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346 results for “Cicindelinae”
Fig. 6 in Biology and Conservation of Cicindela ohlone Freitag and Kavanaugh (Coleoptera: Carabidae: Cicindelinae), the Endangered Ohlone Tiger Beetle. II. Population Ecology of Adults and Larvae and Recommended Monitoring Methods
Fig. 6. Inverse correlation between annual (July 1 – June 30) rainfall amounts (cm) and estimated Ohlone tiger beetle (OTB) adult generation population sizes for Moore Creek, Santa Cruz Co., CA.
Fig. 5. Annual Ohlone tiger beetle adult generation population estimates from 2000 through 2017 in Biology and Conservation of Cicindela ohlone Freitag and Kavanaugh (Coleoptera: Carabidae: Cicindelinae), the Endangered Ohlone Tiger Beetle. II. Population Ecology of Adults and Larvae and Recommended Monitoring Methods
Fig. 5. Annual Ohlone tiger beetle adult generation population estimates from 2000 through 2017 at four study sites near Santa Cruz, CA. Horizontal line represents the average generation size of all annual estimates for each site.
Fig. 1. A in The Tiger Beetle Therates alboobliquatus W. Horn, 1909 (Coleoptera: Carabidae: Cicindelinae) Spends Its Immature Stages Inside Rotting Wood
Fig. 1. A) Typical environment in which Therates alboobliquatus adults and larvae were observed, B) Adult female ovipositing in rotting wood (scale bar = 5 mm), C) Egg found inside a piece of rotting wood (scale bar = 1 mm), D) Larva inside a piece of rotting wood (scale bar = 10 mm).
Fig. 4. 1938 in Determining Type Locality Habitat and Historic Land Use at Current Sites of the Miami Tiger Beetle, Cicindelidia floridana (Cartwright) (Coleoptera: Carabidae: Cicindelinae)
Fig. 4. 1938 aerial photograph of Richmond pine rocklands and vicinity. White rectangle indicates location of Fig. 5A–D. Pine rockland forests are visible on elevated terrain (diagonally from upper right to lower left), largely adjacent to riverbeds and interspersed with agricultural development (in the lower left quarter).
Fig. 3. Terrestrial photographs from 1940 in Determining Type Locality Habitat and Historic Land Use at Current Sites of the Miami Tiger Beetle, Cicindelidia floridana (Cartwright) (Coleoptera: Carabidae: Cicindelinae)
Fig. 3. Terrestrial photographs from 1940 at the site of Barry University. Photographs provided by Barry University Archives and Special Collections.
Fig. 2 in Determining Type Locality Habitat and Historic Land Use at Current Sites of the Miami Tiger Beetle, Cicindelidia floridana (Cartwright) (Coleoptera: Carabidae: Cicindelinae)
Fig. 2. Peter's (1981) "island" (outlined area), type locality of Cicidelidia floridana (circle), and approximate location of Fig. 3 (star). A) 1940 aerial photograph, B) 1950 aerial photograph. Satellite image underlay courtesy of Google Earth.
Fig. 5 in Determining Type Locality Habitat and Historic Land Use at Current Sites of the Miami Tiger Beetle, Cicindelidia floridana (Cartwright) (Coleoptera: Carabidae: Cicindelinae)
Fig. 5. Cicindelidia floridana occurrences projected on Richmond pine rocklands. A) 1938 aerial photograph, B) 1952 aerial photograph (arrows indicate areas of modified substrate without canopy), C) 1963 aerial photograph (stars approximately indicate areas with little or no canopy), D) 2017 satellite imagery, courtesy of Google Earth.
Figure 7 in Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery
Figure 7. Labial palps of: A, D. pruininus; B, D. belfragei; C, D. knisleyi sp. nov. A and B illustrate labial palps with a contrasting darker apical segment, and C illustrates labial palps that are consistently dark throughout.
Figure 3 in Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery
Figure 3. Distribution of sampled Dromochorus populations. Colours correspond to those used in Figure 1. Green = D. pilatei, pink = D. welderensis sp. nov., sky blue = D. velutinigrens, red = D. chaparralensis sp. nov., blue = D. pruininus, lime green = D. knisleyi sp. nov., orange = D. minimus sp. nov., black = D. belfragei.
Figure 1 in Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery
Figure 1. Number of new North American tiger beetle species described by decade, from 1766 to the present, as generally accepted in recent treatments of the North American fauna (e.g. Freitag, 1999; Pearson et al., 2006; Pearson et al., 2015).
