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188 results for “historic review”
Data from article "Sea-level rise in Venice: historic and future trends (review article)"
<p>Data from the article Zanchettin D., et al.: Sea-level rise in Venice: historic and future trends (review article), Nat. Hazards Earth Syst. Sci., 21, 1–35, 2021, https://doi.org/10.5194/nhess-21-1-2021</p> <p>The dataset contains:</p> <p>- Historical tide gauge data for Venice (relative sea level, or RSL, and RSL corrected for vertical land movement) for the winter (JFM) and autumn (OND) seasons.</p> <p>- sea-level projections for Venice for the RCP2.6, the RCP8.5 and a high-end scenario.</p>
Data for "Modular Bibliographical Profiling of Historic Book Reviews"
<p>This dataset supports the research paper, ""Modular Bibliographical Profiling of Historic Book Reviews." The paper examines different methods of predicting bibliographical details (e.g. author, title, and publisher) of books under review in a corpus of approximately 1,100 historical book reviews. The dataset is comprised of book reviews from ProQuest's American Periodicals Series (APS). This kind of bibliographical profiling is often characterized as a Natural Language Processing (NLP) or Named Entity Recognition (NER) task, but it can be more specifically described as a two-part Named Entity Linking (NEL) task, beginning with a feature extraction stage followed by one of several available matching or classification methods. An attempt has been made to formalize constraints for modular bibliographical profiling (MBP) and shed light on some important choices that are often glossed over or obscured by digital humanities (DH) practitioners. Applying these constraints, the paper evaluates combinations of feature selection (naive bag-of-words [BOW], rule-based feature extraction, and NER using a pre-trained model) with a standardized similarity-based matching strategy (cosine similarity). All tasks are performed on derived text data (term frequency tables), so that data can be shared and all methods can be used on materials available only in non-consumptive formats. These comparisons suggest that naive BOW can perform quite robustly, and that using even a basic pretrained NER model in conjunction with a BOW approach may reduce false positives. </p>
FIGURES 7–12 in Aphonopelma braunshausenii Tesmoingt, 1996 is a nomen dubium, with review of some historic morphological characters ineffective at species delineation (Araneae: Theraphosidae)
FIGURES 7–12. Labia of the above Aphonopelma specimens all showing near identical morphology in shape and cuspule density, 7 Aphonopelma platnicki holotype male BMNH 1894.2.18.1, 8 Aphonopelma clarki holotype female BMNH 1959.1.2 [= A. hentzi Girard, 1853 per Hamilton et al. 2016)], 9 Aphonopelma anax non-type male OUMNH 2009-001, 10 Aphonopelma pallidum holotype male BMNH 1898.12.24.34–37, 11 Aphonopelma bicoloratum non-type male OUMNH 2011-045, 12 Aphonopelma marxi non-type male OUMNH 2007-064. Scale lines = 1mm.
FIGURES 1–6 in Aphonopelma braunshausenii Tesmoingt, 1996 is a nomen dubium, with review of some historic morphological characters ineffective at species delineation (Araneae: Theraphosidae)
FIGURES 1–6. Ocular tubercles of some Aphonopelma species showing variation in size and distance between eyes, 1 Aphonopelma platnicki holotype male BMNH 1894.2.18.1, 2 Aphonopelma clarki holotype female BMNH 1959.1.2 [= A. hentzi Girard, 1853 per Hamilton et al. 2016)], 3 Aphonopelma anax non-type male OUMNH 2009-001, 4 Aphonopelma pallidum holotype male BMNH 1898.12.24.34–37, 5 Aphonopelma bicoloratum non-type male OUMNH 2011-045, 6 Aphonopelma marxi nontype male OUMNH 2007-064. Scale lines = 1mm.
FIGURE 3 in A historical review of the classification of Erebinae (Lepidoptera: Erebidae)
FIGURE 3. Male genitalia of Noctuoidea with associated musculature, redrawn from Tikhomirov (1979). A) Earias pudicana Staudinger, lateral view. Muscle m2 present. B) Ephesia [Catocala] fulminea (Scopoli), left side. Muscle m2 absent.
