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FIG. 5 in Biological and cultural history of domesticated dogs in the Americas
FIG. 5. — Photos of selected dog breeds originating in the Americas. A-J, dogs from North America; K-P, dogs from South and Central America and Cuba. All photo images are from Shutterstock, photo credit is indicated in parenthesis. A, Alaskan Malamute, 19 months old (Eric Isselee); B, Longhaired whippet (MirasWonderland); C, American bulldog puppy, five months old (Erik Lam); D, American cocker spaniel standing with reflection on white background, three years old (WilleeCole Photography); E, three American hairless terriers (Dora Zett); F, Chesapeake Bay retriever (Erik Lam); G, American Akita (Jagodka); H, Silken Windhound (Erik Lam); I, Siberian Husky, four years old (Eric Isselee); J, Miniature American shepherd (MirasWonderland); K, young chihuahuas (cynoclub); L, Xoloitzcuintli,Mexican hairless dog (Masarik); M, Peruvian hairless dog, one year old (Rosa Jay); N, young Bichon Havanese dog (Dorottya Mathe); O, Brazilian Fox-terrier (venturinirica); P, Argentinian Dogo (GeptaYs).
FIG. 2 in Biological and cultural history of domesticated dogs in the Americas
FIG. 2. — Remains of pre-Columbian domestic dogs as reported in the nineteenth century. Drawings of remains of domestic dogs excavated from the graves of Ancon in Peru, as depicted in Reiss & Stübel (1880-1886: plates 117, 118; picture modified to exclude the depiction of a fox-like animal). A, mummies, as well as skull with mandible of one mummy, of shepherd-like domestic dogs; B, skulls and mandibles of shepherd-like, dachshund-like, and bulldog-like domestic dogs as well as long bones of the forelimb of a dachshund-like domestic dog. Two of these skulls are also depicted in Figure 3. Available from the IberoAmerikanisches Institut (Preussischer Kulturbesitz), https://digital.iai.spk-berlin.de/viewer/image/1681616637/225/ and https://digital.iai.spk-berlin.de/viewer/ image/1681616637/229/, last consultation on 30 November 2021. Drawings are not to scale.
FIG. 4 in Biological and cultural history of domesticated dogs in the Americas
FIG. 4. — Skulls of putative pre-Columbian domestic dogs at the Museum für Naturkunde Berlin, Germany. Skulls are housed in the Nehring-Collection (Zoologische Sammlung der KÖniglichen Landwirtschaftlichen Hochschule zu Berlin). A, "Inca dog" from Ancon (Zm 355), Peru (Nehring 1884), annotated as "Inca dog from Ancon, 1889" (as noted in the collection catalogue [1886] and as written on the actual specimen). This specimen most likely does not belong to the collection described by Nehring (1884: fig. 3) and Reiss & Stübel (1880-1886: fig. 1), which also originated from the graves in Ancon, Peru, but which are assumed to have been destroyed in the World Wars (Ueck 1961; B, C, Pre-Columbian dogs (7031 and 7013) from Puebla, Mexico, Nehring-Collection. Specimens are without present-day collection numbers. Every skull is depicted in dorsal, ventral, and lateral view (from left to right), where the lateral view of B is mirrored. B, "7031" and C, "7013" although also housed in the Nehring-Collection, were found by Prof. Seler in Berlin (as described in the collection files). In contrast to A, these apparently unpublished remains are described as "from an old grave in the district Chalchicomula, close to Jalapazco, Puebla Mexico". Further, both skulls are described as to be "surely from a time before the conquest of Mexico". Scale bar: 5 cm.
FIG. 7 in Biological and cultural history of domesticated dogs in the Americas
FIG. 7. — Cranium of a Salish woolly dog (Specimen #1) excavated in 1977 from the Semiahmoo Spit, WA (45WH17), dated to 900-420 years BP (Montgomery 1979): A, lateral view; B, dorsal view; C, occlusal view. Scale bar: 1 cm.
