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Fig. 59-61 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 59-61: Image of a head of ichneumon fly Triptognathops gobiensis TERESHKIN: (59) final result of fulfillment of operations (layer "Result"), (60) elements of a head fulfilling separately, (61) hierarchy of layers.
PROCRAFT Final Meeting - Choice of restoration or renovation of WWII aircraft paintwork, illustrated by two case studies Bristol Bolingbroke and Messerschmitt 163B Komet by Thilo Bürgel, National Museum of Flight
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Acoustic features as a tool to visualize and explore marine soundscapes: Applications illustrated using marine mammal Passive Acoustic Monitoring datasets
<p>Passive Acoustic Monitoring (PAM) is emerging as a solution for monitoring species and environmental change over large spatial and temporal scales. However, drawing rigorous conclusions based on acoustic recordings is challenging, as there is no consensus over which approaches, and indices are best suited for characterizing marine and terrestrial acoustic environments.</p> <p>Here, we describe the application of multiple machine-learning techniques to the analysis of a large PAM dataset. We combine pre-trained acoustic classification models (VGGish, NOAA & Google Humpback Whale Detector), dimensionality reduction (UMAP), and balanced random forest algorithms to demonstrate how machine-learned acoustic features capture different aspects of the marine environment.</p> <p>The UMAP dimensions derived from VGGish acoustic features exhibited good performance in separating marine mammal vocalizations according to species and locations. RF models trained on the acoustic features performed well for labelled sounds in the 8 kHz range, however, low and high-frequency sounds could not be classified using this approach.</p> <p>The workflow presented here shows how acoustic feature extraction, visualization, and analysis allow for establishing a link between ecologically relevant information and PAM recordings at multiple scales.</p> <p>The datasets and scripts provided in this repository allow replicating the results presented in the publication. </p>
Figures 2–7. Habitus and aedeagi. 2-3 in Contributions to the systematics of the family Buprestidae (Coleoptera) by the first description of male external genital organ and illustrations of six species from Ankara province
Figures 2–7. Habitus and aedeagi. 2-3. Acmaeodera (s.str.) flavolineata, 4–5. Acmaeoderella (Euacmaeoderella) villosula, 6–7. A. (E.) gibbulosa. A–B) Dorsal photograph and drawing of aedeagus. C–D) Lateral photograph and drawing of aedeagus.
Figures 8–13. Habitus and aedeagi. 8–9. Capnodis carbonaria, 10–11. Perotis cuprata, 12–13 in Contributions to the systematics of the family Buprestidae (Coleoptera) by the first description of male external genital organ and illustrations of six species from Ankara province
Figures 8–13. Habitus and aedeagi. 8–9. Capnodis carbonaria, 10–11. Perotis cuprata, 12–13. Anthaxia (Cratomerus) eugeniae. A–B) Dorsal photograph and drawing of aedeagus. C–D) Lateral photograph and drawing of aedeagus.
Figure 1 in Contributions to the systematics of the family Buprestidae (Coleoptera) by the first description of male external genital organ and illustrations of six species from Ankara province
Figure 1. The localities of the examined species collected in Ankara province (the map designed with ArcGIS Pro v.2.2).
Fig. 30 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Fig. 30. Map showing all localities of revised specimens of Otiorhynchus azaleae (black circles), O. gredleri (white circles), O. spaethi (black squares), O. venustus (white squares) and O. hypocrita (white squares with black circle).
Fig. 29 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Fig. 29. Map showing all localities of revised specimens of Otiorhynchus subcostatus (black circles) and those of O. muffi sp. nov. (white circles). Note that O. subcostatus is also recorded from the French Massif Central (records not shown on this map).
Figs 19–24 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 19–24. Spiculum ventrale of selected Otiorhynchus (Nihus) 19. O. subcostatus (lectotype, Engadine), 20. O. spaethi (Campogrosso), 21. O. spaethi (Monte Cavallo), 22. O. azaleae (Koralpe), 23. O. azaleae (Monte Sernio), 24. O. gredleri (Cima Tombea).
Figs 10–13 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 10–13. Habitus of 10. Otiorhynchus gredleri (female from a parthenogenetic population, Piz Clünas), 11. O. azaleae (male from Koralpe), 12. Ditto (female from an amphigonic population, Wöllaner Nock), 13. Ditto (female from a parthenogenetic population, Monte Sernio).
Figs 2–5 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 2–5. Habitus of female specimens of 2. Otiorhynchus uncinatus (Sagno), 3. O. carinatopunctatus (Tarasp), 4. O. muffi sp. nov. (holotype, S-charl), 5. O. subcostatus (lectotype, Engadine).
