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zenodo40/100

Fig. 7. L in A Review Of Species Of The Genus Lamprobityle Heller, 1923 (Coleoptera: Cerambycidae)

Fig. 7. L. conspersa (Aurivillius) (A – Holotype (from: www.naturarv.se), B – Labels of holotype (from: www.naturarv.se), C – lectotype (http://smithsoniancerambycidae.com), D – Labels of lectotype(http://smithsoniancerambycidae.com))

opencc-by-4.0Nov 2014View details →
zenodo40/100

Fig. 5. L in A Review Of Species Of The Genus Lamprobityle Heller, 1923 (Coleoptera: Cerambycidae)

Fig. 5. L. magnifica Heller (A – Type, B – Labels, C – Specimen from N Luzon, Cagayan, Sta Ana (DUBC)) (A, B from Barševskis, Jaeger 2014).

opencc-by-4.0Nov 2014View details →
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Fig. 1 in A Review Of Species Of The Genus Lamprobityle Heller, 1923 (Coleoptera: Cerambycidae)

Fig. 1. The distribution map of new species of the genus Lamprobityle in the Philippines archipelago.

opencc-by-4.0Nov 2014View details →
dryad40/100

A review of Appalachian Dasycerus Brongniart, and the recognition of cryptic diversity within Dasycerus carolinensis Horn (Coleoptera: Staphylinidae: Dasycerinae)

<p>­Previous analyses have revealed deep divergences among populations of the relictual and enigmatic rove beetle, <em>Dasycerus carolinensis </em>Horn. New data from additional populations, molecular markers, and morphology unambiguously reveal this 'species' to represent a complex of closely related species, distinguishable by characters of the male genitalia, and corresponding closely to geographically coherent clades discovered by molecular analyses. Calibrated dating analyses show Appalachian <em>Dasycerus</em> to have been diverging in the region for more than 10 million years, yet largely respecting important biogeographic barriers in the region, such as the French Broad and Little Tennessee River drainages. In addition to discussing finer scale biogeographic patterns in the group, we formally recognize 9 new species from within what was formerly known as <em>D. carolinensis</em>: <em>D. virginiensis</em> <strong>sp. nov.</strong><em>, D. tuckasegee</em> <strong>sp. nov.</strong><em>, D. pacolet</em> <strong>sp. nov.</strong><em>, D. chattooga</em> <strong>sp. nov.</strong><em>, D. itseyi</em> <strong>sp. nov.</strong><em>, D. unicoi</em> <strong>sp. nov.</strong><em>, D. nikwasi</em> <strong>sp. nov.</strong><em>, D. egwanulti</em> <strong>sp. nov.</strong><em>, </em>and <em>D. gadalutsi</em> <strong>sp. nov.</strong><em>. </em>It was not, however, possible to assign all samples to one of these species, and specimens from some sparsely sampled outlying areas, northern Alabama and central Tennessee in particular, may represent additional species. </p>

opencc-zeroApr 2024View details →
zenodo40/100

Figs 13–19 in Review of the genus Opazon Haliday, 1857 (Hymenoptera: Diapriidae: Belytinae) in the fauna of Russia

Figs 13–19. Opazon spp.: 13–14 — O. frigidum; 15, 18 — O. incrassatum; 16, 19 — O. parvulum; 17 — O. apertum; 13–15, 17, 19 — lateral habitus; 16, 18 — head in dorsal view. Scale bars: 0.2 mm (16, 18), 1.0 mm (13–15, 17, 19). Рис. 13–19. Opazon spp.: 13–14 — O. frigidum; 15, 18 — O. incrassatum; 16, 19 — O. parvulum; 17 — O. apertum; 13–15, 17, 19 — габитус сбоку; 16, 18 — голова сверху. МасШтаб: 0,2 мм (16, 18), 1,0 мм (13–15, 17, 19).

opencc-by-4.0Mar 2021View details →
zenodo40/100

Supplemental data for: A scoping review of studies on ruscism

<p><span>The supplementary materials accompanying the paper: "A scoping review of studies on ruscism". These materials include: raw data from citation databases, table for quantitative analysis of imported bibliographic data, key topics and content analysis of publications, python code. These supplementary materials are intended to enhance the usability of the research data, allowing for in-depth secondary analyses and aiding scholars in conducting related studies.</span></p>

opencc-by-4.0Apr 2024View details →
zenodo40/100

Рис. 10. Блок-схема фиЗико-статистического прогноЗа уроЖайности спата приморского гребешка. Fig. 10. The block diagram of physical-statistical forecast of yield of spat of the Japanese scallop. in Review of methods for the forecast of mollusk's spat productivity in sea-farms of Primorye and probable ways of their enhancement

Рис. 10. Блок-схема фиЗико-статистического прогноЗа уроЖайности спата приморского гребешка. Fig. 10. The block diagram of physical-statistical forecast of yield of spat of the Japanese scallop.

