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115 results for “moth flies”
Figs 7–11 in Platyplastinx ibanezbernali sp. nov., a new species of moth fly (Diptera: Psychodidae) from Ecuador
Figs 7–11. Platyplastinx ibanezbernali sp. nov., female paratype. 7 – head; 8 – wing; 9–10 – egg; 11 – terminalia. Abbreviations: ap – anterior pole, cer – cercus, hyp – hypogynium, pp – posterior pole. Scales in millimeters.
Figs 12–16 in Platyplastinx ibanezbernali sp. nov., a new species of moth fly (Diptera: Psychodidae) from Ecuador
Figs 12–16. Platyplastinx ibanezbernali sp. nov., photographies. 12 – head, male holotype; 13 – head, female paratype; 14 – wing, male paratype; 15 – genitalia, male holotype; 16 – genitalia, female paratype. Scale in μm.
Figs 1–6 in Platyplastinx ibanezbernali sp. nov., a new species of moth fly (Diptera: Psychodidae) from Ecuador
Figs 1–6. Platyplastinx ibanezbernali sp. nov., male holotype. 1 – head; 2 – antennal scape, pedicel and first two flagellomeres; 3 – wing; 4 – epandrium and hypandrium; 5–6 – male genitalia. Abbreviations: asc – ascoids, ata – accessory tenacula, ep – epandrium, es – scape, fl – flagellomere, gns – gonostyli, gnx – gonocoxites, hpd – hypopods, hpr – hypandrium, pd – pedicel, ta – tenaculum. Scale in millimeters.
Figs 4–8 in Paleopsychoda zherikhini, a new Cretaceous species of moth flies from Taimyr amber (Diptera: Psychodidae: Psychodinae)
Figs 4–8. Paleopsychoda zherikhini sp. n.: (4, 5) holotype no. 3308/13: (4) head and thorax in lateral view, (5) structural details of head, lateral view; (6, 7) paratype no. 3308/14: (6) head, (7) structural details of head, frontal view; (8) wing details of holotype no. 3308/13. Scale bars 0.1 mm in Figs 5, 7 and 0.5 mm in Fig. 8.
Figs 9, 10 in Paleopsychoda zherikhini, a new Cretaceous species of moth flies from Taimyr amber (Diptera: Psychodidae: Psychodinae)
Figs 9, 10. Female genitalia of Paleopsychoda zherikhini sp. n., paratype no. 3308/15: (9) ventro-lateral view, (10) details in ventro-lateral view. Scale bar 0.5 mm.
Data from: Are day-flying moths more specialised in larval dietary breadth?
<p>Although diurnality is widespread across Lepidoptera and has evolved many times independently, its causes and ecological implications are yet poorly understood. The 'Salient Aroma Hypothesis' (SAH) postulates that diurnal insect herbivores are overall more specialised in dietary breadth than species active at night. It is furthermore assumed that diurnality evolved more frequently in species that live in cooler environments. Using European geometrid moths as a model group, we tested whether diurnal activity in adults is associated with an increased larval dietary breadth as predicted by the 'Salient Aroma Hypothesis.' We further investigated whether species that exclusively occur in colder regions or whose flight period is restricted to cool seasons are more likely to exhibit a diurnal flight activity. Contrary to expectation, we found no consistent differences in larval dietary breadth between diurnal and nocturnal species, and thus no support for the 'Salient Aroma Hypothesis.' Diurnal activity occurred more frequently in species restricted to cold regions, but not in species restricted to cool seasons. We conclude that diurnality could serve as an advantageous adaptation in cold environments, depending on further factors such as resource availability or predation pressure, but has no immediate consequences for larval dietary breadth.</p>
Fig. 1 in Ecological Analysis Of Butterflies And Day-Flying Moths Diversity Of The Gouraya National Park (Algeria)
Fig. 1. Geographic location of Gouraya National Park and the study sites (Hafir Halim).
Fig. 55 in New And Little Known Species Of Moth Flies (Diptera: Psychodidae: Psychodinae) From Nicaragua
Fig. 55. Map of the collecting areas
Figs 12–18 in New And Little Known Species Of Moth Flies (Diptera: Psychodidae: Psychodinae) From Nicaragua
Figs 12–18. Arisemus atrasetus (Rapp, 1945), male. 12 = scape, pedicel and basal flagellom-
Figs. 1–2 in A new species of the genus Gondwanoscurus, and two new records of non-biting moth flies (Diptera: Psychodidae: Psychodinae) from Socotra Island
Figs. 1–2. Gondwanoscurus socotrensis sp. nov., wing (1 – male; 2 – female).
Fig. 1 in Paleopsychoda zherikhini, a new Cretaceous species of moth flies from Taimyr amber (Diptera: Psychodidae: Psychodinae)
Fig. 1. Map showing the locality of Zhdanikha, where the amber was found.
Data from: Are day-flying moths more specialised in larval dietary breadth?