Dataset accompanying manuscript "Correlative imaging of spatio-angular dynamics of biological systems with multimodal instant polarization microscope"
<p>Raw images and microscope calibration metadata for reconstruction of datasets presented in Fig. 1 and Fig. 3 of "Correlative imaging of spatio-angular dynamics of biological systems with multimodal instant polarization microscope". Notebooks demonstrating steps in the label-free and fluorescence anisotropy reconstruction pipelines can be found at https://github.com/mehta-lab/miPolScope.</p>
Fig. 4 in Structural biology and evolution in the monotypic Amazonian palm Wendlandiella (Arecoideae: Chamaedoreeae)
Fig. 4. – Inflorescence structure and flower arrangements in Wendlandiella gracilis. A. 1-order ramification; B. Proximal ramification in basal rachillae; C. 2-branched order ramification in basal rachillae; D. Solitary female flowers (var. polyclada); E. Male flowers in an acervulus of two alternating rows (var. gracilis); F. Male flowers in an unordered acervulate complex (var. gracilis). [Abbreviations: fRae, fertile rachillae; pb, peduncular bract; py, prophyll; sh, sheath; sRae, sterile rachillae]
Fig. 5 in Structural biology and evolution in the monotypic Amazonian palm Wendlandiella (Arecoideae: Chamaedoreeae)
Fig. 5. – Staminate flower in Wendlandiella gracilis. A. Anthesis (var. polyclada); B. Androecium displaying filaments and anthers (var. gracilis); C. Pistillode (var. gracilis); D. Calyx (var. gracilis); E. TS at basal level (var. polyclada); F. Pollen intermixed with raphide idioblasts (var. gracilis). [Abbreviations: aS, alternating stamens; fi, filament; oS, opposite stamens; pD, pistillode; pe, petal; ri, raphide idioblast; vb, vascular bundle]
BioTAGME: A comprehensive platform for biological knowledge network analysis
<p><strong>A Knowledge Graph containing logical or physical relationships among biological elements</strong>. <br> This Network was built through BioTAGME, a system that combines TAGME, an entity-annotation framework based on Wikipedia corpus with a network-based inference methodology (i.e., DT-Hybrid).<br> <em>BioTAGME</em> exploits several Biological Ontologies as "ground truth" of significant bio-entities, such as <em>DisGeNET, DrugBank, STRING</em> and many more. <br> We Deployed <em>BioTAGME</em> on <em>PubMed</em>, where the aim was on extracting biological entities and their relations from titles and abstracts.<br> Biological entities are the <em>nodes</em> of our graph, while <em>edges</em> are the relations between them.<br> Edges are of three categories:</p> <ol> <li>Literature edges: interactions derived from publications.</li> <li> STRING: protein-protein associations stored in the STRING database.</li> <li>BioTAGME: interactions predicted by our tool.</li> </ol> <p> </p> <p>The <strong>network</strong> is released (<strong>BiotagmeNetwork.zip</strong>) in a neo4j compatible format. Such archive contains:</p> <ol> <li><strong>Edges.csv and Nodes.csv</strong> that contain the nodes and edges of our network, rispectively.</li> <li><strong>Name_Aliases.csv</strong>: contains the synonyms list of each biological entity.</li> <li><strong>Wiki_Titles.csv</strong>: contains the wikipedia pages title associated with the annotated entities.</li> <li><strong>wid1_wid2_pmid.csv</strong>: contains the associations between pairs of entities and pubmed id</li> <li><strong>BioIDs_WikiIDs.csv</strong>: contains the association between the biological entities annotated by BioTAGME, and the wikipedia pages that are associated. </li> </ol>
Data set figures 1-3 article Reaux et al; Communications Biology 2022
<p>The files attached are :</p> <p>- the manuscript and figures of our article entitled ".." accepted for publication in Communication Biology in February 2022. </p> <p>- A supplementary material, which is an Excel file is the dataset of the figures 1 to 3. It is composed of two sheets in which the values of cerebral blood volume are given for every single animal included in our study: before and during each stimulation (been mechanical or chemical stimulation in sheet 1 - figure 2 or mechanical stimulations of either the ophthalmic or maxillary territories - 2d sheet - figure 3). </p> <p>- A Matlab file with dataset of the figure 4 (ULM of the saggital brain showing the rich and complex vasculature in the trigeminal ganglion)</p>
Data for: Nawrocka et al., Variable-temperature NMR spectroscopy for metabolite identification in biological materials, RSC Adv., 2021, 11, 35321, DOI: 10.1039/d1ra05626c