opencc-by-4.0Dec 2018View details →
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Рис. 9. Блок-схема прогноЗирования сроков установки коллекторов и оЖидаемого количества спата [Белогрудов, 1980]. Fig. 9. The block diagram of prediction timing for installation of collectors and the expected number of spat [Belogrudov, 1980]. in Review of methods for the forecast of mollusk's spat productivity in sea-farms of Primorye and probable ways of their enhancement

Рис. 9. Блок-схема прогноЗирования сроков установки коллекторов и оЖидаемого количества спата [Белогрудов, 1980]. Fig. 9. The block diagram of prediction timing for installation of collectors and the expected number of spat [Belogrudov, 1980].

opencc-by-4.0Dec 2018View details →
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Рис. 6. Сроки нереста приморского гребешка (1), роста и раЗвития его личинок в планктоне от начала нереста до раЗмеров 150 мкм (2) и от 150 мкм до 250–275 мкм (3). Fig. 6. Terms of spawning of the Japanese scallop (1), growth and development of its larvae in plankton from the beginning of spawning to the sizes of 150 microns (2) and from 150 microns to 250–275 microns (3). in Review of methods for the forecast of mollusk's spat productivity in sea-farms of Primorye and probable ways of their enhancement

Рис. 6. Сроки нереста приморского гребешка (1), роста и раЗвития его личинок в планктоне от начала нереста до раЗмеров 150 мкм (2) и от 150 мкм до 250–275 мкм (3). Fig. 6. Terms of spawning of the Japanese scallop (1), growth and development of its larvae in plankton from the beginning of spawning to the sizes of 150 microns (2) and from 150 microns to 250–275 microns (3).

opencc-by-4.0Dec 2018View details →
zenodo40/100

Рис. 5. Зависимость начала нереста приморского гребешка и тихоокеанской устрицы в Зал. Петра Великого от суммы поверхностных температур (март–июнь): 1 – начало нереста приморского гребешка; 2 – начало нереста тихоокеанской устрицы; 3 – сумма поверхностных температур За период с марта по июнь. Fig. 5. Dependence of start of spawning of the Japanese scallop and Pacific (giant) oyster in Peter the Great Bay on the sum of sea surface temperatures (March–June): 1 – beginning of spawning of the Japanese scallop; 2 – beginning of spawning of the Pacific oyster; 3 – sum of sea surface temperatures for the period from March to June. in Review of methods for the forecast of mollusk's spat productivity in sea-farms of Primorye and probable ways of their enhancement

Рис. 5. Зависимость начала нереста приморского гребешка и тихоокеанской устрицы в Зал. Петра Великого от суммы поверхностных температур (март–июнь): 1 – начало нереста приморского гребешка; 2 – начало нереста тихоокеанской устрицы; 3 – сумма поверхностных температур За период с марта по июнь. Fig. 5. Dependence of start of spawning of the Japanese scallop and Pacific (giant) oyster in Peter the Great Bay on the sum of sea surface temperatures (March–June): 1 – beginning of spawning of the Japanese scallop; 2 – beginning of spawning of the Pacific oyster; 3 – sum of sea surface temperatures for the period from March to June.

opencc-by-4.0Dec 2018View details →
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Рис. 4. Сетка термальных ресурсов Зал. Посьета с кривой раЗвития личинок приморского гребешка (номограмма для 1972 г.). Fig. 4. A grif of thermal resources of waters of Possjet Bay and the curve line of development of larvae of the Crassostrea gigas (nomogram for 1972). in Review of methods for the forecast of mollusk's spat productivity in sea-farms of Primorye and probable ways of their enhancement

Рис. 4. Сетка термальных ресурсов Зал. Посьета с кривой раЗвития личинок приморского гребешка (номограмма для 1972 г.). Fig. 4. A grif of thermal resources of waters of Possjet Bay and the curve line of development of larvae of the Crassostrea gigas (nomogram for 1972).

opencc-by-4.0Dec 2018View details →
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Рис. 3. Сетка термальных ресурсов Зал. Посьета с кривой раЗвития личинок тихоокеанской устрицы (номограмма) [Раков, 1977]. Fig. 3. A grid of thermal resources of waters of Possjet Bay and the curve line of development of larvae of the giant oyster Crassostrea gigas (nomogram) [Rakov, 1977]. in Review of methods for the forecast of mollusk's spat productivity in sea-farms of Primorye and probable ways of their enhancement

Рис. 3. Сетка термальных ресурсов Зал. Посьета с кривой раЗвития личинок тихоокеанской устрицы (номограмма) [Раков, 1977]. Fig. 3. A grid of thermal resources of waters of Possjet Bay and the curve line of development of larvae of the giant oyster Crassostrea gigas (nomogram) [Rakov, 1977].

opencc-by-4.0Dec 2018View details →
zenodo40/100

Рис. 2. График вЗаимосвяЗи меЖду суммой средних месячных температур воды марта и апреля и датами начала нереста. Fig. 2. Graph of relationship between the sum of the average monthly water temperatures of March and April and the start dates of spawning. in Review of methods for the forecast of mollusk's spat productivity in sea-farms of Primorye and probable ways of their enhancement

