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1,308 results for “99”
GDM Screening During COVID Pandemic. IADPSG vs WHO '99 Criteria
ClinicalTrials.gov study NCT05026840. IPD Sharing: NO. Countries: 1. Publications: 2.
Figures 99-107 from: Ma Y, Yang X, Liu X (2020) Notes on the green lacewing subgenus Ankylopteryx Brauer, 1864 (s. str.) (Neuroptera, Chrysopidae) from China, with description of a new species. ZooKeys 906: 41-71. https://doi.org/10.3897/zookeys.906.46438
Figures 99-107 Gonarcal complex. 99Ankylopteryx (A.) lii Yang, dorsal 100Ankylopteryx (A.) octopunctata candida (Fabricius), dorsal 101Ankylopteryx (A.) tibetana Yang, dorsal 102Ankylopteryx (A.) magnimaculatus Yang, dorsal 103Ankylopteryx (A.) yangi sp. nov., dorsal 104Ankylopteryx (A.) octopunctata candida (Fabricius), lateral 105Ankylopteryx (A.) yangi sp. nov., lateral 106Ankylopteryx (A.) ferruginea Tsukaguchi, dorsal 107Ankylopteryx (A.) gracilis Nakahara, dorsal.
Figures 99-102 from: Léger T, Kehlmaier C, Vairappan CS, Nuss M (2020) Twenty-six new species of Hoploscopa (Lepidoptera, Crambidae) from South-East Asia revealed by morphology and DNA barcoding. ZooKeys 907: 1-99. https://doi.org/10.3897/zookeys.907.36563
Figures 99-102 Female genitalia features of Hoploscopa. 99Hoploscopa danaoensis sp. nov., paratype, TL618 ♀ 100Hoploscopa isarogensis sp. nov., holotype, TL514 ♀ 101Hoploscopa tonsepi sp. nov., paratype, TL658 ♀ 102Hoploscopa aurantiacalis, lectotype, Pyralidae Brit. Mus. Slide N° BMNH20246 ♀.
Figures 83–99. Pentilia spp. 83-88 in South American Coccinellidae (Coleoptera), Part XXI: systematic revision of South American Pentilia Mulsant (Cryptognathini)
Figures 83–99. Pentilia spp. 83-88) Pentilia egena. 83) Habitus. 84) Frons. 85) Penis guide ventral. 86) Penis guide lateral. 87) Penis. 88) Spermathecal capsule. 89-93) Pentilia nadine. 89) Habitus. 90) Frons. 91) Penis guide ventral. 92) lateral. 93) Penis. 94-99) Pentilia kari. 94) Habitus. 95) Frons. 96) Penis guide ventral. 97) Penis guide lateral. 98) Penis. 99) Spermathecal capsule.
Figure 6 from: Lemos-Espinal JA, Smith GR, Pierce LJS, Painter CW (2020) The amphibians and reptiles of Colima, Mexico, with a summary of their conservation status. ZooKeys 927: 99-125. https://doi.org/10.3897/zookeys.927.50064
Figure 6 Species accumulation curves for total herpetofauna, amphibians, and reptiles of Colima, Mexico.
Figure 3 from: Lemos-Espinal JA, Smith GR, Pierce LJS, Painter CW (2020) The amphibians and reptiles of Colima, Mexico, with a summary of their conservation status. ZooKeys 927: 99-125. https://doi.org/10.3897/zookeys.927.50064
Figure 3 Physiographic provinces of the state of Colima, Mexico (modified from Cervantes-Zamora et al. 1990).
Figure 2 from: Lemos-Espinal JA, Smith GR, Pierce LJS, Painter CW (2020) The amphibians and reptiles of Colima, Mexico, with a summary of their conservation status. ZooKeys 927: 99-125. https://doi.org/10.3897/zookeys.927.50064
Figure 2 Satellite map showing the topographic features of Colima (from Comisión Nacional para el Conocimiento y Uso de la Biodiversidad 2008).
Figure 7 from: Lemos-Espinal JA, Smith GR, Pierce LJS, Painter CW (2020) The amphibians and reptiles of Colima, Mexico, with a summary of their conservation status. ZooKeys 927: 99-125. https://doi.org/10.3897/zookeys.927.50064
Figure 7 Proportion of A amphibians and B reptiles listed in protected categories on the IUCN Red List, SEMARNAT, and high EVS. Green is proportion in Data Deficient and Least Concern (IUCN); Not Listed and Subject to Special Protection (we regarded the category of Subject to Special Protection in SEMARNAT equivalent to Least Concern in IUCN) (SEMARNAT); or low or medium EVS. Red is percentage in protected categories or high EVS. N is the number of species assessed.
Figure 5 from: Lemos-Espinal JA, Smith GR, Pierce LJS, Painter CW (2020) The amphibians and reptiles of Colima, Mexico, with a summary of their conservation status. ZooKeys 927: 99-125. https://doi.org/10.3897/zookeys.927.50064
Figure 5 Vegetation map of the state of Colima, Mexico (modified from Dirección General de Geografía – INEGI 2005).
Figure 4 from: Lemos-Espinal JA, Smith GR, Pierce LJS, Painter CW (2020) The amphibians and reptiles of Colima, Mexico, with a summary of their conservation status. ZooKeys 927: 99-125. https://doi.org/10.3897/zookeys.927.50064
Figure 4 Climate map of the state of Colima, Mexico (modified from García – Comisión Nacional para el Conocimiento y Uso de la Biodiversidad 1998).
