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zenodo32/100

Moonshot: Public R&D and Growth - patent text files

<p>This data deposit is include USPTO full-text patent files as used in the analysis contained in Kantor and Whalley (2024) "Moonshot: Public R&amp;D and Growth".&nbsp; Each file contains the full-text for the patent indicated in the file name.</p>

opencc-by-4.0Jul 2024View details →
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Supplementary material 1 from: Morigengaowa, Luo J-J, Knapp R, Wei H-J, Liu B-D, Yan Y-H, Shang H (2018) The identity of Hypolepis robusta, as a new synonym of Hypolepis alpina (Dennstaedtiaceae), based on morphology and DNA barcoding and the new distribution. PhytoKeys 96: 35-45. https://doi.org/10.3897/phytokeys.96.23470

Table S1 : Explanation note: Herbarium specimens information of Hypolepis alpina and Hypolepis robusta samples checked in this study.

opencc-zeroApr 2018View details →
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Supplementary data to the manuscript "Morphology and metabarcoding! A test with stream diatoms from Mexico highlights the complementarity of methods", submitted to Freshwater Science by D. Mora, N. Abarca, S. Proft, J. Grau, N. Enke, J. Carmona, O. Skibbe, R. Jahn and J. Zimmermann.

<p>Demultiplexed fastq files for 18 samples, accompanied by a table including sample numbers in the manuscript and sample numbers in the fastq files.</p>

opencc-by-4.0Jul 2018View details →
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Supplementary material 1 from: Short G, Smith R, Motomura H, Harasti D, Hamilton H (2018) Hippocampus japapigu, a new species of pygmy seahorse from Japan, with a redescription of H. pontohi (Teleostei, Syngnathidae). ZooKeys 779: 27-49. https://doi.org/10.3897/zookeys.779.24799

Genetic distance analysis (uncorrected p distances) of COI sequence data from 21 specimens of H.pontohi and those referred to H.severnsi :

opencc-zeroAug 2018View details →
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Supplementary material 1 from: Galasso G, Domina G, Alessandrini A, Ardenghi NMG, Bacchetta G, Ballelli S, Bartolucci F, Brundu G, Buono S, Busnardo G, Calvia G, Capece P, D'Antraccoli M, Di Nuzzo L, Fanfarillo E, Ferretti G, Guarino R, Iamonico D, Iberite M, Latini M, Lazzaro L, Lonati M, Lozano V, Magrini S, Mei G, Mereu G, Moro A, Mugnai M, Nicolella G, Nimis PL, Olivieri Н, Pennesi R, Peruzzi L, Podda L, Probo M, Prosser F, Ravetto Enri S, Roma-Marzio F, Ruggero A, Scafidi F, Stinca A, Nepi C (2018) Notulae to the Italian alien vascular flora: 6. Italian Botanist 6: 65-90. https://doi.org/10.3897/italianbotanist.6.30560

Supplementary data : Explanation note: 1. Nomenclature updates; 2. Note updates; 3. Distribution updates; 4. Synonyms, misapplied or included names.

opencc-zeroNov 2018View details →
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Supplementary material 7 from: Seltmann K, Lafia S, Paul D, James S, Bloom D, Rios N, Ellis S, Farrell U, Utrup J, Yost M, Davis E, Emery R, Motz G, Kimmig J, Shirey V, Sandall E, Park D, Tyrrell C, Thackurdeen R, Collins M, O'Leary V, Prestridge H, Evelyn C, Nyberg B (2018) Georeferencing for Research Use (GRU): An integrated geospatial training paradigm for biocollections researchers and data providers. Research Ideas and Outcomes 4: e32449. https://doi.org/10.3897/rio.4.e32449

This document contains an annotated set of data quality checks that participants report they use when evaluating and cleaning datasets. These items outline how participants are judging if the data suits their purpose.

opencc-zeroDec 2018View details →
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Supplementary material 3 from: Seltmann K, Lafia S, Paul D, James S, Bloom D, Rios N, Ellis S, Farrell U, Utrup J, Yost M, Davis E, Emery R, Motz G, Kimmig J, Shirey V, Sandall E, Park D, Tyrrell C, Thackurdeen R, Collins M, O'Leary V, Prestridge H, Evelyn C, Nyberg B (2018) Georeferencing for Research Use (GRU): An integrated geospatial training paradigm for biocollections researchers and data providers. Research Ideas and Outcomes 4: e32449. https://doi.org/10.3897/rio.4.e32449

