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Fig 2 in Different responses of epigeic beetles to heavy metal contamination depending on functional traits at the family level
Fig 2. Mean total density ± SE of the most frequently occurring groups of beetles in three classes of contaminations along the season (circle- almost uncontaminated sites, square- moderately contaminated sites, triangle- highly contaminated sites).
Fig. 4 in A new coleopterous family Wabbelidae fam. nov. (Coleoptera: Cucujoidea) from Baltic amber (Cenozoic, Paleogene, Eocene)
Fig. 4. Wabbel cerebricavus gen. et sp. nov.: A - Abdomen, thorax and head ventrally; B - Meso-, metathorax and abdomen (schematically).
Figs 1–7. Janssoniella kawabatai Tselikh, 2020 in New data on the chalcid wasps of the family Pteromalidae (Hymenoptera: Chalcidoidea) from South Korea
Figs 1–7. Janssoniella kawabatai Tselikh, 2020, male: 1 – body, lateral view; 2 – mesosoma and petiole, dorsal view; 3 – wing; 4 – head, frontal view; 5 – head, dorsal view; 6 – body, dorsal view; 7 – antenna.
Figs 8–14 in New data on the chalcid wasps of the family Pteromalidae (Hymenoptera: Chalcidoidea) from South Korea
Figs 8–14. Miscogasteriella vladimiri Tselikh, Lee et Ku, 2023, male: 8 – body, lateral view; 9 – mesosoma and petiole, dorsal view; 10 – wing; 11– head, frontal view; 12 – antenna; 13 – head, dorsal view; 14 – body, dorsal view.
Figure 4 in Two new species of freshwater turbellarians of the family Typhloplanidae (Platyhelminthes: Rhabdocoela) from China
Figure 4. Mesostoma jilinensis Wang & Huang, sp. nov. A. Whole body, ventral view. B. Profile of reproductive system. Abbreviations: bc—copulatory bursa; cga—common genital atrium; dc—ductus communis; dee—ejaculatory duct; eg—egg; gg—prostate glands; gp—genital pore; m—mouth; ma—male atrium; od—oviduct; ov—ovary; pep—penis papilla; ph—pharynx; pp—prepharyngeal pit; rs—seminal receptacle; t—testis; vd—vitelloduct; vi—vitellarium; ut—uterus; vs—seminal vesicle. Scale bars: A = 200 μm; B = 50 μm.
Figure 5 in Two new species of freshwater turbellarians of the family Typhloplanidae (Platyhelminthes: Rhabdocoela) from China
Figure 5. The phylogenetic tree of a concatenated 18S+28S rDNA dataset generated by Bayesian Inference and Maximum Likelihood, with Bayesian posterior probability and Maximum likelihood bootstrap values indicated. The weakly supported clades have been collapsed.
Figure 3 in Two new species of freshwater turbellarians of the family Typhloplanidae (Platyhelminthes: Rhabdocoela) from China
Figure 3. Mesostoma jilinensis Wang & Huang, sp. nov. A. Free-living specimen in dark-field microscope, dorsal view. B–E. Photomicrographs of histological sections stained with modified Cason's Mallory Heidenhain stain. B. Longitudinal sections, showing male copulatory apparatus. C. Transaction, showing paired uteri, testes and seminal vesicle. D–E. Longitudinal sections, showing female copulatory apparatus. Abbreviations: bc—copulatory bursa; dee—ejaculatory duct; gg—prostate glands; gp—genital pore; m—mouth; ma—male atrium; ov—ovary; ph—pharynx; pp—prepharyngeal pit; rs—seminal receptacle; t—testis; ut—uterus; vs—seminal vesicle. Scale bars: A = 200 μm; B–E = 50 μm.
Figure 2 in Two new species of freshwater turbellarians of the family Typhloplanidae (Platyhelminthes: Rhabdocoela) from China
Figure 2. Phaenocora shenda Huang & Wang, sp. nov., reconstruction of the brain, pharynx and reproductive system. Abbreviations: b—brain; bi—intestine bursa; dgb—genito-bursal duct; dgi—burso intestinal duct; fgc—female genital canal; gp—genital pore; i— intestine; m—mouth; ov—ovary; pe—penis; ph—pharynx; sga—superior genital atrium; ut—uterus; vd—vitelloduct; vde—vas deferens; vs—seminal vesicle. Scale bar = 50 μm.
