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7,472 results for “new family”
FIGURES 1–6 in New species of the family Julidae Leach 1814 from Altai, Russia (Diplopoda, Julida)
FIGURES 1–6. Julus azarovae sp. n., male. 1, gnathochilarium; 2, distal part of antenna; 3, leg pair 1 (front view); 4, distal part of leg pair 1 (front view); 5, apex of left part of leg pair 1 (front view); 6, leg pair 2 and penes (caudal view, second anterior outgrowth not conspicuous). t1, basal telopodite segment of leg pair 1; t2, apical telopodite segment of leg pair 1.
FIGURES 7, 13–15 in New species of the family Julidae Leach 1814 from Altai, Russia (Diplopoda, Julida)
FIGURES 7, 13–15. Julus azarovae sp. n., male. 7, leg pair 2 and penes (caudal view, second anterior outgrowth not conspicuous); 13, gonopod promere and mesomere (mesal view); 14, gonopod opisthomeres (caudal view); 15, right gonopod opisthomere (caudal view). p, penes.
FIGURE 10 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 10. Phylogeny of nobleobatrachian frogs represented by selected species and constructed using sequences from 9 genes. The tree is rooted with Rana temporaria (not shown). Support values (ML bootstrap/Bayesian posterior probability/MP bootstrap) are indicated at nodes. Bayesian and MP support values are not given in cases where those phylogenies conflicted with the ML phylogeny.
FIGURE 9 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 9. (A) Bayesian and (B) maximum parsimony phylogenies of nobleobatrachian frogs represented by selected genera and constructed using sequences from 17 genes. The trees are rooted with Ranidae (not shown). Support values (Bayesian posterior probabilities or MP bootstrap values) are indicated at nodes.
FIGURE 8 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 8. Maximum likelihood phylogeny of nobleobatrachian frogs represented by selected genera and constructed using sequences from 17 genes. The tree is rooted with Ranidae (not shown). Bootstrap support values are indicated at nodes. Higher classification is indicated to the right.
FIGURE 6 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 6. High-resolution tomographs of terraranan frogs representing two families (left, dorsal view; right, ventral view). (A–B) Brachycephalidae, Ischnocnema guentheri (KU 92816); (C–D) Craugastoridae, Haddadus binotatus (KU 92808). Scale bars = 5 mm.
FIGURE 5 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 5. Habitat of Ceuthomantis smaragdinus at 1540 m on Mt. Kopinang, Guyana. The holotype was found about 5 m from the stream in the foreground in Figure 5A; the paratype was found on a leaf about 10 m away from the other side of the stream slightly to the left of the middle of Figure 5B. Photographs by D. B. Means.
FIGURE 11 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 11. Timetree of nobleobatrachian frogs represented by selected genera and estimated with a Bayesian analysis of sequences from 9 genes, based on a topology obtained from the ML analysis of 17 genes (Figure 8). Numbers on nodes refer to time estimates and credibility intervals of time estimates (Table 2); those in bold are nodes discussed in the text. Illustrations portray the major reproductive modes of the genera and families, with most direct-developing species (i.e., no aquatic larvae) contained in Terrarana (Ceuthomantidae and four other families) that nearly always lay eggs on substrate, and Hemiphractidae that carry their eggs on their backs. Nearly all other nobleobatrachians have aquatic larvae (e.g., tadpoles).
FIGURE 7 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 7. High-resolution tomographs of terraranan frogs representing two families (left, dorsal view; right, ventral view). (A–B) Eleutherodactylidae, Eleutherodactylus gossei (SBH 266440; and (C–D) Strabomantidae, Pristimantis pulvinatus (KU 166368). Scale bars = 5 mm.
FIGURE 4 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 4. Distribution of the family Ceuthomantidae. Lowlands are indicated by green and uplands by brown. Known localities of the new family are indicated in the northeastern and southwestern portions of elevated areas on the Guiana Shield, in Venezuela, Brazil, and Guyana. (1) Mt. Kopinang, Guyana (C. smaragdinus, type locality), (2) Mt. Ayanganna, Guyana C. smaragdinus, referred specimen), (3) Pico Tamacuari, Venezuela and Brazil (C. cavernibardus), (4) Cerro Aracamuni, Venezuela (C. aracamuni), and (5) Sarisariñama Tepui, Venezuela (C. cf. cavernibardus).
FIGURE 3 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 3. High-resolution tomographs of Centhomantis smaragdinus, KU 315000. A dorsal, B. ventral. Scale bar = 5 mm.
