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FIGURE 7 in Megalomma Johansson, 1925 (Polychaeta: Sabellidae) from America and other world-wide localities, and phylogenetic relationships within the genus 2861

FIGURE 7. Megalomma coloratum (Chamberlin, 1919). A) Body, lateral view; B) thorax, lateral view; C) glandular ridge on chaetiger 3 as indicated with arrow; D) thorax, ventral view; E) branchial crown and thorax, dorsal view; F) ventralmost radiole; G) dorsalmost radiolar eye; H) eye from 5th dorsal radiole; I) abdominal tori; J–L) pygidiums. A–L) Specimens from Mazatlán, México, ECOSUR. Scale bars: A, E) 10 mm; B–D) 3 mm; F–H) 0.3 mm; I–L) 3 mm.

opennotspecifiedApr 2011View details →
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FIGURE 5 in Megalomma Johansson, 1925 (Polychaeta: Sabellidae) from America and other world-wide localities, and phylogenetic relationships within the genus 2861

FIGURE 5. Megalomma bioculatum (Ehlers, 1887) and M. claparedei (Gravier, 1908). A, I) Thorax, dorsal views; B–C, H) thorax, ventral views; D, P) thoracic uncini; E–F, N) companion chaetae; G) inferior thoracic chaeta type B; J) dorsalmost radiolar eye; K) abdominal uncinus; L) superior thoracic narrowly hooded chaeta; M) abdominal broadly hooded chaeta; O) inferior thoracic chaeta type B. A–G) Megalomma bioculatum; H–P) Megalomma claparedei. A) Specimen from Florida, MCZ, 47066; B–G) modified from Perkins, 1984; H–I) syntype from Djibouti, MNHN 559; J–P) modified from Gravier, 1908. Abbreviations: apr anterior peristomial ring; dl dorsal lip; dp dorsal pockets; vsc ventral shield of collar. Scale bars: A) 1 mm; H–I) 0.5 mm; B–G, J–P) not scaled.

opennotspecifiedApr 2011View details →
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FIGURE 4 in Megalomma Johansson, 1925 (Polychaeta: Sabellidae) from America and other world-wide localities, and phylogenetic relationships within the genus 2861

FIGURE 4. Megalomma circumspectum (Moore, 1923). A) Thorax, dorsal view; B) same, ventral view; C) same, lateral view; D) ventral sacs as indicated with arrows, branchial crown removed; E) posterior end; F) eyes from dorsal radioles; G) dorsalmost radiolar eye; H) eye from 2nd dorsal radiole; I) eye from a lateral radiole; J) ventralmost ocular spot. A–J) Specimens from La Paz, México, ECOSUR. Scale bars: A–C, E) 1 mm; D) 0.5 mm; F) 2 mm; G–J) 0.3 mm.

opennotspecifiedApr 2011View details →
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FIGURE 1 in Megalomma Johansson, 1925 (Polychaeta: Sabellidae) from America and other world-wide localities, and phylogenetic relationships within the genus 2861

FIGURE 1. Variations on dorsal margins of collar and inferior thoracic chaetae in Megalomma. A–C) Margins fused to faecal groove; D) margins not fused to faecal groove; E) chaeta type A; F) chaeta type B; G) chaeta type C. A–D) Schematized; E–G) modified from Fitzhugh (1989). Abbreviations: dlc dorsal lappets; fg faecal groove. The partial exposition of the anterior peristomial ring is marked in gray.

opennotspecifiedApr 2011View details →
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FIGURE 2 in Megalomma Johansson, 1925 (Polychaeta: Sabellidae) from America and other world-wide localities, and phylogenetic relationships within the genus 2861

FIGURE 2. Megalomma acrophthalmos (Grube, 1878). A) Thorax, dorsal view; B) thorax, ventral view; C) collar and anterior segments, ventral view; D) peristomium, frontal view; E) thoracic chaetigers; F) dorsal and ventral lips; G) collar and anterior segments, dorsal view; H–I) inferior thoracic chaetae type B; J) dorsalmost radiolar eye; K) eye from a lateral radiole; L) eye from a ventral radiole. A–L) Specimens from Philippines, USNM, 38683. Abbreviations: apr anterior peristomial ring; ca caruncle; d dorsum; dl dorsal lip; dlc dorsal lappets of collar; nl notopodial lobe; v ventrum; vl ventral lobe; vs ventral sacs; vsc ventral shield of collar. Scale bars: A–D, G) 1 mm; E) 0.5 mm; F) 1 mm; H–I) 50 µm; J–L) 0.3 mm.