Figure 99 in The symphytognathoid spiders of the Gaoligongshan, Yunnan, China (Araneae: Araneoidea): Systematics and diversity of micro-orbweavers
Figure 99. Distribution map, inset map shows study area. White: Maymena paquini sp. n.; purple: Maymena kehen sp. n.; red: Gaiziapis zhizhuba sp. n.; yellow: Patu qiqi sp. n.; blue: Patu xiaoxiao sp. n.
Figure A1 from: Smith-Pardo AH, Fowler GA, Kumar S (2020) Status and potential distribution of the Asian carpenter bee, Xylocopa appendiculata Smith (Apidae, Xylocopini), in the United States. Journal of Hymenoptera Research 76: 99-111. https://doi.org/10.3897/jhr.76.49518
Figure A1 Global distribution of Xylocopa appendiculata based on specimens deposited in collections and confirmed records on iNaturalist, GBIF, and Discover Life.org (red circles).
Figure 3 from: Smith-Pardo AH, Fowler GA, Kumar S (2020) Status and potential distribution of the Asian carpenter bee, Xylocopa appendiculata Smith (Apidae, Xylocopini), in the United States. Journal of Hymenoptera Research 76: 99-111. https://doi.org/10.3897/jhr.76.49518
Figure 3 Some of the diagnostic features of Xylocopa appendiculata Smith: a lateral habitus showing coloration of pubescence on mesosoma and metasoma (the yellow coloration may not be as fluorescent in field specimens and is mostly due to reflections from the imaging system) b face showing integument sculpturing of clypeus and paraocular area c coloration of pubescence around occipital area (arrow) d pygidial plate (pp) and coloration of pubescence close to it (arrows) e shape of mesoscutellum from lateral view f Shape of metasomal tergum 1 (T1) from antero-lateral view and the presence of a foveate, hollowed like depression (arrow) g dentation of mandibles (arrow showing the two teeth on mandible).
Figure A3 from: Smith-Pardo AH, Fowler GA, Kumar S (2020) Status and potential distribution of the Asian carpenter bee, Xylocopa appendiculata Smith (Apidae, Xylocopini), in the United States. Journal of Hymenoptera Research 76: 99-111. https://doi.org/10.3897/jhr.76.49518
Figure A3 Summer Precipitation Patterns in the USA: Average summer precipitation (June, July and August) was calculated using PRISM climate data with the Spatial Analytic Framework for Advanced Risk Information Systems (SAFARIS 2019). Areas with ≥ 300 mm of precipitation between June and August (blue) based on average data from 2000 to 2019.
Figure 1 from: Smith-Pardo AH, Fowler GA, Kumar S (2020) Status and potential distribution of the Asian carpenter bee, Xylocopa appendiculata Smith (Apidae, Xylocopini), in the United States. Journal of Hymenoptera Research 76: 99-111. https://doi.org/10.3897/jhr.76.49518
Figure 1 Suitable U.S. areas for Xylocopa appendiculata establishment based on plant hardiness zones – This map shows suitable areas for X. appendiculata establishment based on its global distribution and the associated plant hardiness zones 5 to 10.
Figure 5 from: Rassam H, Moutaouakil S, Benaissa H, Albrecht C, Ghamizi M (2020) First record of Pisidium subtruncatum Malm, 1855 (Bivalvia, Sphaeriidae) in an African cave. Subterranean Biology 34: 99-108. https://doi.org/10.3897/subtbiol.34.50916
Figure 5 Position and shapes of cardinal teeth and ligament pits in left (a) and right valve (b). c: cardinal teeth.
Figure 4 from: Rassam H, Moutaouakil S, Benaissa H, Albrecht C, Ghamizi M (2020) First record of Pisidium subtruncatum Malm, 1855 (Bivalvia, Sphaeriidae) in an African cave. Subterranean Biology 34: 99-108. https://doi.org/10.3897/subtbiol.34.50916
Figure 4 Mean overall shell outline shape of the four adult specimens of P. subtruncatum. The mean shape was generated from semilandmarks coordinates of the right valves using the tpsRelw.
Figure 3 from: Rassam H, Moutaouakil S, Benaissa H, Albrecht C, Ghamizi M (2020) First record of Pisidium subtruncatum Malm, 1855 (Bivalvia, Sphaeriidae) in an African cave. Subterranean Biology 34: 99-108. https://doi.org/10.3897/subtbiol.34.50916
Figure 3 Two specimens of P. subtruncatum from Ait M'hamed cave a, d external view of the shell of the left and right sides of both specimens b, e dorsal view of both specimens c, f internal view of left and right valves of both specimens.
Figure 2 from: Rassam H, Moutaouakil S, Benaissa H, Albrecht C, Ghamizi M (2020) First record of Pisidium subtruncatum Malm, 1855 (Bivalvia, Sphaeriidae) in an African cave. Subterranean Biology 34: 99-108. https://doi.org/10.3897/subtbiol.34.50916
Figure 2 Cave topography. Red points: Sampling localities (green crosses included), green crosses: P. subtruncatum occurence.
Figure 1 from: Rassam H, Moutaouakil S, Benaissa H, Albrecht C, Ghamizi M (2020) First record of Pisidium subtruncatum Malm, 1855 (Bivalvia, Sphaeriidae) in an African cave. Subterranean Biology 34: 99-108. https://doi.org/10.3897/subtbiol.34.50916
Figure 1 Study area Ait M'hamed cave a The cave entrance b the sampling and c the inside of the cave (Moutaouakil 2019).
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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.