FIGURE 2 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 2. Dorsal (A) and ventral (B) views of the holotype of Ceuthomantis smaragdinus (KU 300000) in life. Photographs by D. B. Means.
FIGURE 1 in A new frog family (Anura: Terrarana) from South America and an expanded direct-developing clade revealed by molecular phylogeny
FIGURE 1. Dorsal view of female paratype of Ceuthomantis smaragdinus, KU 315000 SVL 19.5 mm. Arrows point to the dorsal glandlike structures. The third finger of the right hand is enlarged to show the notched anterior margin of the disc. Photographs by A. Campbell.
FIGURES 10–13 in Superodontella gladiator, a new species of the family Odontellidae (Collembola: Poduromorpha) from Nepal with extremely elongated mouthparts
FIGURES 10–13, Superodontella gladiator sp. nov., scanning electron micrographs: 10, labium, ventral (scale 1µm); 11, general ventral view (scale 100µm); 12, right, slightly ventral side of Abd. V and VI showing the furca, right anal spine (AS) and coarse tegumentary granules (scale 10µm); 13, Ocular plate showing peri-ocular groove and sunken postantennal organ (PAO) (scale 10 µm).
FIGURES 1–9 in Superodontella gladiator, a new species of the family Odontellidae (Collembola: Poduromorpha) from Nepal with extremely elongated mouthparts
FIGURES 1–9, Superodontella gladiator sp. nov.: 1, habitus and dorsal chaetotaxy. S=S-chaeta. Di, De and Dl=theoretical chaetal areas; 2, left Ant. IV, ventrally. 9=S9; 3, left Ant. II, III and IV, dorsally, S-chaetae blackened 1, 2, 3, 4, 7, 8=S1, S2, S3, S4, S7, S8; 4, right ocular plate and postantennal organ; 5, mouthparts; Fu—fulcrum, Mdmandible, St—stipes; 6, labium; dotted line at level of chaetae F indicates distal limit of primary granules on the labium; 7, left leg III, ventrally; 8, Dens and mucro, dorsally; 9, Abd. VI, ventrally with anal valves; chaetae hr around anal aperture are filled in black.
FIGURES 8–11 in Description of a new species of Anisitsiellidae Koenike, 1910 (Acari, Hydrachnidia), the first record of the family from China
FIGURES 8–11. Nilotonia (Dartia) lii sp. nov. female. 8—dorsal view, 9—ventral view; 10—lateral view of palp; 11—lateral view of chelicera. Scale bars=100μm.
FIGURES 1–7 in Description of a new species of Anisitsiellidae Koenike, 1910 (Acari, Hydrachnidia), the first record of the family from China
FIGURES 1–7. Nilotonia (Dartia) lii sp. nov. male. 1—dorsal view, 2—ventral view (right anterior coxae broken), 3—lateral view, 4—genital field, 5—lateral view of chelicera, 6—lateral view of capitulum, 7—lateral view of palp. Scale bars = 100μm.
FIGURES 12–20 in Description of a new species of Anisitsiellidae Koenike, 1910 (Acari, Hydrachnidia), the first record of the family from China
FIGURES 12–20. Nilotonia (Dartia) lii sp. nov. legs of male (12–16) and female (17–20). 12—I-L-2 –6 (first segment missing), 13—II-L, 14—III-L-2 –6 (first segment missing), 15—IV-L-2 –6 (first segment missing) (right), 16—IV-L-6 (left), 17—I-L, 18 – II-L, 19—III-L, 20— IV-L. Scale bar = 100μm.
FIGURE 13. Chimeromyina concilia, n. gen., n in Chimeromyiidae, a new family of Eremoneuran Diptera from the Cretaceous
FIGURE 13. Chimeromyina concilia, n. gen., n. sp., in Spanish amber. Holotype, MCNA 8882. A. Dorsal view of anterior half of body. B. Detail of antennae and vertex of head. C. Left habitus (terminalia lost at surface of amber).
FIGURE 12. Chimeromyia alava, n in Chimeromyiidae, a new family of Eremoneuran Diptera from the Cretaceous
FIGURE 12. Chimeromyia alava, n. sp., in Spanish amber. A, B, D. Holotype male, MCNA 9741. A. Head, oblique frontal view. B. Male terminalia, left lateral view. C. Wing, MCNA 9238, paratype. D. Wing, showing preserved venation of holotype.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.