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Figure 1 in Subspeciation befogged by the ''Seligmann effect'': the case of Laudakia stellio (Reptilia: Sauria: Agamidae) in southern Sinai, Egypt
Figure 1. Morphological PCA analysis of ''Laudakia stellio brachydactyla'' sensu lato from the Negev (Israel) and Sinai (Egypt), including original-tailed and regenerated-tailed specimens. (A) Males (N531); (B) females (N525).
Figure 2 in Subspeciation befogged by the ''Seligmann effect'': the case of Laudakia stellio (Reptilia: Sauria: Agamidae) in southern Sinai, Egypt
Figure 2. Map of the study area (from Werner 1988) delimited towards north by a broken line and subdivided by a second broken line into northern ''Negev'' and southern ''Sinai'', with localities of the focal specimens (solid circles) and human settlements for orientation (open squares), explained in Werner (1987, 1988).
Figure 3 in Subspeciation befogged by the ''Seligmann effect'': the case of Laudakia stellio (Reptilia: Sauria: Agamidae) in southern Sinai, Egypt
Figure 3. Morphological PCA analysis of ''Laudakia stellio brachydactyla'' sensu lato from the Negev (Israel) and Sinai (Egypt), including only original-tailed specimens. (A) Males (N520); (B) females (N516).
Figs 1-9 in Two new species and subspecies of Leptusa from Nepal and Montenegro (Coleoptera: Staphylinidae, Aleocharinae)
Figs 1-9: Leptusa abdominalis mikii nov.ssp.: (1) habitus; (2) forebody; (3) male tergite VIII; (4) male sternite VIII; (5) median lobe of aedeagus in lateral view; (6) apical portion of median lobe of aedeagus in ventral view; (7) female tergite VIII; (8) female sternite VIII; (9) spermatheca. Scale bars: 1: 0.5 mm; 2-8: 0.2 mm; 9: 0.1 mm.
Fig. 29 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 29: Index spectrum (boxplots) of HL/HW index (head length to width) of the different taxa. Groups with the same letter are not significantly different. In the case of groups of two letters, significance exists only with one group identified by a single letter. Significance levels: * p <= 0,05; ** p <= 0,01; *** p <= 0,001; ns = not significant.
Fig. 32 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 32: Shape PC1 plotted against shape PC2 and the two best plotted ratios of morphometric features: (a) Andrena acuta – A. catula, (b) A. acuta – A. dourada, (c) A. acuta – A. g. palmae, (d) A. acuta – A. lineolata, (e) A. acuta – A. tiaretta, and (f) A. acuta – A. wollastoni.
Fig. 36 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 36: Shape PC1 plotted against shape PC2 and the two best plotted ratios of morphometric features: (a) Andrena a. acuta – A. g. palmae, (b) A. a. tenoensis – A. a. wildpreti, (c) A. a. tenoensis – A. g. gomerensis, (d) A. a. tenoensis – A. g. palmae, (e) A. g. gomerensis – A. a. wildpreti, (f) A. g. palmae – A. a. wildpreti.
Fig. 35 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 35: Shape PC1 plotted against shape PC2 and the two best plotted ratios of morphometric features: (a) A. lineolata – A. tiaretta, (b) A. lineolata – A. wollastoni, (c) A. tiaretta – A. wollastoni, (d) A. a. acuta – A. a.tenoensis, (e) A. a. acuta – A. wildpreti, and (f) A. a. acuta – A. g. gomerensis.
Fig. 34 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 34: Shape PC1 plotted against shape PC2 and the two best plotted ratios of morphometric features: (a) A. dourada – A. lineolata, (b) A. dourada – A. tiaretta, (c) A. dourada – A. wollastoni, (d) A. gomerensis – A. lineolata, (e) A. gomerensis – A. tiaretta, and (f) A. gomerensis – A. wollastoni.
