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Fig. 9 in Description of two new species similar to Anolis insignis (Squamata: Iguanidae) and resurrection of Anolis (Diaphoranolis) brooksi
Fig. 9. Box plots showing variation between Anolis insignis (i), A. brooksi (b), A. kathydayae (k), and A. savagei (s). Traits are number of scales between interparietal and supraorbital semicircles (ip), number of expanded lamellae on fourth toe (lm), number of loreal rows (lr), number of postmental scales (pm), number of postrostral scales (pr), number of scales across the snout between the second canthals (sc), number of scales between the supraorbital semicircles (so), number of supralabial scales from rostral to center of eye (sl), snout to vent length (sv), head length relative to sv (hl), femoral length relative to sv (fl), tail length relative to sv (ta), toe length relative to sv (to), ear height relative to sv (eh), number of longitudinal dorsal scales in 5% of sv (d5), number of longitudinal ventral scales in 5% of sv (v5).
Fig. 5 in Description of two new species similar to Anolis insignis (Squamata: Iguanidae) and resurrection of Anolis (Diaphoranolis) brooksi
Fig. 5. Dorsal headscales of A) Anolis kathydayae, MSB 96613; B) A. brooksi, MSB 75647 C) A. savagei, MSB 96616; D) A. insignis LACM 149500.
Fig. 3 in Description of two new species similar to Anolis insignis (Squamata: Iguanidae) and resurrection of Anolis (Diaphoranolis) brooksi
Fig. 3. Graph of principal components 1 and 2 for traits used in MRPP analysis of species of Anolis studied here, labeled by A) sex and B) putative species.
Fig. 8 in Description of two new species similar to Anolis insignis (Squamata: Iguanidae) and resurrection of Anolis (Diaphoranolis) brooksi
Fig. 8. Map of Panama and Costa Rica, showing localities for specimens referenced in text. Type localities are in red. Black symbols are specimens examined (type locality specimens also were examined for all species). Gray symbols represent unexamined specimens or photographic evidence discussed in text. Each point may represent multiple individuals (see text).
Fig. 6 in Description of two new species similar to Anolis insignis (Squamata: Iguanidae) and resurrection of Anolis (Diaphoranolis) brooksi
Fig. 6. Adult male individuals of A) Anolis brooksi, El Copé, Panama; B) A. savagei, Las Cruces, Costa Rica; C) A. kathydayae, Fortuna, Panama.
Figure 1 in Integrative taxonomy of two morphologically similar species of the subgenus Cryobius Chaudoir, 1838 (Coleoptera: Carabidae: Pterostichus Bonelli, 1810) from northern Eurasia and North America
Figure 1. Males of Pterostichus (Cryobius) kolymensis with genital structures (median lobe of aedeagus in right lateral aspect, right and left parameres): A – holotype (Kolyma Lowland, near Chersky settlement, collected by S. Kolesnikov); B – paratype (Kolyma Lowland, near Krestovka River, collected by S. Kiselev); C – paratype (western Chukotka, near Valkumey settlement, collected by S. Kiselev). The photos are taken by N.A. Zubrii. Scale bars: 5 mm for the body and 1 mm for the structures of genitalia.
Figure 3 in Integrative taxonomy of two morphologically similar species of the subgenus Cryobius Chaudoir, 1838 (Coleoptera: Carabidae: Pterostichus Bonelli, 1810) from northern Eurasia and North America
Figure 3. Scatter plots of principal component (PC) scores of the specimens on the first two axes for the shapes of the pronotum (A), median lobe of the aedeagus (B), and apex of the median lobe of the aedeagus (C) of P. (C.) mandibularoides (red color – population from Chukotka; blue color – population from Yakutia) and P. (C.) kolymensis (grey color) (H – holotype). The reconstructed outlines with the standard deviations (±2 S.D.) for the analysed morphological structures are shown in the individual plots.
