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Fig. 13. A–B. Neocranaus albiconspersus Roewer, 1913, live specimens from Huila. A. Male. B. Female. C–D in Peering beyond the monotypic veil: taxonomy and notes on the parental care of Neocranaus (Opiliones: Gonyleptoidea: Cranaidae)

Fig. 13. A–B. Neocranaus albiconspersus Roewer, 1913, live specimens from Huila. A. Male. B. Female. C–D. Neocranaus pectinitibialis (Roewer, 1915) comb. nov., live specimens from Tolima. C. Male. D. Female. Pictures: A–B: Julio César González-Gómez; C–D: Luis F. García.

opencc-by-4.0Mar 2024View details →
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F I G U R E 8 in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)

F I G U R E 8 Allometric growth: regression curves for total length and body mass for the hybrid grouper in 5 months old (a), 6 months old (b) and 8 months old (c)

opencc-by-4.0Nov 2022View details →
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F I G U R E 7 in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)

F I G U R E 7 Correlation coefficients among morphological traits of the hybrid grouper in 5 months old (a), 6 months old (b) and 8 months old (c)

opencc-by-4.0Nov 2022View details →
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F I G U R E 5 Phylogenetic study using the 5S in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)

F I G U R E 5 Phylogenetic study using the 5S rDNA sequences from Epinephelus fuscoguttatus, Epinephelus polyphekadion and the hybrid grouper

opencc-by-4.0Nov 2022View details →
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F I G U R E 6 in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)

F I G U R E 6 Proportion of the total length and head length of the hybrid grouper, shown as percentages of body length

opencc-by-4.0Nov 2022View details →
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F I G U R E 3 in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)

F I G U R E 3 Representative sequences of 5S rDNA. (a) Complete 5S coding regions from Epinephelus fuscoguttatus, Epinephelus polyphekadion and the hybrid grouper. Internal control regions of the coding region are shaded. (b) Comparison of the nontranscribed spacer (NTS) sequences from Epinephelus fuscoguttatus, Epinephelus polyphekadion and the hybrid grouper. The NTS upstream TATA elements are shaded and asterisks mark variable sites in the NTS

opencc-by-4.0Nov 2022View details →
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F I G U R E 1 in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)

F I G U R E 1 DNA content of (a) Epinephelus fuscoguttatus, (b) Epinephelus polyphekadion and (c) the hybrid grouper

opencc-by-4.0Nov 2022View details →
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F I G U R E 2 in Genetic characteristics and growth patterns of the hybrid grouper derived from the hybridization of Epinephelus fuscoguttatus (female) Epinephelus polyphekadion (male)

F I G U R E 2 Chromosome spreads at metaphase in Epinephelus fuscoguttatus, Epinephelus polyphekadion and the hybrid grouper. (a) The 48 chromosomes of Epinephelus fuscoguttatus. (b) The 48 chromosomes of Epinephelus polyphekadion. (c) The 48 chromosomes of the hybrid grouper

opencc-by-4.0Nov 2022View details →
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Fig. 2. Neoscona xishanensis, female. A in First record of Neoscona xishanensis Yin, Wang, Xie et Peng, 1990 (Araneae: Araneidae) from India with description of hitherto unknown male

Fig. 2. Neoscona xishanensis, female. A – habitus, dorsal view; B – chelicerae, ventral view; C – epigyne, dorsal view; D – the same, ventral view; E, F – the same, lateral view. Scale = 0.5mm.

opencc-by-4.0Sep 2023View details →
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Figures 5–10. Lasioseius parberlesei – 5. Male, Chelicera. 6–10. Female. 6 in Review of the genus Lasioseius Berlese (Acari: Blattisociidae) in Iran, and a key for identification of the Iranian species of the genus

Figures 5–10. Lasioseius parberlesei – 5. Male, Chelicera. 6–10. Female. 6. Chelicera; 7. Tritosternum; 8. Hypostome; 9. Spermatheca (without scale); 10. Femur-tarsus of leg IV.

