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Figure 17 in A late Eocene wood assemblage from the Crooked River Basin, Oregon, USA
Figure 17. Sapindaceae. Klaassenoxylon wilkinsonae sp. nov. A, B. Diffuse-porous wood. Vessels solitary and in short radial multiples, UF 278-84877, TS. C. Crowded alternate intervessel pitting, some coalescent apertures, UF 278-84877, TLS. D. Vessel-ray parenchyma pitting similar to intervessel pitting, procumbent ray cells, UF 278-84877, RLS. E. Rays with barely procumbent and square cells, UF 278-84897, RLS. F. Uniseriate rays, crystals in chambered fibers (C), UF 278-84877, TLS. G. Uniseriate rays, septate fibers (S= septae), TLS. H. Chambered crystals in fibers, UF 278-84897, TLS. I. Complex pith, UF 278-84882, TS. J, K. Longitudinal sections ofpith, UF 278-84882. Scale bars=500 µm in A, I; 200 µm in B, J; 100 µm in E. F, K; 50 µm in G; 20 µm in C, D, H.
Figure 16 in A late Eocene wood assemblage from the Crooked River Basin, Oregon, USA
Figure 16. Sapindaceae. Aesculus constabularisii sp. nov., UF 278-84887. A‒C. Vessels concentrated at the beginning of the growth ring, vessels solitary and in short radial multiples, TS. D. Simple perforation plates; fine fairly widely spaced helical thickenings throughout the vessel element, RLS. E, F. Simple perforation plates, procumbent ray cells, RLS. G. Crowded alternate intervessel pitting, TLS. H. Vessel-ray parenchyma pitting, RLS. I, J. Uniseriate rays, simple perforation plates (PP), widely spaced tyloses. K. Uniseriate rays, simple perforation plates (PP), crowded alternate intervessel pitting. L. Helical thickenings in vessel element at left, procumbent ray cells, small vessel-ray parenchyma pits (VRP). Scale bars=200 µm in A, B; 100 µm in C, I, J; 50 µm in D, K, L; 20 µm in E, F, G, H.
Figure 15 in A late Eocene wood assemblage from the Crooked River Basin, Oregon, USA
Figure 15. Urticales, Cannabaceae/Moraceae Wood Type 2. UF 278-84906. A, B. Distinct growth rings, vessels solitary and in short radial multiples, occasional clusters; thin-walled tyloses, TS. C. Simple perforation plate in narrow vessel element with helical thickenings, RLS. D. Series of vessel elements with crowded alternate intervessel pitting, angular in outline, TLS. E. Crowded alternate intervessel pitting, TLS. F. Vessel-ray parenchyma pitting with reduced borders, round to oval in outline, RLS. G. Thin-walled tyloses, rays predominantly multiseriate, weakly differentiated sheath cells (S), ray cells polygonal in outline, TLS. H. Heterocellular rays with procumbent body cells; thin-walled tyloses, RLS. I. Heterocellular ray, crystals (C) in square and upright ray cells, RLS. Scale bars=500 µm in A; 200 µm in B; 100 µm in G, H; 50 µm in D, I; 20 µm in C, E, F.
Figure 13 in A late Eocene wood assemblage from the Crooked River Basin, Oregon, USA
Figure 13. Urticales. Urticaleoxylon stevensii, sp. nov., UF 278-84893. A. Wood semi-ring-porous, vessels solitary and in radial multiples. B, C. Vessels solitary and radial multiples of 2‒3; marginal, scanty paratracheal, and vasicentric axial parenchyma. D. Alternate intervessel pitting, oval to slightly angular in outline, thin-walled tyloses. E. Vessel-ray parenchyma pits (VRP) horizontally elongated. F. Ray composed of procumbent body cells and square to upright marginal cells, simple perforation plates, axial parenchyma strands adjacent to vessels. G, H. Rays 1 to 4‒5-seriate, multiseriate rays usually with one marginal square/upright cell; uniseriate rays not common, axial parenchyma strands of four cells. I. Solitary prismatic crystal (C) in marginal ray cell, widely spaced thin-walled tyloses. Scale bars=500 µm in A; 200 µm in B, G; 100 µm in C, F, H; 50 µm in I; 20 µm in D, E.