opennotspecifiedApr 2011View details →
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FIGURE 30 in Phylogenetic relationships of Elateridae inferred from adult morphology, with special reference to the position of Cardiophorinae

FIGURE 30. Inferred phylogeny of extant and fossil (indicated by arrows) Elateridae based on 134 parsimony informative non-gap-weighted adult morphological characters, with cardiophorine clade species coded from only one sex omitted. Tree is a strict consensus of 148 most parsimonious trees of 956 steps, CI = 0.27. Values above branches are decay indices, values below branches are bootstrap indices (above 50%).

opennotspecifiedMay 2011View details →
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FIGURE 27 in Phylogenetic relationships of Elateridae inferred from adult morphology, with special reference to the position of Cardiophorinae

FIGURE 27. Inferred phylogeny of extant Elateridae based on 175 non-gap- weighted adult morphological characters, with all four cardiophorine clade species coded from only one sex omitted. Tree is an all-compatible phylogram with branch lengths estimated by MrBayes, of 120,000 post-burnin trees. Model = Mkv+G. Values are posterior probabilities. Scale bar indicates 0.1 changes per character.

opennotspecifiedMay 2011View details →
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FIGURE 24 in Phylogenetic relationships of Elateridae inferred from adult morphology, with special reference to the position of Cardiophorinae

FIGURE 24. Inferred phylogeny of extant Elateridae based on 175 non-gap-weighted adult morphological characters. Tree is an all-compatible phylogram with branch lengths estimated by MrBayes, of 180,000 post-burnin trees. Model = Mkv+G. Values are posterior probabilities. Scale bar indicates 0.1 changes per character. Sex is indicated for members of the cardiophorine clade coded from one sex only.

opennotspecifiedMay 2011View details →
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FIGURES 14–16 in Phylogenetic relationships of Elateridae inferred from adult morphology, with special reference to the position of Cardiophorinae

FIGURES 14–16. Ventral view of left side of mesocoxal cavity of Elateridae (After Arnett 1960, scale bar = 1 mm). 14, Elaterinae sp.; 15, Hypnoidus sp.; 16, Cardiophorinae sp. Lat = lateral; MCX = mesocoxae; MRN = mesepimeron; MST = mesepisternum; MS = Mesosternum. FIGURE 17. Lateral view of metasternum of Cardiophorus nigratissimus Buysson (scale bar = 0.5 mm). LC = lateral carina; MTP = metepisternum; MTS = metasternum. FIGURES 18–19. Dorsal view of anterior end of left elytron of Cardiophorinae (scale bar = 0.5 mm). 18, Cardiophorus gramineus (Scopoli); 19, Cardiophorus cardisce (Say). Scut = scutellum.

opennotspecifiedMay 2011View details →
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FIGURES 1–4 in Phylogenetic relationships of Elateridae inferred from adult morphology, with special reference to the position of Cardiophorinae

FIGURES 1–4. Frontoclypeal area of Elateroidea (scale bar = 0.5 mm). 1, Onichodon orchesoides Newman, (anterodorsal view); 2, Selenodon speratus Fall, (anterodorsal view); 3, Cardiophorus convexus (Say), (anteroventral view); 4, Cardiophorus gramineus (Scopoli), (dorsal view). CE = compound eye; SC = supra-antennal carina; SG = supra-orbital groove.

opennotspecifiedMay 2011View details →
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FIGURE 7 in Phylogenetic relationships of Elateridae inferred from adult morphology, with special reference to the position of Cardiophorinae

FIGURE 7. Lateral view of prosternal process of Cardiophorus erythropus Erichson (scale bar = 0.5 mm). A = longitudinal distance from procoxa to dorsal apex; Ant = Anterior; B = longitudinal distance from procoxa to end at halfway between dorsal and ventral apices; C = longitudinal distance from procoxa to ventral apex; D = vertical distance between dorsal and ventral apices. Dorsal and ventral apices are considered points where profile of respective surface is 45º from horizontal.

opennotspecifiedMay 2011View details →
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FIGURE 26 in Phylogenetic relationships of Elateridae inferred from adult morphology, with special reference to the position of Cardiophorinae

FIGURE 26. Inferred phylogeny of extant Elateridae based on 137 parsimony informative adult morphological characters (some gap-weighted). Tree is a single most parsimonious cladogram of 1184 steps (reweighting removed), CI = 0. 21. Values below branches are bootstrap indices (above 50%).

