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Figures 27-28 from: Prosi R, Wiesbauer H, Müller A (2016) Distribution, biology and habitat of the rare European osmiine bee species Osmia (Melanosmia) pilicornis (Hymenoptera, Megachilidae, Osmiini). Journal of Hymenoptera Research 52: 1-36. https://doi.org/10.3897/jhr.52.10441
Figures 27-28 - Floral morphs of Pulmonaria mollis in top and lateral view: 27 Longistylous flower with anthers deeply hidden within the floral tube 28 Brevistylous flower with anthers located at the entrance of the floral tube.
Figures 21-26 from: Prosi R, Wiesbauer H, Müller A (2016) Distribution, biology and habitat of the rare European osmiine bee species Osmia (Melanosmia) pilicornis (Hymenoptera, Megachilidae, Osmiini). Journal of Hymenoptera Research 52: 1-36. https://doi.org/10.3897/jhr.52.10441
Figures 21-26 - Female mandibles of three closely related Osmia (Melanosmia) species; left=mandible in front view, right=mandible from below: 21–22 Osmia pilicornis 23–24 Osmia inermis 25–26 Osmia parietina. Figures are not to scale.
Figure 2 from: Prosi R, Wiesbauer H, Müller A (2016) Distribution, biology and habitat of the rare European osmiine bee species Osmia (Melanosmia) pilicornis (Hymenoptera, Megachilidae, Osmiini). Journal of Hymenoptera Research 52: 1-36. https://doi.org/10.3897/jhr.52.10441
Figure 2 - Phenology of Osmia pilicornis in Central Europe. Central Europe is defined here to comprise Austria, Czech Republic, Germany, Hungary, Poland, Switzerland, Slovakia and Slovenia.
Figures 42-49 from: Prosi R, Wiesbauer H, Müller A (2016) Distribution, biology and habitat of the rare European osmiine bee species Osmia (Melanosmia) pilicornis (Hymenoptera, Megachilidae, Osmiini). Journal of Hymenoptera Research 52: 1-36. https://doi.org/10.3897/jhr.52.10441
Figures 42-49 - Habitats of Osmia pilicornis: 42 Clear-cutting in southern Germany west of Crailsheim 43 Forest edge in southern Germany northeast of Crailsheim 44 Coppiced woodland in northeastern Austria near Ernstbrunn 45–47 Thinned forests in northeastern Austria near Ernstbrunn (45) and in northern Switzerland near Flaach (46, 47) 48 Clear-cutting in southern England near Battle in East Sussex (photo R. Earwaker) 49 Pasture in semi-open, oak-dominated woodland in middle Sweden near Sparreholm in Södermanland (photo A.L. Nilsson).
Figures 37-41 from: Prosi R, Wiesbauer H, Müller A (2016) Distribution, biology and habitat of the rare European osmiine bee species Osmia (Melanosmia) pilicornis (Hymenoptera, Megachilidae, Osmiini). Journal of Hymenoptera Research 52: 1-36. https://doi.org/10.3897/jhr.52.10441
Figures 37-41 - Brood parasites and male mating strategy of Osmia pilicornis: 37 Female of the chrysidid wasp Chrysura hirsuta lurking near nest of Osmia pilicornis 38 Male resting on flexed grass blades lying on the ground 39 Male sucking nectar on flower of Pulmonaria mollis 40 Pair separating after copulation on the ground 41 Male with well visible hairs along the posterior margin of the antennae.
Figures 29-36 from: Prosi R, Wiesbauer H, Müller A (2016) Distribution, biology and habitat of the rare European osmiine bee species Osmia (Melanosmia) pilicornis (Hymenoptera, Megachilidae, Osmiini). Journal of Hymenoptera Research 52: 1-36. https://doi.org/10.3897/jhr.52.10441
Figures 29-36 - Flower-visiting behaviour of Osmia pilicornis: 29–30 Females collecting pollen on flowers of Pulmonaria mollis in the early red stage 31 Female forcefully opening a bud of Pulmonaria obscura 32 Female collecting pollen on brevistylous flower of Pulmonaria mollis 33 Female removing pollen sticking to the bristled proboscis with her forelegs 34 Specialized pollen-harvesting bristles on the galeae of the female proboscis 35 Female collecting pollen on flower of Ajuga reptans 36 Female moving her proboscis back and forth, thereby probably thickening the collected nectar.
