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6,170 results for “european”
FIGURE 4 in Distribution and new synonymy in European biting midges of the genus Dasyhelea Kieffer (Diptera: Ceratopogonidae)
FIGURE 4. Dasyhelea mayor (Strobl, 1906), male: A—wing, B—antennal flagellum, C—clypeus, D—frontal sclerite, E—palpus, F—genitalia, G—aedeagus.
FIGURE 3 in Distribution and new synonymy in European biting midges of the genus Dasyhelea Kieffer (Diptera: Ceratopogonidae)
FIGURE 3. Dasyhelea decoratissima (Strobl, 1910), female: A—wing, B—antennal flagellum, C—clypeus, D—frontal sclerite, E—palpus, F—subgenital plate, G—spermatheca.
FIGURE 1 in Distribution and new synonymy in European biting midges of the genus Dasyhelea Kieffer (Diptera: Ceratopogonidae)
FIGURE 1. Dasyhelea alonensis (Strobl, 1906), male: A—wing, B—antennal flagellum, C—frontal sclerite, Dpalpus, E—genitalia.
FIGURE 5 in Distribution and new synonymy in European biting midges of the genus Dasyhelea Kieffer (Diptera: Ceratopogonidae)
FIGURE 5. Dasyhelea mayor (Strobl, 1906), female: A—wing, B—antennal flagellum, C—clypeus, D—frontal sclerite, E—palpus, F—subgenital plate, G—spermatheca.
FIGURE 2 in Distribution and new synonymy in European biting midges of the genus Dasyhelea Kieffer (Diptera: Ceratopogonidae)
FIGURE 2. Dasyhelea alonensis (Strobl, 1906), female: A—wing, B—antennal flagellum, C—clypeus, D—frontal sclerite, E—palpus, F—subgenital plate, G—spermatheca.
FIGURE 8 in Diopatra (Annelida: Onuphidae) diversity in European waters with the description of Diopatra micrura, new species
FIGURE 8. Phylogenetic analysis of the data set containing the 16S and COI sequences of Diopatra species. Numbers near the nodes indicate the percent bootstrap values. The branch length indicator represents 0.02 substitutions per site.
FIGURE 1 in Diopatra (Annelida: Onuphidae) diversity in European waters with the description of Diopatra micrura, new species
FIGURE 1. Sampling areas where Diopatra micrura sp. nov., was found: A—Aveiro (shelf and Ria); B— coastal shelf off Nazaré; C—Guia, coastal shelf off Tagus estuary; D—coastal shelf off Guadiana estuary
FIGURE 7 in Diopatra (Annelida: Onuphidae) diversity in European waters with the description of Diopatra micrura, new species
FIGURE 7. Classification (upper graph) and ordination (lower graph) analysis of specimens of European Diopatra species, according to morphological descriptors. Most of the specimens obtained in France (Arcachon Bay and Marennes Oléron) form an isolated cluster, corresponding to a fourth species, but also include individuals belonging to D. neapolitana.
FIGURE 6 in Diopatra (Annelida: Onuphidae) diversity in European waters with the description of Diopatra micrura, new species
FIGURE 6. Scanning electron micrographs of Diopatra micrura sp. nov.: A, distal ends of pseudocompound hooded hooks; B, spines of pseudocompound hooded hook; C, parapodium of chaetiger 9; D, pectinate and limbate chaetae of parapodium 13; E, pectinate chaeta; F, spines of limbate chaetae; (s) spines; (ls) limbate chaeta; (ps) pectinate chaeta; (ptl) postchaetal lobe; (vl) ventral lobe.
FIGURE 4 in Diopatra (Annelida: Onuphidae) diversity in European waters with the description of Diopatra micrura, new species
FIGURE 4. Scanning electron micrographs of Diopatra micrura sp. nov.: A, anterior end, dorsal view; B, anterior end, ventral view; C, rows of sensory buds on antenna; D, enlarged sensory bud of antennae; E, peristomium and nuchal groove area; F, modified parapodium; G, sensory buds on branchiae; H, enlarged sensory bud of branchiae; (br) branchiae; (fl) frontal lips; (la) lateral antenna; (ll) lower lip; (ma) median antenna; (ng) nuchal groove; (p) palp; (ph) pseudocompound hook, (prl) prechaetal lobe; (ptl) postchaetal lobe; (sb) sensory bud; (ul) upper lip; (vc) ventral cirrus.
FIGURE 3 in Diopatra (Annelida: Onuphidae) diversity in European waters with the description of Diopatra micrura, new species
FIGURE 3. Diopatra micrura sp. nov.: A, anterior end, dorsal view; B, maxillary apparatus, dorsal view; C, mandibles, ventral view; D, parapodium of chaetiger 6, anterior view; E, parapodium of chaetiger 1, anterior view; F, pectinate chaeta; G, limbate chaeta; H, pseudocompound hook; I, subacicular hook; (dc) dorsal cirrus; (prl) prechaetal lobe; (ptl) postchaetal lobe; (vl) ventral lobe; (vc) ventral cirrus.
FIGURE 2 in Diopatra (Annelida: Onuphidae) diversity in European waters with the description of Diopatra micrura, new species
FIGURE 2. Live specimen of Diopatra micrura sp. nov.: A, general view; B, prostomium, frontal view; C, anterior end, dorsal view; D, anterior unmodified parapodia and branchiae, lateral view; (bp) brown patch; (fl) frontal lip; (la) lateral antenna; (ma) median antenna; (ng) nuchal groove; (p) palp; (pc) peristomial cirrus; (prl), prechaetal lobe; (ptl) postchaetal lobe; (vl) ventral lobe; (wl) white transverse line.