Figure 2 in Integrative taxonomy of two morphologically similar species of the subgenus Cryobius Chaudoir, 1838 (Coleoptera: Carabidae: Pterostichus Bonelli, 1810) from northern Eurasia and North America
Figure 2. Median-joining haplotype network of the COI sequences of Pterostichus (Cryobius) mandibularoides dataset (n = 30). The red numbers near the branches indicate the number of nucleotide substitutions between haplotypes. The size of the circles corresponds to the number of available sequences for each haplotype (smallest circle = 1 sequence). See Table 1 for the list of sequences. The photo of a male specimen with genital structures (from left to right: median lobe of aedeagus in right lateral and ventral aspect, right and left parameres) is taken by N.A. Zubrii. Scale bars: 1 mm for the body and 0.5 mm for the structures of genitalia.
Fig. 2 in Lungworms (Metastrongylus spp.) and intestinal parasitic stages of two separated Swiss wild boar populations north and south of the Alps: Similar parasite spectrum with regional idiosyncrasies
Fig. 2. Wild boar lung with massive trauma after bullet penetration and visible bone fractures (A), dense nodule of the lobus caudalis dexter (B), and accumulation of nematodes in a bronchus (C).
Fig. 3 in Lungworms (Metastrongylus spp.) and intestinal parasitic stages of two separated Swiss wild boar populations north and south of the Alps: Similar parasite spectrum with regional idiosyncrasies
Fig. 3. Caudal ends of the 5 Metastrongylus species identified in this study: M. apri female (A) and male (B), M. asymmetricus female (C) and male (D), M. confusus female (E) and male (F), M. pudendotectus female (G) and male (H), M. salmi female (I) and male (J).
Fig. 1 in Lungworms (Metastrongylus spp.) and intestinal parasitic stages of two separated Swiss wild boar populations north and south of the Alps: Similar parasite spectrum with regional idiosyncrasies
Fig. 1. Map of Switzerland with sampling areas for the northern (Cantons of Aargau (AG), Schaffhausen (SH), Thurgau (TG) and Zürich (ZH)) and the southern (Canton of Ticino (TI)) wild boar population. N: number of lungs sampled.
Similarity of ORF genes grouped by chromosome without chromosome arm correction
Open the record for dataset details and reuse information.
Linked collectors and determiners for: A review of Labidostomis species similar to L. longimana from southeastern Europe with descriptions of two new species from Greece and Turkey (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini).
Natural history specimen data linked to collectors and determiners held within, "A review of Labidostomis species similar to L. longimana from southeastern Europe with descriptions of two new species from Greece and Turkey (Coleoptera: Chrysomelidae: Cryptocephalinae: Clytrini)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/9eb56102-4ed4-4fc6-a4e6-ee94a4b727e1">https://bionomia.net/dataset/9eb56102-4ed4-4fc6-a4e6-ee94a4b727e1</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/9eb56102-4ed4-4fc6-a4e6-ee94a4b727e1">https://gbif.org/dataset/9eb56102-4ed4-4fc6-a4e6-ee94a4b727e1</a>. Formatted as a Frictionless Data package.
Allen et al., Similarity of stream width distributions across headwater systems, data 2017
<p>These files contain the results from Allen et al. "Similarity of stream width distributions across headwater systems".</p> <p>locationStreamSurveys.zip : contains stream hydromorphology data collected in seven headwater catchments in North America and New Zealand.</p> <p>repeatStreamSurveys.zip : contains stream hydromorphology data collected in six repeat surveys in the Stony subcatchment in Duke Forest, NC. </p> <p>streamWidthModelOutput.zip : contains stream width model parameters and output data presented in Allen et al. </p> <p>Note: the code used to analyze these data can be found at https://github.com/geoallen/streamWidthAnalysis2017/</p> <p> </p>
FIG. 3. — Sinella colorata n in Two syntopic and remarkably similar new species of Sinella and Coecobrya from South China (Collembola, Entomobryidae)
FIG. 3. — Sinella colorata n. sp.: A, chaetotaxy of Abd. V; B, anterior face and lateral flap of ventral tube; C, posterior face of ventral tube; D, distal part of dens and mucro; A, macrochaetae and large ordinary chaetae represented by their sockets; s-chaetae represented in full. Scale bars: A, D, 25 μm; B, C, 10 μm.