FIGURE 2 in A historical review of the classification of Erebinae (Lepidoptera: Erebidae)
FIGURE 2. Trees showing proposed relationships of Erebinae. A) Richards' (1933) 'tree' drawn from morphological similarity of noctuoid tympana. Erebinae taxa fall among Richards' Groups III–VI, marked with an asterisk. B) Berio's (1959) proposed relationships among putative monophyletic groups ("Phyla") within the former Catocalinae. The number of genera that Berio assigned to each group is listed in parentheses to the right of the group name. The width of each terminal branch represents the relative generic diversity of each "phylum". With the exception of the Phylum of Arcte [Noctuidae] and the Phylum of Miniodes [Calpinae], all groups are members of the current Erebinae. C) Erebinae relationships according to Zahiri et al. (2011). The relative number of taxa included in each group is listed in parentheses. Bootstrap support values above 70% are shown above branches. D) Erebinae relationships proposed by Zahiri et al. (2012). The number of taxa included in the analysis for each named tribe is listed in parentheses after tribal names. Bootstrap support values above 70% are shown by each node.
FIGURE 1. A in A historical review of the classification of Erebinae (Lepidoptera: Erebidae)
FIGURE 1. A) Trifid forewing venation (Thaumeotopoea processionea, redrawn from Miller (1991)). B) Quadrifid forewing venation (Panthea furcilla, redrawn from Miller (1991)). C) Trifine hindwing venation (Actinotia polyodon, redrawn from Hampson (1903)). D) Quadrifine hindwing venation (Melipotis jucunda, redrawn from Lafontaine & Fibiger (2006)).
FIGURES 26–31 in Description of three new species of Neoperla (Plecoptera: Perlidae) and a historical review of tropical Southeast Asian Perlidae
FIGURES 26–31. Neoperla yentu sp. nov. nymphal mouthparts. (26) Labrum. Scale bar = 0.5 mm. (27) Labium. Scale bar = 1 mm. (28 & 29) Left and right mandibles. Scale bar = 0.5 mm. (30) Right maxilla. Scale bar = 1 mm. (31) Tip of right maxilla. Scale bar = 0.5 mm.
FIGURES 16–24 in Description of three new species of Neoperla (Plecoptera: Perlidae) and a historical review of tropical Southeast Asian Perlidae
FIGURES 16–24. Neoperla yentu sp. nov. (16) Male head and pronotum. Scale bar = 0.5 mm. (17 & 18) Male right forewing and hindwing. Scale bar = 3 mm. (19) Male dorsal terminalia. Scale bar = 0.5 mm. (20) Female ventral terminalia. Scale bar = 0.5 mm. (21 & 22) Everted lateral and ventral aedeagus. Scale bar = 1 mm. (23 & 24) Female vagina and egg. Scale bar = 0.2 mm. M = micropyle.
FIGURES 7–15 in Description of three new species of Neoperla (Plecoptera: Perlidae) and a historical review of tropical Southeast Asian Perlidae
FIGURES 7–15. Neoperla tamdao sp. nov. (7) Male head and pronotum. Scale bar = 0.5 mm. (8 & 9) Male right forewing and hindwing. Scale bar = 2 mm. (10) Male dorsal terminalia. Scale bar = 0.5 mm. (11) Female ventral terminalia. Scale bar = 0.5 mm. (12 & 13) Everted lateral and dorsal aedeagus. Scale bar = 0.5 mm. (14) Female vagina. Scale bar = 0.2 mm.(15) Lateral egg. Scale bar = 0.1 mm. Micropyles arrowed.
FIGURES 1–6 in Description of three new species of Neoperla (Plecoptera: Perlidae) and a historical review of tropical Southeast Asian Perlidae
FIGURES 1–6. Neoperla sungi sp. nov., male adult. (1) Head and pronotum. Scale bar = 0.5 mm. (2 & 3) Right forewing and hindwing. Scale bar = 2 mm. (4) Dorsal terminalia. Scale bar = 0.5 mm. (5 & 6) Lateral and ventral aedeagus. Scale bar = 0.5 mm. b = bulb, t = tube.
FIGURE 1 in A historical review of praying mantid taxonomy and systematics in the Neotropical Region: State of knowledge and recent advances (Insecta: Mantodea)
FIGURE 1. Historical trend of mantid species descriptions, 1758–2010 (valid species only). Sudden increase in the number of species described by year 1869 corresponds to the beginning of activities of H. de Saussure on mantid taxonomy. Steady increase to 1939 was due to activities of J.O. Westwood, E. Giglio-Tos, L. Chopard, J.A.G. Rehn, M. Hebard and M. Beier (63% of all known Neotropical mantid species were described between 1869 and 1939). Interest plateaued until early 1980's when Neotropical mantid taxonomy experienced renewed interest.
Figure 3 in Historical review and redescription of three poorly known species of the catfish genus Trichomycterus from south-eastern Brazil (Siluriformes: Trichomycteridae)
Figure 3. Geographical distribution of the Trichomycterus nigricans species group: diamonds, T. santaeritae; square, T. caipora; stars, T. immaculatus; triangles, T. nigricans.
