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232 results for “thorax”
Figures 578-587. Thorax. 578 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)
Figures 578-587. Thorax. 578, Madopterus talpa, thorax, lateral view, showing fused metepisternum and metepimeron, head to the left. 579-581, SEMs of meso- and metanotum, head to the right. 579, Sibariops concurrens, left side; 580, Geraeus lineellus, left side; 581, Demoda vittata, right side. 582-587, SEM's of mesoscutellum. 582, Taiwanobaris sp.; 583, Lophobaris sp.; 584, Zygobarella zanthoxyli; 585, Idiostethus subcalvus; 586, Idiostethus tubulatus; 587, Deipyrus hirsutulus.
Fig. 4. Thorax, dorsal. A. Pachylosticta albiventris Klug, 1824 in A review of the South American genera of Cimbicidae (Insecta, Hymenoptera)
Fig. 4. Thorax, dorsal. A. Pachylosticta albiventris Klug, 1824, Ƌ (NHMD). B. Corynis obscura (Fabricius, 1775), ♀ (NHMD). Abbreviations: yellow arrow = median mesoscutal sulcus; green arrow = notaulus.
Figs 22–23. Thorax and abdominal segments 4–5 in Comparative morphology of immature Trictenotoma formosana Kriesche, 1919 and systematic position of the Trictenotomidae (Coleoptera, Tenebrionoidea)
Figs 22–23. Thorax and abdominal segments 4–5 of first instar larva of Trictenotoma formosana Kriesche, 1919. 22. Dorsal view. 23. Ventral view. Scale bars: 0.2 mm.
Figs 11–17. Thorax and abdominal segments 5 and 9 in Comparative morphology of immature Trictenotoma formosana Kriesche, 1919 and systematic position of the Trictenotomidae (Coleoptera, Tenebrionoidea)
Figs 11–17. Thorax and abdominal segments 5 and 9 of last-instar larva of Trictenotoma formosana Kriesche, 1919. 11–12. Thorax (11 = dorsal view, 12 = ventral view). 13. Tergite 5. 14. Sternite 5. 15. Sternite 9. 16. Tergite 9. 17. Abdominal segment 9, posterior view. Scale bars: 3 mm.
FIGURE 1. Dasyhelea caribbeana Spinelli & Wirth. Male. A. head. B. palpus. C. thorax. D. scutellum. E. wing. F in The biting and predaceous midges of Guadeloupe (Diptera: Ceratopogonidae). II. Species of the subfamily Dasyheleinae
FIGURE 1. Dasyhelea caribbeana Spinelli & Wirth. Male. A. head. B. palpus. C. thorax. D. scutellum. E. wing. F. genitalia.
Figure 6. Micropsectra aristata. A, pupal thorax. B, pupal frontal apotome. C, clypeal seta S3 in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 6. Micropsectra aristata. A, pupal thorax. B, pupal frontal apotome. C, clypeal seta S3 of larva.
Рис. 1–3. Самка Chrysopa viridinervis Jakowleff, 1869. 1 – экземпΛяр сбоку; 2 – гоΛова и груΑь сверху; 3 – гоΛова спереΑи. Figs 1–3. Female of Chrysopa viridinervis Jakowleff, 1869. 1 – specimen in lateral view; 2 – head and thorax, dorsal view; 3 – head, frontal view. in New data on Neuropterida from the southern part of the European Russia
Рис. 1–3. Самка Chrysopa viridinervis Jakowleff, 1869. 1 – экземпΛяр сбоку; 2 – гоΛова и груΑь сверху; 3 – гоΛова спереΑи. Figs 1–3. Female of Chrysopa viridinervis Jakowleff, 1869. 1 – specimen in lateral view; 2 – head and thorax, dorsal view; 3 – head, frontal view.
Agonopterix subpropinquella Flügelspannweite über 20 mm. Im Mittelraum stehen zwei schräg übereinander liegende dunkle Punkte, gleich anschliessend folgt ein grösserer, etwas diffuser Fleck, anschliessend auf der Querader ein dunkler Punkt, der auch undeutlich sein kann. Sehr variable Art: Vor allem in Südeuropa Exemplare mit ledergelben Flügeln, schwarzen Punkten und schwarzem Thorax. in Agonopterix flurii sp. nov. aus dem Wallis, Schweiz (Lepidoptera, Depressariidae)
Agonopterix subpropinquella Flügelspannweite über 20 mm. Im Mittelraum stehen zwei schräg übereinander liegende dunkle Punkte, gleich anschliessend folgt ein grösserer, etwas diffuser Fleck, anschliessend auf der Querader ein dunkler Punkt, der auch undeutlich sein kann. Sehr variable Art: Vor allem in Südeuropa Exemplare mit ledergelben Flügeln, schwarzen Punkten und schwarzem Thorax.