opencc-by-4.0Oct 2023View details →
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Data for "Seed production in a dioecious subcanopy conifer tree Taxus baccata: the positive effect of neighboring males and female heterozygosity"

<p>A spreadsheet contains data for individual trees of Taxus baccata collected within the "Wadernik" reserve, Poland. Data include spatial coordinates (in meters), altitude (in meters), trunk perimeter (in centimeters), canopy closure assessment (0-fully open, 10-complete closure), the observed seed number, sex expression (female/male/undetermined), and genotypes at 20 microsatellite markers.</p>

opencc-by-4.0Apr 2024View details →
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Рис. 8. СреЗы череЗ гонады моллюска: А – поперечный среЗ череЗ гонаду самки, Б–Д – фолликулы в гонадах самок (Б, В – Зрелые ооциты круглой формы, готовые к вымету; Г – ооциты в период активного гаметогенеЗа на стадии раннего трофоплаЗматического роста, Д – ооциты каплевидной формы в период преднерестовой стадии при ЗаверШении трофоплаЗматического роста), Е, Ж – поперечные среЗы череЗ гонаду самца, З, И – ацинусы в гонадах самцов (З – преднерестоваЯ стадиЯ, просветы в ацинусах практически отсутствуют, стенки ацинусов не раЗличимы, И – нерестоваЯ стадиЯ, имеютсЯ просветы в ацинусах). МасШтабные линейки 300 мкм (А), 200 мкм (Е), 100 мкм (Ж), 50 мкм (Б–Д, З, И). вя – вакуолиЗированное Ядро, сф – стенка фолликула, вм – вителлиноваЯ мембрана, РО – раЗвиваюЩиесЯ иЗ пелликулы ооциты, пг – ресничный проток гонады, с – сперматоциты, па – просветы в ацинусах. Fig. 8. Sections through the gonads of the mollusk: А – transverse section through the female gonad, Б–Д – ovarian acini, follicles (Б, В – mature round-shaped oocytes ready to be swept out; Г – oocytes in the period of active gametogenesis at the stage of early trophoplasmatic growth, Д – tear-shaped oocytes during the pre-spawning stage at the end of trophoplasmatic growth), Е, Ж – transverse sections through the male gonads, З, И – testicular acini (З – pre-spawning stage, with practically absent gaps in the acini and invisible the acini walls, И – spawning stage, with gaps in the acini). Scale bars 300 µm (A), 200 µm (E), 100 µm (Ж), 50 µm (Б–Д, З, И). вя – vacuolated nucleus, сф – follicle wall, вм – vitelline membrane, РО – developing oocytes arising from a pellicle, пг – ciliated gonadal duct, с – spermatocytes, па – gaps in acini. in Nodularia vladivostokensis (Bivalvia: Unionidae) from Razdolnaya River (Primorye, Russia)

Рис. 8. СреЗы череЗ гонады моллюска: А – поперечный среЗ череЗ гонаду самки, Б–Д – фолликулы в гонадах самок (Б, В – Зрелые ооциты круглой формы, готовые к вымету; Г – ооциты в период активного гаметогенеЗа на стадии раннего трофоплаЗматического роста, Д – ооциты каплевидной формы в период преднерестовой стадии при ЗаверШении трофоплаЗматического роста), Е, Ж – поперечные среЗы череЗ гонаду самца, З, И – ацинусы в гонадах самцов (З – преднерестоваЯ стадиЯ, просветы в ацинусах практически отсутствуют, стенки ацинусов не раЗличимы, И – нерестоваЯ стадиЯ, имеютсЯ просветы в ацинусах). МасШтабные линейки 300 мкм (А), 200 мкм (Е), 100 мкм (Ж), 50 мкм (Б–Д, З, И). вя – вакуолиЗированное Ядро, сф – стенка фолликула, вм – вителлиноваЯ мембрана, РО – раЗвиваюЩиесЯ иЗ пелликулы ооциты, пг – ресничный проток гонады, с – сперматоциты, па – просветы в ацинусах. Fig. 8. Sections through the gonads of the mollusk: А – transverse section through the female gonad, Б–Д – ovarian acini, follicles (Б, В – mature round-shaped oocytes ready to be swept out; Г – oocytes in the period of active gametogenesis at the stage of early trophoplasmatic growth, Д – tear-shaped oocytes during the pre-spawning stage at the end of trophoplasmatic growth), Е, Ж – transverse sections through the male gonads, З, И – testicular acini (З – pre-spawning stage, with practically absent gaps in the acini and invisible the acini walls, И – spawning stage, with gaps in the acini). Scale bars 300 µm (A), 200 µm (E), 100 µm (Ж), 50 µm (Б–Д, З, И). вя – vacuolated nucleus, сф – follicle wall, вм – vitelline membrane, РО – developing oocytes arising from a pellicle, пг – ciliated gonadal duct, с – spermatocytes, па – gaps in acini.

