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562 results for “Bumblebee”
FIGURE 9 in Cryptic species among bumblebee mimics: an unrecognized Hemaris hawkmoth (Lepidoptera: Sphingidae) in eastern North America
FIGURE 9. Distribution of examined specimens of H. aethra. Associated specimen data is provided in Appendix 1.
FIGURE 1 in Cryptic species among bumblebee mimics: an unrecognized Hemaris hawkmoth (Lepidoptera: Sphingidae) in eastern North America
FIGURE 1. Molecular phylogeny of representative Hemaris diffinis-group COI 'barcode' haplotypes, as inferred using Maximum Likelihood and Bayesian Inference methods. Bootstrap values (500 replicates) and posterior probabilities are shown above branches. Hemaris diffinis (sensu stricto) haplotypes are represented by two clades, D1.x and D2.x, H. aethra (A.x) and H. thetis (T.x) by one clade each.
FIGURE 2 in Cryptic species among bumblebee mimics: an unrecognized Hemaris hawkmoth (Lepidoptera: Sphingidae) in eastern North America
FIGURE 2. Geographic distribution of Hemaris diffinis-group mtDNA clades in eastern North America. Hemaris diffinis is represented by two haplotypes of two clades, D1 (black circles) and D2 (white circles), and H. aethra is represented by a single clade (triangles).
Supplementary material 1 from: Potapov G, Kondakov A, Kolosova Y, Tomilova A, Filippov B, Gofarov M, Bolotov I (2018) Widespread continental mtDNA lineages prevail in the bumblebee fauna of Iceland. ZooKeys 774: 141-153. https://doi.org/10.3897/zookeys.774.26466
Table S1 : Explanation note: List of additional COI sequences of Bombus species obtained from GenBank or BOLD, including taxon, accession number, specimen code, locality information and data source.
Supplementary material 7 from: Polce C, Maes J, Rotllan-Puig X, Michez D, Castro L, Cederberg B, Dvorak L, Fitzpatrick Ú, Francis F, Neumayer J, Manino A, Paukkunen J, Pawlikowski T, Roberts S, Straka J, Rasmont P (2018) Distribution of bumblebees across Europe. One Ecosystem 3: e28143. https://doi.org/10.3897/oneeco.3.e28143
A table-like spreadsheet listing primary sources of bumblebee records used to derive the predictions presented in this paper.
Supplementary material 2 from: Polce C, Maes J, Rotllan-Puig X, Michez D, Castro L, Cederberg B, Dvorak L, Fitzpatrick Ú, Francis F, Neumayer J, Manino A, Paukkunen J, Pawlikowski T, Roberts S, Straka J, Rasmont P (2018) Distribution of bumblebees across Europe. One Ecosystem 3: e28143. https://doi.org/10.3897/oneeco.3.e28143
Table S II.1: Land use / land cover (LULC) predictors with reference to the original CORINE land cover classes.
Supplementary material 6 from: Polce C, Maes J, Rotllan-Puig X, Michez D, Castro L, Cederberg B, Dvorak L, Fitzpatrick Ú, Francis F, Neumayer J, Manino A, Paukkunen J, Pawlikowski T, Roberts S, Straka J, Rasmont P (2018) Distribution of bumblebees across Europe. One Ecosystem 3: e28143. https://doi.org/10.3897/oneeco.3.e28143
Pages 2 to 48: two maps on each page, showing input species occupancies and predicted probability of occurrence, for 47 species of bumblebees.
Supplementary material 1 from: Polce C, Maes J, Rotllan-Puig X, Michez D, Castro L, Cederberg B, Dvorak L, Fitzpatrick Ú, Francis F, Neumayer J, Manino A, Paukkunen J, Pawlikowski T, Roberts S, Straka J, Rasmont P (2018) Distribution of bumblebees across Europe. One Ecosystem 3: e28143. https://doi.org/10.3897/oneeco.3.e28143
List of bumblebee species for which a distribution model was derived and list of those excluded. Occupancy refers to the presence of at least one species' record for each 10-km grid cell. Prevalence is a parameter used by Maxent and was derived following Polce et al. (2013).
FIGURES 38–42 in Review of some mites (Acari: Laelapidae) associated with ants and bumblebees in Western Siberia, Russia
FIGURES 38–42. DIC micrographs of Holostaspis isotricha, female. 38, idiosoma in dorsal view; 39, idiosoma in ventral view; 40, subcapitulum; 41, epistome; 42, chelicera.
FIGURES 21–25 in Review of some mites (Acari: Laelapidae) associated with ants and bumblebees in Western Siberia, Russia
FIGURES 21–25. Cosmolaelaps siberiensis Joharchi sp. nov., female. 21, dorsal idiosoma; 22, ventral idiosoma; 23, epistome; 24, subcapitulum; 25, chelicera.
FIGURES 1–4 in Review of some mites (Acari: Laelapidae) associated with ants and bumblebees in Western Siberia, Russia
FIGURES 1–4. DIC micrographs of Androlaelaps myrmecophilus, female. 1, idiosoma in dorsal view; 2, idiosoma in ventral view; 3, setae Z5; 4, chelicera.
FIGURES 26–34 in Review of some mites (Acari: Laelapidae) associated with ants and bumblebees in Western Siberia, Russia
FIGURES 26–34. DIC micrographs of Cosmolaelaps siberiensis sp. nov., female. 26, idiosoma in dorsal view; 27, idiosoma in ventral view; 28, general view of some dorsal setae, 29, genital and anal shields, general view of some opisthogastric setae; 30, genital and sternal shields; 31, epistome; 32, subcapitulum; 33, chelicera, fixed digit; 34, palp and apotel.
