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Figs 41–43 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 41–43. Male genitalia of Dichagyris forficula sspp. 41 = D. forficula (Eversmann, 1851), NE Turkey, Prov. Van, slide No.: VZ10245m. 42 = D. forficula akdagestana ssp. n., paratype, Russia, North Caucasus, Ingoushetia, slide No.: VZ9771m. 43 = D. forficula hadjina (Staudinger, 1892), Turkey, lectotype of Agrotis hadjina var. zeituna Staudinger, 1899, slide No.: VZ9548m
Figs 44–46 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 44–46. Male genitalia of Dichagyris forficula hadjina (Staudinger, 1892): 44 = Turkey, Prov. Malatya, slide No.: VZ9768m; 45 = Turkey, Prov. Hakkari, slide No.: VZ9959m; 46 = Iran, Elburs Mts, slide No.: VZ9770m
Figs 33–40. Dichagyris spp. 33–35 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 33–40. Dichagyris spp. 33–35 = D. furiosa kugitanga ssp. n., Turkmenistan, Kugitang Tau: 33 = holotype, male; 34–35 = paratype, males. 36–38 = D. contermina (Corti, 1929): 36 = holotype of Dichagyris wolfi Hacker, 1986, male, Turkey, Prov. Mardin; 37 = male, Turkey, Prov. Urfa, Halfeti; 38 = female, Turkey, Prov. Urfa, Halfeti. 39–40 = Dichagyris contermina melanographa ssp. n., Iran, Zagros Mts, Kasri-Shirin: 39 = holotype, male; 40 = paratype, female
Figs 25–32. Dichagyris spp. 25–26 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 25–32. Dichagyris spp. 25–26 = D. turana turana (Staudinger, 1892): 25 = male, Kirghisia, Issyk-Kul, 26 = female, Uzbekistan, Kyzyl-Kum. 27–28 = D. turana cisiliensis ssp. n., Kazakhstan, Chu-Ili Mts: 27 = holotype, male, 28 = paratype, male. 29–30 = D. furiosa furiosa (Bang-Haas, 1912), Tadjikistan, Peter the Great Mts, Garm: 29 = lectotype, male, 30 = paralectotype, male. 31–32 = D. furiosa griseoerythra ssp. n., Kirghisia, Naryn region, Sarykam-
Figs 17–24. Dichagyris forficula sspp. 17–20 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 17–24. Dichagyris forficula sspp. 17–20 = D. forficula pseudoturana ssp. n.: 17–18 = paratype, females, Afghanistan, Paghman Mts; 19 = paratype, male, Pakistan, Quetta; 20 = paratype, female, Pakistan Quetta. 21–24 = D. forficula chitralensis ssp. n., paratypes, Pakistan: 21–22 = males, 23–24 = females
Figs 9–16. Dichagyris forficula sspp. 9–12 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 9–16. Dichagyris forficula sspp. 9–12 = D. forficula akdagestana ssp. n., paratypes, Russia, Chechnya, Furtoug: 9–10 = male; 11–12 = females. 13–16 = D. forficula devota (Christoph, 1884): 13 = male, Turkmenistan, Kopet-Dagh, 14 = female, Turkmenistan, Kopet-Dagh, 15 = male, Iran, Shah Kuh, 16 = female, paratype of Agrotis devota eremica Amsel, 1935, Palestine
Figs 1–8. Dichagyris forficula sspp. 1–4 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 1–8. Dichagyris forficula sspp. 1–4 = D. forficula forficula (Eversmann, 1851): 1 = holotype, male, Armenia; 2 = male, Turkey, Prov Agri; 3–4 = females, Turkey, Prov Agri; 5–8 = D.