The informed consent request and workshop survey questions given to participants after the workshop each day for 4 consecutive days.

opencc-zeroDec 2018View details →
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Supplementary material 2 from: Seltmann K, Lafia S, Paul D, James S, Bloom D, Rios N, Ellis S, Farrell U, Utrup J, Yost M, Davis E, Emery R, Motz G, Kimmig J, Shirey V, Sandall E, Park D, Tyrrell C, Thackurdeen R, Collins M, O'Leary V, Prestridge H, Evelyn C, Nyberg B (2018) Georeferencing for Research Use (GRU): An integrated geospatial training paradigm for biocollections researchers and data providers. Research Ideas and Outcomes 4: e32449. https://doi.org/10.3897/rio.4.e32449

This document shows just the questions we asked the applicants who applied to participate in this Georeferencing for Research Use workshop. We used a Google Form to deliver these questions and collect responses. It is both an application and serves as our pre-workshop survey.

opencc-zeroDec 2018View details →
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Supplementary material 8 from: Seltmann K, Lafia S, Paul D, James S, Bloom D, Rios N, Ellis S, Farrell U, Utrup J, Yost M, Davis E, Emery R, Motz G, Kimmig J, Shirey V, Sandall E, Park D, Tyrrell C, Thackurdeen R, Collins M, O'Leary V, Prestridge H, Evelyn C, Nyberg B (2018) Georeferencing for Research Use (GRU): An integrated geospatial training paradigm for biocollections researchers and data providers. Research Ideas and Outcomes 4: e32449. https://doi.org/10.3897/rio.4.e32449

Summary of desired future workshop topics that were listed by participants on the last day of the workshop.

opencc-zeroDec 2018View details →
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Supplementary material 6 from: Seltmann K, Lafia S, Paul D, James S, Bloom D, Rios N, Ellis S, Farrell U, Utrup J, Yost M, Davis E, Emery R, Motz G, Kimmig J, Shirey V, Sandall E, Park D, Tyrrell C, Thackurdeen R, Collins M, O'Leary V, Prestridge H, Evelyn C, Nyberg B (2018) Georeferencing for Research Use (GRU): An integrated geospatial training paradigm for biocollections researchers and data providers. Research Ideas and Outcomes 4: e32449. https://doi.org/10.3897/rio.4.e32449

Summary of topics to be covered in an ideal workshop as identified by workshop applicants in the workshop call for participation. We incorporated as many as possible that also fit our scope.

opencc-zeroDec 2018View details →
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Supplementary material 5 from: Seltmann K, Lafia S, Paul D, James S, Bloom D, Rios N, Ellis S, Farrell U, Utrup J, Yost M, Davis E, Emery R, Motz G, Kimmig J, Shirey V, Sandall E, Park D, Tyrrell C, Thackurdeen R, Collins M, O'Leary V, Prestridge H, Evelyn C, Nyberg B (2018) Georeferencing for Research Use (GRU): An integrated geospatial training paradigm for biocollections researchers and data providers. Research Ideas and Outcomes 4: e32449. https://doi.org/10.3897/rio.4.e32449

Questions we asked in the Georeferencing for Research Follow Up Survey done 3 months after the workshop.

opencc-zeroDec 2018View details →
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Supplementary material 4 from: Seltmann K, Lafia S, Paul D, James S, Bloom D, Rios N, Ellis S, Farrell U, Utrup J, Yost M, Davis E, Emery R, Motz G, Kimmig J, Shirey V, Sandall E, Park D, Tyrrell C, Thackurdeen R, Collins M, O'Leary V, Prestridge H, Evelyn C, Nyberg B (2018) Georeferencing for Research Use (GRU): An integrated geospatial training paradigm for biocollections researchers and data providers. Research Ideas and Outcomes 4: e32449. https://doi.org/10.3897/rio.4.e32449

Three months after the workshop, participants were surveyed to assess what workshop-related knowledge and materials were being used and disseminated to others. This document summarized data collected in this particular survey.

