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Fig. 10. A−B, D−F in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 10. A−B, D−F. Head−pronotum, dorsal. C. Head−prothorax, lateroventral. G. Metatibia, internal. A. ♀. B−G. ♂. H−K. Aedeagus (lateral, parameres apex). A−C, H−I. Ceratolontha venezuelae Arrow, 1948. D. Rhinaspis aenea Billberg, 1820. E. Rhinaspis ohausi Moser, 1921. F−G, J−K. Rhinaspis aeneofusca Moser, 1919. Scale bars = 1 mm.

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Fig. 8. A−E. Pronotum−scutellum contact. F. Protibia. A. Ancistrosoma klugii Curtis, 1835. B. Chariodema virescens Blanchard, 1842. C in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 8. A−E. Pronotum−scutellum contact. F. Protibia. A. Ancistrosoma klugii Curtis, 1835. B. Chariodema virescens Blanchard, 1842. C. Ceraspis bivulnerata (Germar, 1824). D. Faula cornuta Blanchard, 1850. E−F. Manopus biguttata Conte de Castelnau, 1840. Scale bars = 1 mm.

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Fig. 2 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 2. ♂♂. A–D. Head–prothorax dorsal, tarsus rotated laterally to apex. E–G. Metatibia. H–I. Aedeagus (lateral, parameres apex). A, E. Agaocnemis pruina Moser, 1918. B, F, H–I. Byrasba volvula (Burmeister, 1855). C, G. Hamatoplectris caracana Frey, 1969. D. Hieritis macrocera Burmeister, 1855. Scale bars = 1 mm.

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Fig. 5. Barybas Blanchard, 1850. A–B in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 5. Barybas Blanchard, 1850. A–B. Head–prothorax dorsal, tarsus rotated laterally to apex. C–H. Male head (lateral, frontal), line = prothorax limit. I–J. Aedeagus (lateral, parameres apex). A, C–D. Barybas nana Blanchard, 1850. B, G–J. Barybas viridiaenea Moser, 1921. E–F. Barybas pellucens Burmeister, 1855. Scale bars = 1 mm.

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Fig. 7. Calodactylus tibialis Blanchard, 1850. A in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 7. Calodactylus tibialis Blanchard, 1850. A. Male habitus, lateral (without some appendages). B. Male abdomen lateroventral detail. C–D. Aedeagus (lateral, parameres apex). E. Metatibia. Scale bars = 1 mm.

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Fig. 6 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 6. ♂♂. A–D. Head (dorsal, ventral). E–F. Aedeagus (lateral, parameres apex). G–H. Mesoalinotum. A–B, E–F. Clavipalpus dejeani Laporte, 1832. C–D. Paulosawaya ursina (Blanchard, 1850) comb. nov. G. Barybas nana Blanchard, 1850. H. Macrodactylus pumilio Burmeister, 1855. a = scutum transverse carina; b = scutum–scutellum limit angulate. Scale bars = 1 mm.

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Fig. 3. Alvarinus canescens Burmeister, 1855 in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 3. Alvarinus canescens Burmeister, 1855, ♂. A. Habitus, lateral (without some appendages). B. Head–prothorax dorsal, tarsus rotated laterally to apex. C. Metafemur. D–E. Aedeagus (lateral, parameres apex). Scale bars = 1 mm.

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Fig. 4. A–C. Male metatarsus. D. Female metatarsus. E–H in Macrodactylini (Coleoptera, Scarabaeidae, Melolonthinae): primary types of type species and taxonomic changes to the generic classification

Fig. 4. A–C. Male metatarsus. D. Female metatarsus. E–H. Aedeagus (lateral, parameres apex). I–J. Antenna (♂, ♀). A. Plectris tomentosa LePeletier de Saint-Fargeau & Audinet-Serville, 1828. B, E–F. Anomonyx uruguayensis Moser, 1921. C–D, G–J. Oedichira pachydactyla Burmeister, 1855. Scale bars = 1 mm.

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Dataset: Whole blood count, used in: "AIDeveloper: deep learning image classification in life science and beyond"

<p>Real-time deformability cytometry (RT-DC) data of whole blood measurements.<br> Data was used to train and validate a neural net to perform a blood count based on brightfield images of RT-DC.</p> <p>01_Model: Contains the final model as well as an AIDeveloper meta-file that allows to reproduce the training procedure. The metafile preciesely defines which dataset was used for training and which for validation as well as all parameters that were set in AIDeveloper.</p> <p>The following folders contain data that was used for training (and validation):</p> <ul> <li>Cambr</li> <li>KIK</li> <li>20190306_DextranBlood_AI_DataSet</li> <li>Gs_Blood_Train</li> </ul> <p>Testing data is stored on figshare:<br> https://figshare.com/articles/Krater_et_al_2020_Data_zip/9902636</p>

opencc-by-4.0May 2020View details →
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FIG. 4 in Des bestes médiévales aux espèces linnéennes : autour de la classification de quelques espèces en contexte castral au Moyen Âge

