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1,315 results for “Aberrations”
FIGURES 6–14 in Chimaerocyon gen. nov., a morphologically aberrant myrmecophilous genus of water scavenger beetle (Coleoptera: Hydrophilidae: Sphaeridiinae)
FIGURES 6–14. Morphological details of Chimaerocyon shimadai (6–13) and C. sumatranus (14). 6—ventral view, 7—egg drawn to scale with Fig. 6, 8—aedeagus of the holotype, 9—male sternite 8 of the holotype, 10—male sternite 9, 11—hind wing of the holotype, 12–14—abdominal apex (12—male holotype of C. shimadai, 13—female paratype of C. shimadai, 14— female holotype of C. sumatranus). Abbreviations (numbers refer to characters in Fig. 32): msuc—male suckers on maxilla, elpr—elevated median portion of prosternum, wepi—wide epipleuron posteriorly, shtars—shortened tarsus, abdem— abdominal emargination.
FIGURES 23–30 in Chimaerocyon gen. nov., a morphologically aberrant myrmecophilous genus of water scavenger beetle (Coleoptera: Hydrophilidae: Sphaeridiinae)
FIGURES 23–30. Detailed morphology of Chimaerocyon shimadai (23–26, 28–30) and C. sumatranus (27). 23—meso- and metathorax in ventral view, 24—mesoventrite in lateral view, 26—median portions of meso- and metaventrite in ventral view, 26–27—right elytral apex, 28—metatarsus, 29—metatarsal claws, 30—detail of apical portion of elytral series 1–2.
FIGURES 1–5 in Chimaerocyon gen. nov., a morphologically aberrant myrmecophilous genus of water scavenger beetle (Coleoptera: Hydrophilidae: Sphaeridiinae)
FIGURES 1–5. Habitus of Chimaerocyon species. 1–3—male paratype of Chimaerocyon shimadai (1—dorsal view, 2—lateral view, 3—frontal view). 4–5—holotype of C. sumatranus (4—dorsal view, 5—frontal view).
FIGURES 15–22 in Chimaerocyon gen. nov., a morphologically aberrant myrmecophilous genus of water scavenger beetle (Coleoptera: Hydrophilidae: Sphaeridiinae)
FIGURES 15–22. Detailed morphology of Chimaerocyon shimadai (15–21) and C. sumatranus (22). 15—head in dorsal view, 16—head in ventral view, 17—prothorax and head in ventral view, 18—clypeus in lateral view, 19, 22—mentum, 20— profurca, 21—elevated mesal portion of prosternum. Abbreviations (numbers refer to those used in Fig. 32): cly—clypeus, msuc—male sucker on maxilla.
FIGURES 7–14 in A new aberrant species of Nipponocercyon from the mountains of southeastern China (Coleoptera: Hydrophilidae: Sphaeridiinae)
FIGURES 7–14. Morpology of Nipponocercyon satoi sp. nov., SEM micrographs of female paratypes. 7: head in dorsal view; 8: head in ventral view; 9: anterior tibia, dorsal view; 10: antenna in ventral view; 11: prosternum; 12: prothorax and anterior leg in ventral view; 13: whole body in lateral view; 14: detail of the punctation of the pronotum. Abbreviations: ang: antennal grooves of prothorax; aps: antennal peg-like sensilla; prt: the free prosternal "tooth" on prosternum-hypomeron border; pfd: profemoral depression.
FIGURES 15–20 in A new aberrant species of Nipponocercyon from the mountains of southeastern China (Coleoptera: Hydrophilidae: Sphaeridiinae)
FIGURES 15–20. Morpology of Nipponocercyon satoi sp. nov., SEM micrographs of female paratypes. 15: meso- and metathorax in ventral view, detail; 16: detail of mesoventral plate and metaventral process; 17: meso- and metathorax in ventral view, general view; 18: posterior leg, ventral view; 19: elytron, lateral view; 20: detail of basal portion of elytron and scutellat shield. Abbreviations: grp: grooves for reception of procoxae; mtr: ridge of the metaventral process.
FIGURES 1–6 in A new aberrant species of Nipponocercyon from the mountains of southeastern China (Coleoptera: Hydrophilidae: Sphaeridiinae)
FIGURES 1–6. Nipponocercyon satoi sp. nov. 1–4: general habitus of the female paratype (1: dorsal view, 2: ventral view, 3: lateral view, 4: frontal view). 5–6: aedeagus of the holotype (5: phallobase and parameres, 6: median lobe).
FIGURE 21 in A new aberrant species of Nipponocercyon from the mountains of southeastern China (Coleoptera: Hydrophilidae: Sphaeridiinae)
FIGURE 21. Distribution and general habitus of known species of Nipponocercyon. Habitus photos shown to scale. Figure of N. sichuanicus adopted from Fikáček et al. (2012), that of N. shibatai from Hoshina & Fikáček (2010).