FIG. 61. Morphotype 56, VMNH 129481. A, B. Habitus. C. Partial head and thorax. D in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina
FIG. 61. Morphotype 56, VMNH 129481. A, B. Habitus. C. Partial head and thorax. D. Left elytron showing dense punctures and depressed, anterolateral ledge. Scale bars: A, B: 1 mm; C, D: 0.5 mm.
Figs 1–8. Coelopisthia areolata and C. caledonia. 1–5. C. areolata Askew, female. 1. Body dorsal. 2. Head lateral. 3. Head frontal. 4. Thorax dorsal. 5. Fore wing dorsal. 6–8. C. caledonia Askew, female. 6. Body dorsal. 7. Body lateral. 8 in Taxonomic review of the genus Coelopisthia Förster (Hymenoptera: Pteromalidae) from China, with four new species
Figs 1–8. Coelopisthia areolata and C. caledonia. 1–5. C. areolata Askew, female. 1. Body dorsal. 2. Head lateral. 3. Head frontal. 4. Thorax dorsal. 5. Fore wing dorsal. 6–8. C. caledonia Askew, female. 6. Body dorsal. 7. Body lateral. 8. Head frontal.
Figure 3 in A comparative description of the thorax chaetotaxy of the Dolichopodidae (Diptera)
Figure 3. Histogram of combinations of acrostichal and dorsocentral setae in the family Dolichopodidae. The height of the column describes the proportion of species that have this combination of character states.
Figure 4 in A comparative description of the thorax chaetotaxy of the Dolichopodidae (Diptera)
Figure 4. Histogram of combinations of dorsocentral and scutellar setae in the family Dolichopodidae. The height of the column describes the proportion of species that have this combination of character states.
Figure 2 in A comparative description of the thorax chaetotaxy of the Dolichopodidae (Diptera)
Figure 2. Dolichopodidae thorax (lateral view): (1) Fore coxa; (2) kataproepisternum; (3) anaproepisternum; (4) humeral seta; (5) notopleural setae; (6) sutural seta; (7) supraalar setae; (8) postalar seta; (9) scutellar seta; (10) base of wing; (11) halter; (12) posterior spiracle; (13) ventral metaepisternum; (14) hind coxa; (15) mid coxa; (16) katepimeron.
Figure 1 in A comparative description of the thorax chaetotaxy of the Dolichopodidae (Diptera)
Figure 1. Dolichopodidae mesonotum (dorsal view): (1) acrostichal setae; (2) presutural dorsocentral setae; (3) humeral seta; (4) posthumeral setae; (5) presuturar intraalar seta; (6) sutural deta; (7) postsutural dorsocentral setae; (8) notopleural setae; (9) supraalar setae; (10) postalar seta; (11) lateral scutellar seta; (12) medial scutellar seta.
A discrete 3D mesh of the thorax of a newborn with region segmentation
<p># Newborn mesh</p> <p>## Description:<br> This dataset contains a labelled mesh of the thorax of a newborm premature human baby with the sectionning of different region of the body. The mesh is composed of 229363 nodes that are grouped into 1356069 tetrahedron elements.</p> <p>## Original data<br> The original DICOM (Digital Imaging and communications in medicine) images belong to the Cork University Hospital (CUH) data base. The hospital contacted the parents who approved the academic use of the anonymised CT scan of their child, under the ethical approval ECM 4 (gg) 07/03/18 from the Clinical Research Ethics Committee of the Cork Teaching Hospitals. The thoracic CT scan consist of a stack of 367 cross sectional slices, 0.625 mm thick. The area of each image is 512 x 512 pixels with a pixel size of 0.3555 mm. The neonate was born at 36 weeks gestational age with 3.58 kg weight.</p> <p>## Sectioning process<br> The segmentation of nine main organs (skin, fat, muscle, bone, cartilage, heart, artery, trachea and lung) was done using NIRFASTSlicer2.0. Each DICOM image exhibits the different organs in an especific Housenfield Unit (HU, quantitave scale of radiodensity); dense organs like bone have whitish color, in contrast with less dense organs which appereance is dark. A distinctive colour was assigned to each organ by direct drawing over the CT images one by one. The HU were used to define the boundaries between organs. The organs were considered homogeneous, therefore fine structures present in the human body were ignored.