Figures 3-11 from: Prosi R, Wiesbauer H, Müller A (2016) Distribution, biology and habitat of the rare European osmiine bee species Osmia (Melanosmia) pilicornis (Hymenoptera, Megachilidae, Osmiini). Journal of Hymenoptera Research 52: 1-36. https://doi.org/10.3897/jhr.52.10441
Figures 3-11 - Nesting sites of Osmia pilicornis in dead fallen branches (see Table 2): 3–4 Nesting site 1 with nests 1 and 2 in a branch of Fraxinus excelsior 5–6 Nesting site 2 with nest 3 in a branch of Picea abies 7–9 Nesting site 3 with nests 4 and 5 in a branch of Salix spec. 10–11 Nesting site 4 with nest 6 in a branch of Corylus avellana.
Figures 12-14 from: Prosi R, Wiesbauer H, Müller A (2016) Distribution, biology and habitat of the rare European osmiine bee species Osmia (Melanosmia) pilicornis (Hymenoptera, Megachilidae, Osmiini). Journal of Hymenoptera Research 52: 1-36. https://doi.org/10.3897/jhr.52.10441
Figures 12-14 - Opened nests of Osmia pilicornis in dead branches (see Table 2): 12 Nests 1 and 2 with three and two brood cells, respectively, each containing a cocoon spun by the Osmia pilicornis larva 13 Nest 3 with one brood cell containing a cocoon spun by the Osmia pilicornis larva; at the bottom a pupa of Molorchus minor (Cerambycidae) 14 Nests 4 and 5 with two and one brood cell, respectively, each containing a larval provision; an empty vestibule is present between the outermost cell partition and the nest plug in nest 4, while the cell partition is part of the nest plug in nest 5.
Figures 15-20 from: Prosi R, Wiesbauer H, Müller A (2016) Distribution, biology and habitat of the rare European osmiine bee species Osmia (Melanosmia) pilicornis (Hymenoptera, Megachilidae, Osmiini). Journal of Hymenoptera Research 52: 1-36. https://doi.org/10.3897/jhr.52.10441
Figures 15-20 - Nesting behaviour of Osmia pilicornis (see Table 2): 15–16 Females of nests 1 and 4 tunneling out burrows in dead branches 17–18 Females of nests 2 and 4 transporting small leaf fragments of Fragaria vesca to build brood cell partitions and nest plug 19 Female harvesting nest-building material on a leaf of Fragaria vesca 20 Female of nest 4 returning from a foraging flight with pollen-filled metasomal scopa.
Figure 2 from: Holzenthal RW, Ríos-Touma B (2016) A new Ecuadorian species of the rare Neotropical caddisfly genus Amphoropsyche Holzenthal (Trichoptera, Leptoceridae). ZooKeys 640: 59-67. https://doi.org/10.3897/zookeys.640.10344
Figure 2 - Amphoropsyche real, new species. Female genitalia A lateral B segments IX-X, dorsal C vaginal apparatus, lateral D vaginal apparatus, ventral. IX = abdominal segment IX, X = abdominal segment X.
Figure 1 from: Holzenthal RW, Ríos-Touma B (2016) A new Ecuadorian species of the rare Neotropical caddisfly genus Amphoropsyche Holzenthal (Trichoptera, Leptoceridae). ZooKeys 640: 59-67. https://doi.org/10.3897/zookeys.640.10344
Figure 1 - Amphoropsyche real, new species. Male genitalia A lateral B segments IX-X, dorsal C inferior appendages, ventral D phallus, lateral. IX = abdominal segment IX.
Figure 2 from: Rázuri-Gonzales E, Holzenthal RW, Ríos-Touma B (2017) Two new species of the rare Neotropical caddisfly genus Amphoropsyche Holzenthal (Trichoptera, Leptoceridae). ZooKeys 707: 63-72. https://doi.org/10.3897/zookeys.707.20759
Figure 2 - Amphoropsyche matsigenka, new species. Male genitalia A segments IX-X, lateral B segments IX-X, dorsal C inferior appendages, ventral D phallus, lateral.
Figure 1 from: Rázuri-Gonzales E, Holzenthal RW, Ríos-Touma B (2017) Two new species of the rare Neotropical caddisfly genus Amphoropsyche Holzenthal (Trichoptera, Leptoceridae). ZooKeys 707: 63-72. https://doi.org/10.3897/zookeys.707.20759
Figure 1 - Amphoropsyche carchi, new species. Male genitalia A segments IX-X, lateral B segments IX-X, dorsal C inferior appendages, ventral D phallus, lateral. IX=abdominal segment IX.