Lund Bladder Cancer Group - Lund Taxonomy 2023 Classifier - Training Data
<p>Raw and processed training data used for the Lund Taxonomy 2023 gene expression classifier for urothelial carcinoma.</p><p>The dataset contains the raw .CEL files for 3 Affymetrix Gene 1.0 ST cohorts: Lund2017 (n=307, GSE83586), Lund2020 (n=173, GSE128959), Lund2022 (n=310, 117 from GSE169455, 37 from GSE222073, and 156 previously unpublished samples). Code examples for RMA and SCAN.UPC normalization for Affymetrix Gene, Exon, and HTA2 arrays used in the study is included. Hybridization batch information is available for each array cohort.</p><p>The dataset contains Kallisto and Salmon transcript quantification files for 265 RNA-sequenced tumors and the tx2gene file+code for transcript to gene summarization using txImport</p><p> </p>
Mapping the Literature on Biodiversity and Taxonomy
<p>Talk at the <a href="https://www.digital-philosophy.org/" target="_blank" rel="noopener">Philosophy [in:of:for:and] Digital Knowledge Infrastructures</a> online workshop 2023 (28/09/2023).</p>
Fig. 29 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 29. Skeletal elements of specimen GPIT-PV-30788 on display in the diorama. A. Both pubes with some gastric ribs. B. Probably nine dorsal vertebrae, two sacral vertebrae. C. Twelve caudal vertebrae. D. A partial left ilium, conjoined ischia. E. Left femur. F. Left tibia, left fibula, left astragalus. G. Two distal tarsals, five metatarsals, partial digits.
Fig. 27 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 27. Specimen GPIT-PV-30786 on display nowadays in the diorama (as it was originally mounted, Fig. 13E), comprising a complete right hindlimb, the left pes, partial pubes and conjoined ischia, and a series of around 50 caudal vertebrae. The specimen is embedded in a cast matrix.
Fig. 25 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 25. Illustration of specimen "GPIT Skelett I" by von Huene (new catalogue number: GPIT-PV-117990). The translation of the text is as follows: "Skeleton 1. Plateosaurus Quenstedti Huene in a bent down position. An in natural context found individual from the lower bone layer. 1. Skull (the original skull on skeleton I is under the glass top), on the mounted skeleton is the plaster cast of another individual. 2. Cervical vertebrae. 3. Dorsal vertebrae. 4. Sacral Vertebrae. 5. Caudal vertebrae. 6. Scapula (shoulder blade). 7. Coracoid, attached to which are rudiments of the clavicles (collar bones). 8. Humerus (upper arm). 9. Radius and ulna (forearm). 10. Hand. 11. Ilium. 12. Pubis. 13. Ischium. 14. Femur (thigh). 15. Tibia and fibula (lower leg). 16. Foot. 17. Abdominal ribs. These numbers denote the same skeletal parts on the other explanations." [Fig. 13].
Fig. 23 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 23. The holotype of 'Pachysaurus giganteus' von Huene, 1932 (comprises three metatarsal bones, poorly preserved and heavily reconstructed as it was mounted in a now dismounted display. A. Drawing of the dismounted corner, details in Fig. 22. B. Drawing of specimen "GPIT E". C. GPIT-PV-60234, metatarsal II. D. GPIT-PV-60235, metatarsal III. E. GPIT-PV-60236, metatarsal IV.
Fig. 22 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 22. Most of this "Lying Skeleton Parts" corner was removed in the 60s and comprised three historical specimens: "skeleton IV", referred to as Plateosaurus 'plieningeri', most of it now the holotype of Tuebingosaurus maierfritzorum Regalado Fernández & Werneburg, 2022, the gastralia blocks of specimen GPIT-PV-30784 ("GPIT I"), and three metatarsals that make up the holotype of 'Pachysaurus giganteus' von Huene, 1932 (Fig. 23), or historical number "GPIT E". Explanation of the numbers: 1. = cranial material; 4. = sacral vertebrae; 5. = caudal vertebrae; 9. = radius and ulna (forearm); 10. = manus; 11. = ilium; 12. = pubis; 13. = ischium; 14. = femur (thigh); 15. = tibia and fibula (lower leg); 16. = pes; 17. = abdominal ribs (gastralia).
