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690 results for “antennae”
Figure 2 from: Wang Y, Wang M, Shih C, Rasnitsyn AP, Yao J, Ren D, Gao T (2019) A new sawfly of Megalodontesidae (Insecta, Hymenoptera, Pamphilioidea) with pectinate antennae from the Early Cretaceous of China. ZooKeys 893: 115-123. https://doi.org/10.3897/zookeys.893.38512
Figure 2 A–EJibaissodes peichenae sp. nov., holotype, part: A head B basis of left antenna C basis of right antenna D right antenna E basal to middle section of right antenna F, GJibaissodes bellus, holotype: F right antenna G apical portion of right antenna. Abbreviations: md = mandible, sc = scape, ped = pedicel, oc = ocelli, 1st fla = 1st flagellomere, N1 = pronotum, psc2 = mesoscutum. Scale bars: 1 mm (A, D, F, G); 0.5 mm (B, C, E).
Fig. 7. Antennae. A. Streblopus opatroides van Lansberge, 1874. B. S in Systematics of the enigmatic South American Streblopus Van Lansberge, 1874 dung beetles and their transatlantic origin: a case study on the role of dispersal events in the biogeographical history of the Scarabaeinae (Coleoptera: Scarabaeidae)
Fig. 7. Antennae. A. Streblopus opatroides van Lansberge, 1874. B. S. punctatus (Balthasar, 1938). Note the differences between the two species concerning the colour of the apical flagellomeres and the number and shape of the articles. In S. punctatus, the suppression of arthrogenesis between ancestral articles III and IV has resulted in a reduction of the total number of antennomeres from 9 to 8.
FIGURE 5 in The first Cacomorphocerus species (Coleoptera, Cantharidae) from Rovno amber a second species of the genus with 11 - segmented antennae
FIGURE 5. Antenna of Cacomorphocerus meridionalis sp. n., holotype male. Scale bar 0.5 mm.
FIGURE 2 in Taxonomic update of the Neotropical genus Cryptocladocera Bezzi, 1923 (Diptera: Tachinidae), with remarks on tachinids with fissicorn antennae
FIGURE 2. Known distribution of Cryptocladocera species.
Figure 2. Antenna and leg 6 in A new millipede genus and a new species of Asphalidesmus Silvestri, 1910 (Diplopoda, Polydesmida, Dalodesmidea) from southern Tasmania, Australia
Figure 2. Antenna and leg 6 of paratype males. (A) Noteremus summus sp. n., QVM 23:46549; (B) N. infimus sp. n., QVM 23:12339; (C) Asphalidesmus golovatchi sp. n., QVM 23:46560. Scale bars: (A), (B) = 0.5 mm, (C) = 0.1 mm. Setae and antennal cones not shown.
Figure 61. Hylekobolus montanus female paratype, SEM. A antenna, overview B antennomere 5 with sensilla basiconica C antennomere 6 with sensilla basiconica D in Review of the Spirobolida on Madagascar, with descriptions of twelve new genera, including three genera of 'fire millipedes' (Diplopoda)
Figure 61. Hylekobolus montanus female paratype, SEM. A antenna, overview B antennomere 5 with sensilla basiconica C antennomere 6 with sensilla basiconica D gnathochilarium, part of endochilarium E left mandible, mesal view F left vulva, lateral view. 4iT = 4-combed internal teeth; av = anterior valve; cp = central pads; Endo = endochilarium; eT = external tooth; LT = lateral tooth; mp = molar plate; O = operculum; pL = pectinate lamella; pv = posterior valve; sb = sensilla basiconica.
Fig. 4 in New species of caddisflies with bipectinate antennae from Cretaceous Burmese amber (Insecta, Trichoptera: Odontoceratidae, Calamoceratidae)
Fig. 4. Palaeopsilotreta xiai Wichard & Wang, 2017. A. Male and possible female in one Baltic amber piece (ZFMK-TRI000815). B. Female with simple, filiform antennae in dorsal view (ZFMK-TRI000816). C. Female genitalia, as far as visible in cloudy amber (ZFMK-TRI000816). D. Drawing of female forewing. E. Head of male (ZFMK-TRI000811) in dorsal view with antennal, posterior and pronotal setose warts (s.w.). — F. P. burmanica sp. nov. (ZFMK-TRI000813), head of male with maxillary palps (mp), labial palps (lp) and basal bipectinate antennae with scapus (sc) and pedicellus (pe).
Data set for Neural-Network-Based Digital Predistortion for Active Antenna Arrays Under Load Modulation
<p>The dataset contains over-the-air measurements on a 64 active antenna array (Anokiwave AWMF-0129) operating at 28 GHz carrier frequency and transmitting a 200 MHz OFDM waveform with FFT size of 4096, 3168 active subcarriers, subcarrier spacing of 60 kHz and 5 times oversampling w.r.t the critical sampling rate. The dataset contains the I/Q samples of the TX waveform as well as the corresponding over-the-air received signals when the electrical beam is steered toward different beamforming directions. This dataset allows to observe and study the so-called beam-dependent load modulation, which is the phenomenon that causes the nonlinear characteristics of the antenna array to change with the beamforming direction. A Matlab script for data visualization is also provided.</p> <p>For further details please refer to the following papers:</p> <p>A. Brihuega <em>et al</em>., "Piecewise Digital Predistortion for mmWave Active Antenna Arrays: Algorithms and Measurements," in <em>IEEE Transactions on Microwave Theory and Techniques</em>, doi: 10.1109/TMTT.2020.2994311.</p> <p>A. Brihuega <em>et al</em>., “Neural-Network-Based Digital Predistortion for Active Antenna Arrays Under Load Modulation,” in <em>IEEE Microwave and Wireless Components Letters, </em>doi: 10.1109/LMWC.2020.3004003</p>
FIGURE 8. Antenna. A in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 8. Antenna. A. Pristocera ♂; B. Anisepyris ♀; C. Chlorepyris ♀; D. Trachepyris ♂.
