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Figures 511-513. Thoracic structures. 511 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)
Figures 511-513. Thoracic structures. 511, Orissus meigenii, mesonotum; 512, Leptoschoinus fucatus, metanotum; 513, Stereobaris interpunctata, metendosternite.
FIGURES 16 – 19. Horismenus missouriensis. 16. Thoracic dorsum, female. 17. Thoracic dorsum, male. 18. Gaster dorsal, female. 19 in Horismenus species (Hymenoptera: Eulophidae) in a bruchid beetle parasitoid guild, including the description of a new species
FIGURES 16 – 19. Horismenus missouriensis. 16. Thoracic dorsum, female. 17. Thoracic dorsum, male. 18. Gaster dorsal, female. 19. Gaster dorsal, male.
FIGURES 2 – 5. Horismenus butcheri. 2. Head frontal, female. 3. Head frontal, male. 4. Thoracic dorsum, female. 5 in Horismenus species (Hymenoptera: Eulophidae) in a bruchid beetle parasitoid guild, including the description of a new species
FIGURES 2 – 5. Horismenus butcheri. 2. Head frontal, female. 3. Head frontal, male. 4. Thoracic dorsum, female. 5. Thoracic dorsum, male.
Fig. 7. Male anterior thoracic sternum and pleon. A in Re-appraisal of the families and subfamilies of Trapezioidea Miers, 1886, with establishment of a new family, Ectaesthesiidae (Crustacea: Decapoda: Brachyura)
Fig. 7. Male anterior thoracic sternum and pleon. A, Tetralia cinctipes (9.5 × 9.5 mm) (ZRC 2019.0701), Japan; B, Tetraloides heterodactylus (7.6 × 7.1 mm) (ZRC 2019.0699), Japan; C, Trapezia cymodoce (11.6 × 9.9 mm) (ZRC 1999.2385), Singapore; D, Quadrella maculosa (7.2 × 6.1 mm) (ZRC 2003.0352), Sulawesi, Indonesia; E, Sphenomerides trapezioides (7.8 × 5.9 mm) (ZRC 2000.2103), Madagascar; F, Calocarcinus africanus (9.3 × 7.2 mm) (ZRC 2008.1281), New Caledonia; G, Philippicarcinus oviformis (16.0 × 11.3 mm) (ZRC 2009.0058), Philippines; H, Domecia acanthophora (7.4 × 5.4 mm) (ZRC 2000.1551), Caribbean Sea, Panama; I, Cherusius triunguiculatus (4.7 × 3.9 mm) (ZRC 2016.0121), Easter Island.
Fig. 7. Vertebral character trait evolution across phocoenids and related delphinoids. A. Character 2, thoracic vertebral counts. B. Character 8 in New fossil remains from the Pliocene Koetoi Formation of northern Japan provide insights into growth rates and the vertebral evolution of porpoises
Fig. 7. Vertebral character trait evolution across phocoenids and related delphinoids. A. Character 2, thoracic vertebral counts. B. Character 8, ratio of centrum length/centrum height of lumbar vertebrae. C. Character 12, height of neural spine. D. Character 14, regional anterior inclination of neural arches. See Table 2 for detailed character descriptions.