opencc-zeroDec 2018View details →
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Supplementary material 1 from: Seltmann K, Lafia S, Paul D, James S, Bloom D, Rios N, Ellis S, Farrell U, Utrup J, Yost M, Davis E, Emery R, Motz G, Kimmig J, Shirey V, Sandall E, Park D, Tyrrell C, Thackurdeen R, Collins M, O'Leary V, Prestridge H, Evelyn C, Nyberg B (2018) Georeferencing for Research Use (GRU): An integrated geospatial training paradigm for biocollections researchers and data providers. Research Ideas and Outcomes 4: e32449. https://doi.org/10.3897/rio.4.e32449

Darwin Core Archive file downloaded from the iDigBio portal for use in the Georeferencing for Research Use workshop. Total 25,429 records, accessed on 2016-08-29. Collections contributing to the record set are listed in the archive records.citation.txt file. Dataset GUID: a69d1541-4726-465d-84ad-50c7ed556eee

opencc-zeroDec 2018View details →
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Supplementary material 1 from: Reyes-Puig C, Bittencourt-Silva G, Torres-Sánchez M, Wilkinson M, Streicher J, Maddock S, Kotharambath R, Müller H, Angiolani Larrea F, Almeida-Reinoso D, Ron S, Cisneros-Heredia D (2019) Rediscovery of the Endangered Carchi Andean Toad, Rhaebo colomai (Hoogmoed, 1985), in Ecuador, with comments on its conservation status and extinction risk. Check List 15(3): 415-419. https://doi.org/10.15560/15.3.415

Supplementary material 1 from: Reyes-Puig C, Bittencourt-Silva G, Torres-Sánchez M, Wilkinson M, Streicher J, Maddock S, Kotharambath R, Müller H, Angiolani Larrea F, Almeida-Reinoso D, Ron S, Cisneros-Heredia D (2019) Rediscovery of the Endangered Carchi Andean Toad, Rhaebo colomai (Hoogmoed, 1985), in Ecuador, with comments on its conservation status and extinction risk. Check List 15(3): 415-419. https://doi.org/10.15560/15.3.415

opencc-by-4.0May 2019View details →
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parts conical pore; B = loculate pore; C = minute sclerotised pore; D = tubular duct of spermatheca; E = hair; F = hair­like seta; G = collared setae; H = satellite setae; L = bifurcated seta; M = abdominal spiracle; N = anal tube; P = part of leg; Q = claw; R = view of part of dorsal derm; S = view or part of ventral derm; T = abdominal tubular duct; Z = spine on eversible endophallus. Also note that, on central drawing, density of setae only shown on one abdominal segment and leg setae only shown on methorax in Morphology of Marchalina hellenica (Gennadius) (Hemiptera: Coccoidea: Marchalinidae) from Greece, with a discussion on the identity of M. caucasica Hadzibeyli from the Caucasus

parts conical pore; B = loculate pore; C = minute sclerotised pore; D = tubular duct of spermatheca; E = hair; F = hair­like seta; G = collared setae; H = satellite setae; L = bifurcated seta; M = abdominal spiracle; N = anal tube; P = part of leg; Q = claw; R = view of part of dorsal derm; S = view or part of ventral derm; T = abdominal tubular duct; Z = spine on eversible endophallus. Also note that, on central drawing, density of setae only shown on one abdominal segment and leg setae only shown on methorax

opennotspecifiedMay 2006View details →
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text-fig. 42. Left femora of theropod dinosaurs, illustrating several hindlimb characters, a, Liliensternus liliensterni; lateral view; based on MB R. 2175. B, Ceratosaurus sp.; lateral view; based on UMNH VP 5278. C-D, Allosaurus fragilis; anterior and lateral view; redrawn from Madsen (1976). e, Velociraptor mongoliensis; lateral view; based on IGM 100/986. Abbreviations: ag, anterior groove; fh, femoral head; gt, greater trochanter; It, lesser trochanter; mf, medial flange; pit, posterolateral trochanter; tc, trochanteric crest; 4th, fourth trochanter. Scale bars represent 50 mm (a-b), 100 mm (c-d), and 10 mm (e). in The interrelationships and evolution of basal theropod dinosaurs

text-fig. 42. Left femora of theropod dinosaurs, illustrating several hindlimb characters, a, Liliensternus liliensterni; lateral view; based on MB R. 2175. B, Ceratosaurus sp.; lateral view; based on UMNH VP 5278. C-D, Allosaurus fragilis; anterior and lateral view; redrawn from Madsen (1976). e, Velociraptor mongoliensis; lateral view; based on IGM 100/986. Abbreviations: ag, anterior groove; fh, femoral head; gt, greater trochanter; It, lesser trochanter; mf, medial flange; pit, posterolateral trochanter; tc, trochanteric crest; 4th, fourth trochanter. Scale bars represent 50 mm (a-b), 100 mm (c-d), and 10 mm (e).