opencc-by-4.0Dec 2018View details →
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Figs 1-6 in Description of the male of Lepidotrigona nitidiventris (Smith, 1857), redescription of the female holotype and additional morphological data on the workers (Hymenoptera: Apidae: Meliponini)

Figs 1-6. Lepidotrigona nitidiventris, worker. (1-3) The Malaysian holotype, including its label at the bottom left of (3). (4-6) Thai worker, BCMU-LNW04 (HB-W1). Dorsal habitus (1, 4), lateral habitus (2, 5), head, frontal view (3, 6). Scale bars: 1 mm.

opencc-by-4.0Jun 2020View details →
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Figs 7-9 in Description of the male of Lepidotrigona nitidiventris (Smith, 1857), redescription of the female holotype and additional morphological data on the workers (Hymenoptera: Apidae: Meliponini)

Figs 7-9. Lepidotrigona nitidiventris, male, BCMU-LNM01 (HB-M1). Dorsal habitus (7), lateral habitus (8), head, frontal view (9). mt.cmb – metatibial comb. Scale bars: 1 mm.

opencc-by-4.0Jun 2020View details →
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Critical thermal maximum of male and female ditch shrimps (Palaemon varians) [dataset].

<p>Dataset on the upper thermal tolerance limits (Critical Thermal Maximum, CTmax) of male and female<em> Palaemon varians</em> shrimps collected from the salt pan complex of Marinha de Santiago da Fonte, Ria de Aveiro, Portugal (40 ̊ 37&rsquo;44.5&rsquo;&rsquo;N, 08 ̊ 39&rsquo;37.3&rsquo;&rsquo;W).&nbsp;Data on weight and&nbsp;lenght are also included. Temperature data for the sampling site were collected with a HOBO datalogger (water Temp Pro v2 U22-001, Onset, USA) and are also included.&nbsp;</p> <p>Dataset associated to the article&nbsp;&nbsp;<a href="https://doi.org/10.1016/j.jtherbio.2021.103151">https://doi.org/10.1016/j.jtherbio.2021.103151</a></p>

opencc-by-3.0Nov 2021View details →
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Fig. 74. Trenomyces histophthorus Chatton & F.Picard. A. Mature male and female thalli. B in Laboulbeniomycetes (Fungi, Ascomycota) of Denmark

Fig. 74. Trenomyces histophthorus Chatton &amp; F.Picard. A. Mature male and female thalli. B. One or more male thalli. Scale bars: 50 µm. Photographs from slides ZMUC C-F-124344 (A), ZMUC C-F-124345 (B).

opencc-by-4.0Nov 2021View details →
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Figs. 360–370. Tolegnaro kepleri, new species. 360. Cephalothorax male, dorsal view. 361. Same, lateral view. 362. Sternum male, ventral view. 363. Chelicerae modified setae male, anterior view. 364. Leg 1 female, retrolateral view. 365. Palp male, prolateral view 366. Same, retrolateral view. 367. Embolus, retrolateral view. 368. Embolus, prolateral view. 369. Embolus, ventral view. 370 in Noideattella and Tolegnaro, Two New Genera of Goblin Spiders from Madagascar, with Comments on the Gamasomorphoid and Silhouettelloid Oonopids (Araneae, Oonopidae)

