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Fig.4 in Amended diagnosis and redescription of Pristimantis marmoratus (Boulenger, 1900) (Amphibia: Craugastoridae), with a description of its advertisement call and notes on its breeding ecology and phylogenetic relationships

Fig.4.Pristimantismarmoratus(Boulenger,1900)(fourindividualsatthetop)andP.pulvinatus(Rivero, 1968) (twoindividuals below).Intraspecificvariation in dorsalcolour pattern and sexualdimorphism in living specimens. Note: the subtle hint of green visible on the lower body and legs of some specimens of P. marmoratus is due to a reflection of the substrate (green leaf). Photographs by PJRK, except the uncollected P.pulvinatus, which is by CBA.

opennotspecifiedJan 2018View details →
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Fig.2 in Amended diagnosis and redescription of Pristimantis marmoratus (Boulenger, 1900) (Amphibia: Craugastoridae), with a description of its advertisement call and notes on its breeding ecology and phylogenetic relationships

Fig.2.Pristimantismarmoratus(Boulenger,1900).Preservedadult♂,holotype(BMNH1947.2.16.92). A. Dorsal view. B. Ventral view. C. Dorsolateral view. Grid squares = 5 mm. Photographs by PJRK.

opennotspecifiedJan 2018View details →
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Fig. 1 in Amended diagnosis and redescription of Pristimantis marmoratus (Boulenger, 1900) (Amphibia: Craugastoridae), with a description of its advertisement call and notes on its breeding ecology and phylogenetic relationships

Fig. 1.MapoftheEasternPantepuiDistrictshowingtheknowndistributionof Pristimantismarmoratus (Boulenger,1900).Reddotsdenotelocalitiesofconfirmedoccurrencebasedeitheronmuseumspecimens or colour photographs.

opennotspecifiedJan 2018View details →
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FIGURE 5 in Total evidence analysis of the phylogenetic relationships of bandicoots and bilbies (Marsupialia: Peramelemorphia): reassessment of two species and description of a new species

FIGURE 5. Perameles papillon sp. nov., study skins. A–C, holotype WAM M571; D–F, paratype WAM M574; G–I, paratype WAM M572. A, D, and G, dorsal view; B, E, and H, lateral view; C, F, and I, ventral view. Scale = 5cm.

opennotspecifiedFeb 2018View details →
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FIGURE 1 in Total evidence analysis of the phylogenetic relationships of bandicoots and bilbies (Marsupialia: Peramelemorphia): reassessment of two species and description of a new species

FIGURE 1. Peramelemorphian phylogeny inferred from (A) morphology, with the maximum parsimony (MP) tree shown and Bayesian inference (BI) differences indicated in dashed arrows (including C. ecaudatus falling within Perameles), from (B) DNA, with the BI tree shown and MP differences indicated as dashed arrows (including Perameles being paraphyletic relative to Isoodon), and from combined data (C) MP, (D) BI, and (E) BI also informed by temporal signal and with posterior probabilities indicated for nodes. Oligo-Miocene bandicoot names are shaded grey, and could not be included in the DNA-only tree (B), which instead shows the Peroryctinae-Echymierinae expanded to genera. Outgroup (Dasyuromorphia and Didelphis) not shown.

opennotspecifiedFeb 2018View details →
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FIGURE 8 in Total evidence analysis of the phylogenetic relationships of bandicoots and bilbies (Marsupialia: Peramelemorphia): reassessment of two species and description of a new species

FIGURE 8. Distribution of species in the Perameles bougainville complex, based on museum specimens (modern and some fossils). Circles, Perameles bougainville; squares, Perameles eremiana; crescents, Perameles myosuros; ovals, Perameles notina; star, Perameles fasciata; triangles, Perameles papillon sp. nov.

opennotspecifiedFeb 2018View details →
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FIGURE 4. X-Y in Total evidence analysis of the phylogenetic relationships of bandicoots and bilbies (Marsupialia: Peramelemorphia): reassessment of two species and description of a new species

FIGURE 4. X-Y graphs of the tooth length versus tooth width, for the upper (A–G) and lower (H–N) premolars and molars, for Peroryctes raffrayana (squares), Peroryctes broadbenti (crosses), and Lemdubuoryctes aruensis (star).