opennotspecifiedMay 2003View details →
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text-fig. 49. Theropod astragali and calcanei, illustrating several tarsal characters, a-b, Lilienstemus lilienstemi\ MB R. 2175; left astragalo-calcaneum; anterior view and proximal view (reversed). c-D, Allosaurus fragilis: MOR 693; stereophotographs of left astragalo-calcaneum in anterior and proximal view. E, Deinonychus antirrhopus; YPM 5226; left astragalo-calcaneum; anterior view (stereophotographs). Abbreviations: asc proc, ascending process of the astragalus; ast, astragalus; calc, calcanéum; fib, facet for fibula; tib, facet for tibia. Scale bars represent 10 mm. in The interrelationships and evolution of basal theropod dinosaurs

text-fig. 49. Theropod astragali and calcanei, illustrating several tarsal characters, a-b, Lilienstemus lilienstemi\ MB R. 2175; left astragalo-calcaneum; anterior view and proximal view (reversed). c-D, Allosaurus fragilis: MOR 693; stereophotographs of left astragalo-calcaneum in anterior and proximal view. E, Deinonychus antirrhopus; YPM 5226; left astragalo-calcaneum; anterior view (stereophotographs). Abbreviations: asc proc, ascending process of the astragalus; ast, astragalus; calc, calcanéum; fib, facet for fibula; tib, facet for tibia. Scale bars represent 10 mm.

opennotspecifiedMay 2003View details →
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text-fig. 24. Anterior theropod cervical vertebrae in lateral view, illustrating several cervical characters, a, Herrerasaurus ischigualastensis; redrawn from Sereno and Novas (1993). B, Lilienstemus lilienstemi; based on MB R. 2175. c, Dilophosaurus wetherillv, based on UCMP V 6468. D, Allosaurus fragilisa based on Madsen (1976) and MOR 693. Abbreviations: di, diapophysis; ep, epipophysis; k, keel; ns, neural spine; pl, pleurocoel; poz, postzygapophysis; pp, parapophysis; prz, prezygapophysis. Scale bars represent 10 mm (a-b) and 50 mm (c-d). in The interrelationships and evolution of basal theropod dinosaurs

text-fig. 24. Anterior theropod cervical vertebrae in lateral view, illustrating several cervical characters, a, Herrerasaurus ischigualastensis; redrawn from Sereno and Novas (1993). B, Lilienstemus lilienstemi; based on MB R. 2175. c, Dilophosaurus wetherillv, based on UCMP V 6468. D, Allosaurus fragilisa based on Madsen (1976) and MOR 693. Abbreviations: di, diapophysis; ep, epipophysis; k, keel; ns, neural spine; pl, pleurocoel; poz, postzygapophysis; pp, parapophysis; prz, prezygapophysis. Scale bars represent 10 mm (a-b) and 50 mm (c-d).

opennotspecifiedMay 2003View details →
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text-fig. 19. heropod ectopterygoids in ventral view, showing the different degrees and modes of pneumatisation of this bone (character 67). a, Majungatholus atopus; based on FMNH 96202-44C. B, Liliensternus lilienstemi; based on MB R. 2175. c, Allosaurus fragilis; ectopterygoid in ventral (left) and medial (right) view; based on UMNH VP 5328 (left) and 5327 (right), d, Dromaeosaurus albertensis; based on AMNH 5356. Abbreviations: j, contact to the jugal; pt, contact to the pterygoid. Scale bars represent 10 mm. in The interrelationships and evolution of basal theropod dinosaurs

text-fig. 19. heropod ectopterygoids in ventral view, showing the different degrees and modes of pneumatisation of this bone (character 67). a, Majungatholus atopus; based on FMNH 96202-44C. B, Liliensternus lilienstemi; based on MB R. 2175. c, Allosaurus fragilis; ectopterygoid in ventral (left) and medial (right) view; based on UMNH VP 5328 (left) and 5327 (right), d, Dromaeosaurus albertensis; based on AMNH 5356. Abbreviations: j, contact to the jugal; pt, contact to the pterygoid. Scale bars represent 10 mm.