Figure 3 from: Rázuri-Gonzales E, Holzenthal RW, Ríos-Touma B (2017) Two new species of the rare Neotropical caddisfly genus Amphoropsyche Holzenthal (Trichoptera, Leptoceridae). ZooKeys 707: 63-72. https://doi.org/10.3897/zookeys.707.20759
Figure 3 - Amphoropsyche matsigenka, new species. Female genitalia A segments IX-X, lateral B segments IX-X, dorsal C vaginal apparatus, lateral D vaginal apparatus, ventral. IX=abdominal segment IX, X=abdominal segment X.
Рис. 2. Распространение Acharax johnsoni (Dall, 1891) (желтый круг – рецентные раковины, голубой круг – живаЯ особь) и Conchocele bisecta (Conrad, 1849) (красный квадрат) в Беринговом море [Кафанов, Лутаенко, 1997; Данилин, 2014; Coan et al., 2000; наши данные]. Данные по нахождению C. bisecta приблиЗительные (широта – 57° N, долгота –?) [Coan et al., 2000]. in Clarification of data on findings of rare species of bivalve mollusks Acharax johnsoni (Dall, 1891) (Solemyidae) and Conchocele bisecta (Conrad, 1849) (Thyasiridae) in the Far Eastern seas of Russia
Рис. 2. Распространение Acharax johnsoni (Dall, 1891) (желтый круг – рецентные раковины, голубой круг – живаЯ особь) и Conchocele bisecta (Conrad, 1849) (красный квадрат) в Беринговом море [Кафанов, Лутаенко, 1997; Данилин, 2014; Coan et al., 2000; наши данные]. Данные по нахождению C. bisecta приблиЗительные (широта – 57° N, долгота –?) [Coan et al., 2000].
Figure 9 in Two species representing a rare genus Sinaxonopsis (Acari, Hydrachnidiae, Aturidae) from China, with discussion of some taxonomic features
Figure 9 Sinaxonopsis unicucrus Yi & Jin, 2012, ♀ (HN-AT-202106110512), SEM photographs: A – Dorsal view; B – Preantennal glandularia (A1), Preocularia (O1); C – Postantennal glandularia (A2), Postocularia (O2), Dorsoglandularia 1 (D1); D – Dorso-glandularia 2 (D2); E – Dorsoglandularia 3 (D3), Dorsoglandularia 4 (D4); F – Ventro-glandularia 4 (V4); G – Lateroglandularia 1 (L1); H – Lateroglandularia 2 (L2); I
Fig. 11 in New records of rare species in the Mediterranean Sea (March 2021)
Fig. 11: Female individual of Dalatias licha caught incidentally in the North Aegean Sea. Photo credit: Vasiliki Kousteni.
Figs 1–5 in Oribatid Mites (Acari: Oribatida) From Venezuela, Ii. New Or Rare Species From Montane Forests
Figs 1–5. Beckiella costulata sp. n.: 1 = body in dorsal view, 2 = leg IV, 3 = body in ventral view, 4 = rostral part of the podosoma in lateral view, 5 = rostral part of the podosoma in dorsal view
Fig. 15 in New and rare species of the genus Lepidozona (Mollusca: Polyplacophora) from the South China, East China and the Philippine seas
Fig. 15. Color images of species of genera Lepidozona. A – Lepidozona bisculpta, BL 8 mm, Vietnam, Tonkin Bay, 6–7 m, on old corals; B – Lepidozona bisculpta, with 5 valves, BL 8 mm, Vietnam, Tonkin Bay, 6–7 m, on old corals; C – Lepidozona bisculpta, with 7 valves, BL 8 mm, Vietnam, Tonkin Bay, 6–7 m, on old corals; D – Lepidozona acostata, holotype, BL 8 mm, south Vietnam, R/V Odissey, trawl 59, 310 m, on sunken wood; E – Lepidozona acostata, paratype, BL 8 mm, south Vietnam, R/V Odissey, trawl 59, 310 m, on sunken wood; F – Lepidozona excellens, holotype, BL 18.0 mm, Philippine Sea, R/V Odissey, stn 37, 380–420 m.
Fig. 12 in New and rare species of the genus Lepidozona (Mollusca: Polyplacophora) from the South China, East China and the Philippine seas
Fig. 12. Lepidozona excellens, holotype, BL 18.0 mm, Philippine Sea, R/V Odissey, stn 37, 380–420 m; A, C – dorsal scales, marginal spicules, scales and ventral scales; B dorsal scales; D – head of major lateral tooth of radula.
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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.
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.