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FIGURE 1. Frontonia didieri n in Taxonomic studies on three marine species of Frontonia from northern China: F. didieri n. sp., F. multinucleata n. sp. and F. tchibisovae Burkovsky, 1970 (Ciliophora: Peniculida)
FIGURE 1. Frontonia didieri n. sp. from living cells (A), after protargol (B, C, E, G) and silver carbonate impregnations (D, F). (A) Ventral view of a typical specimen. (B) Ventral view of an individual in division. (C, D, F) To show the general infraciliature. (G) To show the oral apparatus, note the long vestibular kineties (VK) and two-rowed paroral membrane (PM). AS = anterior suture; Ma = macronucleus; P1–3 = peniculus 1–3; PK = postoral kineties; PS = postoral suture. Scale bars = 40 μm.
FIGURE 4. S. duranguensis n in A New Species of the Freshwater Cladoceran Genus Scapholeberis Schoedler, 1858 (Cladocera: Anomopoda) from the Semidesert Northern Mexico, Highlighted by DNA Barcoding
FIGURE 4. S. duranguensis n. sp. A. trunk limb I; B. trunk limb II; C. Gnathobase of trunk limb II; D. Gnathobase of trunk limb II of S. armata freyi for comparison; E. Trunk limb III; F. trunk limb IV. G. Trunk limb V. Initials: AS=Accessory Seta, EH=ejector hooks, EN=endopod, EX=exopod, PS=proximal seta, E=endite, GN=gnathobase, BS=brush-shaped setae
FIGURE 1 in A New Species of the Freshwater Cladoceran Genus Scapholeberis Schoedler, 1858 (Cladocera: Anomopoda) from the Semidesert Northern Mexico, Highlighted by DNA Barcoding
FIGURE 1. SEM photographs: A, B, D, G and H Scapholeberis duranguensis n. sp., parthenogenetic female. A. Anterior view of the head and rostrum (note the keels on the head, the reticulated rostrum and the pore at the top of the head); B. Head pore; D. Habitus; G and H. Posterior rim of valves (note the thick double membrane of which the upper one is denticulated); C, E, F, I, J, K and L Scapholeberis armata freyi, parthenogenetic female. C. Anterior view of the head and rostrum (note that there is not a pore-like structure at the top of the head); E and F. Lateral view of a cultured and a wild specimen, respectively, both parthenogenetic females; I to L. Posterior rim of the valves with denticulate membrane (note that the membrane is thinner than in S. duranguensis n. sp.)
FIGURE 3. S. duranguensis n in A New Species of the Freshwater Cladoceran Genus Scapholeberis Schoedler, 1858 (Cladocera: Anomopoda) from the Semidesert Northern Mexico, Highlighted by DNA Barcoding
FIGURE 3. S. duranguensis n. sp. A. Lateral view of ephippial female; B. Mandible; C. Antennule; D. Anterior view of the head; E. Upper view of the head; F. Antenna; G. Postabdomen and postabdominal claw.
FIGURE 2 in A New Species of the Freshwater Cladoceran Genus Scapholeberis Schoedler, 1858 (Cladocera: Anomopoda) from the Semidesert Northern Mexico, Highlighted by DNA Barcoding
FIGURE 2. SEM photographs: A, C, E and G Scapholeberis duranguensis n. sp. A. Ephippial female, lateral view; C. Ventral view of trunk limbs; E. Ejector hooks (note the length as compared to those of S. armata freyi); G. Postabdomen and postabdominal claw. B, D, F and H Scapholeberis armata freyi, ephippial female. B. Lateral view; D. Ventral view of trunk limbs; F. Ejector hooks; H. Postabdomen and postabdominal claw.
FIGURE 5 in A New Species of the Freshwater Cladoceran Genus Scapholeberis Schoedler, 1858 (Cladocera: Anomopoda) from the Semidesert Northern Mexico, Highlighted by DNA Barcoding
FIGURE 5. ID tree based in maximum likelihood analyses in PAUP (–lnL=2482.38). Other Scapholeberis are used for comparison purposes with our material. To identify each Scapholeberis sp., GenBank accession numbers are provided.
FIGURE 5 in A new species of Liolaemus from Añelo sand dunes, northern Patagonia, Neuquén, Argentina, and molecular phylogenetic relationships of the Liolaemus wiegmannii species group (Squamata, Iguania, Liolaemini)
FIGURE 5. Phylogenetic relationships of Liolaemus cuyumhue with other species of the wiegmannii group as shown by the consensus Bayesian tree. Posterior probabilities and maximum parsimony bootstrap values are shown above and below branches.
FIGURE 3 in A new species of Liolaemus from Añelo sand dunes, northern Patagonia, Neuquén, Argentina, and molecular phylogenetic relationships of the Liolaemus wiegmannii species group (Squamata, Iguania, Liolaemini)
FIGURE 3. Known distribution of wiegmannii species group. Large red star: type locality of Liolaemus cuyumhue. Red squares, L. azarai; orange squares: L. multimaculatus; green squares: L. salinicola; green circles: L. lutzae; yellow circles: L.scapularis; red circles: L. arambarensis; pink circles: L. occipitalis; blue circles: L.wiegmannii; black stars: L. riojanus; yellow square: L. rabinoi. Inset: satellite image of the Añelo basin, a red star mark the type locality.
