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Figures 9-12 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 9-12 Adults. 9Caryocolum lamai, paratype, male, Italy; 10C. lamai, paratype, male, Italy; 11C. messneri, paratype, male, Italy; 12C. habeleri, paratype, male, France.
Figures 21-24 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 21-24 Male genitalia (details vinculum-valva-complex). 21Caryocolum schleichi, Syria, slide GU 86/273 P. Huemer; 22C. dianthella, Spain, slide GEL 1284 P. Huemer; 23C. improvisella, Austria, slide GEL 1256 P. Huemer; 24C. improvisella, Italy, slide GEL 120 P. Huemer.
Figures 43-46 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 43-46 Female genitalia (signum). 43Caryocolum schleichi, Syria, slide GU 86/277 P. Huemer; 44C. dianthella, Spain, slide GEL 1285 P. Huemer; 45C. improvisella, Italy, slide GEL 1291 P. Huemer; 46C. arenariella, Sweden, slide GEL 1292 P. Huemer.
Figure 2 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figure 2 Neighbor-Joining tree of species in the Caryocolum schleichi species group (Kimura 2 parameter, built with MEGA 6 cf. Tamura et al. 2013), only sequences (>500 bp) considered. Note: the scale bar only applies to internal branches between species. Width of triangles represent sample size, depth the genetic variation within the cluster. Source: DNA Barcode data from BOLD (Barcode of Life Database, cf. Ratnasingham and Hebert 2007).
Figures 31- 32 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 31- 32 Female genitalia. 31Caryocolum improvisella, Italy, slide GEL 1291 P. Huemer; 32C. arenariella, Sweden, slide GEL 1292 P. Huemer.
Figures 47-49 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 47-49 Female genitalia (signum). 47Caryocolum messneri, paratype, Italy, slide GEL 1295 P. Huemer; 48C. lamai, paratype, Italy, slide GEL 1286 P. Huemer; 49C. habeleri, paratype, Germany, slide M 1703.
Figures 36-39 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 36-39 Female genitalia (segment VIII). 36Caryocolum schleichi, Syria, slide GU 86/277 P. Huemer; 37C. dianthella, Spain, slide GEL 1285 P. Huemer; 38C. improvisella, Italy, slide GEL 1291 P. Huemer; 39C. arenariella, Sweden, slide GEL 1292 P. Huemer.
Figures 17-20 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 17-20 Male genitalia. 17Caryocolum arenariella, Russia, slide GEL 1260 P. Huemer; 18C. messneri, holotype, Italy, slide GEL 1255; 19C. lamai, paratype, Italy, slide GEL 1258 P. Huemer; 21C. habeleri, paratype, France, slide GEL 1289 P. Huemer.
Figures 33-35 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 33-35 Female genitalia. 33Caryocolum messneri, paratype, Italy, slide GEL 1295 P. Huemer; 34C. lamai, paratype, Italy, slide GEL 1286 P. Huemer; 35C. habeleri, paratype, Germany, slide M 1703.
Figures 40-42 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 40-42 Female genitalia (segment VIII). 40Caryocolum messneri, paratype, Italy, slide GEL 1295 P. Huemer; 41C. lamai, paratype, Italy, slide GEL 1286 P. Huemer; 42C. habeleri, paratype, Germany, slide M 1703.
Figures 25-28 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 25-28 Male genitalia (details vinculum-valva-complex). 25Caryocolum arenariella, Russia, slide GEL 1260 P. Huemer; 26C. messneri, holotype, Italy, slide GEL 1255; 27C. lamai, paratype, Italy, slide GEL 1258 P. Huemer; 28C. habeleri, paratype, France, slide GEL 1289 P. Huemer.
Figures 13-16 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figures 13-16 Male genitalia. 13Caryocolum schleichi, Syria, slide GU 86/273 P. Huemer; 14C. dianthella, Spain, slide GEL 1284 P. Huemer; 15C. improvisella, Austria, slide GEL 1256 P. Huemer; 16C. improvisella, Italy, slide GEL 1290 P. Huemer.