Figure 9 from: Shaverdo H, Surbakti S, Sumoked B, Balke M (2020) Two new species of the Exocelina ekari group from New Guinea with strongly modified male antennae (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 960: 63-78. https://doi.org/10.3897/zookeys.960.55007
Figure 9 Abdominal ventrite 6 AExocelina athesphatos sp. nov., paratype BE. tsinga sp. nov., holotype.
Figure 6 from: Shaverdo H, Surbakti S, Sumoked B, Balke M (2020) Two new species of the Exocelina ekari group from New Guinea with strongly modified male antennae (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 960: 63-78. https://doi.org/10.3897/zookeys.960.55007
Figure 6 Exocelina tsinga sp. nov., paratype A median lobe in ventral view B median lobe in lateral view.
Figure 3 from: Shaverdo H, Surbakti S, Sumoked B, Balke M (2020) Two new species of the Exocelina ekari group from New Guinea with strongly modified male antennae (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 960: 63-78. https://doi.org/10.3897/zookeys.960.55007
Figure 3 Exocelina athesphatos sp. nov., paratype A right paramere in external view B right male protarsomeres 4–5 in ventral view.
Figure 2 from: Shaverdo H, Surbakti S, Sumoked B, Balke M (2020) Two new species of the Exocelina ekari group from New Guinea with strongly modified male antennae (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 960: 63-78. https://doi.org/10.3897/zookeys.960.55007
Figure 2 Exocelina athesphatos sp. nov., paratype A median lobe in ventral view B median lobe in lateral view.
Figure 7 from: Shaverdo H, Surbakti S, Sumoked B, Balke M (2020) Two new species of the Exocelina ekari group from New Guinea with strongly modified male antennae (Coleoptera, Dytiscidae, Copelatinae). ZooKeys 960: 63-78. https://doi.org/10.3897/zookeys.960.55007
Figure 7 Exocelina tsinga sp. nov., paratype A right paramere in external view B right male protarsomeres 4–5 in ventral view.
Drosophila antenna with arista
SciDraw upload
Figure 5 from: Kaltenbach T, Gattolliat J-L (2020) Pedicelliops gen. nov., a new genus from West Africa with striking antennae (Ephemeroptera, Baetidae). African Invertebrates 61(2): 119-135. https://doi.org/10.3897/afrinvertebr.61.59354
Figure 5 Pedicelliops capillifer gen. et sp. nov., larva morphology a foreleg (anterior view) b fore claw c fore femur and trochanter (posterior view) d apex of middle and hind femur e middle tibia and tarsus f hind tibia and tarsus. Scale bars: 0.2 mm.
Figure 6 from: Kaltenbach T, Gattolliat J-L (2020) Pedicelliops gen. nov., a new genus from West Africa with striking antennae (Ephemeroptera, Baetidae). African Invertebrates 61(2): 119-135. https://doi.org/10.3897/afrinvertebr.61.59354
Figure 6 Pedicelliops capillifer gen. et sp. nov., larva morphology: a foreleg b middle leg c hind leg. Scale bar: 0.5 mm.
Figure 4 from: Kaltenbach T, Gattolliat J-L (2020) Pedicelliops gen. nov., a new genus from West Africa with striking antennae (Ephemeroptera, Baetidae). African Invertebrates 61(2): 119-135. https://doi.org/10.3897/afrinvertebr.61.59354
Figure 4 Pedicelliops capillifer gen. et sp. nov., larva morphology a labrum b right mandible c right prostheca d left mandible e left prostheca f seta on left mandible g hypopharynx and superlinguae h maxilla i labium (left: ventral view, right: dorsal view) j paraglossa (ventral view). Scale bar: 0.1 mm.
Figure 3 from: Kaltenbach T, Gattolliat J-L (2020) Pedicelliops gen. nov., a new genus from West Africa with striking antennae (Ephemeroptera, Baetidae). African Invertebrates 61(2): 119-135. https://doi.org/10.3897/afrinvertebr.61.59354
Figure 3 Pedicelliops capillifer gen. et sp. nov., larva morphology a antenna b scale of pedicellus c gill I d margin of gill I e paraproct. Scale bars: 0.1 mm.
Figure 2 from: Kaltenbach T, Gattolliat J-L (2020) Pedicelliops gen. nov., a new genus from West Africa with striking antennae (Ephemeroptera, Baetidae). African Invertebrates 61(2): 119-135. https://doi.org/10.3897/afrinvertebr.61.59354
Figure 2 Pedicelliops capillifer gen. et sp. nov., larva morphology a head and thorax, lateral view b protuberance on fore protopteron c head, lateral view d head, ventral view (arrow: carina). Scale bars: 1 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)
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.