Figure 10 in A late Eocene wood assemblage from the Crooked River Basin, Oregon, USA
Figure 10. Juglandaceae. Carya leroyii sp. nov., UF 278-84908. A, B. Semi-ring-porous wood with vessels solitary and in radial multiples, axial parenchyma in narrow bands throughout the growth ring, thin-walled tyloses, TS. C. Radial multiple of 4, thin-walled tyloses, marginal axial parenchyma, crystal-containing idioblasts, TS. D. Crowded alternate intervessel pits, RLS. E, Vessel-ray parenchyma pitting of similar size as intervessel pits, RLS. F. Body of ray composed of procumbent cells, RLS. G. Thin-walled tyloses in vessel, rays 2‒3 (-4) seriate, crystals in chambered axial parenchyma cells, TLS. H. Oblique end walls of vessel elements (VE), rays 1‒3 (-4) seriate, axial parenchyma strands with crystals. I. Crystals in enlarged axial parenchyma cell (*) and in chambered axial parenchyma (AP). Scale bars=500 µm in A; 200 µm in B; 100 µm in C, F, G. H, I; 50 µm in D, E.
Figure 8. Fagaceae. Fagus dodgei. A‒C in A late Eocene wood assemblage from the Crooked River Basin, Oregon, USA
Figure 8. Fagaceae. Fagus dodgei. A‒C. Diffuse- to semi-ring-porous wood; vessels predominantly solitary; rays of two size classes; diffuse axial parenchyma, thick- to very thick-walled fibers, TS, UF 278-84888 (A), UF 278-84873 (B, C). D. Simple perforation plate (pp); fiber with distinctly bordered pits (FP); tyloses segmenting a vessel element (VE), RLS, UF 278-84896. E. Scalariform perforation plate; scalariform intervessel pitting, RLS, UF 278-84896. F. Scalariform intervessel pitting; procumbent ray cells, RLS, UF 278-84896. G. Intervessel pitting, TLS, UF 278-84896. H. Vessel-ray parenchyma pitting with reduced borders, UF 278-84896. I–K. Two size classes of rays, TLS, UF 278-84896 (I), UF 278-84873 (J), UF 278-84888 (K). Scale bars=500 µm in I, J, K; 200 µm in A, B; 100 µm in C; 50 µm in D, F; 20 µm in E, G, H.
Linked collectors and determiners for: Foraminiferal assemblages in the Hardangerfjord, western Norway.
Natural history specimen data linked to collectors and determiners held within, "Foraminiferal assemblages in the Hardangerfjord, western Norway". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/2372eba1-a784-48a3-980e-ae7798f12c7d">https://bionomia.net/dataset/2372eba1-a784-48a3-980e-ae7798f12c7d</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/2372eba1-a784-48a3-980e-ae7798f12c7d">https://gbif.org/dataset/2372eba1-a784-48a3-980e-ae7798f12c7d</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Cryptobiont assemblages's dataset of coral reefs using ARMS in B10 Reef and Mahahual Reef of the Great Caribbean.
Natural history specimen data linked to collectors and determiners held within, "Cryptobiont assemblages's dataset of coral reefs using ARMS in B10 Reef and Mahahual Reef of the Great Caribbean". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/054cfdf9-ccff-4eb3-a815-ee934cf11e04">https://bionomia.net/dataset/054cfdf9-ccff-4eb3-a815-ee934cf11e04</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/054cfdf9-ccff-4eb3-a815-ee934cf11e04">https://gbif.org/dataset/054cfdf9-ccff-4eb3-a815-ee934cf11e04</a>. Formatted as a Frictionless Data package.
Fig. 4. Rhenops odremani, n in A Middle Devonian Trilobite Assemblage from Venezuela
Fig. 4. Rhenops odremani, n. sp. (A–C) Cast made from holotype (an external mold), MBLUZ P 987, in (A) dorsal view; (B) frontal view; (C) lateral view; (DF) Paratype, MBLUZ P986; internal mold of cephalon in (D) dorsal view; (E) frontal view; (F) lateral view.
Fig. 3. Viaphacops venezuelensis, n in A Middle Devonian Trilobite Assemblage from Venezuela
Fig. 3. Viaphacops venezuelensis, n. sp., holotype, MBLUZ P33, internal mold of cephalon. (A) Dorsal view; (B) frontal view; (C) lateral view; (D) oblique dorsolateral view of right side.
Fig. 1 in A Middle Devonian Trilobite Assemblage from Venezuela
Fig. 1. Locality map of the Caño Colorado Area, Perijá Mountains, Zulia State, Venezuela, with insert map of northern South America. Approximate limit of Perijá Mountains indicated by stronger dashed line.
Fig. 2 in A Middle Devonian Trilobite Assemblage from Venezuela
Fig. 2. Geological column for the Caño del Oeste Formation, Caño Colorado Area, Perijá Mountains, Zulia, Venezuela (after Benedetto, 1984), showing the approximate stratigraphic levels of the trilobites described in this study.
