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244 results for “Obliquity”
FIGURE 12. Cladochaeta arthrostyla, male terminalia. A, D. Terminal view. B, E. Terminal oblique view. C in Going beyond the tip of the Drosophilidae iceberg: New Cladochaeta Coquillett, 1900 (Diptera: Drosophilidae) from Brazil
FIGURE 12. Cladochaeta arthrostyla, male terminalia. A, D. Terminal view. B, E. Terminal oblique view. C. Lateral view.
FIGURES 9–12. Sulawesi Onthophagus species, oblique habitus. 9, O. begoniophilus, paratype male from Ambang. 10, O. annulopunctatus, paratype male from Mogogonipa. 11, O. hollowayi, holotype male from Dumoga. 12, O in Sulawesi Onthophagus: seven new species in select groups (Coleoptera: Scarabaeidae: Scarabaeinae)
FIGURES 9–12. Sulawesi Onthophagus species, oblique habitus. 9, O. begoniophilus, paratype male from Ambang. 10, O. annulopunctatus, paratype male from Mogogonipa. 11, O. hollowayi, holotype male from Dumoga. 12, O. seseba, holotype male from Batui (pygidium up). Scale lines approximately 1 mm.
FIGURES 1–8. Sulawesi Onthophagus species, oblique habitus. 1, O. bisscrutator, holotype male from Toraut. 2, O. scrutator, male from Moramo. 3, O. bongkudai, holotype male from Moajat. 4, O. sangirensis, male from Toraut. 5, O in Sulawesi Onthophagus: seven new species in select groups (Coleoptera: Scarabaeidae: Scarabaeinae)
FIGURES 1–8. Sulawesi Onthophagus species, oblique habitus. 1, O. bisscrutator, holotype male from Toraut. 2, O. scrutator, male from Moramo. 3, O. bongkudai, holotype male from Moajat. 4, O. sangirensis, male from Toraut. 5, O. holosericus, male from Marena, 6, female from Marena. 7, O. sopu, holotype male from Sopu. 8, O. manguliensis, male from Mangoli. Scale lines approximately 1 mm.
Figs 2 – 7. Male prosomata, oblique frontal views. 2 in The Panjange nigrifrons group in Borneo (Araneae: Pholcidae): high diversity in Sarawak, apparent absence in Sabah
Figs 2 – 7. Male prosomata, oblique frontal views. 2. Panjange pueh Huber, sp. nov. (ZFMK Ar 14576). 3. Pa. niah Huber, sp. nov. (ZFMK Ar 14579). 4. Pa. kapit Huber, sp. nov. (ZFMK Ar 14583). 5. Pa. nigrifrons Deeleman-Reinhold & Deeleman, 1983 (RMNH, Sepaku). 6. Pa. kubah Huber, sp. nov. (ZFMK Ar 14587). 7. Pa. seowi Huber, sp. nov. (ZFMK Ar 14590).
FIGURE 1. Cleisostoma mulunense. A. Habit. B. Flower, obliquely back view. C. Flower, side view. D. Flower, front view. E. Floral bract. F in Cleisostoma mulunense (Orchidaceae), a new species from Guangxi, China
FIGURE 1. Cleisostoma mulunense. A. Habit. B. Flower, obliquely back view. C. Flower, side view. D. Flower, front view. E. Floral bract. F. Dorsal sepal, petal and lateral sepal. G. Column, front view. H. Flower with sepals and petals removed, side view. I. Flower with sepals and petals removed, longitudinal section. J. Anther caps, top view, side view and ventral view. K. Pollinaria. Drawing by Yun-Xi Zhu from a living plant of the holotype population.
Database of 'Electron Dynamics in Self-Consistent Wave-Particle Interactions with Oblique Chorus Waves'
<p>Particle data selected at T=2840 and at T=3050.</p>
FIGURE 2. Burmannia itoana. A. Habit. B, C. Flower, oblique view. D. Flower, top view. E–G. Flower, side view. H. Flower, longitudinal section. I in A checklist of Burmanniaceae in Eastern Indochina with a new record from Vietnam, Burmannia itoana
FIGURE 2. Burmannia itoana. A. Habit. B, C. Flower, oblique view. D. Flower, top view. E–G. Flower, side view. H. Flower, longitudinal section. I. Distal portion of dissected floral tube viewed from inside, showing stamens. J. Underground part and base of aerial stem. Nuraliev 2444. Photos by M.S. Nuraliev.