Fig. 20 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 20. Material collected in Hechingen, an outcrop of the Knollenmergel, known as the historical collection number "GPIT 18375". A. GPIT-PV-60357, middle caudal in left lateral view. B. GPIT- PV-60360, middle caudal in left lateral view. C. GPIT-PV-60359, middle caudal in left lateral view. D. GPIT-PV-60358, middle caudal in left ventrolateral view. E. GPIT-PV-60356, middle caudal in right lateral view. F. GPIT-PV-60361, anterior caudal in right lateral view. G. GPIT-PV-60362, anterior caudal in left lateral view. H. GPIT-PV-60355, chevron in left lateral view. I. GPIT-PV-60353, chevron in left lateral view. J. GPIT-PV-60352, chevron in left lateral view. K. GPIT-PV-60354, chevron in left lateral view. L. GPIT-PV-60351, chevron in left lateral view. M. GPIT-PV-60348, chevron in left lateral view. N. GPIT-PV-60347, chevron in left lateral view. O. GPIT-PV-60350, distal part of the scapular blade. P. GPIT-PV-60349, manual ungual. Q. GPIT-PV-60346, presumed manual ungual.
Fig. 18 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 18. Holotype of "Teratosaurus" trossingensis von Huene, 1907 (historical number "GPIT 18064") from Rottweil. A. GPIT-PV-60447, astragalus, in ventral view. B. Outline of the metatarsals in proximal view. C–Q. GPIT-PV-60448, partial right pes. C. Metatarsal V in anterior view. D. Metatarsal IV in anterior view. E. Pedal phalanx IV.1 in anterior view. F. Pedal phalanx IV.2 in anterior view. G. Pedal phalanx IV.3 in anterior view. H. Pedal phalanx IV.4 in anterior view. I. pedal ungual IV.5. J. Metatarsal III in anterior view. K. Pedal phalanx III.1 in anterior view. L. Pedal phalanx III.2 in anterior view. M. Pedal phalanx III.3 in anterior view (most of the element is reconstructed). N. Metatarsal II (shaft is probably a negative cast). O. Pedal phalanx II.1 (half of the element is probably a negative cast). P. Mmetatarsal I in anterior view (shaft is probably a negative cast). Q. Pedal phalanx I.1 in anterior view.
Fig. 17. Unidentified material from Aixheim, collected from the Stubensandstein. A in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 17. Unidentified material from Aixheim, collected from the Stubensandstein. A. GPIT-PV-60390, fragment of a scapular blade in lateral view. B. GPIT-PV-60400, serrated conical tooth. C. GPIT-PV-60401, fragment of a vertebra. D. GPIT-PV-60402, indeterminate bone fragment. E. GPIT-PV-60403, rib fragment. F. GPIT-PV-60404, indeterminate bone fragment. G. GPIT-PV-60405, rib fragment. H. GPIT- PV-60406, bone fragment. I. GPIT-PV-60407, rib fragment. J. GPIT-PV-60408, zygapophysis. K. GPIT- PV-60409, rib shaft fragment. L. GPIT-PV-60410, zygapophysis. M. GPIT-PV-60411, rib fragment. N. GPIT-PV-60412, zygapophysis. O. GPIT-PV-60413, ventral margin of centrum. P. GPIT-PV-60414, fragment of a phalanx. Q. GPIT-PV-60415, fragment of a phalanx. R. GPIT-PV-60416, partial phalanx.
Fig. 15. A in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 15. A combination of archival photographs (UAT 678/73) showing a mounted 'Pachysaurus ajax' von Huene, 1905 from Wüstenroth (GPIT-PV-30790) and "Teratosaurus" suevicus Mayer, 1861 from Aixheim, Löwenstein Formation (GPIT-PV-60297); these specimens were as one skeleton mounted in 1905 by Ernst von Koken (1860–1912), von Huene's teacher, to show the overall size of the dinosaurs from the region.
Fig. 12 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 12. Archive photograph (UAT 678/73) of the mounted specimen. The skeleton mount was given the collection number GPIT-PV-30790 (ca 1901). Some elements from this mount have recently been rediscovered as items stored in individual boxes, along with an old sheet of paper (undated) indicating where each element belonged. However, we are not certain that the elements in these boxes have not been misplaced given these elements were uncatalogued until March 2022.
Fig. 9 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 9. The mounted hindlimb of Gresslyosaurus Rütimeyer, 1856 (this mounted specimen has the catalogue number GPIT-PV-60293 for reference). The mount was disassembled in the second half of the 20th century. Photo from University Archive Tübingen, catalogue number of the photo: UAT 678/73; background changed by the authors.
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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.