Fig. 27 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 27: Body length spectrum (boxplots) of the different taxa. Groups with the same letter are not significantly different. In the case of groups of two letters, significance exists only with one group identified by a single letter. Significance levels: * p <= 0,05; ** p <= 0,01; *** p <= 0,001; ns = not significant.
Fig. 26 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 26: Type specimen (lectotype) of Andrena wollastoni COCKERELL, 1922 (NHMUK). Photos by D. Notton: (a) habitus, dorsal view. (b) register label, syntype label, lectotype label, type number label, barcode number. (c) habitus, lateral view. (d) head, frontal view. (e) scopa.
Fig. 24 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 24: Type specimen (holotype, male) of Andrena tiaretta WARNCKE, 1974 (OLML Nr. 6952716; ZOBODAT, 05.02.2020; biogeographical data set). (a) habitus, dorsal view. (b) type label. (c) head, frontal view. (d) head, dorsal view. (e) mesosoma. (f) metasoma.
Fig. 25 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 25: Type specimen (holotype, male) of Andrena tiaretta WARNCKE, 1974 (OLML Nr. 6952716; ZOBODAT, 05.02.2020; biogeographical data set). (a) upper face with rugulae. (b) clypeus. (c)
Fig. 23 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 23: Type specimen (paratype, female) of Andrena tiaretta WARNCKE, 1974 (OLML Nr. 6952717; ZOBODAT, 05.02.2020; biogeographical data set). (a) upper face with rugulae. (b) clypeus. (c) scutellum. (d) propodeum. (e) scopa. (f) metasoma.
Fig. 22 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 22: Type specimen (paratype, female) of Andrena tiaretta WARNCKE, 1974 (OLML Nr. 6952717; ZOBODAT, 05.02.2020; biogeographical data set). (a) habitus, dorsal view. (b) type label. (c) head, frontal view (d) head, dorsal view. (e) mesosoma. (f) metasoma.
Fig. 18 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 18: Type specimen (holotype, female) of Andrena lineolata WARNCKE, 1968 (OLML Nr. 6952456; ZOBODAT, 05.02.2020; biogeographical data set). (a) habitus, dorsal view. (b) type label. (c) head, frontal view. (d) head, dorsal view.
Fig. 16 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 16: Type specimen (paratype, male) of Andrena gomerensis WARNCKE, 1993 (OLML Nr. 6952778; ZOBODAT, 05.02.2020; biogeographical data set). (a) habitus dorsal. (b) type label. (c) head frontal. (d) head dorsal. (e) mesosoma. (f) metasoma.
Fig. 11 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 11: Type specimen (holotype, female) of Andrena dourada KRATOCHWIL & SCHEUCHL, 2014 (OLML Nr. 100415554; ZOBODAT, 05.02.2020; biogeographical data set). (a) habitus, dorsal view. (b) type label. (c) head, frontal view. (d) head, dorsal view. (e) mesosoma. (f) propodeum.
Fig. 5 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig. 5: Type specimen (paratype, male) of Andrena acuta wildpreti nov.ssp. (OLML Nr. 6952775; ZOBODAT, 05.02.2020; biogeographical data set). (a) habitus dorsal. (b) type label. (c) head frontal. (d) head dorsal. (e) mesosoma. (f) metasoma.
Fig 1 in Revision of the Andrena wollastoni group (Hymenoptera, Anthophila, Andrenidae) from the Madeira Archipelago and the Canary Islands: upgrading of three former subspecies and a description of three new subspecies
Fig 1: (a) Topographical location (with °North and °West of latitude and longitude) of the Azores, the Archipelago of Madeira, the Selvagens Islands, the Canary Islands and Cape Verde. (b) Islands of the Madeira Archipelago. (c) The Western Canary Islands and four areas of Tenerife (Anaga, Teno, Las Cañadas/Teide and the Dorsal Rift region). Modified according to AGUIAR & KARSHOLT (2006).
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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.