A normative database of free-breathing pediatric thoracic 4D dynamic MRI images
<p>In pediatric patients with respiratory abnormalities, it is important to understand the alterations in regional dynamics of the lungs and other thoracoabdominal components, which in turn requires a quantitative understanding of what is considered as normal in healthy children. Currently, such a normative database of regional respiratory structure and function in healthy children does not exist. The shared open-source normative database is from our ongoing virtual growing child (VGC) project, which includes 4D dynamic magnetic resonance imaging (dMRI) images during one breathing cycle for each normal child and also 10 object segmentations at end expiration (EE) and end inspiration (EI) phases of the respiratory cycle in the 4D image. The lung volumes at EE and EI as well as the excursion volumes of chest wall and diaphragm from EE to EI, left and right separately, are also reported. The database has 2,820 3D segmentations from 141 healthy children, which to our knowledge is the largest dMRI dataset of healthy children to date. The database is unique and provides dMRI images, object segmentations, and quantitative regional respiratory measurement parameters of volumes for healthy children. The database can serve as a reference standard to quantify regional respiratory abnormalities in young patients with various respiratory conditions and facilitate treatment planning and response assessment. The database can be useful to advance future AI-based research on image-based object segmentation and analysis.</p>
Рис. 5. Αичинка A. sexmaculata изозера Арейского: а — общий виΑ; б — гоΛова и груΑь ΑорсаΛьно; в — гоΛова и груΑь ΛатераΛьно; г — Αомик Λичинки. ΔΛина Λичинки 4,5 мм Fig. 5. Larva of A. sexmaculata from Lake Areyskoye: а — general appearance; б — thoracs dorsally; в — thoracs laterally; г — larvae house. Larva length 4.5 mm in macroinvertebrates of the Lake Areyskoye
Рис. 5. Αичинка A. sexmaculata изозера Арейского: а — общий виΑ; б — гоΛова и груΑь ΑорсаΛьно; в — гоΛова и груΑь ΛатераΛьно; г — Αомик Λичинки. ΔΛина Λичинки 4,5 мм Fig. 5. Larva of A. sexmaculata from Lake Areyskoye: а — general appearance; б — thoracs dorsally; в — thoracs laterally; г — larvae house. Larva length 4.5 mm
Fig. 8 3D in The specialized thoracic skeletomuscular system of the myrmecophile Claviger testaceus (Pselaphinae, Staphylinidae, Coleoptera)
Fig. 8 3D reconstruction of C. testaceus. a-b thorax, lateral view; c-d elytra; e-g thorax, posterior view. Abbreviations: el, elytron; fuc1/2/3, pro−/meso −/metafurca; lal, lateral lamella; scl2, mesoscutellum; w, wing
Fig. 7 in The specialized thoracic skeletomuscular system of the myrmecophile Claviger testaceus (Pselaphinae, Staphylinidae, Coleoptera)
Fig. 7 Hind wings of variant I a- d, in dorsal view and elytra e-k, in ventral view of C. testaceus. Abbreviations: anp, anterior notal process; ax1–3, axillary sclerite 1–3; lal, lateral lamella; pnp, posterior notal process
Fig. 9 3D in The specialized thoracic skeletomuscular system of the myrmecophile Claviger testaceus (Pselaphinae, Staphylinidae, Coleoptera)
Fig. 9 3D Reconstruction of longitudinal abdominal muscle. Abbreviations: apr, anapleural ridge; asI - III, abdominal sternite I – III; fuc2/3, meso−/metafurca; For abbreviations of muscles see description
Fig. 6 in The specialized thoracic skeletomuscular system of the myrmecophile Claviger testaceus (Pselaphinae, Staphylinidae, Coleoptera)
Fig. 6 SEM micrographs, pterothorax of C. testaceus. a "long-winged" (variant I) individual, dorsal view; b "short-winged" (variant II) individual, dorsal view; c ventral view; d lateral view. Abbreviations: asIII - VIII, abdominal sternite III - VIII; atI - VI, abdominal tergites I - VI; ax1,
Fig. 2 in The specialized thoracic skeletomuscular system of the myrmecophile Claviger testaceus (Pselaphinae, Staphylinidae, Coleoptera)
