004 polygon is shifted in the figure by two abundance classes to the right. Details see at Fig. 1.
Fig. 9 in Pyrgotid Flies Assigned To Apyrgota. Iii. Species Of Afropyrgota Gen. N. And Tylotrypes (Diptera, Pyrgotidae)
Fig. 9. Afropyrgota, ♀ abdominal sternites, macerated, ventral view: 1 — A. copelandi sp. n.; 2 — A. marshalli; 3 — A. uzungwa sp. n. Рис. 9. Afropyrgota, ♀ брюшные стерниты ♀, мацерированные, вид снизу: 1 — A. copelandi sp. n.; 2 — A. marshalli; 3 — A. uzungwa sp. n.
Fig. 10 in Pyrgotid Flies Assigned To Apyrgota. Iii. Species Of Afropyrgota Gen. N. And Tylotrypes (Diptera, Pyrgotidae)
Fig. 10. Tylotrypes: 1–3 — T. fuscipes (Wulp) (1 — holotype Ơ, RMNH, habitus left; 2 — non-type ♀, Taiwan, CMNH, habitus left; 3 — same, mid femur, anterior); 4–12 — T. immsi Bezzi (4 — holotype, ♀, India, BMNH, habitus left; 5 — same, face, anterior; 6 — non-type ♀, Nepal, CNC, macerated oviscape, left; 7–8 — aculeus, ventral and lateral; 9 — same, spermatheca; 10 — non-type Ơ, macerated epandrium and hypandrium, right; 11, 12 — phallus glans, lateral and ventral); 13 — T. longa (Shi), holotype ♀, China, IZAS, habitus left (photo L.-h. Wang, modified); 14, 15 — T. sp., ♀, Thailand, ZSSM (14 — habitus left, 15 — head, anterolateral view). fo — femoral organ; mvl — medioventral lobe; opc — ovipositor callus; phg — phallic guide. Рис. 10. Tylotrypes: 1–3 — T. fuscipes (Wulp) (1 — голотип Ơ, RMNH, общий вид слева; 2 — нетиповая ♀, Тайвань, CMNH, общий вид слева; 3 — то же, среднее бедро, спереди); 4–12 — T. immsi Bezzi (4 — голотип ♀, Индия, BMNH, общий вид слева; 5 — то же, лицо, спереди; 6 — нетиповая ♀, Непал, CNC, мацерированый основной членик яйцеклада, вид слева; 7, 8 — акулеус, вид снизу и вид сбоку; 9 — то же, сперматека; 10 — нетиповой Ơ, мацерированые эпандрий и гипандрий вид справа; 11–12 — гланс фаллюса, вид сбоку и вид снизу); 13 — T. longa (Shi), голотип ♀, Китай, IZAS, общий вид слева (фото Л.-Х. Ваня, с изменениями); 14, 15 — T. sp., ♀, Таиланд, ZSSM (14 — общий вид слева, 15 — голова, вид спереди и сбоку). fo — феморальный орган; mvl — медиовентральная лопасть; opc — мозоль основного членика яйцеклада; phg — направляющая лопасть.
Fig. 7 in Pyrgotid Flies Assigned To Apyrgota. Iii. Species Of Afropyrgota Gen. N. And Tylotrypes (Diptera, Pyrgotidae)
Fig. 7. Afropyrgota uzungwa sp. n., ♀: 1 — holotype, lateral view; 2, 3 — head (2 — left, 3 — anterior); 4 — mesonotum dorsal; 5 — wing; 6 — fore leg, posterior; 7 — mid leg, anterior; 8 — hind leg, anterior and abdomen, ventrolateral. Scale bar 5 mm. Рис. 7. Afropyrgota uzungwa sp. n., ♀: 1 — голотип, вид сбоку; 2–4 — голова (2 — вид слева, 3 — anterior); 4 — среднеспинка сверху; 5 — крыло; 6 — передняя нога, вид сзади; 7 — средняя нога, вид спереди; 8 — задняя нога, вид спереди и брюшко, вид снизу и сбоку. Масштабная линейка 5 мм.
Fig. 6 in Pyrgotid Flies Assigned To Apyrgota. Iii. Species Of Afropyrgota Gen. N. And Tylotrypes (Diptera, Pyrgotidae)
Fig. 6. Afropyrgota ota sp. n., ♀: 1 — holotype, lateral view; 2–4 — head (2 — left, 3 — anterior, 4 — dorsal view); 5 — wing; 6 — mid leg, anterior; 7 — prosternum, anteroventral; 8 — paratype abdomen, lateral view. Рис. 6. Afropyrgota ota sp. n., ♀: 1 — голотип, вид сбоку; 2–4 — голова (2 — вид слева, 3 — спереди, 4 — сверху); 5 — крыло паратипа; 6 — средняя нога, спереди; 7 — простернум, спереди и снизу; 8 — брюшко паратипа, вид сбоку.
Fig. 5 in Pyrgotid Flies Assigned To Apyrgota. Iii. Species Of Afropyrgota Gen. N. And Tylotrypes (Diptera, Pyrgotidae)
Fig. 5. Afropyrgota marshalli, holotype Ơ: 1 — lateral view; 2 — labels, 3 — wing; 4 — mesonotum, dorsal view; 5 — epandrium, right view. Рис. 5. Afropyrgota marshalli, голотип Ơ: 1 — вид сбоку; 2 — этикетки, 3 — крыло; 4 — среднеспинка, вид сверху; 5 — эпандрий, вид справа.
Fig. 4 in Pyrgotid Flies Assigned To Apyrgota. Iii. Species Of Afropyrgota Gen. N. And Tylotrypes (Diptera, Pyrgotidae)
Fig. 4. Afropyrgota marshalli, ♀: 1 — lateral view; 2–4 — head (2 — left, 3 — anterior, 4 — dorsal view); 5 — mesonotum, dorsal view; 6 — wing; 7 — mid femur, anterior view; 8 — oviscape, ventrolateral; 9 — same, lateroventral lobe; 10 — aculeus; 11 — spermathecae. Fig. 4. Afropyrgota marshalli, ♀: 1 — вид сбоку; 2–4 — голова (2 — вид слева, 3 — спереди, 4 — сверху); 5 — среднеспинка, вид сверху; 6 — крыло; 7 — среднее бедро, вид спереди; 8 — основной членик яйцеклада, вид снизу и сбоку; 9 — то же, латеровентральная лопасть; 10 — акулеус; 11 — сперматеки.
Fig. 3 in Pyrgotid Flies Assigned To Apyrgota. Iii. Species Of Afropyrgota Gen. N. And Tylotrypes (Diptera, Pyrgotidae)
Fig. 3. Afropyrgota mambilla sp. n., ♀: 1 — holotype, lateral view; 2– 4 — head (2 — left, 3 — anterior, 4 — dorsal view); 5 — mesonotum, dorsal view; 6 — fore leg, posterior; 7 — mid leg, anterior; 8 — oviscape, lateroventral; 9 — same, apex, ventral.
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.