Figure 1 in Two new species of freshwater turbellarians of the family Typhloplanidae (Platyhelminthes: Rhabdocoela) from China
Figure 1. Phaenocora shenda Huang & Wang, sp. nov. A. Free-living individual with zoochlorellae, dorsal view. B. Free-living individual without zoochlorellae, dorsal view. C. An individual treated with histochemical localization of acetylcholinesterase. D–E. Photomicrographs of histological sections stained with hematoxylin and eosin. Abbreviations: b—brain; bi—intestine bursa; dgb—genito-bursal duct; dgi—burso-intestinal duct; eg—egg; fgc—female genital canal; gp—genital pore; i—intestine; pe—penis; ph—pharynx; t—testis; ut—uterus; vd—vitelloduct; vi—vitellarium; vid—vitelline duct; vs—seminal vesicle. Scale bars: A–C, E = 100 μm; D = 20 μm.
DK2 - Single family house - Ry (Denmark)
<p>Data files for building: DK2 - Single family house - Ry (Denmark)</p> <p>Languages: Danish, English</p> <p>These files are part of the public benchmark repository created as a part of the crossCert EU project. </p> <p>This repository contains curated building data, certificate results and, where available, measured performance results. The repository is publicly available so that it can be used as a testbench for new Energy Performance Certificate (EPC) procedures.</p> <p>The files are organised in the following folders (note that not all files are always provided):</p> <ol> <li>Main data and Results, with: <ol> <li>Neutral data inventory.</li> <li>Neutral results report.</li> <li>Original EPC certificate.</li> </ol> </li> <li>Energy Consumption Data, with: <ol> <li>Files, where available, with energy consumption data for the building, which can be used for validation of models and EPC results.</li> </ol> </li> <li>Drawings <ol> <li>Building drawings which can be used as an aid for generating the EPC, or for creating dynamic energy consumption models.</li> </ol> </li> <li>Other Data <ol> <li>Any other data that can be useful for the purposes of creating or validating an EPC or an energy consumption dynamic model for the building.</li> </ol> </li> <li>Dynamic Model <ol> <li>Data to run a dynamic model of the building, if available.</li> </ol> </li> </ol> <p>The files have been redacted to exclude confidential information. </p>
DK2 - Single family house - Ry (Denmark)
<p>Data files for building: DK2 - Single family house - Ry (Denmark)</p> <p>Languages: Danish, English</p> <p>These files are part of the public benchmark repository created as a part of the crossCert EU project. </p> <p>This repository contains curated building data, certificate results and, where available, measured performance results. The repository is publicly available so that it can be used as a testbench for new Energy Performance Certificate (EPC) procedures.</p> <p>The files are organised in the following folders (note that not all files are always provided):</p> <ol> <li>Main data and Results, with: <ol> <li>Neutral data inventory.</li> <li>Neutral results report.</li> <li>Original EPC certificate.</li> </ol> </li> <li>Energy Consumption Data, with: <ol> <li>Files, where available, with energy consumption data for the building, which can be used for validation of models and EPC results.</li> </ol> </li> <li>Drawings <ol> <li>Building drawings which can be used as an aid for generating the EPC, or for creating dynamic energy consumption models.</li> </ol> </li> <li>Other Data <ol> <li>Any other data that can be useful for the purposes of creating or validating an EPC or an energy consumption dynamic model for the building.</li> </ol> </li> <li>Dynamic Model <ol> <li>Data to run a dynamic model of the building, if available.</li> </ol> </li> </ol> <p>The files have been redacted to exclude confidential information. </p>
Unfiltered missense data families 1-12
<p>Raw missense data for the paper <strong>Discovering Predisposing Genes for Hereditary Breast Cancer using Deep Learning.</strong></p> <p>Unfiltered missense variants from healthy tissue of breast cancer patients from 12 high-risk families. The dataset includes <strong> </strong>40 subjects, 39 female and one male (35 breast cancer patients, a colon cancer patient, a pancreatic cancer patient and 3 un-affected female family members). Data aligned to refrence genome hg19 (coding and non-coding regions). For additional data please refer to text.</p>
Fig. 6 in A new coleopterous family Wabbelidae fam. nov. (Coleoptera: Cucujoidea) from Baltic amber (Cenozoic, Paleogene, Eocene)
Fig. 6. Wabbel cerebricavus gen.et sp.nov. Forebody ventro-laterally: (1) compound eye [small]; (2) gula [wide]; (3) gular sutures [complete]; (4) notosternal suture [complete]; (5) pronotal border [present]; (6) procoxae [transverse, i.e. longer than wide]; (7) prosternal process [wide]; (8) hypomeron; (9) protrochanter; (10) elytral epipleuron
Figures 13-18. Chrysodeixis chalcites Esper 13. Forewing, 14. Hindwing, 15 in Status of Chrysodeixis chalcites Esper and Chrysodeixis eriosoma (Doubleday) of family Noctuidae (Lepidoptera) in India as determined by DNA barcoding and morphological characterization
Figures 13-18. Chrysodeixis chalcites Esper 13. Forewing, 14. Hindwing, 15. Eight photos of forewing spots; Chrysodeixis acuta (Walker) – 16. Forewing, 17. Hindwing, 18. Eight photos of forewing spots.
