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690 results for “antennae”
Radio telescope (antenna)
Radio telescope (antenna) about 1970, Louvain-la-neuve (Belgium). Made out 500 pictures taken with a Galaxy S9 and 3D reconstruction with Zephyr3D Lite from 3DFlow. A radio telescope is a specialized antenna and radio receiver used to receive radio waves from astronomical radio sources in the sky. Radio telescopes are the main observing instrument used in radio astronomy, which studies the radio frequency portion of the electromagnetic spectrum emitted by astronomical objects, just as optical telescopes are the main observing instrument used in traditional optical astronomy which studies the light wave portion of the spectrum coming from astronomical objects. (Wikipedia) For more updates, please consider to follow me on Twitter at @GeoffreyMarchal. https://twitter.com/GeoffreyMarchal Source: Objaverse 1.0 / Sketchfab
FIGURES 28–33. Right male antenna. 28 in A review of Labidostomis species similar to L. longimana from southeastern Europe with descriptions of two new species from Greece and Turkey (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini)
FIGURES 28–33. Right male antenna. 28—Labidostomis balcanica; 29—L. graeca; 30—L. longimana; 31—L. tymphristica; 32—L. daccordii sp. nov.; 33—L. leonardii sp. nov. Not to scale.
FIGURE 15 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 15. Types of chaetic sensilla in Pseudopontinae and Dismorphiinae. A. sq1 in Pseudopontia paradoxa (x1.8 k) where the sensilas are very long and thin; B. sq1 in Leptidea amurensis amurensis ♂ (x4.5 k), C. sq2 in Moschoneura pinthous patricia ♂ (x2.3 k); D. sq3 found in Enantia jethys ♂ (x3.5 k).
FIGURE 14 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 14. (A–D). Sensilla in Dismorphiinae. A. Coeloconic sensilla type 1 (sc1) in Dismorphia spio ♂ (x9.0 k) surrounded by m2; B. Coeloconic sensilla type 1 (sc1) in Lieinix nemesis athis ♂ (x6.5 k) accompanied by m3; C. Coeloconic sensilla type 2 (sc2) in Leptidea duponcheli ♂ (x8.0 k) associated with m4; D. Basiconic sensilla (sb) in Enantia citrinella ♀ (x6.5 k).
FIGURE 11 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 11. (A–F). Distal antennomeres fused in Dismorphiinae and location of lateral sulci. A. Pseudopontia gola (x450) where there is a ventral unfinished division; B. Enantia citrinella ♂ (x200); it can observed the ventral fusion of three antennomeres and the dorsal division between the last distals (two fused); C. Dismorphia eunoe eunoe ♀ (x350), where there is apparently no fusion of the distal antennomeres; D. Moschoneura pinthous monica ♂ (x300) where the fusion/division is shown in the distal antennomere; E. Patia cordillera cordillera ♀ (x170); F. Dorsal view of the scaleless club of Pseudopieris sp. nov. ♀ (x80) in which it can observed an asymmetric lateral, lateral-dorsal, and dorsal distribution of the lateral sulci.
FIGURE 12 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 12. (A–F). Central sulci and pseudosulci in some species of Dismorphiinae. A. Sulcus in the 2° antennomere in Leptidea gigantea ♂ (x451); B. Sulcus in the 2° antennomere of L. gigantea ♀ (x800) irregular outline and near to pseudosulcus; C. Sulcus 6° antennomere in Enantia jethys ♂ (x850), with two pseudosulci; D. Central sulcus (well-defined boundary) in the 2° antennomere of Pseudopieris nehemia jessica ♂ (x900); E. Sulcus in the 3° antennomere of Moschoneura pinthous ♂ (x550); F. Sulcus in the 5° antennomere Patia c. cordillera ♀ (x550).
FIGURE 9 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 9. (A–D). Mesial scaleless antennomeres I of Pseudopontiinae and Dismorphiinae species (from the scaleless baseline). A. Tenth antennomere in antenna of Pseudopontia paradoxa (x270); B. Fourth antennomere in the antennal club of Leptidea gigantea ♂ (x500); C. Fifth antennomere in L. gigantea ♀ (x375); D. Fifth antennomere of Enantia citrinella ♂ (x370).
FIGURE 8 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 8. (A–D). Antennal club II of Dismorphiinae species. A. Dismorphia theucharila fortunata ♂ (x95); B. Moschoneura ela xanthella ♂ (x75); C. Patia c. cordillera ♂ (x47); D. Patia rethes ♂ (x32).
FIGURE 7 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 7. (A–D). Antennal club I of Dismorphiinae species. A. Enantia c. citrinella ♂ (x70); B. Pseudopieris v. viridula ♂ (x70); C. Lieinix nemesis athis ♂ (x60); D. Dismorphia amphione isolda ♂ (x60).
FIGURE 5 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 5. Composition from SEM of antenna and distal and medial antennomeres in Pseudopontia gola (x200).
FIGURE 4 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 4. (A–D). A. Unidentified sensilla 3 (ni3) with detail the apex (a). B. Unidentified sensilla 4 (ni4), always associated with one basiconic sensillum in Lieinix cinerascens ♂; C–D. Unidentified sensilla 5 (ni5), perhaps a type of coeloconic sensilla in Enantia lina marion ♀.
FIGURE 13 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 13. (A–F). Trichoid sensilla in central sulci of Pseudopontiinae and Dismorphiinae. A. Pseudopontia paradoxa (x4.0 k), with large pore (p) among microtrichia (m1) and small cuticular prominences (pc); B. Leptidea juvernica ♂ (x3.5 k; LCCA 10kV; WIDTH 37.7µm) with prominences (pc), more abundant; C. Enantia citrinella ♂ (x2.7 k) with pores (p), like P. paradoxa, but scarcer; bases of sensilla with ornamentations (arrow); D. Pseudopieris sp. nov. ♂ (x3.5 k) has the shorter sensilla; E. Lieinix neblina ♂ (x3.5 k), the bases of the sensilla highly ornamented (arrows); F. Dismorphia amphione isolda ♀ (x3.5 k).