FIG. 4. — Coecobrya mulun n in Two syntopic and remarkably similar new species of Sinella and Coecobrya from South China (Collembola, Entomobryidae)
FIG. 4. — Coecobrya mulun n. sp.: A, lateral process of labial palp; B, maxillary outer lobe; C, chaetae on labium and ventral side of the head; D, dorsal cephalic chaetotaxy; E, thoracic chaetotaxy; F, trochanteral organ; G, hind claw; H-J, abdominal chaetotaxy; H, Abd. I-III; I, Abd. IV; J, Abd. V; K, anterior face and lateral flap of ventral tube; L, posterior face of ventral tube; M, distal part of dens and mucro; D, E, H-J, macrochaetae and large ordinary chaetae represented by their sockets; s-chaetae represented in full. Scale bars: A-C, 10 μm; D, F, G, J-M, 25 μm; E, H, I, 50 μm.
FIG. 2. — Sinella colorata n in Two syntopic and remarkably similar new species of Sinella and Coecobrya from South China (Collembola, Entomobryidae)
FIG. 2. — Sinella colorata n. sp.: A, lateral process of labial palp; B, maxillary outer lobe; C, chaetae on labium and ventral side of the head; D, dorsal cephalic chaetotaxy (eyes are represented by their pigment trace, which has migrated anteriorly during the clearing process); E, thoracic chaetotaxy; F, trochanteral organ; G, hind claw in lateral view, with detail of basal teeth in dorsal view; H, I, abdominal chaetotaxy; H, Abd. I-III; I, Abd. IV; D, E, H, I, macrochaetae and large ordinary chaetae represented by their sockets; s-chaetae represented in full. Scale bars: A, B, 10 μm; C, D, F, G, 25 μm; E, H, I, 50 μm.
FIG. 1 in Two syntopic and remarkably similar new species of Sinella and Coecobrya from South China (Collembola, Entomobryidae)
FIG. 1. — Habitus of Collembola from South China: A, B, two views of Sinella colorata n. sp. (1.2 mm); C, D, two views of Coecobrya mulun n. sp. (1.3 mm).
Figs. 8-13 in Revision of the Central European species of Aclista (Diapriidae, Hymenoptera). Part II. Aclista insolita Nixon, 1957 Aclista dubia Kieffer, 1909 and similar species
Figs. 8-13. Head, dorsal view (female). 8 – Aclista insolita Nixon, 1957; 9 – A. vernalis sp. nov.; 10 – A. dubia Kieffer, 1909; 11 – A. longistilus Kieffer, 1909; 12 – A. marginalis Kieffer, 1909; 13 – A. elegantula sp. nov.; 14 – A. subtilis sp. nov. Scale = 1 mm.
Figs. 29-42. 29-35 in Revision of the Central European species of Aclista (Diapriidae, Hymenoptera). Part II. Aclista insolita Nixon, 1957 Aclista dubia Kieffer, 1909 and similar species
Figs. 29-42. 29-35 – fore wing venation (female). 29 – Aclista insolita Nixon, 1957; 30 – A. vernalis sp. nov.; 31 – A. dubia Kieffer, 1909; 32 – A. longistilus Kieffer, 1909; 33 – A. marginalis Kieffer, 1909; 34 – A. elegantula sp. nov.; 35 – A. subtilis sp. nov. 36-42 – proximal part of antenna, lateral view (male). 36 – A. insolita; 37 – A. vernalis sp. nov.; 38 – A. dubia; 39 – A. longistilus; 40 – A. marginalis; 41 – A. elegantula sp. nov.; 42 – A. subtilis sp. nov. Scale = 1 mm (Figs. 29-35) and 0.7 mm (Figs. 36-42).
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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.