Figure 1 in Historical review and redescription of three poorly known species of the catfish genus Trichomycterus from south-eastern Brazil (Siluriformes: Trichomycteridae)
Figure 1. Live specimens, left lateral view, of: a, Trichomycterus nigricans, UFRJ 10,996, 69.7 mm SL; b, Trichomycterus immaculatus, UFRJ 12,050, 62.9 mm SL; c, Trichomycterus santaeritae, UFRJ 12,592, 56.8 mm SL. All were photographed a few hours after collection.
Figure 2 in Historical review and redescription of three poorly known species of the catfish genus Trichomycterus from south-eastern Brazil (Siluriformes: Trichomycteridae)
Figure 2. Osteological features of Trichomycterus nigricans (a–c), T. immaculatus (d–f), and T. santaeritae (g–i): A, D, G, mesethmoidal region and adjacent structures, middle and left portion, dorsal view; B, E, H, left suspensorium and opercular apparatus, lateral view; C, F, I, middle and left portion of brachial arches, ventral view of dorsal elements on left, dorsal view of ventral elements on right. Larger stippling represents cartilage. Abbreviations: aip, anterior interopercular projection; b2–3, basibranchials 2–3; bc4, cartilaginous basibranchial 4; c1–5, ceratobranchials 1–5; e1–4, epibranchials 1–4; ec5, epibranchial 5 cartilage (= accessory element of ceratobranchial 4); h1–3, hypobranchials 1– 3; hdb, hypobranchial anterior branching; pmp, posterior maxillary process; p3, pharyngobranchial 3; pt4, pharyngobranchial 4 tooth-plate.
FIGURE 9 in A review of records of the Trimeresurus albolabris Gray, 1842 group from the Indian subcontinent: expanded description and range extension of Trimeresurus salazar, redescription of Trimeresurus septentrionalis and rediscovery of historical specimens of Trimeresurus davidi (Reptilia: Viperidae)
FIGURE 9. Trimeresurus septentrionalis live adult female from Kathmandu, Nepal, showing its diagnostic character of plain grass green colouration without any mix of yellow in it. Photo: Gernot Vogel
FIGURE 8. Trimeresurus septentrionalis Holotype MHNG 1404.31 in A review of records of the Trimeresurus albolabris Gray, 1842 group from the Indian subcontinent: expanded description and range extension of Trimeresurus salazar, redescription of Trimeresurus septentrionalis and rediscovery of historical specimens of Trimeresurus davidi (Reptilia: Viperidae)
FIGURE 8. Trimeresurus septentrionalis Holotype MHNG 1404.31 from Nähe Pokhara, Nepal. Photos: Gernot Vogel.
FIGURE 7. Trimeresurus davidi NMW 23925 in A review of records of the Trimeresurus albolabris Gray, 1842 group from the Indian subcontinent: expanded description and range extension of Trimeresurus salazar, redescription of Trimeresurus septentrionalis and rediscovery of historical specimens of Trimeresurus davidi (Reptilia: Viperidae)
FIGURE 7. Trimeresurus davidi NMW 23925:1, 2 entire views: (top right and left), tail profile (mid-left) photos: Gernot Vogel; NHMUK 1986.7.7.40–41 paratypes (mid-right and bottom left and right; photos: P.D. Campbell).
FIGURE 6. Trimeresurus salazar NHMUK 1937.3.1.14 in A review of records of the Trimeresurus albolabris Gray, 1842 group from the Indian subcontinent: expanded description and range extension of Trimeresurus salazar, redescription of Trimeresurus septentrionalis and rediscovery of historical specimens of Trimeresurus davidi (Reptilia: Viperidae)
FIGURE 6. Trimeresurus salazar NHMUK 1937.3.1.14 from 'Nagpur, Central Province', India. Photos: Gernot Vogel
FIGURE 5 in A review of records of the Trimeresurus albolabris Gray, 1842 group from the Indian subcontinent: expanded description and range extension of Trimeresurus salazar, redescription of Trimeresurus septentrionalis and rediscovery of historical specimens of Trimeresurus davidi (Reptilia: Viperidae)
FIGURE 5. Trimeresurus salazar live adult males showing intraspecific variation in the intensity of red lateral striping—top: individual with bold and thick red stripe from Byrnihat, Meghalaya (Photos: Ashok K. Mallik); above: individual with obscure and thin red stripe from Kanha, Madhya Pradesh. (Photo: Yajuvendra Upadhyaya).
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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.