Figure 6 in Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery
Figure 6. Boxplots, by species, from morphometric data used in principal component analyses (PCA) for each of 411 individuals. PCA indicated three measurements: PC1, overall body length; PC2, shape of the pronotum; and PC3, elytral length to body length ratio, to explain 92–95% of the total variation in the dataset. Shown are targeted comparisons among two main phylogenetic groups: 1, the D. minimus–D. velutinigrens–D. welderensis–chaparralensis group; and 2, the D. knisleyi– D. belfragei–D. pruininus clade. Species labelled with the same letters did not differ significantly from each other, species labelled with 'ab' did not differ between other species which were significantly different. Percentages are relative contributions per analyses, and group; outliers are shown as black dots.
Figure 8. A in Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery
Figure 8. A, Elytra showing distinct punctures (foveae) running parallel to the suture of the elytra (D. knisleyi sp. nov.). B, lack of distinct subsutural foveae (D. welderensis sp. nov.).
Figure 4 in Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery
Figure 4. Unrooted population-level tree based on 61 890 GBS loci, constructed using the Fitch–Margoliash method in PHYLIP. Each branch of the tree represents a single geographic locality. Colours are as in Figures 2, 3.
Figure 5 in Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery
Figure 5. STRUCTURE plots based on dataset of 5000 random GBS loci. Each locus was present in at least two populations and present at greater than 75% of individuals in those populations. K-values determined by STRUCTURE Harvester (Earl & vonHoldt, 2012) are shown at left of the population assignments for each value, and as delta-K estimations across all values. The collection localities that correspond to the columnar groups of specimens determined by the population assignments appear at bottom with the end of the phrase adjacent to its columnar group in all assignments. Left panel, K = 2–4 for 'velutinigrens group'. Delta-K plot indicated that K = 4 is the best supported explanation for the data. Right panel, K = 2–5 for 'belfragei group'. Delta-K plot indicated that K = 4 is the best-supported explanation for the data.
Figure 9 in Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery
Figure 9. Dorsal habitus for species of Dromochorus. A, D. pruininus; B, D. belfragei; C, D. knisleyi sp. nov.; D, D. minimus sp. nov.; E, D. chaparralensis sp. nov.; F, D. welderensis sp. nov.; G, D. velutinigrens; H, D. pilatei.
Figure 2B in Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery
Figure 2B. This section of the mitochondrial genealogy focuses on clades historically considered to be part of a single species: Dromochorus belfragei. Notable is the mixed clade of specimens of D. knisleyi and D. belfragei collected from the only area where both species are known to occur.
Figure 2A in Cryptic diversity in the North American Dromochorus tiger beetles (Coleoptera: Carabidae: Cicindelinae): a congruence-based method for species discovery
Figure 2A. Mitochondrial DNA (mtDNA) cytochrome oxidase b (Cytb) Bayesian genealogy of all members of the genus Dromochorus. Outgroups include North American representatives of Cylindera and Cicindelidia. On the left is a reduced version of the full tree indicating clades shown, in detail, in each figure. Colours are arbitrarily chosen to show distinctions among the taxa, and directly correspond to populations shown in Figure 3. Only posterior support values above 60 are displayed, and the scale bar at bottom shows a branch length representing nucleotide substitutions per site. Taxon names include the unique specimen number (see also Supporting Information, Table S1), along with the state and collection locality; genomic material from specimens marked with a ~ were also used in the multilocus analysis (Figure 4), and holotypes of species described in this work are marked with an 'H'. The longitudinal bars on the right identify specimens and clades historically considered to be a single species.
Figure 7 from: Duran DP, Roman SJ (2019) A new petrophilous tiger beetle from the Trans-Pecos region of Texas and revised key to the genus Amblycheila (Coleoptera, Carabidae, Cicindelinae). ZooKeys 893: 125-134. https://doi.org/10.3897/zookeys.893.47059
Figure 7 Lateral habitus. AAmblycheila katzi, sp. nov. male with elytra gradually tapering towards apex BA. schwarzi. male with elytral bulge and steep decline towards apex.
Figure 5 from: Duran DP, Roman SJ (2019) A new petrophilous tiger beetle from the Trans-Pecos region of Texas and revised key to the genus Amblycheila (Coleoptera, Carabidae, Cicindelinae). ZooKeys 893: 125-134. https://doi.org/10.3897/zookeys.893.47059
Figure 5 Elytral texture. A Dense pinpoint punctures present, without rows of larger punctae (A. cylindriformis) B with larger punctae loosely arranged into rows (A. hoversoni).
Figure 4 from: Duran DP, Roman SJ (2019) A new petrophilous tiger beetle from the Trans-Pecos region of Texas and revised key to the genus Amblycheila (Coleoptera, Carabidae, Cicindelinae). ZooKeys 893: 125-134. https://doi.org/10.3897/zookeys.893.47059
Figure 4 Carinae (pleats) present on Amblycheila elytra. A two distinct carinae (A. nyx) B three distinct carinae (A. halffteri).
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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.