FIG. 4. — Répartition relative en taux pondéré de présence (TPp) (Rodet-Belarbi et al. 2002) des organes squelettiques de cerf (US 1226, état 9: fin XIVe-XVe siècle, secteur 1: bâtiment nord; Borvon &amp; Viaut 2018).

opencc-by-4.0Jul 2020View details →
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FIG. 7 in Des bestes médiévales aux espèces linnéennes : autour de la classification de quelques espèces en contexte castral au Moyen Âge

FIG. 7. — Ulna, radius et scapula d'autour des palombes Accipiter gentilis (Linnaeus, 1758), château de Talmont (état 6, XIIIe-XIVe siècles, secteur 1: bâtiment nord; cliché A. Borvon).

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FIGURE 16. Gonostylus, ventral. A in Re-classification of Lycoriella Frey sensu lato (Diptera, Sciaridae), with description of Trichocoelina gen. n. and twenty new species

FIGURE 16. Gonostylus, ventral. A. Trichocoelina quintula sp. n. (holotype). B. T. semisphaera sp. n. (holotype). C. T. semusta sp. n (holotype). D. T. tecta sp. n. (holotype). Scale 0.1 mm.

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FIGURE 13. Gonostylus, ventral. A in Re-classification of Lycoriella Frey sensu lato (Diptera, Sciaridae), with description of Trichocoelina gen. n. and twenty new species

FIGURE 13. Gonostylus, ventral. A. Trichocoelina obesula sp. n. (holotype). B. T. nefrens sp. n. (holotype). C. T. planilobata sp. n. (holotype). D. T. oricillifera sp. n. (holotype). Scale 0.1 mm.

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FIGURE 17. Tegmen, ventral. A in Re-classification of Lycoriella Frey sensu lato (Diptera, Sciaridae), with description of Trichocoelina gen. n. and twenty new species

FIGURE 17. Tegmen, ventral. A. Trichocoelina imitator sp. n. (holotype). B. T. oricillifera sp. n. (paratype from Salla). C. T. hians sp. n. (holotype). D. T. janetscheki (Lengersdorf, 1953) (from Colorado). E. T. nefrens sp. n. (paratype from Rassokha). F. T. magnifica sp. n. (holotype). Scale 0.1 mm.

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FIGURE 5. Hypopygium, ventral. A in Re-classification of Lycoriella Frey sensu lato (Diptera, Sciaridae), with description of Trichocoelina gen. n. and twenty new species

FIGURE 5. Hypopygium, ventral. A. Trichocoelina hians sp. n. (holotype). B. T. imitator sp. n. (holotype). Scale 0.1 mm.

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FIGURE 4. Hypopygium, ventral. A in Re-classification of Lycoriella Frey sensu lato (Diptera, Sciaridae), with description of Trichocoelina gen. n. and twenty new species

FIGURE 4. Hypopygium, ventral. A. Trichocoelina dispansa sp. n. (holotype). B. T. dividua sp. n. (holotype). Scale 0.1 mm.

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FIGURE 1. Hypopygium, ventral. A in Re-classification of Lycoriella Frey sensu lato (Diptera, Sciaridae), with description of Trichocoelina gen. n. and twenty new species

FIGURE 1. Hypopygium, ventral. A. Trichocoelina absidata sp. n. (holotype). B. T. aemula sp. n. (holotype). Scale 0.1 mm.

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FIGURE 8. Hypopygium, ventral. A in Re-classification of Lycoriella Frey sensu lato (Diptera, Sciaridae), with description of Trichocoelina gen. n. and twenty new species

FIGURE 8. Hypopygium, ventral. A. Trichocoelina ithyspina sp. n. (holotype). B. T. jukkai sp. n. (holotype). Scale 0.1 mm.

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FIGURE 11. Hypopygium, ventral. A in Re-classification of Lycoriella Frey sensu lato (Diptera, Sciaridae), with description of Trichocoelina gen. n. and twenty new species

FIGURE 11. Hypopygium, ventral. A. Trichocoelina nefrens sp. n. (holotype). B. T. obesula sp. n. (holotype). Scale 0.1 mm.

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FIGURE 3. Gonostylus, ventral. A in Re-classification of Lycoriella Frey sensu lato (Diptera, Sciaridae), with description of Trichocoelina gen. n. and twenty new species

FIGURE 3. Gonostylus, ventral. A. Trichocoelina aemula sp. n. (holotype). B. T. absidata sp. n. (holotype). C. T. biplex (holotype). D. T. dicksoni (holotype). Scale 0.1 mm.

opencc-by-4.0Sep 2019View details →

ScienceDex guides

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

Compare curated datasets

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