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1,077 results for “1981”

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zenodo40/100

Fig. 10 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily

Fig. 10. Bennelongia frumenta sp. nov. A. LVi (holotype ♀, Kodjinup Melaleuca Swamp, WAM.C49380). B. RVi (♀, Kodjinup Melaleuca Swamp, Idem). C. LVi (♂, West Kulunilup Swamp, OC.3313). D. RVi (♂, West Kulunilup Swamp, Idem). E. Cp dorsal (♀, Kodjinup Melaleuca Swamp, WAM.C49383). F. Cp ventral (♀, Kodjinup Melaleuca Swamp, WAM.C49388). G. Cp ventral (♂, West Kulunilup Swamp, WAM.C49382). H. Cp dorsal (♂, Kodjinup Melaleuca Swamp, WAM.C49382). I. RVi (detail anteriorly, holotype ♀, Kodjinup Melaleuca Swamp, WAM.C49380). J. RVi (detail anteriorly, ♀, Kodjinup Melaleuca Swamp, Idem). K. CpRe (♀, Kodjinup Melaleuca Swamp, WAM.C49383). Scales: A-H, K = 500 µm; I-J = 200 µm.

opencc-by-3.0Mar 2012View details →
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Fig. 9 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily

Fig. 9. Bennelongia cygnus sp. nov. ♂. A. Outline of hemipenis (WAM.C49375). B. Outline of second hemipenis of same individual (WAM.C49375). C. Right prehensile palp (WAM.C49375). D. Left prehensile palp (WAM.C49375). E. Caudal ramus (holotype ♂, WAM.C49370). F. Supporting branch of caudal ramus (holotype ♂, WAM.C49370). Scales: A-D = 92 µm; E,F = 184 µm.

opencc-by-3.0Mar 2012View details →
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Fig. 5 in Nine new species of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) from Western Australia, with the description of a new subfamily

Fig. 5. Bennelongia cygnus sp. nov. A. LVi (♀, Ellen Brook, OC.3311). B. RVi (♀, Ellen Brook, Idem). C. LVi (♂, Ellen Brook, OC.3310). D. LVi (♂, Ellen Brook, Idem). E. Cp dorsal (♀, Goonaping Swamp, WAM.C49378A). F. Cp ventral (♀, Goonaping Swamp, Idem). G. CpRe (♀, Goonaping, WAM. C49378B). H. RVi (♀, Goonaping, WAM.C49377). I. RVi (detail anteriorly, ♀, Ellen Brook, OC.3311). J. RVi (detail anteriorly, ♂, Ellen Brook, OC.3310). Scales: A-H = 500 µm; I-J = 200 µm.

opencc-by-3.0Mar 2012View details →
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KaKiOS-16: a probabilistic, non-linear, absolute location catalog of the 1981-2011 Southern California seismicity

<p>This is the KaKiOS-16 earthquake catalog for southern California. We locate the southern California seismicity using the state-of-the-art probabilistic and nonlinear method NonLinLoc. We use only the P wavepicks to avoid introducing the velocity-model and picking-time errors of the S phase, which is harder to detect and thus less constrained. Using a subset of the best locatable earthquakes, we conduct a joint inversion using the VELEST software to obtain a minimum 1D velocity model and station corrections. We use the NonLinLoc method with this 1D velocity model and the inferred model uncertainties to obtain realistic location distributions for each event.<br> &nbsp;</p>

opencc-by-4.0Sep 2017View details →
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FIGURE 53. Ascarophis extalicola Appy, 1981. A in Guide to the Parasites of Fishes of Canada Part V: Nematoda

FIGURE 53. Ascarophis extalicola Appy, 1981. A. female, anterior end, ventral view; B. male, posterior end, ventral view, arrows indicate the 5 th and 6 th pairs of post-caudal papillae; C. female, posterior end, lateral view; D. egg from uterus. (Redrawn from Appy 1981)

opencc-zeroDec 2016View details →
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Figures 3–6 in Recognition of Chyrsobothris thoracica guadeloupensis Descarpentries, 1981 at the species level (Coleoptera: Buprestidae) Norman E. Woodley

Figures 3–6. Male genitalia of Chrysobothris species. 3) C. thoracica from Guánica, Puerto Rico, dorsal view. 4) Same specimen, ventral view. 5) C. guadeloupensis from Gourbeyre, Guadeloupe, dorsal view. 6) Same specimen, ventral view.