opennotspecifiedFeb 2018View details →
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FIGURE 7 in Total evidence analysis of the phylogenetic relationships of bandicoots and bilbies (Marsupialia: Peramelemorphia): reassessment of two species and description of a new species

FIGURE 7. Perameles papillon sp. nov., upper and lower dentition of paratype WAM M577. A–B, upper premolas; C–D, upper molars; E–F, lower premolars; G–H, lower molars. A, C, E and G, occlusal view; B, D, F and H, lateral view. Scale = 2mm.

opennotspecifiedFeb 2018View details →
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FIGURE 6 in Total evidence analysis of the phylogenetic relationships of bandicoots and bilbies (Marsupialia: Peramelemorphia): reassessment of two species and description of a new species

FIGURE 6. Perameles papillon sp. nov., skulls. A–C and G–H, holotype WAM M571; D–F and I–J, paratype WAM M577. A, D, G, I, dorsal view; B, E, ventral view; C, F, H, J, lateral view. Scale = 2cm.

opennotspecifiedFeb 2018View details →
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FIGURE 3 in Total evidence analysis of the phylogenetic relationships of bandicoots and bilbies (Marsupialia: Peramelemorphia): reassessment of two species and description of a new species

FIGURE 3. Results of the morphometric analysis of the Perameles bougainville complex. A, Principal Component Analysis of cranial data; B, Canonical Variate Analysis of cranial data; C, Principal Component Analysis of dental data; D, Canonical Variate Analysis of dental data. Upright rectangles, Perameles bougainville; crosses, Perameles eremiana; diamonds, Perameles myosuros; circle, Perameles arenaria; stars, Perameles notina; triangles, Perameles fasciata; laying rectangles, Perameles papillon sp. nov.

opennotspecifiedFeb 2018View details →
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FIGURE 2 in Total evidence analysis of the phylogenetic relationships of bandicoots and bilbies (Marsupialia: Peramelemorphia): reassessment of two species and description of a new species

FIGURE 2. Total evidence Bayesian inference timescale of peramelemorphian evolution. Node and tip calibrations are employed under a fossilized birth-death model, with molecular and morphological relaxed clock models unlinked. Blue bars show 95% highest posterior density intervals for node ages. The outgroup includes Didelphis and eight dasyuromorphians.

opennotspecifiedFeb 2018View details →
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FIGURE 4 in Ingroup relationships of Lagerpetidae (Avemetatarsalia: Dinosauromorpha): a further phylogenetic investigation on the understanding of dinosaur relatives

FIGURE 4. Strict consensus cladrogram depicting the percentage of codified characters for each OTU and for some more inclusive groups in the data matrix by Cabreira et al. (2016). Abbreviations: Herrer., Herrerasauridae; Sauropodom., Sauropodomorpha.

opennotspecifiedMar 2018View details →
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FIGURE 3 in Ingroup relationships of Lagerpetidae (Avemetatarsalia: Dinosauromorpha): a further phylogenetic investigation on the understanding of dinosaur relatives

FIGURE 3. Results of phylogenetic analyses: A, simplified phylogenetic relationships of lagerpetids based on the data matrix by Nesbitt et al. (2017); B, hypothesis were Lagerpeton chanarensis lies as the basalmost member of Lagerpetidae with the data matrix by Nesbitt et al. (2017); C, hypothesis were Ixalerpeton polesinensis lies as the basalmost member of Lagerpetidae with the data matrix by Nesbitt et al. (2017); D, sister taxan affinity between L. chanarensis and I. polesinensis with the data matrix by Nesbitt et al. (2017); E, simplified phylogenetic relationships of lagerpetids based on the data matrix by Langer et al. (2017). Numbers on nodes represent Bremer support values higher than 1.

opennotspecifiedMar 2018View details →
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FIGURE 2 in Ingroup relationships of Lagerpetidae (Avemetatarsalia: Dinosauromorpha): a further phylogenetic investigation on the understanding of dinosaur relatives