FIGURE 6 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 6. (A–D). Antennal club of Dismorphiinae and Pseudopontiinae species. A. Antennal apex in Pseudopontia paradoxa (x220); B. Leptidea juvernica ♂ (x140); C. Leptidea gigantea ♂ (x90); D. L. gigantea ♀ (x70).
FIGURE 3 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 3. (A–G). Other types of sensilla on the antennae of Dismorphiinae. A. Basiconic sensilla (sb) in Enantia citrinella ♀; B. Basiconic sensilla (sb) in Pseudopieris nehemia jessica ♀, with cuticular pores (pc) and cuticular wall pores (pps) in the top box; C. Auriculate sensilla (sa) in Pseudopieris nehemia jessica ♂; D. Coeloconic sensilla type 1 (sc1) with distal details d1 (Moschoneura pinthous patricia ♂), d2 and d3 (Patia c. cordillera ♂); E. Coeloconic sensilla type 2 (sc2) surrounded by smooth and sharp microtrichia type 4 (m4) in Leptidea morsei ♂; F. Unidentified sensilla 1 (ni1) in P. n. jessica ♀ surrounded by microtrichia type 2 (m2); G. Unidentified sensilla 2 (ni2) in P. n. jessica ♀; microtrichia type 2 (m2).
FIGURE 2 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 2. (A–H). Structures and sensilla of scaleless antennomeres in Dismorphiinae. A. Second scaleless antennomere of the club in Pseudopieris nehemia prasina ♂; B. Central sulcus (regular outline) of the same antennomere in P. n. prasina ♂. The trichoid sensilla and a chaetic sensilla (outside the sulcus, left) in darkened areas; C. Microtrichia type 1 (m1) within the sulci, surrounding the trichoid sensilla (Lieinix nemesis athis ♂). There are cuticular pores (pc) at the base of the grooves; D. Microtrichia type 2 (m2) (L. n athis ♂.), outside the sulci; E. Microtrichia type 3 (m3) (L. n. athis ♂), around the coeloconic sensilla in some species of Dismorphiinae; F. Typical trichoid sensilla (st) surrounded by microtrichia type 1 (m1) in Enantia jethys ♀; G. Chaetic sensilla type 1 (sq1), the most common, present in P. nehemia penia ♀; surrounded by a cuticular collar (cc) interrupted by a notch in a 'V' form; H. Chaetic sensilla type 2 (sq2) surrounded by microtrichia type 2 (m2) in Patia c. cordillera ♀.
FIGURE 1 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 1. (A–D). Antennal clubs and scaleless antennomeres in Dismorphiinae. A. Antennal club of Leptidea juvernica ♂; B. scaleless antennomeres of Pseudopieris v. viridula ♂; C. distal antennomere of Pseudopieris v. viridula ♂, three central sulci, the most distal reduced like a pseudosulcus; D. Sixth antennomere more distal of the club (from the first scaleless) Enantia a. albania ♂; it shows the typical configuration in Dismorphiinae: three sulci, two laterals (sl) and one central (sc); pseudosulci (ps).
FIGURE 16 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 16. Other sensilla in Dismorphiini. A. Sensilla auriculate in Pseudopieris sp. nov. ♀ (x10.0 k); B. Unidentified sensilla 1 (sni1) in Leptidea juvernica ♀ (x4.7 k) where they are grouped at the apex of the distal antennomere; C. Unidentified sensilla 2 (sni2) in Pseudopieris nehemia aequatorialis ♂ (x4.7 k); D. Unidentified sensilla 3 (sni3) in Leptidea darvazensis ♂ (x14.0 k).
FIGURE 10 in Comparative exploration of antennae in Pseudopontia, and antennal clubs of the tribes Leptideini and Dismorphiini (Lepidoptera: Pieridae)
FIGURE 10. (A–D). Mesial scaleless antennomeres II on antennal club of Dismorphiinae (counting from the scaleless baseline). A. Eighth antennomere in Pseudopieris nehemia aequatorialis ♂ (x400); B. Fourth antennomere in Lieinix nemesis athis ♀ (x300); C. Fourth antennomere in Dismorphia amphione isolda ♂ (x300); D. Fourth antennomere of Moschoneura pinthous monica ♂ (x450).
FIGURE 4. Antennae. A, D in Three new South American species of genus Aphis (Hemiptera: Aphididae) living on species of Euphorbia (Euphorbiaceae)
FIGURE 4. Antennae. A, D, Aphis tehuelchis Nieto Nafría & López Ciruelos, sp. n.; B, E, Aphis maulensis Mier Durante & García-Tejero, sp. n.; C, F–H, Aphis eucollinae López Ciruelos & Ortego, sp. n.; A–C, apterous viviparous females; D–F, alate viviparous females; G, oviparous female; H, male.
FIGURES 1–6. Diagnostic characters. 1–3. Aulis annexa Mulsant, 1850, 1. antenna, 2. prosternal process, 3 in On the taxonomy of the genus Sidonis Mulsant, stat. nov. (Coleoptera: Coccinellidae: Chnoodini) with descriptions of new species from Brazil
FIGURES 1–6. Diagnostic characters. 1–3. Aulis annexa Mulsant, 1850, 1. antenna, 2. prosternal process, 3. claw; 4–6. Sidonis guttata (Sicard, 1912), 4. antenna, 5. prosternal process, 6. claw.
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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)
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.