Fig. 2 Line drawings, light- microscopy and SEM images of C. testaceus. a. prothorax, dorsal view; b-d prothorax, ventral view; e pterothorax, dorsal view; f-g, pterothorax, ventral view. Abbreviations: alc, alacrista; cc1/ cc2/cc3, pro−/meso−/metacoxal cavity; cx1/2/3, pro−/meso −/metacoxal; fuc1/2/3, pro−/meso −/metafurca; fv, fovea; he, head; hy, hypomeron; hyr, hypomeral ridge; ihy, inner region of hypomeron; mlg, median longitudinal groove; n1, pronotum; ohy, outer region of hypomeron; pcp, postcoxal process; pl2/3, meso−/metapleuron; psc, prosternal carina; pst, prosternum; ppe, prepectus; sc2/3, meso −/metascutum; scl2/3, meso −/metascutellum; v2/3, meso −/metaventrite; w, wing
Fig. 1 in The specialized thoracic skeletomuscular system of the myrmecophile Claviger testaceus (Pselaphinae, Staphylinidae, Coleoptera)
Fig. 1 SEM micrographs of Claviger testaceus. a dorsal view; b ventral view; c lateral view. Abbreviations: cx1/2/3, pro −/meso−/metacoxal; el, elytron; epp, epipleuron; fem1/2/3, pro −/meso−/metathoracic femur; he, head; n1, pronotum; ohy, outer region of hypomeron; pl2/3, meso −/metapleuron; tib1/2/3, pro −/meso−/metathoracic tibia; tr1/2/ 3, pro−/meso−/metathoracic trochanter
Fig. 4 in The specialized thoracic skeletomuscular system of the myrmecophile Claviger testaceus (Pselaphinae, Staphylinidae, Coleoptera)
Fig. 4 SEM micrographs, legs of C. testaceus. a foreleg; b midleg; c hindleg. Abbreviations: fem1/2/3, pro−/meso−/metathoracic femur; sbp, sub-basal projection; sp, submedian projection; tm1–3, tarsomere 1–3; tar1/2/3, pro−/meso−/metathoracic tarsus; tcl1/2/3, pro−/meso−/metathoracic pretarsal claw; tib1/2/3, pro−/meso−/metathoracic tibia; tr1/2/3, pro −/meso−/metathoracic trochanter
Fig. 3 3D in The specialized thoracic skeletomuscular system of the myrmecophile Claviger testaceus (Pselaphinae, Staphylinidae, Coleoptera)
Fig. 3 3D reconstructions of C. testaceus. a thorax (elytra incl.), dorsal view; b thorax (elytra removed), dorsal view; c thorax, ventral view; d thorax, lateral view; e prothorax, anterior view; f prothorax, posterior view; g pterothorax, anterior view; h pterothorax, posterior view. Abbreviations: alc, alacrista; cc1/cc2/cc3, pro−/meso−/metacoxal cavity;
Pelvic arcade and vertebral structure of the second chief specimen of Tyrannosaurus rex, Amer. Mus. 5027, discovered in 1908. An orthogonal projection executed on a very large scale and reproduced one-twelfth natural size. C 1-C 10 cervical series, D 1-D 13 dorsal or thoracic series, S 1-S 5 sacral series, Cd 1- Cd 53 caudal series. The caudals actually preserved are shaded; those drawn in outline are conjectural and restored. The total number of caudals is conjectural. in Skeletal Adaptations of Ornitholestes, Struthiomimus, Tyrannosaurus
Pelvic arcade and vertebral structure of the second chief specimen of Tyrannosaurus rex, Amer. Mus. 5027, discovered in 1908. An orthogonal projection executed on a very large scale and reproduced one-twelfth natural size. C 1-C 10 cervical series, D 1-D 13 dorsal or thoracic series, S 1-S 5 sacral series, Cd 1- Cd 53 caudal series. The caudals actually preserved are shaded; those drawn in outline are conjectural and restored. The total number of caudals is conjectural.
Text-fig. 2. Taphonomic and pathological phenomena of bear bones from Middle Pleistocene deposits from Vykopaná chodba in Za Hájovnou Cave (Moravia, the Czech Republic). a – fragment of left mandibula with pathological condylar process; b – thoracic vertebra with pathological rib facet; c – Mc III dext. with exostoses; d – fragment of juvenile right ulna with bite marks; e – gnawed right tibia with bite marks on proximal part; f – gnawed left calcaneus with bite marks. in Basic Population And Taphonomic Analysis Of Bear Assemblages From Za Hájovnou Cave (Moravia, The Czech Republic): A Fossil Record From 1987-2007
Text-fig. 2. Taphonomic and pathological phenomena of bear bones from Middle Pleistocene deposits from Vykopaná chodba in Za Hájovnou Cave (Moravia, the Czech Republic). a – fragment of left mandibula with pathological condylar process; b – thoracic vertebra with pathological rib facet; c – Mc III dext. with exostoses; d – fragment of juvenile right ulna with bite marks; e – gnawed right tibia with bite marks on proximal part; f – gnawed left calcaneus with bite marks.