Figure 1 from: Huemer P (2020) Integrative revision of the Caryocolum schleichi species group – a striking example of a temporally changing species concept (Lepidoptera, Gelechiidae). Alpine Entomology 4: 39-63. https://doi.org/10.3897/alpento.4.50703
Figure 1 Distribution map of successfully sequenced material of the C. schleichi species group. Map created with SimpleMappr (http://www.simplemappr.net).
Figures 15-17 in The first lowland species of the Holarctic alpine ground spider genus Parasyrisca (Araneae, Gnaphosidae) from Hungary
Figures 15-17. Seasonal vegetation changes on the habitat of Parasyrisca arrabonica: 15 summer vegetation dominated by the late-coming pink (Dianthus serotinus) 16 winter vegetation of the habitat 17 spring vegetation characterized by different feather grasses (Stipa capillata, S. borysthenica).
Figures 10-11 in The first lowland species of the Holarctic alpine ground spider genus Parasyrisca (Araneae, Gnaphosidae) from Hungary
Figures 10-11. Parasyrisca arrabonica Szinetár & Eichardt, sp. n. male bulb, close-ups: 10 male pedipalp, ventral view, close-up 11 bulbus, prolateral view, conductor removed (c – conductor, e – embolus, ta – terminal apophysis), showing the long embolus and base of the terminal apophysis.
Figure 3 from: Liu M, Li Z, Wei M (2020) Key to the Macrophya zhaoae group (Hymenoptera, Tenthredinidae) with description of a new species from China. Alpine Entomology 4: 65-72. https://doi.org/10.3897/alpento.4.48232
Figure 3 a, b. Habitat of the new species: the collection site at Mt. Jiulong in Zhejiang Province, China.
Figure 1 from: Liu M, Li Z, Wei M (2020) Key to the Macrophya zhaoae group (Hymenoptera, Tenthredinidae) with description of a new species from China. Alpine Entomology 4: 65-72. https://doi.org/10.3897/alpento.4.48232
Figure 1 Macrophya lishuii sp. nov., ♀, holotype. a. Female adult, dorsal view; b. Female adult, lateral view; c. Head of female, dorsal view; d. Head of female, frontal view; e. Mesopleuron and metapleuron of female; f. Antenna of female, lateral view; g. Ovipositor sheath, lateral view; h. Abdomen, lateral view; i. Hind tarsus and claw of female, lateral view; j. Lancet; k. The 7th–9th serrulae. Scale bars: 2 mm (a); 200 µm (j); 50 µm (k).
Abbildung 1-4 from: Gaedike R, Bryner R (2020) Nemapogon helveticola sp. nov. aus der Schweiz (Lepidoptera, Tineidae). Alpine Entomology 4: 73-79. https://doi.org/10.3897/alpento.4.51727
Abbildung 1-4 Fundort von Nemapogon helveticola: schattigfeuchter Eschenwald in steiler Nordhanglage auf 500–600 m Höhe.
Supplementary material 1 from: Sanchez A, Chittaro Y, Germann C, Knížek M (2020) Annotated checklist of Scolytinae and Platypodinae (Coleoptera, Curculionidae) of Switzerland. Alpine Entomology 4: 81-97. https://doi.org/10.3897/alpento.4.50440
File S1.
Figure 1 from: Sanchez A, Chittaro Y, Germann C, Knížek M (2020) Annotated checklist of Scolytinae and Platypodinae (Coleoptera, Curculionidae) of Switzerland. Alpine Entomology 4: 81-97. https://doi.org/10.3897/alpento.4.50440
Figure 1 Habitus of six rare species of Scolytinae present in Switzerland: A) Pityophthorus buyssoni buyssoni, B) Taphrorychus siculus, C) Thamnurgus kaltenbachii, D) Polygraphus subopacus, E) Scolytus kirschii kirschii, F) Xyleborus cryptographus (Photos A. Sanchez).
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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)
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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.