The derived data in manuscript Oblique impact adjacent to Chang'E-5 landing site: Fine-scale analysis and implication on the provenance of returned samples
<p>This website contains the derived data in the <em>manuscript <span>Oblique impact adjacent to Chang’E-5 landing site: </span><span>F</span><span>ine-scale analysis and implication on the provenance of returned samples </span></em>by <span>Wenhui Wu</span><span>, </span><span>Zhaopeng Chen</span><span>, Xin Ren</span><span>, Dawei Liu</span><span>,</span><span> </span><span>Xingguo Zeng, Yuan Chen, Wangli Chen, Wei Yan, Bin Liu,Xiaoxia Zhang, Jianjun Liu</span> for <em><span>Journal of Geophysical Research: Planets</span></em></p>
The dataset for the paper "Ambient noise tomography reveals asymmetric impact damage zone beneath Lonar crater, India: Implications for oblique impact cratering in heterogeneous basalt with planetary applications"
<p>These datasets are used to produce the results and generate figures and tables in the manuscript titled as "Ambient Noise Tomography Reveals Asymmetric Impact Damage Zone Beneath Lonar Crater, India: Implications for Oblique Impact Cratering in Heterogeneous Basalt with Planetary Applications" submitted to JGR-Planets.</p>
Hyperspectral Oblique Plane Microscopy -- microparticles 3D & laser beam profile & hyperspectral image of UV adhesive
<p>Processed spectra data for microparticle classification and raw hyperspectral images from mixture of microparticle</p>
FIGURES 31–38. Microcercis and Conioscinella morphology. 31, M. insularis male genitalia, posterior view. 32, M. johanni male genitalia, posterior oblique view. 33, M. minor male genitalia, posterior view. 34, M. minor male genitalia, lateral oblique view. 35, M. murphyi male genitalia, posterior oblique view. 36, M. murphyi male genitalia, lateral oblique view. 37 M. trifeminarum male genitalia, posterior oblique view. 38, C in Revision of Nearctic Microcercis Beschovski (Diptera: Chloropidae), with Synonymy of Incertella Sabrosky
FIGURES 31–38. Microcercis and Conioscinella morphology. 31, M. insularis male genitalia, posterior view. 32, M. johanni male genitalia, posterior oblique view. 33, M. minor male genitalia, posterior view. 34, M. minor male genitalia, lateral oblique view. 35, M. murphyi male genitalia, posterior oblique view. 36, M. murphyi male genitalia, lateral oblique view. 37 M. trifeminarum male genitalia, posterior oblique view. 38, C. ovalis male genitalia, posterior oblique view.
FIGURES 23–30. Microcercis and Conioscinella morphology. 23, M. laytoni habitus, lateral view. 24, M. trifeminarum habitus, lateral view. 25, C. ovalis HOLOTYPE habitus, lateral view. 26, M. albipalpis male genitalia, posterior oblique view. 27, M. albipalpis surstylus. 28 M. bispina male genitalia, posterior oblique view. 29, M. dorsata male genitalia, posterior oblique view. 30, M in Revision of Nearctic Microcercis Beschovski (Diptera: Chloropidae), with Synonymy of Incertella Sabrosky
FIGURES 23–30. Microcercis and Conioscinella morphology. 23, M. laytoni habitus, lateral view. 24, M. trifeminarum habitus, lateral view. 25, C. ovalis HOLOTYPE habitus, lateral view. 26, M. albipalpis male genitalia, posterior oblique view. 27, M. albipalpis surstylus. 28 M. bispina male genitalia, posterior oblique view. 29, M. dorsata male genitalia, posterior oblique view. 30, M. infesta male genitalia, posterior oblique view.
Twin Worlds, Divergent Fates: How Obliquity has differently shaped Pluto's and Triton's landscapes and climates
<p>Netcdf files : simulations of Pluto and Triton (Fig. 3)</p> <p> </p>
Text-fig. 10. The lower incisor-canine battery of Hippopotamodon erymanthius from Mahmutgazi, Turkey. A) SMNK Ma1 Gips 6 (A1 – oblique stereo anterior view, A2 – anterior view); B) SMNK Ma1 Gips 17, oblique stereo anterior view (scales 10 mm). in Hippopotamodon erymanthius (Suidae, Mammalia) from Mahmutgazi, Denizli-Çal basin, Turkey
Text-fig. 10. The lower incisor-canine battery of Hippopotamodon erymanthius from Mahmutgazi, Turkey. A) SMNK Ma1 Gips 6 (A1 – oblique stereo anterior view, A2 – anterior view); B) SMNK Ma1 Gips 17, oblique stereo anterior view (scales 10 mm).