opencc-by-4.0Feb 2012View details →
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Figs. 1-10. Amphientulus sinensis, new species. 1 in First Record Of The Genus Amphientulus Tuxen, 1981 (Protura: Berberentulidae) From China, With Description Of A New Species

Figs. 1-10. Amphientulus sinensis, new species. 1, labial palpus; 2, pseudoculus; 3, mesonotum; 4, metanotum; 5, anterior part of head, dorsal view; 6, urotergite VI; 7, filamento di sostegno; 8, head chaetotaxy; 9, urosternite VI; 10, abdominal legs II, III. Scale bar: Figs. 1-2 = 5 µm; Figs. 3-10 = 10µm.

opencc-by-4.0Dec 2005View details →
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Figs. 11-17. Amphientulus sinensis, new species. 11 in First Record Of The Genus Amphientulus Tuxen, 1981 (Protura: Berberentulidae) From China, With Description Of A New Species

Figs. 11-17. Amphientulus sinensis, new species. 11, foretarsus in interior view; 12, urosternite VII; 13, urotergite VII; 14, foretarsus in exterior view; 15, furotergite VIII-XII; 16, urosternite VIII-XII; 17, female squama genitalis. Scale bar: Figs. 11-17 = 10µm.

opencc-by-4.0Dec 2005View details →
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Fig. 17. Erraticodon patu Cooper, 1981 in Early Ordovician Conodonts from Far Western New South Wales, Australia

Fig. 17. Erraticodon patu Cooper, 1981: A, M element, AMF120378, Y4–6, anterior view; B, M element, AMF120379, Y4–6, posterior view; C, Sc element, AMF120380, Y4–6, inner lateral view; D, Sc element, AMF120381, M/A11-6, outer lateral view; E, Sc element, AMF120382, Y4–6, outer lateral view; F, Sa element, AMF120383, M/A11-5, anterior view; G, Sa element, AMF120384, Y4–4, posterior view; H, Sd element, AMF120385, Y4–8, anterior view; I, Sd element, AMF120386, M/A11-3, posterior view; J, Sd element, AMF120387, Y4–7, posterior view; K, Sb element, AMF120388, Y4–7, inner lateral view; L, Sb element, AMF120389, Y4–7, outer lateral view; M, Sb element, AMF120377, Y4–6, posterobasal view; N,O, Sb element, AMF120390, M/A11-5, N, postero-inner lateral view, O, antero-inner lateral view. Scale bars 100 µm.

opencc-by-4.0Aug 2003View details →
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Fig. 16. Erraticodon patu Cooper, 1981 in Early Ordovician Conodonts from Far Western New South Wales, Australia

Fig. 16. Erraticodon patu Cooper, 1981: A,B, Pa element, AMF120370, M/A11-3, A, posterobasal view, B, posterior view; C, Pa element, AMF120371, Y4–6, posterior view; D, Pb element, AMF120372, M/A4, postero-upper view; E, Pb element, AMF120373, Y4–5, antero-outer lateral view; F, Pb element, AMF120374, Y4–7, upper, anterior view; G, Pb element, AMF120375, Y4–7, upper, posterior view; H, Pb element, AMF120376, M/A4, upper, posterior view; I, Pa element, AMF120296, Y4–6, anterior view; J,K, Pb element, AMF124209, M/A7, J, antero-upper view, K, postero-upper view. Scale bars 100 µm.

opencc-by-4.0Aug 2003View details →
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Figure 1 in Description of Nanorana conaensis (Fei and Huang, 1981) (Amphibia: Anura: Dicroglossidae) reported from Arunachal Pradesh, India

Figure 1. Maximum Likelihood (ML) tree for the species of Nanorana based on 570 bp of mitochondrial 16S rRNA (*represents the bootstrap values above 50%).

opencc-by-4.0Mar 2020View details →
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Рис. 1. Среднемесячная температура воды в б. Новгородская на поверхности: 1 – За период 1931–1973 гг.; 2 – За 1977 г.; 3 – За 1978 г.; 4 – За 1979 г.; 5 – За 1980 г.; 6 – За 1981 г.; 7 – температура нереста (18ºС). Fig. 1. Average monthly sea surface water temperature in Novgorodskaya Bay: 1 – for the period 1931–1973; 2 – for 1977; 3 – for 1978; 4 – for 1979; 5 – for 1980; 6 – for 1981; 7 –spawning temperature (18ºC). in Review of methods for the forecast of mollusk's spat productivity in sea-farms of Primorye and probable ways of their enhancement