opennotspecifiedMay 2011View details →
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FIGURES 20–21 in Phylogenetic relationships of Elateridae inferred from adult morphology, with special reference to the position of Cardiophorinae

FIGURES 20–21. Hind wing of Elateroidea (scale bar = 1 mm). 20, Anelastes druryi (Kirby); 21, Blaiseus bedeli Fleutiaux. FIGURES 22–23. Left metacoxal plate and metepisternum of Elateroidea (scale bar = 0.5 mm). 22, Aulonothroscus punctatus (Bonvouloir); 23, Cardiophorus gramineus (Scopoli). MCX = metacoxal plate; MTS = metepisternum.

opennotspecifiedMay 2011View details →
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FIGURE 28 in Phylogenetic relationships of Elateridae inferred from adult morphology, with special reference to the position of Cardiophorinae

FIGURE 28. Inferred phylogeny of extant Elateridae based on 134 parsimony informative non-gap-weighted adult morphological characters, with all 4 cardiophorine clade species coded from only one sex omitted. Tree is a strict consensus of 416 most parsimonious trees of 956 steps, CI = 0.26. Values above branches are decay indices, values below branches are bootstrap indices (above 50%).

opennotspecifiedMay 2011View details →
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FIGURE 25 in Phylogenetic relationships of Elateridae inferred from adult morphology, with special reference to the position of Cardiophorinae

FIGURE 25. Inferred phylogeny of extant Elateridae based on 134 parsimony informative non-gap-weighted adult morphological characters. Tree is a strict consensus of 116 most parsimonious cladograms of 1008 steps, CI = 0.25. Values above branches are decay indices, values below branches are bootstrap indices (above 50%).

opennotspecifiedMay 2011View details →
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FIGURE 2. A phylogenetic network for a hypothetical data set. This network represents the relationships between four taxa, A-D in Exploring character conflict in molecular data*

FIGURE 2. A phylogenetic network for a hypothetical data set. This network represents the relationships between four taxa, A-D. The length of branch (a) is proportional to the strength of support for the relationship (A,C)(B,D). The length of branch (b) is proportional to the strength of support for the relationship (A,B)(C,D). In this example there is conflicting support for both of these arrangements, but more weight is given to (A,C)(B,D) than to (A,B)(C,D).

opennotspecifiedJul 2011View details →
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FIGURE 3 in Phylogenetic relationships within the genus Staurois (Anura, Ranidae) based on 16S rRNA sequences

FIGURE 3. Relationships among the genus Staurois as estimated using maximum parsimony. Tree was a consensus of two equally parsimonious trees.

opennotspecifiedJan 2011View details →
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FIGURE 1 in Phylogenetic relationships within the genus Staurois (Anura, Ranidae) based on 16S rRNA sequences

FIGURE 1. Picture of Staurois from Borneo, Brunei and the Philippines: a) Staurois nubilus from Palawan (photo: Rafe Brown); b) S. natator from Mindanao (photo: Rafe Brown); c) S. guttatus from Kalimantan (photo: Umilaela Arifin); d) S. tuberilinguis from Sabah (photo: Biofagri Rahmayuningtyas); e) S. parvus from Brunei (photo: Maxmilian Dehling); and f) S. latopalmatus from Kalimantan (photo: Umilaela Arifin)

opennotspecifiedJan 2011View details →
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FIGURE 3 in Phylogenetic relationships among the Epiperipatus lineages (Onychophora: Peripatidae) from the Minas Gerais State, Brazil

FIGURE 3. Distribution of the three major Epiperipatus clades (numbered I–III and enclosed by dotted lines) in the Minas Gerais State, Brazil. Putative species are numbered 1 to 10. The type locality of E. machadoi is marked by a square and the two known localities of E. acacioi are indicated by triangles. MG, Minas Gerais State; RJ, Rio de Janeiro State; ES, Espírito Santo State.

opennotspecifiedFeb 2011View details →
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FIGURE 2 in Phylogenetic relationships among the Epiperipatus lineages (Onychophora: Peripatidae) from the Minas Gerais State, Brazil

FIGURE 2. Bayesian Inference (BI) topology for combined mitochondrial data sets (COI + 12S rRNA) amongst the specimens studied, with Epiperipatus biolleyi as an outgroup. Bayesian posterior probabilities and bootstrap values are given in the following order: BI/MP/ML//NJ. Bootstrap values lower than 50% are represented by "−". Question marks indicate nodes that were not retrieved using methods other than BI.

opennotspecifiedFeb 2011View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
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