<p>Raw NMR spectrometer data (Varian/Agilent format) for the paper Nawrocka et al., Variable-temperature NMR spectroscopy for metabolite identification in biological materials, RSC Adv., 2021, 11, 35321, DOI: 10.1039/d1ra05626c</p> <p>Includes variable-temperature series for artificial and natural mixtures of metabolites and spectra of separate metabolites.</p>
The Surface Biology and Geology Architecture Study Science and Applications Traceability Matrix (SATM)
<p>This dataset provides a synthesis of the National Academies of Sciences 2017 Earth Science Decadal Survey mission most and very important objectives for the Surface Biology and Geology Earth Observing system consisting of a global visible to shortwave infrared imaging spectrometer and a multi-spectral thermal infrared radiometer. These objectives are traced to performance criteria used for assessing hundreds of potential architecture variants in an architecture study outlined in a paper titled: "Designing an Observing System to Study the Surface Biology and Geology (SBG) of the Earth in the 2020s".</p>
A taxonomic revision and a review of the biology of the North American seed-harvester ant genus Veromessor (Hymenoptera: Formicidae: Myrmicinae)
<p>Detailed collection and locality information for all material examined in the manuscript for "A taxonomic revision and a review of the biology of the North American seed-harvester ant genus <em>Veromessor </em>(Hymenoptera: Formicidae: Myrmicinae)".</p> <p>File "Robert_A_Johnson_collection.xlsx" contains records in the senior author's collection and "Veromessor_specimens_examined.xlsx" include records from all other collections. The two files differ in headers, format. </p>
Fig. 3. A in Data On The Reproductive Biology Of The Satanic Leaf-Tailed Gecko, Uroplatus Phantasticus (Squamata, Gekkonidae), At The Bion Terrarium Center As A Contribution To Ex Situ Offspring Programs
Fig. 3. A part of all fertile eggs laid by U. phantasticus females during 2020 breeding season; incubation boxes are filled with "Seramis" medium.
Fig. 1 in Data On The Reproductive Biology Of The Satanic Leaf-Tailed Gecko, Uroplatus Phantasticus (Squamata, Gekkonidae), At The Bion Terrarium Center As A Contribution To Ex Situ Offspring Programs
Fig. 1. Laboratory for breeding stock of U. phantasticus (A) and individual breeze-like minimally equipped terrariums (B).
Fig. 5. A in Data On The Reproductive Biology Of The Satanic Leaf-Tailed Gecko, Uroplatus Phantasticus (Squamata, Gekkonidae), At The Bion Terrarium Center As A Contribution To Ex Situ Offspring Programs
Fig. 5. A total number of eggs (pcs.) obtained from U. phantasticus females by dates during 2020 breeding season.
Fig. 5 in Description Of The Puparium And Redescription Of The Third-Instar Larva Of Brachyopa Panzeri (Diptera, Syrphidae) With New Data On Its Biology
Fig. 5. Female of Tetrastichus brachyopae reared from puparium of Brachyopa panzeri for the first time.
Fig. 4 in Description Of The Puparium And Redescription Of The Third-Instar Larva Of Brachyopa Panzeri (Diptera, Syrphidae) With New Data On Its Biology
Fig. 4. Morphology of Brachyopa panzeri puparium. A — opened pupa in dorsal view; B — upal spiracle, lateral view; C — pupal spiracle, apical view; D — spiracular openings of pupal spiracles (SO).
Fig. 3 in Description Of The Puparium And Redescription Of The Third-Instar Larva Of Brachyopa Panzeri (Diptera, Syrphidae) With New Data On Its Biology
Fig. 3. Scanning electron microphotograph of larval spiracular plate on the apex of breathing tube of Brachyopa panzeri (SEM). Labels: CS — central scars; IS — interspiracular branched setae; SP — spiracular opening.
Fig. 1 in Description Of The Puparium And Redescription Of The Third-Instar Larva Of Brachyopa Panzeri (Diptera, Syrphidae) With New Data On Its Biology
Fig. 1. The dorsal (A) and ventral (B) views of third-instar larva of Brachyopa panzeri. Labels: P — prothorax, Ms — mesothorax, Mt — metathorax, A1, A7, A8 segments of the body (segments A2–6 similar to A1); cd — central dark area, V7 — ventral sensillum of second abdominal segment; prp — posterior breathing tube; lp — lappets, am — atenno-maxillary organ; vl — ventral lip; w — larval discs.
Fig. 1 in On The Biology Of The East Asian Seed Beetle, Megabruchidius Dorsalis (Coleoptera, Chrysomelidae, Bruchinae), An Adventive Species For Ukraine
Fig. 1. Gleditsia triacanthos beans infested by the Megabruchidius dorsalis (Photo by I. P. Lezhenina).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.