Рис. 2. График вЗаимосвяЗи меЖду суммой средних месячных температур воды марта и апреля и датами начала нереста. Fig. 2. Graph of relationship between the sum of the average monthly water temperatures of March and April and the start dates of spawning.

opencc-by-4.0Dec 2018View details →
zenodo40/100

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 →
zenodo40/100

A systematic review and meta-analysis of eyespot anti-predator mechanisms

<p>This is the raw data, analysis script, and supplementary materials for "<em>A systematic review and meta-analysis of eyespot anti-predator mechanisms</em>." (<a href="https://doi.org/10.7554/eLife.96338.2">https://doi.org/10.7554/eLife.96338</a>)</p>

opencc-by-4.0Jul 2024View details →
zenodo40/100

Fig. 18 in Two fancy spines and a collar: a taxonomic review of the myrmecomorphic spider genus Mazax O. Pickard-Cambridge, 1898 (Araneae: Corinnidae: Castianeirinae) in South America

Fig. 18. Mazax tembe sp. nov. A, C. ♂ (MPEG(ARA)-38432). B, D. ♀ (MPEG(ARA)-38433). A–B. Abdomen, anterior region with abdominal setae, dorsal view (black arrow indicates AS I). C–D. Abdominal setae (black arrows indicate AS I). Scales: A–B 100 µm.

opencc-by-4.0Nov 2024View details →
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Fig. 17 in Two fancy spines and a collar: a taxonomic review of the myrmecomorphic spider genus Mazax O. Pickard-Cambridge, 1898 (Araneae: Corinnidae: Castianeirinae) in South America

Fig. 17. Mazax tembe sp. nov. A, C, E. ♂ (MPEG(ARA)-38432). B, D, F. ♀ (MPEG(ARA)-38433). A–B. Carapace, dorsal view. C–D. Posterior eye row (PER). E–F. Abdomen, dorsal view. Scales: A–B = 200 µm; C–D = 50 µm; E–F = 500 µm.

opencc-by-4.0Nov 2024View details →
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Fig. 16 in Two fancy spines and a collar: a taxonomic review of the myrmecomorphic spider genus Mazax O. Pickard-Cambridge, 1898 (Araneae: Corinnidae: Castianeirinae) in South America

Fig. 16. Mazax tembe sp. nov. A–C, J–K. Paratype, ♀ (MPEG(ARA)-38424). D–I. Holotype, ♂ (MPEG(ARA)-38422). A. Dorsal view. B. Lateral view. C. Ventral view. D. Dorsal view. E. Lateral view. F. Ventral view. G. Palp bulb, ventral view. H. Same, retrolateral view. I. Same, with cymbium, retrolateral view. J. Epigyne, ventral view. K. Same, dorsal view. Abbreviations: CD = copulatory duct; CO = copulatory opening; CP = chemocensory patch; E = embolus; FD = fertilization duct; RTA = retrolateral tibial apophysis; ST I = primary spermatheca; ST II = secondary spermatheca. Scales: 0.5 mm.

opencc-by-4.0Nov 2024View details →
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Fig. 19. A–D in Two fancy spines and a collar: a taxonomic review of the myrmecomorphic spider genus Mazax O. Pickard-Cambridge, 1898 (Araneae: Corinnidae: Castianeirinae) in South America

Fig. 19. A–D. Mazax tembe sp. nov. A–E. ♂ (MPEG(ARA)-38432). F. ♀ (MPEG(ARA)-38434). A. Palp, ventral view. B. Same, with details of embolus. C. Same, with cymbial tip groove. D. Same, with chemosensory patch, dorsal view. E. Same, tibia, ventral view. F. Epigyne, dorso-anterior view. Scales: A = 200 µm; B = 20 µm; C = 100 µm; D–F = 50 µm.

opencc-by-4.0Nov 2024View details →
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Fig. 14 in Two fancy spines and a collar: a taxonomic review of the myrmecomorphic spider genus Mazax O. Pickard-Cambridge, 1898 (Araneae: Corinnidae: Castianeirinae) in South America

Fig. 14. Mazax mokana sp. nov. A–C, G–H. Paratype, ♀ (IBSP-345142). D–F, I–J. Holotype, ♂ (IBSP-221867). A. Dorsal view. B. Lateral view (black arrow indicates AS II). C. Ventral view. D. Dorsal view. E. Lateral view (black arrow indicates AS II). F. Ventral view. G. Epigyne, ventral view. H. Same, dorsal view. I. Palp, ventral view. J. Same, retrolateral view. Abbreviations: CD = copulatory duct; CO = copulatory opening; CP = chemocensory patch; E = embolus; FD = fertilization duct; RTA = retrolateral tibial apophysis; ST I = primary spermatheca; ST II = secondary spermatheca. Scales: 0.5 mm.

opencc-by-4.0Nov 2024View 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