Fig. 5 in A Middle Devonian Trilobite Assemblage from Venezuela
Fig. 5. (A, B) Rhenops odremani, n. sp. Paratype, MBLUZ P985; internal mold of pygidium. (A) dorsal view; (B) lateral view. (CE) Greenops perijaensis, n. sp., latex cast of external mold in the holotype, MBLUZ P1448. (C) Dorsal view; (D) frontal view; (E) lateral view.
Fig. 3 in Temporal variability of fish larvae assemblages: influence of natural and anthropogenic disturbances
Fig. 3. Principal Components Analysis of the environmental variables' matrixes recorded in the upper Uruguay River between October 2001 and March 2004. Sampling sites: LIG: Ligeiro, ULIG: Uruguay-Ligeiro, CH: Chapecó and UCH: Uruguay-Chapecó. Reproductive Periods: RP1: First Reproductive Period, RP2: Second Reproductive Period and RP3: Third Reproductive Period.
Fig. 2 in Temporal variability of fish larvae assemblages: influence of natural and anthropogenic disturbances
Fig. 2. Abundance of fish larvae in different stages of development recorded in the sampling sites of the upper Uruguay River from October 2001 to March 2004. Larval development stages: LY = Larval Yolk; PF = Pre-flexion; FL = Flexion and FP = Post-flexion. Sampling sites: LIG: Ligeiro, ULIG: Uruguay-Ligeiro, CH: Chapecó and UCH: Uruguay- Chapecó. Reproductive Periods: RP1: First Reproductive Period, RP2: Second Reproductive Period and RP3: Third Reproductive Period.
Fig. 1 in Temporal variability of fish larvae assemblages: influence of natural and anthropogenic disturbances
Fig. 1. Location of the sampling sites in the upper Uruguay River in southern Brazil. Samplings sites: LIG: Ligeiro, ULIG: Uruguay-Ligeiro, CH: Chapecó, UCH: Uruguay-Chapecó.
Figure 7 in Taxonomic review of the Neotropical Tetragonoderus quadriguttatus assemblage (Coleoptera: Carabidae: Cyclosomini) with description of T. deuvei, new species, and new West Indian and Nearctic locality records
Figure 7. Map illustrating known distribution of Tetragonoderus quadriguttatus complex in southern Florida, the West Indies and northern Colombia.
Figure 1 in Taxonomic review of the Neotropical Tetragonoderus quadriguttatus assemblage (Coleoptera: Carabidae: Cyclosomini) with description of T. deuvei, new species, and new West Indian and Nearctic locality records
Figure 1. Digital image illustrating dorsal habitus of Tetragonoderus deuvei, new species, female ("Jatahy, Goyaz", Brazil [MNHP]. SBL = 3.82 mm).
FIG. 6. — m2 g in Le site paléontologique du Grand Morier (Pont-Boutard, Indre-et-Loire, France): contexte géologique et détail biostratigraphique des formations cénozoïques à partir des assemblages de vertébrés fossiles
FIG. 6. — m2 g. isolée de Diaceratherium aurelianense (Nouel, 1866) (994- PBT-5) reprise dans le conglomérat de base du falun à bryozoaires (Langhien à Tortonien inférieur, assemblage n°5).
FIG. 4 in Le site paléontologique du Grand Morier (Pont-Boutard, Indre-et-Loire, France): contexte géologique et détail biostratigraphique des formations cénozoïques à partir des assemblages de vertébrés fossiles
FIG. 4. — Colonne lithostratigraphique synthétique des différentes formations sédimentaires du site paléontologique du Grand Morier: A, argile à spongiaires (Sénonien); B, surface de contact entre les formations du Crétacé supérieur et le conglomérat siliceux; C, conglomérat siliceux (Crétacé terminal-Éocène); D, argile sableuse verte (Éocène); E, calcaire lacustre avec ses poches d'argile noire de décalcification à son sommet (Oligocène-Agénien supérieur); F, sable continental (Orléanien inférieur); G, surface érosive de la transgression miocène; H, calcarénite à strates oblique (Burdigalien supérieur- Langhien inférieur);I, surface érosive entre la calcarénite à strates obliques et le conglomérat miocène; J, conglomérat de la base des faluns à bryozoaires (Langhien-Tortonien inférieur); K, falun à bryozoaires (Tortonien); L, sable à graviers (Miocène terminal-Pliocène); M, limons des plateaux chapeautés par la terre végétale actuelle (Quaternaire-Actuel).
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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)
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DANDI Archive for NWB datasets
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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.
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.