Figs. 360–370. Tolegnaro kepleri, new species. 360. Cephalothorax male, dorsal view. 361. Same, lateral view. 362. Sternum male, ventral view. 363. Chelicerae modified setae male, anterior view. 364. Leg 1 female, retrolateral view. 365. Palp male, prolateral view 366. Same, retrolateral view. 367. Embolus, retrolateral view. 368. Embolus, prolateral view. 369. Embolus, ventral view. 370. Embolus, dorsal view. Scale bars = 50 µm except 556–559: 10 µm.

opencc-by-4.0May 2012View details →
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Figs. 332–341. Tolegnaro sagani, new species. 332. Genitalia female, anterodorsal view. 333. Same, dorsal view. 334. Same, lateral view. 335. Receptaculum papillae field, anterior view. 336. Palp male, prolateral view. 337. Same, retrolateral view. 338. Embolus, dorsal view. 339. Embolus, prolateral view. 340. Embolus, retrolateral view. 341 in Noideattella and Tolegnaro, Two New Genera of Goblin Spiders from Madagascar, with Comments on the Gamasomorphoid and Silhouettelloid Oonopids (Araneae, Oonopidae)

Figs. 332–341. Tolegnaro sagani, new species. 332. Genitalia female, anterodorsal view. 333. Same, dorsal view. 334. Same, lateral view. 335. Receptaculum papillae field, anterior view. 336. Palp male, prolateral view. 337. Same, retrolateral view. 338. Embolus, dorsal view. 339. Embolus, prolateral view. 340. Embolus, retrolateral view. 341. Embolus, ventral view. Scale bars = 50 µm, except 335, 338–340: 10 µm.

opencc-by-4.0May 2012View details →
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Figs. 323–331. Tolegnaro sagani, new species. 323. Endites male, ventral view. 324. Endites female, ventral view. 325. Cephalothorax male, dorsal view. 326. Same, lateral view. 327. Same, ventral view. 328. Pedicel area female, lateral view. 329. Pedicel plumose setae female. 330. Epigastric region male, ventral view. 331 in Noideattella and Tolegnaro, Two New Genera of Goblin Spiders from Madagascar, with Comments on the Gamasomorphoid and Silhouettelloid Oonopids (Araneae, Oonopidae)

Figs. 323–331. Tolegnaro sagani, new species. 323. Endites male, ventral view. 324. Endites female, ventral view. 325. Cephalothorax male, dorsal view. 326. Same, lateral view. 327. Same, ventral view. 328. Pedicel area female, lateral view. 329. Pedicel plumose setae female. 330. Epigastric region male, ventral view. 331. Same female, ventral view. Scale bars = 50 µm.

opencc-by-4.0May 2012View details →
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Figs. 295–302. Noideattella farihy, new species. 295. Epigastric region male, ventral view. 296. Same female, ventral view. 297. Genitalia female, dorsal view. 298. Same, anterordorsal view. 299. Same, lateral view. 300. Receptaculum papillae field, anterior view. 301. Cephalothorax male, dorsal view. 302 in Noideattella and Tolegnaro, Two New Genera of Goblin Spiders from Madagascar, with Comments on the Gamasomorphoid and Silhouettelloid Oonopids (Araneae, Oonopidae)

Figs. 295–302. Noideattella farihy, new species. 295. Epigastric region male, ventral view. 296. Same female, ventral view. 297. Genitalia female, dorsal view. 298. Same, anterordorsal view. 299. Same, lateral view. 300. Receptaculum papillae field, anterior view. 301. Cephalothorax male, dorsal view. 302. Same, lateral view. Scale bars = 50 µm, except 300: 10 µm.

opencc-by-4.0May 2012View details →

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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

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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