FIGURE 1 in A new species of Liolaemus from Añelo sand dunes, northern Patagonia, Neuquén, Argentina, and molecular phylogenetic relationships of the Liolaemus wiegmannii species group (Squamata, Iguania, Liolaemini)
FIGURE 1. Liolaemus cuyumhue in life, lateral and ventral view of holotype (MACN 38981), adult male 51.2 mm in SVL.
FIGURE 2 in A new species of Liolaemus from Añelo sand dunes, northern Patagonia, Neuquén, Argentina, and molecular phylogenetic relationships of the Liolaemus wiegmannii species group (Squamata, Iguania, Liolaemini)
FIGURE 2. Dorsal and ventral color variation in the type series of Liolaemus cuyumhue (museum numbers are in diagnosis).
FIGURE 5 in A new ground-dwelling species of Cnemaspis Strauch (Squamata: Gekkonidae) from the northern Western Ghats, Maharashtra, India
FIGURE 5. Map (bottom) showing the type locality, near Dajipur (star), of Cnemaspis kolhapurensis sp. nov. Upper left map shows position of Maharashtra (shaded) within India; upper right map shows position of Kolhapur and Sindhudurg districts (shaded) within Maharashtra.
FIGURE 4 in A new ground-dwelling species of Cnemaspis Strauch (Squamata: Gekkonidae) from the northern Western Ghats, Maharashtra, India
FIGURE 4. Juvenile of Cnemaspis kolhapurensis sp. nov. (not collected) showing the strongly contrasting broad pale dorsal stripe and dark lateral stripes, as well as brightly colored tail.
FIGURE 6 in A new ground-dwelling species of Cnemaspis Strauch (Squamata: Gekkonidae) from the northern Western Ghats, Maharashtra, India
FIGURE 6. View of semi-evergreen forest in northern Western Ghats near type locality of Cnemaspis kolhapurensis sp. nov., Dajipur, Kolhapur district, Mahrashtra, India.
FIGURE 7 in A new ground-dwelling species of Cnemaspis Strauch (Squamata: Gekkonidae) from the northern Western Ghats, Maharashtra, India
FIGURE 7. Open patch in forest near Dajipur, Kolhapur district, Mahrashtra, India. Holotype and Paratypes of Cnemaspis kolhapurensis sp. nov. were collected in leaf litter.
FIGURE 3 in A new ground-dwelling species of Cnemaspis Strauch (Squamata: Gekkonidae) from the northern Western Ghats, Maharashtra, India
FIGURE 3. Paratype of Cnemaspis kolhapurensis sp. nov. (BNHS 1843) in life showing a duller coloration than the holotype, but retaining tail iridescence.
FIGURE 2 in A new ground-dwelling species of Cnemaspis Strauch (Squamata: Gekkonidae) from the northern Western Ghats, Maharashtra, India
FIGURE 2. Holotype of Cnemaspis kolhapurensis sp. nov. in life. Note the subtle flank patterning and the iridescent sheen on the tail.
FIGURES 8–11 in Kakadudessus tomweiri, a new genus and species of diving beetle from tropical northern Australia, based on molecular phylogenetic and morphological data (Coleoptera, Dytiscidae, Bidessini)
FIGURES 8–11. Kakadudessus tomweiri sp.n. 8) Gungurul lookout in Kakadu National Park (locality 11, 1996), the white arrow marks the small rest pool near the bank; 9) Bowerbird Creek at Mary River Roadhouse near main road; 10–11) Small rest pool in the almost dry river bed of the Bowerbird Creek, 200 m upstream from main road (locality 15a, 2006). All photos by Lars Hendrich.
FIGURE 7 in Kakadudessus tomweiri, a new genus and species of diving beetle from tropical northern Australia, based on molecular phylogenetic and morphological data (Coleoptera, Dytiscidae, Bidessini)
FIGURE 7. Phylogram of the tree obtained in both MrBayes runs, numbers above branches are posterior probabilities (if>0.5, x100), numbers below branches are maximum likelihood boostrap values obtained from GARLI (if>50%). Note: Clypeodytes migrator will be transferred to Leiodytes by Hendrich & Wang in a forthcoming generic review.
FIGURES 2–5 in Kakadudessus tomweiri, a new genus and species of diving beetle from tropical northern Australia, based on molecular phylogenetic and morphological data (Coleoptera, Dytiscidae, Bidessini)
FIGURES 2–5. Kakadudessus tomweiri sp.n., male genitalia: 2) median lobe lateral aspect, 3) median lobe ventral aspect, 4) left paramere, 5) right paramere (scale bar 0.4 mm).
FIGURE 1 in Kakadudessus tomweiri, a new genus and species of diving beetle from tropical northern Australia, based on molecular phylogenetic and morphological data (Coleoptera, Dytiscidae, Bidessini)
FIGURE 1. Kakadudessus tomweiri sp.n., habitus of paratype, total length 2.2 mm, drawing by D. Paramonov, Riga, Latvia.
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.