Text-fig. 1. A. Preserved part of Kučlín specimen No. Pa 24 (foto B. Ekrt); B. For comparison, a corresponding part of a Paleogene ungulate of the genus Phenacodus (Gregory 1951, modified). Abbreviations: il – ilium, Lu – lumbar vertebrae, Th – thoracic vertebrae. in Mammal Discovery In Kučlín Diatomite
Text-fig. 1. A. Preserved part of Kučlín specimen No. Pa 24 (foto B. Ekrt); B. For comparison, a corresponding part of a Paleogene ungulate of the genus Phenacodus (Gregory 1951, modified). Abbreviations: il – ilium, Lu – lumbar vertebrae, Th – thoracic vertebrae.
Fig. 6. Male abdomens and anterior thoracic sternums. A in The Blue Crab Of Christmas Island, Discoplax Celeste, New Species (Crustacea: Decapoda: Brachyura: Gecarcinidae)
Fig. 6. Male abdomens and anterior thoracic sternums. A, Discoplax hirtipes (Dana, 1851), neotype male (64.2 × 53.0 mm) (ZRC 2010.0415), Suva, Fiji; B, D. hirtipes (Dana, 1851), male (73.5 × 58.4 mm) (ZRC 2001.0706), Merizo Bay, Guam; C, D. celeste, new species, paratype male (52.0 × 44.0 mm) (ZRC 2012.0027), station CI 11, Hosnie's Spring, Christmas Island; D, D. celeste, new species, holotype male (106.0 × 83.6 mm) (QMW-29123), Waterfall Bay, Christmas Island.
Рис. 7–15. Lixus pulverulentus, груΔные и брюшные сегменты, хетотаксия. 7, 10, 13 – груΔные сегменты; 8, 11, 14 – брюшной сегмент I; 9, 12, 15 – брюшные сегменты VII–X; 7–9 – виΔ сбоку; 10–12 – виΔ сверху; 13–15 – виΔ снизу. Figs 7–15. Lixus pulverulentus, thoracal and abdominal segments, and chaetotaxy. 7, 10, 13 – thoracal segments; 8, 11, 14 – abdominal segment I; 9, 12, 15 –abdominal segments VII–X; 7–9 – lateral view; 10–12 – dorsal view; 13–15 – ventral view. Setae: dls – dorsolateral, dpls – dorsopleurolateral, ds – dorsal, ls – lateral, lsts – laterosternal, msts – mesosternal, pda – pedal, pds – postdorsal, prns – pronotal, prs – prodorsal, ss – spirarulum, sts – sterna, ts – terminal, vpls – ventropleural. in Description of the preimaginal stages and biology of the weevil Lixus (Dilixellus) pulverulentus (Scopoli, 1763) (Coleoptera: Curculionidae: Lixini)
Рис. 7–15. Lixus pulverulentus, груΔные и брюшные сегменты, хетотаксия. 7, 10, 13 – груΔные сегменты; 8, 11, 14 – брюшной сегмент I; 9, 12, 15 – брюшные сегменты VII–X; 7–9 – виΔ сбоку; 10–12 – виΔ сверху; 13–15 – виΔ снизу. Figs 7–15. Lixus pulverulentus, thoracal and abdominal segments, and chaetotaxy. 7, 10, 13 – thoracal segments; 8, 11, 14 – abdominal segment I; 9, 12, 15 –abdominal segments VII–X; 7–9 – lateral view; 10–12 – dorsal view; 13–15 – ventral view. Setae: dls – dorsolateral, dpls – dorsopleurolateral, ds – dorsal, ls – lateral, lsts – laterosternal, msts – mesosternal, pda – pedal, pds – postdorsal, prns – pronotal, prs – prodorsal, ss – spirarulum, sts – sterna, ts – terminal, vpls – ventropleural.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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