FIGURES 56–61 in Review of some mites (Acari: Laelapidae) associated with ants and bumblebees in Western Siberia, Russia
FIGURES 56–61. DIC micrographs of Pneumolaelaps hyatti, female. 56, idiosoma in dorsal view; 57, idiosoma in ventral view; 58, stigma and post-stigmatic section; 59, subcapitulum; 60, epistome; 61, femur and tibia of legs I & II.
FIGURES 50–55 in Review of some mites (Acari: Laelapidae) associated with ants and bumblebees in Western Siberia, Russia
FIGURES 50–55. DIC micrographs of Holostaspis isotricha, female. 50, idiosoma in dorsal view; 51, idiosoma in ventral view; 52, genital and anal shields, general view of some opisthogastric setae; 53, subcapitulum; 54, epistome; 55, chelicera, movable digit.
FIGURES 152‒153 in The arctic and alpine bumblebees of the subgenus Alpinobombus revised from integrative assessment of species' gene coalescents and morphology (Hymenoptera, Apidae, Bombus)
FIGURES 152‒153. Reconstruction of ancestral states by parsimony in Mesquite for two colour-pattern characters each with two states among species based on the estimate of phylogeny in Fig. 138, several of which are polymorphic and show both states for both characters (re-drawn from Williams et al. 2015): (152) banding colour pattern, with yellow spots showing yellow-banded (B) populations (minimally with yellow hair clearly visible anteriorly on the thoracic dorsum), black spots showing unbanded (U) populations, mixed yellow/black spots showing polymorphic populations, mixed yellow/grey spots showing uncertain polymorphic/monomorphic populations (*for B. alpinus, males from the Alps often have a yellow-banded pattern although this is rare among females); (153) tail colour pattern, with orange spots showing populations with pale (P: orange or white) hair on the tail (minimally with orange, yellow, or while hair clearly visible on metasomal tergum 5), black spots showing populations with dark (D: black) hair on the tail, mixed orange/black spots showing polymorphic populations.
FIGURES 148‒149 in The arctic and alpine bumblebees of the subgenus Alpinobombus revised from integrative assessment of species' gene coalescents and morphology (Hymenoptera, Apidae, Bombus)
FIGURES 148‒149. Anterior / left lateral aspect of the lower part of the clypeus, the labrum, and the mandibles of males of: (148) B. neoboreus (#4867), showing the small orange hair patches at the base of the mandibles and the long dense posterior fringing black beard; (149) B. kluanensis (#4876), showing the large dense orange hair pads on the mandibles and the sparse orange hairs in the posterior fringing beard.
FIGURES 150‒151 in The arctic and alpine bumblebees of the subgenus Alpinobombus revised from integrative assessment of species' gene coalescents and morphology (Hymenoptera, Apidae, Bombus)
FIGURES 150‒151. Maps of (150) specimen richness and (151) species richness for the subgenus Alpinobombus among equalarea grid cells recorded from 4450 geo-referenced specimens in the database. The grid is based on longitudinal intervals of 10°, which are used to calculate graduated latitudinal intervals to provide equal-area cells (each cell of area approximately 611,000 km²). Grey scale (right) with equal-frequency richness classes, maximum value in a separate class. Cylindrical orthomorphic equal-area projection (excluding Antarctica) with north at the top of the map.
FIGURES 144‒147 in The arctic and alpine bumblebees of the subgenus Alpinobombus revised from integrative assessment of species' gene coalescents and morphology (Hymenoptera, Apidae, Bombus)
FIGURES 144‒147. Morphology of males. Dorsal aspect of the penis valves of: 144, B. natvigi; 145, B. neoboreus (white lines indicate location of the subapical outer tooth of the left penis valve). Dorsal aspect of left gonostylus: 146 B. kirbiellus; 147, B. polaris (white lines indicate anterior, midpoint, and posterior median projections of left gonostylus).
FIGURES 140‒143 in The arctic and alpine bumblebees of the subgenus Alpinobombus revised from integrative assessment of species' gene coalescents and morphology (Hymenoptera, Apidae, Bombus)
FIGURES 140‒143. Morphology of females (queens). Left lateral aspect of the oculo-malar area of: 140, B. polaris; 141, B. kirbiellus (white lines indicate length and breadth measurements). Left lateral aspect of the outer surface of the left hind tibia (corbicular area): 142, B. polaris; 143, B. neoboreus (white lines indicate highlights in the central area).
FIGURE 138 in The arctic and alpine bumblebees of the subgenus Alpinobombus revised from integrative assessment of species' gene coalescents and morphology (Hymenoptera, Apidae, Bombus)
FIGURE 138. Dated estimate of the phylogenetic tree for the species of the subgenus Alpinobombus (Table 5) from a *BEAST analysis of four genes (COI, 16S, PEPCK, opsin) using species from the integrative assessment and with B. ignitus as the outgroup (not shown). Values above the nodes are Bayesian posterior probabilities showing branch support for groups. Values below the nodes are estimated dates of divergence in Ma (millions of years before the present) calibrated from a molecular estimate for the date of crown divergence within the subgenus Alpinobombus (Hines 2008). Grey bars show the 95% confidence limits on the estimated dates of divergence.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.