Supplemental Data for: Aberrant cortex contractions impact mammalian oocyte quality
<p>Supplemental data of the paper from Nikalayevich et al. </p><p>It contains the raw data of mouse and human oocytes features generated from Oocytor and used in the analysis. </p>
Inferring allele-specific copy number aberrations and tumor phylogeography from spatially resolved transcriptomics (output data)
<p>This contains the output results of CalicoST (inferred CNAs and cancer clones), results of comparison methods, and CNAs inferred from WES data of 13 samples across four cancer types.</p> <p>In this updated version, we also included the simulated data and the results from CalicoST and other methods in CalicoST_simulation_deposit.zip. README contains the details of deposited files.</p>
Aberrated Bead Stack
<p>Bead stack taken on lower path of a 4Pi without deformable mirror corrections. DCIMG examples, not for other purposes.</p>
FIGURE 3 in An aberrant colydiine-like tenebrionoid beetle from mid-Cretaceous Burmese amber (Coleoptera: Tenebrionoidea: Zopheridae)
FIGURE 3. General habitus of Coslonatus rasnitsyni gen. et sp. nov., holotype, NIGP177330, under confocal microscopy. A, Dorsal view. B, Ventral view. Scale bars: 400 μm.
FIGURE 2 in An aberrant colydiine-like tenebrionoid beetle from mid-Cretaceous Burmese amber (Coleoptera: Tenebrionoidea: Zopheridae)
FIGURE 2. General habitus of Coslonatus rasnitsyni gen. et sp. nov., holotype, NIGP177330, under widefield fluorescence. A, Dorsal view. B, Ventral view. Scale bars: 500 μm.
FIGURE 1 in An aberrant colydiine-like tenebrionoid beetle from mid-Cretaceous Burmese amber (Coleoptera: Tenebrionoidea: Zopheridae)
FIGURE 1. General habitus of Coslonatus rasnitsyni gen. et sp. nov., holotype, NIGP177330, under incident light. A, Dorsal view. B, Ventral view. Scale bars: 500 μm.
FIGURE 4 in An aberrant colydiine-like tenebrionoid beetle from mid-Cretaceous Burmese amber (Coleoptera: Tenebrionoidea: Zopheridae)
FIGURE 4. Details of Coslonatus rasnitsyni gen. et sp. nov., holotype, NIGP177330, under confocal microscopy. A, Head, dorsal view. B, Mouthparts, ventral view. C, Elytral base, dorsal view. D, Middle portion of elytra, dorsal view. E, Antennal club, ventral view. F, Protarsus, ventral view. G, Mesotarsus, ventral view. H, Metatarsus, ventral view. Abbreviations: an1,9–11, antennomeres 1,9–11; es, elytral suture; ey, compound eye; lbp, labial palp; md, mandible; mst1–4, mesotarsomeres 1–4; mstb, mesotibia; mtt1–4, metatarsomeres 1–4; mttb, metatibia; mxp, maxillary palp; pt1–4, protarsomeres 1–4; ptb, protibia; sc, scutellum. Scale bars: 100 μm.
Dataset_3 for "An integrated imaging sensor for aberration-corrected 3D photography"
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Dataset_2 for "An integrated imaging sensor for aberration-corrected 3D photography"
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Dataset_1 for "An integrated imaging sensor for aberration-corrected 3D photography"
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"Amala River" (= upper course of Mara River), Kenya. Although M. pernanus is grouped in the genus Mastomys based on morphological grounds, molecular data from one speci men grouped it with Hylomyscus. Monotypic. Distribution. Mostly Serengeti Plains on the border between Kenya and Tanzania, with an aberrant specimen from EC Tanzania and an unconfirmed record from Rwanda. in Muridae
"Amala River" (= upper course of Mara River), Kenya. Although M. pernanus is grouped in the genus Mastomys based on morphological grounds, molecular data from one speci men grouped it with Hylomyscus. Monotypic. Distribution. Mostly Serengeti Plains on the border between Kenya and Tanzania, with an aberrant specimen from EC Tanzania and an unconfirmed record from Rwanda.
FIGURE 2. Ceylonspathius nixoni Belokobylskij, 2002 in A new aberrant Doryctinae genus (Hymenoptera: Braconidae) from French Guiana
FIGURE 2. Ceylonspathius nixoni Belokobylskij, 2002 (holotype, female). A, Habitus, lateral view. B, Basal segments of antenna. C, Head, dorsal view. D, Head, front view. E, Fore femur and tibia. F, Hind femur and tibia. G, Mesosoma, lateral view. H, Mesosoma, dorsal view. I, Metasoma, lateral view. J, Metasoma, dorsal view. K, First metasomal tergite, dorsal view. L, Ovipositor and sheath, lateral view.
ScienceDex guides
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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.