Рис. 1. Среднемесячная температура воды в б. Новгородская на поверхности: 1 – За период 1931–1973 гг.; 2 – За 1977 г.; 3 – За 1978 г.; 4 – За 1979 г.; 5 – За 1980 г.; 6 – За 1981 г.; 7 – температура нереста (18ºС). Fig. 1. Average monthly sea surface water temperature in Novgorodskaya Bay: 1 – for the period 1931–1973; 2 – for 1977; 3 – for 1978; 4 – for 1979; 5 – for 1980; 6 – for 1981; 7 –spawning temperature (18ºC).

opencc-by-4.0Dec 2018View details →
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CLDF dataset derived from the ECAI digitization of Wurm and Hattori's "Language Atlas of the Pacific Area" from 1981 and 1983

<p>Cite the source of the dataset as:</p> <blockquote> <p>Wurm, S. &amp; Hattori, S. Language Atlas of the Pacific Area: New Guinea area, Oceania, Australia, vol. 66 of Pacific Linguistics: Series C (Canberra: Research School of Pacific and Asian Studies, Australian National University, Canberra, 1981). Wurm, S. &amp; Hattori, S. Language Atlas of the Pacific Area: Japan area, Taiwan-Formosa, Philippines, Mainland and insular South-East Asia, vol. 67 of Pacific Linguistics: Series C (Canberra: Research School of Pacific and Asian Studies, Australian National University, Canberra, 1983). Registered scans and GIS dataset released by the Electronic Cultural Atlas Initiative (ECAI).</p> </blockquote>

opencc-by-nc-4.0Jun 2024View details →
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Fig. 2 in Parasitoids of the genus Pholetesor Mason, 1981 (Hymenoptera: Braconidae: Microgastrinae) from the leafminers Lepidoptera, with the description of three new species from India

Fig. 2. Pholetesor camerariae sp. nov., paratype, ♀ (ZDAMU). A. Head, frontal view. B. Mesosoma, dorso-lateral view. C. T1 and T2, dorso-lateral view. D. Metasoma, lateral view. Scale bars: 0.25 mm.

opencc-by-4.0Nov 2020View details →
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Fig. 1 in Parasitoids of the genus Pholetesor Mason, 1981 (Hymenoptera: Braconidae: Microgastrinae) from the leafminers Lepidoptera, with the description of three new species from India

Fig. 1. Pholetesor acrocercophagus sp. nov., paratype, ♀ (ZDAMU). A. Head, frontal view.B. Mesosoma. C. Metasoma. Scale bars: 0.25 mm.

opencc-by-4.0Nov 2020View details →
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Fig. 3 in Parasitoids of the genus Pholetesor Mason, 1981 (Hymenoptera: Braconidae: Microgastrinae) from the leafminers Lepidoptera, with the description of three new species from India

Fig. 3. Pholetesor indicus sp. nov., paratype, ♀ (ZDAMU). A. Mesosoma, dorsal view. B. Propodeum, dorsal view. C. Metasoma, dorsal view. Scale bars: 0.25 mm.

opencc-by-4.0Nov 2020View details →
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Fig. 6. Chorizogynopora italica Kolasa, 1981.A in Limnoterrestrial 'Typhloplanidae' (Rhabdocoela, Platyhelminthes), with the description of four new species and a new genus

Fig. 6. Chorizogynopora italica Kolasa, 1981.A. Internal organisation of a live specimen.B. Organisation of the genital system of a live specimen. C. Reconstruction of reproductive organs based on sagittal sections.

opencc-by-4.0Feb 2022View details →
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Fig. 4. Adenocerca minima Kolasa, 1981. A in Limnoterrestrial 'Typhloplanidae' (Rhabdocoela, Platyhelminthes), with the description of four new species and a new genus

Fig. 4. Adenocerca minima Kolasa, 1981. A. Internal organisation of a live specimen. B. Reconstruction of reproductive organs based on horizontal sections. C–F. Male copulatory organ of the whole-mounted specimen (XIV.3.18).