Figs 6–9 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 6–9. Habitus of 6. Otiorhynchus venustus (female from Valmasque), 7. O. hypocrita (female from Pragelato). 8. O. gredleri (male from Monte Baldo), 9. Ditto female from an amphigonic population, same locality.
Figs 25–28 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 25–28. Penis ventral and lateral of 25. O. gredleri (Monte Baldo), 26. O. azaleae (Koralpe), 27. O. spaethi (Campogrosso), 28. O. hypocrita (Albergian).
Fig. 3. Exeristes spp., male. 1 — E in A Review Of The Genus Exeristes (Hymenoptera, Ichneumonidae, Pimplinae) From Carpathians, With An Illustrated Key To Western Palearctic Species
Fig. 3. Exeristes spp., male. 1 — E. arundinis, habitus (lateral view); 2 — E. longiseta, habitus (lateral view); 3 — E. ruficollis, head and mesosoma (lateral view); 4 — E. roborator, clypeus (frontal view); 5 — E. arundinis, hind tarsus (lateral view); 6 — E. roborator, hind tarsus (lateral view).
Fig. 2. Exeristes spp., female. 1 — E in A Review Of The Genus Exeristes (Hymenoptera, Ichneumonidae, Pimplinae) From Carpathians, With An Illustrated Key To Western Palearctic Species
Fig. 2. Exeristes spp., female. 1 — E. roborator, ovipositor tip (lateral view); 2 — E. longiseta, ovipositor tip (lateral view); 3 — E. arundinis, ovipositor tip (lateral view); 4 — E. denticulator, holotype, ovipositor tip (lateral view); 5 — E. ruficollis, lectotype, ovipositor tip (lateral view); 6 — E. arundinis, fore tarsal claw (lateral view); 7 — E. ruficollis, lectotype, hind femur and tibia (lateral view); 8 — E. denticulator, holotype, hind tibia and tarsus (lateral view); 9 — E. denticulator, holotype, propodeum and tergites I–II of metasoma (dorsal view); 10 — E. roborator, propodeum and tergites I–II of metasoma (dorsal view).
Fig. 1. The Carpathian Exeristes spp. distribution map. Yellow circle — E in A Review Of The Genus Exeristes (Hymenoptera, Ichneumonidae, Pimplinae) From Carpathians, With An Illustrated Key To Western Palearctic Species
Fig. 1. The Carpathian Exeristes spp. distribution map. Yellow circle — E. roborator; red circle — E. longiseta; green circle — E. arundinis.
Life cycle assessment of struvite recovery and wastewater sludge end-use: A Flemish illustration
<p>This work was supported by the European Union's Horizon 2020 project Nutri2Cycle (Grant agreement No. 773682) and Interreg North-West Europe's ReNu2Farm (Grant: NEW601). These datasets are supplementary information to the manuscript titled <a href="https://www.sciencedirect.com/science/article/pii/S0921344922001732?via%3Dihub#!">"Life cycle assessment of struvite recovery and wastewater sludge end-use: A Flemish illustration"</a></p> <p> </p> <p> </p> <p> </p>
FRONTISPIECE. The honey opossum (Tarsipes rostratus, illustrated by Gould, 1863) has aptly been described as "a paragon of autapomorphic specialization" (Aplin and Archer, 1987). in Craniodental Morphology And Phylogeny Of Marsupials
FRONTISPIECE. The honey opossum (Tarsipes rostratus, illustrated by Gould, 1863) has aptly been described as "a paragon of autapomorphic specialization" (Aplin and Archer, 1987).
Fig. 10 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species
Fig. 10. Species of Paepalanthoideae (Eriocaulaceae) from the Chapada dos Veadeiros National Park. A. Syngonanthus densifolius var. brachyphyllus Moldenke. B. S. densifolius var. majus Moldenke. C. S. hensoldiae M.T.C.Watan. & Sano. D. S. heteropeplus (Körn.) Ruhland. E. S. humboldtii (Kunth) Ruhland. F. S. nitens (Bong.) Ruhland. G. S. vittatus M.T.C.Watan. & Echtern. H. S. widgrenianus (Körn.) Ruhland.
Fig. 9 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species
Fig. 9. Species of Paepalanthoideae (Eriocaulaceae) from the Chapada dos Veadeiros National Park. A. Paepalanthus subtilis Miq. B. P. trichophyllus (Bong.) Körn.. C. P. urbanianus Ruhland. D. Syngonanthus cabralensis Silveira. E. S. caulescens (Poir.) Ruhland. F. S. cuyabensis (Bong.) Giul., Hensold & L.R.Parra. G. S. davidsei Huft. H. S. decorus Moldenke.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research 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.
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.