Open the record for dataset details and reuse information.
FIGURES 1–9. Seoda cavernicola. 1 in Moth flies (Diptera, Psychodidae) living in the dark of caves in the Dinaric Karst
FIGURES 1–9. Seoda cavernicola. 1. Eyebridge of holotype. 2–3. Eyebridges of 2♂ paratypes. 4. Scape, pedicel, 1st and 2nd flagellomeres. 5. Basal palpus segment. 6. Wing. 7. Hypandrium, styles and aedeagus ventral view. 8. Epandrium, epandrial processes and proctiger, ventral view. 9. Basiphallus sclerite and dorsal parameral bridge with 'furca', ventral view. Scale: 1.0 mm (6), 0.1 mm (1–4, 7–9), 0.05 mm (5).
FIGURES 22–26. Psychoda glamocensis. 22 in Moth flies (Diptera, Psychodidae) living in the dark of caves in the Dinaric Karst
FIGURES 22–26. Psychoda glamocensis. 22. Hypandrium, gonostyli and aedeagus, holotype. 23. Epandrium, subepandrial plate and bases of epandrial processes. 24. Right epandrial process with retinaculum. 25. Left gonocoxite, parameral bridges and position of distiphallus sclerite, holotype. 26. Basiphallus and distiphallus sclerites and periaedeagal membrane. Scale: 0.1 mm (22–26).
FIGURES 10–21. Psychoda glamocensis. 10 in Moth flies (Diptera, Psychodidae) living in the dark of caves in the Dinaric Karst
FIGURES 10–21. Psychoda glamocensis. 10. Eyebridge of male holotype. 11–12. Eyebridges of male paratypes. 13. Same of female paratype. 14. Flagellomeres 10–13. 15. 2nd flagellomere with ascoid. 16. Male mouth parts.17–18. Female mouth parts. 19. Wing. 20. Female subgenital plate. 21. Internal genital sclerites, female. Scale: 1.0 mm (19), 0.1 mm (10–15, 20–21), 0.05 mm (16–18).
FIGURES 1–4. Neurosystasis bromeliphila nov. spec. 1— 3 wing, 2— 3 in A new species of moth fly (Diptera, Psychodidae, Psychodinae) collected from Bromeliads in Florida
FIGURES 1–4. Neurosystasis bromeliphila nov. spec. 1— 3 wing, 2— 3 wing base with 'scent organ' [SO], 3— Ƥ wing, 4— 3 genitalia ventral view [GSR right gonostyle; GSL left gonostyle; GCR right gonocoxite; GCL left gonocoxite; SSR right surstyle; X tergite 10]. Scale: 1 mm (figs 1, 3); 0.5 mm (figs 2, 4).
FIGURES 28–30 in Moth flies (Diptera, Psychodidae) from Portugal with descriptions of a new genus new species and additions to the fauna of the Iberian Peninsula
FIGURES 28–30. Mystropsychoda sp. 28 wing; 29 flagellomeres 5 and 6; 30 head. Scale bars: Fig. 28—1 mm; fig. 29—0.05 mm; fig. 30—0.2 mm.
FIGURES 31–41 in Moth flies (Diptera, Psychodidae) from Portugal with descriptions of a new genus new species and additions to the fauna of the Iberian Peninsula
FIGURES 31–41. Psychoda iucunda sp. nov.: 31 wing female; 32 wing male; 33 base of male wing; 34 base of male antenna; 35 tip of male antenna; 36 aedeagus, hypandrium and styles ventral view; 37 aedeagus ventral view, 38 epandrium with appendages; 39 dorsal bridge between gonocoxites; 40 male genitalia lateral; 41 female genital plate.
FIGURES 8–15 in Moth flies (Diptera, Psychodidae) from Portugal with descriptions of a new genus new species and additions to the fauna of the Iberian Peninsula
FIGURES 8–15. Ulomyia iberica sp. nov.: 8 eyebridge; 9 antennal base; 10 antennal flagellomeres 12–14; 11 flagellomere 6 with ascoids; 12 wing; 13 patagium with scent organ; 14 styles, aedeagus and ventral bridge; 15 epandrium with appendages and hypoproct. Scale bars: Fig. 12—1 mm; Figs 8, 9, 10, 11, 13, 14, 15—0.1 mm.
FIGURES 2–7 in Moth flies (Diptera, Psychodidae) from Portugal with descriptions of a new genus new species and additions to the fauna of the Iberian Peninsula
FIGURES 2–7. Pneumia portuguesa sp. nov.: 2 head; 3 wing; 4 front part of thorax lateral with patagium and scent organ; 5 surface of scent organ; 6 styles, aedeagus and hypandrium; 7 epandrium with appendages and hypoproct [arrow in fig. 6 indicates apically serrate sclerite] Scale bars: Fig. 3—1mm; figs 2, 4, 6, 7—0.1 mm; fig. 5—0.02 mm.
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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.