</p> <p>For our study, we subdivided the lungs into 3 different segments (inner, middle and external). On completion of segmentation, the thoracic CT was subdivided in the 11 regions.</p> <p>## Regions<br> The mesh has been divided in 11 different regions number from 1 to 11 in the following way:</p> <ul> <li>1 -> lung (external segment)</li> <li>2 -> bone</li> <li>3 -> cartilage</li> <li>4 -> heart</li> <li>5 -> muscle</li> <li>6 -> artery</li> <li>7 -> fat</li> <li>8 -> skin</li> <li>9 -> trachea</li> <li>10 -> lung (middle segment)</li> <li>11 -> lung (inner segment)</li> </ul> <p>## Data format<br> The mesh data is written in 3 different file format:</p> <ul> <li> mesh.mat: MATLAB .mat format that contains 5 variables: <ul> <li>dimension: Number of dimension in the mesh</li> <li>nodes: Matrix of size 229363 x 3 containing the (x,y,z) coordinates of each node in the mesh in milimetres (mm)</li> <li>elements: Matrix of size 1356096 x 4 containing the indices of the nodes corresponding to each element (tetrahedron) of the mesh</li> <li>region: Vector size 229363 x 1 indicating to which region the nodes belongs.</li> <li>bndvtx: Vector of size 229363 x 1 indicating whether the node is on the boundary of the mesh.</li> </ul> </li> <li>mesh.vtk: Mesh in the vtk Datafile Version 2.0 format. The only data field in the VTK file corresponds to the region variable in the .mat file.</li> <li>mesh_csv.zip: Mesh in a .csv format. The zip file contains 4 csv files containing the nodes list, the elements list, the region list and the bndvtx list.</li> </ul> <p>## Licence<br> The mesh is published under the creative common CC-BY licence. You are free to use this data as you wish, but please cite this dataset using its DOI for example.</p> <p>## Digital Object Identifier:<br> DOI: 10.5281/zenodo.4916863</p> <p>## Authors<br> Mesh sectionning: Andrea Pacheco<br> Data formating: Baptiste Jayet</p> <p>## Funding<br> The research leading to these results was funded by Science Foundation Ireland project no. SFI/15/RP/2828</p>
FIGu~ 17.-Tharra ocellata: a, lateral view of male genitalia; b, ventral view of female genitalia; c, frontal view; d, dorsal view of head and thorax; e, ventral view of male genitalia. in Homoptera, Fulgoroidea and Jassoidea of Guam
FIGu~ 17.-Tharra ocellata: a, lateral view of male genitalia; b, ventral view of female genitalia; c, frontal view; d, dorsal view of head and thorax; e, ventral view of male genitalia.
FIGURJ;; 9.-Tambinia g11amensis:a, dorsal view ofhead and thorax; b, frontal view; c, ventral view of male genitalia; d, lateral view of male genitalia; e, tegmen. in Homoptera, Fulgoroidea and Jassoidea of Guam
FIGURJ;; 9.-Tambinia g11amensis:a, dorsal view ofhead and thorax; b, frontal view; c, ventral view of male genitalia; d, lateral view of male genitalia; e, tegmen.
Frcuru; 7.-Muiralyrice1i pallescens: a, dorsal view of head and thorax; b, frontal view; c, ventral view of male genitalia. in Homoptera, Fulgoroidea and Jassoidea of Guam
Frcuru; 7.-Muiralyrice1i pallescens: a, dorsal view of head and thorax; b, frontal view; c, ventral view of male genitalia.
FrGUR!(3.-Ugyops samoaensis: a, dorsal view of head and thorax; b, frontal view; c, ventral view of male genitalia; d, lateral view of male genitalia. in Homoptera, Fulgoroidea and Jassoidea of Guam
FrGUR!(3.-Ugyops samoaensis: a, dorsal view of head and thorax; b, frontal view; c, ventral view of male genitalia; d, lateral view of male genitalia.
FIG~ 6.-Muiralyricen ruber: a, frontal view; b, dorsal view of head and thorax; c; wing; d, tegmen; e, lateral view of male genitalia; f, ventral view of male genitalia. in Homoptera, Fulgoroidea and Jassoidea of Guam
FIG~ 6.-Muiralyricen ruber: a, frontal view; b, dorsal view of head and thorax; c; wing; d, tegmen; e, lateral view of male genitalia; f, ventral view of male genitalia.
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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)
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DANDI Archive for NWB datasets
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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.