FIGURE 2. Reduced strict consensus cladogram of the analysis with the data matrix by Cabreira et al. (2016) depicting some synapomorphies of the less inclusive groups within Lagerpetidae and geographic distribution of the group along the time. Numbers on nodes represent Bremer support and Bootstrap values, respectively.

opennotspecifiedMar 2018View details →
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FIGURE 1 in Ingroup relationships of Lagerpetidae (Avemetatarsalia: Dinosauromorpha): a further phylogenetic investigation on the understanding of dinosaur relatives

FIGURE 1. Skeletal reconstructions depicting the preserved parts of the lagerpetids used in this phylogenetic analysis: A, Lagerpeton chanarensis [modified from Sereno & Arcucci (1994)]; B, Ixalerpeton polesinensis [modified from Cabreira et al. (2016)]; C; PVSJ 883; D, Dromomeron gregorii; E, Dromomeron romeri; F, Dromomeron gigas. Scale bars = 10 mm.

opennotspecifiedMar 2018View details →
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FIGURE 20. Phylogenetic relationship among selected Dryocosmus and Chilaspis species based COI sequences resolved using with MrBayes 3.2.6 in Discovery of a new species of Dryocosmus Giraud, 1859 (Hymenoptera: Cynipidae: Cynipini) on Castanopsis tibetana from China

FIGURE 20. Phylogenetic relationship among selected Dryocosmus and Chilaspis species based COI sequences resolved using with MrBayes 3.2.6 (Ronquist et al. 2012). Two independent MCMC runs were run with the following parameters: 10 million gens, nst = 6, rates = gamma, sample frequency = 1/1,000, burn-in = 30%, and otherwise default. The length of the branches is drawn to scale of genetic distance and the number over branches is posterior probability. (Generic name abbreviations: A. = Andricus, Ch. = Chilaspis, D. = Dryocosmus)

opennotspecifiedApr 2018View details →
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FIGURE 14. Phylogenetic relationships between 13 in Subspecies-level systematics and affinities of Cheimas Thieme - an endemic genus of the subparamo of the Venezuelan Cordillera de Mérida (Lepidoptera: Nymphalidae, Satyrinae)

FIGURE 14. Phylogenetic relationships between 13 species belonging to 9 genera of the Pronophila clade of the subtribe Pronophilina, including 3 subspecies of Cheimas opalinus, with Manerebia inderena Adams & Bernard as an outgroup, based on DNA sequences of COI. Posterior probabilities of nodes are given near the branches.

opennotspecifiedDec 2018View details →
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FIGURE 1. The phylogenetic relationships among Acaenitinae species inferred from a 590 in Two new species of the genus Ishigakia (Hymenoptera: Ichneumonidae, Acaenitinae) from Vietnam based on morphological and molecular evidence

FIGURE 1. The phylogenetic relationships among Acaenitinae species inferred from a 590bp fragment of the COI gene based on Maximum Likelihood, Bayesian Inference analyses. Values at nodes are bootstrap or BI. #: values less than 65 or 0.65.

opennotspecifiedJul 2018View details →
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FIGURES 35–42 in Phylogenetic relationships of the Balkan Moitessieriidae (Caenogastropoda: Truncatelloidea)

FIGURES 35–42. Protoconch and teleoconch sculpture in Paladilhiopsis cf. bosniaca. 35–36. Shell. 37–38. Protoconch. 39. Protoconch and teleoconch sculpture. 40. Outer surface of the body whorl (teleoconch), with ribs and spiral riblets (striae). Scale bar = 500 µm in figs 35–36; 125 µm in fig. 37;50 µm in fig. 38; 250 µm in fig. 39 and 25 µm in figs 40–42.

opennotspecifiedSep 2018View details →
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FIGURE 60 in Phylogenetic relationships of the Balkan Moitessieriidae (Caenogastropoda: Truncatelloidea)

FIGURE 60. The COI-based maximum-likelihood relationships. Bootstrap support (>65 %) and Bayesian posterior probabilities (>0.95) are shown. The generic assignments are molecularly based, the generic assignments used so far are given in green. The Moitessieriidae are on the sand background.

opennotspecifiedSep 2018View details →

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Allen Brain Atlas

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Last verified 2026-04-30Open record

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.

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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.

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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.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record