An axisymmetric limit for the width of the Hadley cell in a planet with large obliquity and long seasonality
<p>Dataset used in 'An axisymmetric limit for the width of the Hadley cell in a planet with large obliquity and long seasonality' submitted to GRL. Further information can be found in the different Readme files</p>
TEXT-FIGURE 4. Minutella cf. minuta (Cooper, 1981), "La Passe bateau" off the south-west coast of Mayotte Island. (1a–e) MNHN-IB-2017-173. a–d. Juvenile articulated specimen in dorsal, oblique lateral, posterior oblique views, and close-up of the posterior part of the shell (the protegulum is clearly limited by a step-like growth line and its surface is slightly granular; the rugideltidium is already well developed whereas the interarea remains reduced). e. Dorsal valve interior in plan view (early ju- venile stage in the ontogeny of the dorsal valve). (2a–c) MNHN-IB-2017-174: dorsal valve interior with well-preserved spicular canopies in plan and oblique posterior views, and close-up of the spicular canopy. (3) MNHN-IB-2017-175: articulated speci- men (young stage of growth). (4) MNHN-IB-2017-176: dorsal valve interior of a young specimen in plan view. in Recent thecideide brachiopods from a submarine cave in the Department of Mayotte (France), northern Mozambique Channel
TEXT-FIGURE 4. Minutella cf. minuta (Cooper, 1981), "La Passe bateau" off the south-west coast of Mayotte Island. (1a–e) MNHN-IB-2017-173. a–d. Juvenile articulated specimen in dorsal, oblique lateral, posterior oblique views, and close-up of the posterior part of the shell (the protegulum is clearly limited by a step-like growth line and its surface is slightly granular; the rugideltidium is already well developed whereas the interarea remains reduced). e. Dorsal valve interior in plan view (early ju- venile stage in the ontogeny of the dorsal valve). (2a–c) MNHN-IB-2017-174: dorsal valve interior with well-preserved spicular canopies in plan and oblique posterior views, and close-up of the spicular canopy. (3) MNHN-IB-2017-175: articulated speci- men (young stage of growth). (4) MNHN-IB-2017-176: dorsal valve interior of a young specimen in plan view.
Datasets used in the papers: STree: A Single Multi-class Oblique Decision Tree Based on Support Vector Machines & ODTE - An ensemble of multi-class SVM-based oblique decision trees
<p>These are the 49 datasets used in the benchmark. 45 of them are from the UCI machine learning repository, while the other 4 correspond to a problem about fecundity estimation for fisheries</p>
FIGURE 1. Camaridium perezianum. A. Plant habit. B. Flower, front view. C. Flower, oblique view. D. Dissected perianth. E in A new species of Camaridium (Orchidaceae: Maxillariinae) from the cloud forests of Colombia
FIGURE 1. Camaridium perezianum. A. Plant habit. B. Flower, front view. C. Flower, oblique view. D. Dissected perianth. E. Column and detached labellum, side view. F. Extended labellum. G. Column, ventral view. Drawn by L. Rodríguez-Martínez from the holotype.
FIGURE 5. Bletia mixtecana. A. Flowering plant. B. Inflorescence. C. Flower, front view. D. Flower, oblique view. E. Flower, side view. F in Floral similarity and vegetative divergence in a new species of Bletia (Orchidaceae) from Mexico
FIGURE 5. Bletia mixtecana. A. Flowering plant. B. Inflorescence. C. Flower, front view. D. Flower, oblique view. E. Flower, side view. F. Flower from side with sepals and petals excised to show the sides of the labellum embracing the column. G. Dorsal sepal. H. Petal. I. Lateral sepal. J. Labellum. K. Column, side view. L. Column, ventral view. M. Ventral view of column apex after removal of anther and pollinarium. N. Anther. O. Pollinarium. Drawn by R. Jiménez-Machorro from Chávez-Rendón et al. 5598R.
FIGURE 2. Aspidistra viridiflora, flower structure. A Flower, oblique view. B. Flower, top view. C. Flower, side view. D. Flower, longitudinal section. E. Flower, side view. F. Flower, longitudinal section. G in Aspidistra viridiflora (Asparagaceae, Nolinoideae), a new species from Vietnam
FIGURE 2. Aspidistra viridiflora, flower structure. A Flower, oblique view. B. Flower, top view. C. Flower, side view. D. Flower, longitudinal section. E. Flower, side view. F. Flower, longitudinal section. G. Flower, longitudinal section, oblique-top view. All photos made from holotype by M.Romanov.
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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.