opennotspecifiedMay 2003View details →
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text-fig. 6. Skull reconstructions of representatives of Cretaceous OTUs in left lateral view, a, abelisaurid Camotaurus sastrei, Late Cretaceous (Campanian), Gorro Frigio Formation, Argentina; based on Bonaparte et al. (1990) and MACN CH 894. b, composite skull of a generalized baryonychid; mainly based on Suchomimus tenerensis (MNN GDF 501, 503-506) and Irritator challenged (SMNS 58022), with some elements reconstructed after Baryonyx walkeri (BMNH R 9951). c, carcharodontosaurid Carcharodontosaurus sahariens, Late Cretaceous (Cenomanian), Kem Kem beds, Morocco; based on Sereno et al. (1996) and SGM-Din 1, unpreserved elements shaded. D, dromaeosaurid Velociraptor mongoliensis, Late Cretaceous (Campanian), Djadokhta Formation, Mongolia; based on Barsbold (1983), Barsbold and Osmólska (1999), and AMNH 6515. e, ornithomimosaur Dromiceiomimus brevitertius, Late Cretaceous (Maastrichtian), Horseshoe Canyon Formation, Alberta, Canada; redrawn from Russell (1972). F, oviraptorosaur Oviraptor philoceratops, Late Cretaceous (Campanian), Djadokhta Formation, Mongolia; redrawn from Barsbold et al. (1990). G, therizinosauroid Erlikosaurus andrewsi, Late Cretaceous (Cenomanian- Turonian), Baynshiren Svita, Mongolia; based on Clark et al. (1994). H, tyrannosaurid Gorgosaurus libratus, Late Cretaceous (Campanian), Judith River Formation, Alberta, Canada, redrawn from Molnar et al. (1990). Abbreviations as in Text-figures 4 and 5, and: acc. op., accessory opening of unknown function in the premaxilla of Oviraptor (Barsbold et al. 1990); amf, anterior maxillary foramen; pn, pneumatic openings. Scale bars represent 50 mm (d-g) and 100 mm (a-c, h). in The interrelationships and evolution of basal theropod dinosaurs

text-fig. 6. Skull reconstructions of representatives of Cretaceous OTUs in left lateral view, a, abelisaurid Camotaurus sastrei, Late Cretaceous (Campanian), Gorro Frigio Formation, Argentina; based on Bonaparte et al. (1990) and MACN CH 894. b, composite skull of a generalized baryonychid; mainly based on Suchomimus tenerensis (MNN GDF 501, 503-506) and Irritator challenged (SMNS 58022), with some elements reconstructed after Baryonyx walkeri (BMNH R 9951). c, carcharodontosaurid Carcharodontosaurus sahariens, Late Cretaceous (Cenomanian), Kem Kem beds, Morocco; based on Sereno et al. (1996) and SGM-Din 1, unpreserved elements shaded. D, dromaeosaurid Velociraptor mongoliensis, Late Cretaceous (Campanian), Djadokhta Formation, Mongolia; based on Barsbold (1983), Barsbold and Osmólska (1999), and AMNH 6515. e, ornithomimosaur Dromiceiomimus brevitertius, Late Cretaceous (Maastrichtian), Horseshoe Canyon Formation, Alberta, Canada; redrawn from Russell (1972). F, oviraptorosaur Oviraptor philoceratops, Late Cretaceous (Campanian), Djadokhta Formation, Mongolia; redrawn from Barsbold et al. (1990). G, therizinosauroid Erlikosaurus andrewsi, Late Cretaceous (Cenomanian- Turonian), Baynshiren Svita, Mongolia; based on Clark et al. (1994). H, tyrannosaurid Gorgosaurus libratus, Late Cretaceous (Campanian), Judith River Formation, Alberta, Canada, redrawn from Molnar et al. (1990). Abbreviations as in Text-figures 4 and 5, and: acc. op., accessory opening of unknown function in the premaxilla of Oviraptor (Barsbold et al. 1990); amf, anterior maxillary foramen; pn, pneumatic openings. Scale bars represent 50 mm (d-g) and 100 mm (a-c, h).

opennotspecifiedMay 2003View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record