opencc-by-4.0Feb 2022View details →
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Downscaled and bias corrected 10 km water withdrawal of China, 1981-2010

<p>This dataset contains</p> <p>(1) MonthlyDomIndcon_CN_0.1deg_1981-2010.nc -- the 0.1&deg;&nbsp;gridded&nbsp;monthly domestic &amp; industrial&nbsp;water consumption of China</p> <p>(2) MonthlyDomInduse_CN_0.1deg_1981-2010.nc -- the 0.1&deg;&nbsp;gridded&nbsp;monthly domestic &amp; industrial&nbsp;water withdrawal of China</p> <p>(3)&nbsp;MonthlyIrrigation_CN_0.1deg_1981-2010.nc --&nbsp; the 0.1&deg;&nbsp;gridded&nbsp;monthly irrigation water withdrawal of China</p> <p>These data are&nbsp;first spatially downscaled from Huang et al. (2018) (https://doi.org/10.5281/zenodo.1209296) based on population density, GDP and irrigation area, and then bias corrected against provincial-level statistics published by local water agencies. Refer to Huang et al. (2018) and Dong et al. (2022) for more details.</p> <p>Dong, N.,&nbsp;Wei, J.,&nbsp;Yang, M.,&nbsp;Yan, D.,&nbsp;Yang, C.,&nbsp;Gao, H., et al. (2022).&nbsp;Model estimates of China&#39;s terrestrial water storage variation due to reservoir operation.&nbsp;Water Resources Research,&nbsp;58, e2021WR031787.&nbsp;<a href="https://doi.org/10.1029/2021WR031787">https://doi.org/10.1029/2021WR031787</a></p>

opencc-by-4.0Jun 2022View details →
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A temporally consistent 8-day 0.05° gap-free snow cover extent dataset over the Northern Hemisphere for the period 1981–2019

<p>Northern Hemisphere (NH) snow cover extent (SCE) is one of the most important indicator of climate change for its unique surface property. However, short temporal coverage, coarse spatial resolution, and different snow discrimination approach among published SCE products hampers its detailed studies. Using the Advanced Very High Resolution Radiometer Surface Reflectance (AVHRR-SR) Climate Data Record (CDR) and several ancillary datasets, this study generated a temporally consistent 8-day 0.05&deg; gap-free NH terrestrial SCE product for the period 1981&ndash;2019 as part of the Global LAnd Surface Satellite dataset (GLASS) product suite. This process consistent of five steps. First, a decision tree algorithm with multiple threshold tests was applied to detect SCE from daily AVHRR-SR CDR. Second, we merge two existing daily SCE products to take advantage of their spatial coverage. Third, an aggregation process was used to detect the maximum SCE in each 8-day periods. Forth, the GLASS SCE was generated with the help of snow cover probability climatology. Fifth, the validation process was carried out to evaluate the quality of GLASS SCE. Validation results by using 562 Global Historical Climatology Network stations during 1981&ndash;2017 (r=0.61, p&lt;0.05) and MOD10C2 during 2001&ndash;2019 (r=0.97, p&lt;0.01) proved that the GLASS SCE product is credible in snow cover frequency monitoring. Moreover, cross-comparison between GLASS SCE and surface albedo during 1982&ndash;2018 further confirmed its values in climate changes studies.</p> <p>The GLASS SCE data set provides binary maps of snow cover for the Northern Hemisphere from September 1981 to the December 2019. The data are organized by year and provided in GeoTIFF formats. The gridcells were flagged as &ldquo;0&rdquo; if classified as &quot;Non-snow&quot;, &quot;1&quot; if retrieved from AVHRR satellite observations, and &quot;2&quot; if&nbsp;&nbsp;filled by IMS snow climatology.</p> <p>Spatial Coverage: N: 90, S: 0, E: 180, W: -180<br> Spatial Resolution: 0.05 deg x 0.05 deg<br> Samples = 7200<br> Lines = 1800<br> Temporal Coverage: September 1981 to December 2019<br> Temporal Resolution: 8-day</p>

opencc-by-4.0Aug 2021View details →

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Last verified 2026-04-30Open record

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Last verified 2026-04-30Open record

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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.

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

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Last verified 2026-04-29Open record