Figures 7-12. Chrysodeixis chalcites Esper 7 in Status of Chrysodeixis chalcites Esper and Chrysodeixis eriosoma (Doubleday) of family Noctuidae (Lepidoptera) in India as determined by DNA barcoding and morphological characterization
Figures 7-12. Chrysodeixis chalcites Esper 7. Habitus photograph of male, 8. Habitus photograph of female, 9. Male genitalia attached with aedeagus, 10. Male genitalia, 11. Female genitalia, 12. Aedeagus.
Figures 1-6 in Status of Chrysodeixis chalcites Esper and Chrysodeixis eriosoma (Doubleday) of family Noctuidae (Lepidoptera) in India as determined by DNA barcoding and morphological characterization
Figures 1-6. Chrysodeixis acuta (Walker) 1. Habitus photograph of male, 2. Habitus photograph of female, 3. Male genitalia attached with aedeagus, 4. Male genitalia, 5. Female genitalia, 6. Aedeagus.
FIGURE 1 in New species and evolution of the foraminiferal family Janischewskinidae in the middle-upper Mississippian of South China
FIGURE 1. Location map of the Bama isolated carbonate platform and the studied Shuidong (SD) and Kacai (KC) sections, Youjiang Basin, South China. A. Palaeogeographic map of South China and location of the Youjiang Basin and the Bama Platform (after Liu and Xu, 1994); green star represents the Gongchuan section previously studied (Liu et al., 2015). B. Geological map of the northern Bama Platform shows locations of the Mississippian sections studied.
FIGURE 11 in New species and evolution of the foraminiferal family Janischewskinidae in the middle-upper Mississippian of South China
FIGURE 11. Typical representatives of the genus Parajanischewskina. A‒B. Parajanischewskina brigantiensis Cózar and Somerville, 2006, A. 3889-181, B. 3889-182, Limestone A8, top Iogla Formation, right bank of the Msta River, Western Moscow Basin (see Savitsky et al., 2015 for stratigraphical details). C‒D. Parajanischewskina brigantiensis, C. HPU-KC75-5, D. HPU-SDB143-16. E‒I. Parajanischewskina nautiliformis sp. nov., E. HPU-KC87-26, F. HPU-KC75-391 (holotype) G. HPU-KC87-487, H. HPU-KCT4-4, I. HPU-KC75-484. (Scale bar equals 1 mm).
FIGURE 6. A in New species and evolution of the foraminiferal family Janischewskinidae in the middle-upper Mississippian of South China
FIGURE 6. A. Typical representatives of the genus Cribrospira recorded in South China. Cribrospira mikhailovi Rauser-Chernousova, 1948c, HPU-SDB140-5. B. Cribrospira mira Rauser-Chernousova, 1948c, HPU-KC10-2. C. Cribrospira panderi Möller, 1878, HPU-SDB137-3. D. Cribrospira baliamadeni Pille, Vachard and Argyriadis in Pille et al., 2010, HPU-KC66-2. E. Cribrospira orbiculata (Ganelina, 1956), HPU-SDB144-9. F. Cribrospira lianxianensis Lin, 1981, HPU-SDB147-528. G‒H. Cribrospira paradenticulata sp. nov., G. HPU-SDB114-2 (holotype), H. HPU-SDB144- 1. (Scale bar equals 1 mm, except for Figure G equals 0.5 mm).
FIGURE 2 in New species and evolution of the foraminiferal family Janischewskinidae in the middle-upper Mississippian of South China
FIGURE 2 (previous page). Distribution of the Janischewskinidae in the Shuidong section. Red arrows correspond to the productive samples in Janischewskinidae, and black arrows to unproductive samples. Abbreviations: M — mudstone, W — wackestone, P — packstone, G — grainstone; m. — middle, low. — lower, Vis. — Viséan, Bashk. — Bashkirian, Stesh. — Steshevian, Protv. — Protvian, Sever. — Severokeltmian, J. — Janischewskina, B. cri. — Bradyina cribrostomata Zone, Edz — Eostaffellina decurta Zone, Ea-Ep — Eostaffellina actuosa-Eostaffellina protvaensis Zone, P. ag — Pseudostaffella antiqua grandis Subzone.
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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.