FIGURE 5 in Diopatra (Annelida: Onuphidae) diversity in European waters with the description of Diopatra micrura, new species
FIGURE 5. Diopatra micrura sp. nov.: A, relationship between body width (chaetiger 10, without parapodia) and length of lateral and median antennae. B, relationship between body width (chaetiger 10, without parapodia) and chaetigers of last branchiae and first subacicular hooks.
FIGURE 9 in A new Central European species of the Daphnia curvirostris complex, Daphnia hrbaceki sp. nov. (Cladocera, Anomopoda, Daphniidae)
FIGURE 9. Relationship among species of the Daphnia curvirostris complex and its position relative to other species complexes (represented by selected taxa) of the D. longispina group (nomenclature of the D. longispina complex follows Petrusek et al. 2008). Three members of the D. pulex group, including D. obtusa coexisting with D. hrbaceki, were used as outgroups. The tree was constructed by the Bayesian inference of phylogeny from a partial sequence of the mitochondrial ND2 gene. Node support is provided for Bayesian inference, Maximum Likelihood and Maximum Parsimony analyses, asterisks indicate sister species with support at least 99% in all three analyses. Vertical bars delineate species complexes, scale indicates 10% divergence.
FIGURE 6. Ephippium and neckteeth. A in A new Central European species of the Daphnia curvirostris complex, Daphnia hrbaceki sp. nov. (Cladocera, Anomopoda, Daphniidae)
FIGURE 6. Ephippium and neckteeth. A. Daphnia hrbaceki, dorsal aspect of free ephippium (K); arrow indicates evenly shaped convex outline lacking any concavity between the two egg chambers. B. D. hrbaceki, lateral aspect of free ephippium (K); arrow indicates position of maximal width of the ephippium. C. D. hrbaceki, adult female (RB); detail of necktooth (indicated by arrow). D. D. minnehaha, adult female (ELA) with neckteeth (indicated by arrow). E. D. minnehaha, adult female (ELA); detail of neckteeth (indicated by arrow). F. D. minnehaha, juvenile female (ELA); dorsal aspect, detail of neckteeth (indicated by arrow). G. Daphnia sp. (morphotype FLO9) (FL); detail of neckteeth (indicated by arrow).
FIGURE 4 in A new Central European species of the Daphnia curvirostris complex, Daphnia hrbaceki sp. nov. (Cladocera, Anomopoda, Daphniidae)
FIGURE 4. Daphnia hrbaceki and Daphnia curvirostris. Arrows indicate male antennular socket (as), suture between head shield and ventral side of head (s), single lateral seta anterior to areole (ss), rostrum (r), reticulation on the tip of rostrum (rr), apparent split of the rostrum (rs) and antennular mound (am). A, B. D. hrbaceki, head of adult male (RB) C. D. hrbaceki, adult female (K); rostrum and antennule, lateral aspect. D. D. curvirostris, adult female (H); rostrum and antennule, lateral aspect; detail of the rostrum tip in lateral aspect shown on the left. E. D. hrbaceki, adult female (K); rostrum, postero-frontal aspect. F. D. curvirostris, adult female (KP); rostrum, frontal aspect.
FIGURE 3 in A new Central European species of the Daphnia curvirostris complex, Daphnia hrbaceki sp. nov. (Cladocera, Anomopoda, Daphniidae)
FIGURE 3. Comparison of postabdominal claws. Arrows indicate second (middle) pecten of spinules or teeth of postabdominal claw. A. Daphnia hrbaceki, adult female (K). B. D. hrbaceki, adult female from laboratory culture (K). C. D. hrbaceki, adult female (RB). D. D. hrbaceki, adult female from laboratory culture (K); detail of middle pecten. E. D. hrbaceki, adult male from laboratory culture (K). F. Daphnia sp. (morphotype FLO9), adult female (FL). G. D. minnehaha, adult female (ELA).
FIGURE 2. Daphnia hrbaceki. Arrows indicate neckteeth. A in A new Central European species of the Daphnia curvirostris complex, Daphnia hrbaceki sp. nov. (Cladocera, Anomopoda, Daphniidae)
FIGURE 2. Daphnia hrbaceki. Arrows indicate neckteeth. A. Adult male (RB); B. Adult parthenogenetic female (K); C. Juvenile male (RB); D. Juvenile female (RB); E. Subadult female (RB), detail of necktooth; F. Head of adult parthenogenetic female (K) in antero-ventral aspect. G. Head of adult ephippial female (K) in dorsal aspect.
FIGURE 8 in A new Central European species of the Daphnia curvirostris complex, Daphnia hrbaceki sp. nov. (Cladocera, Anomopoda, Daphniidae)
FIGURE 8. Comparison of ephippial surface ultrastructures. A. Daphnia hrbaceki (K). B. D. curvirostris (LL); detail shown in inset. C. D. tanakai (LM). D. Daphnia sp. (morphotype FLO9) (FL). E. D. minnehaha (ELA). F. D. pulex (CL). G. D. longispina from high-altitude temporary pool (GSB). H. D. longispina from lowland fishpond (I).
FIGURE 7 in A new Central European species of the Daphnia curvirostris complex, Daphnia hrbaceki sp. nov. (Cladocera, Anomopoda, Daphniidae)
FIGURE 7. Comparison of ultrastructures of ephippial dorsal ridges with various development of spinulation or reticulation (indicated by arrows). A, B. Daphnia hrbaceki (K). C. D. curvirostris (H). D. D. tanakai (LM). E. Daphnia sp. (morphotype FLO9) (FL). F. D. minnehaha (ELA).
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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.