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FIGURES 13–18 in Revision of the Australian Oenochroma vinaria Guenée, 1858 species-complex (Lepidoptera: Geometridae, Oenochrominae): DNA barcoding reveals cryptic diversity and assesses status of type specimen without dissection

FIGURES 13–18. Egg of Oenochroma barcodificata. sp. nov. 13: anterior pole, scale bar 300 micrometers. 14: micropylar area, scale bar 200 micrometers. 15: whole egg, scale bar 1 mm. 16: aeropyles, scale bar 35 micrometers. 17: chorion on middle top of egg, scale bar 50 micrometers. 18: lateral chorion, scale bar 500 Μm. (photos CY).

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FIGURES 10, 11. Female genitalia. 10 in Revision of the Australian Oenochroma vinaria Guenée, 1858 species-complex (Lepidoptera: Geometridae, Oenochrominae): DNA barcoding reveals cryptic diversity and assesses status of type specimen without dissection

FIGURES 10, 11. Female genitalia. 10: Oenochroma barcodificata sp. nov., Tasmania (paratype, DNA barcode LOTSA125-06/06-TASA-00125) (photo CY). 11: Oenochroma vinaria, South Australia (gen. prp. ZSM G 13864) (photo AH). Scale bars 2 mm.

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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

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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.)

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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.

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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.

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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.

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FIGURES 1–2. DNA barcoding results. 1 in A new hidden species of the Cymothoe caenis - complex (Lepidoptera: Nymphalidae) from western Africa

FIGURES 1–2. DNA barcoding results. 1. Map of Africa showing the collection sites for the specimens examined in this study. Sites where C. caenis s.s. and C. druryi sp. nov. were collected are represented by triangles and pentagons respectively. 2. Neighbor joining haplotype tree based on K2P distances between DNA barcodes. Each specimen is identified by its sample ID code (see Table 1). CAM = Cameroon, CAR = Central African Republic, DRC = Democratic Republic of the Congo, GAB = Gabon, GH = Ghana, GUI = Guinea, NIG = Nigeria, SL = Sierra Leone, RWA = Rwanda.

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FIGURE 5 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 5. Ecionemia megastylifera Wintermann-Kilian & Kilian, 1984: A. Dark specimen found growing under coral rubble (1 m depth). Arrows point to its oscules. Scale: 4 cm; B. Large dark specimen found on Solarte South 4 (0.4 m depth) growing on coral rubble. It is covered with sediments and overgrown by sponges (Chondrilla aff. nucula and Amphimedon erina) and algae. Scale: 5 cm; C. Elongated coffee–colored specimen collected in a small cavity on Sache (15 m depth); D. Close up of the surface (dried) revealing the cribriporal pores. Scale: 0.5 mm; E. Cross–section showing the skeletal architecture: cortex and choanosome [ZMBN 81782]. Scale: 1 mm; F. Cross–section of cortex and choanosome [INVPOR 1148, holotype]. Scale: 1 mm.

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FIGURE 11 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 11. Stryphnus raratriaenus sp. nov. [ZMBN 81642]: A. Holotype, alive, growing on coral rubble. A tangential cut in the specimen shows the whitish choanosome (arrow). Scale: 2 cm; B. Cross–section showing the skeletal architecture: cortex and choanosome. Arrow points to a dichotriaene. Scale: 1 mm; C. Detail of cross section (B) showing the dichotriaene. Note the large granular brown cells. Scale: 500 µm; D. Sanidaster. Scale: 2 µm; E. Oxyaster. Scale: 4 µm; F. Oxyaster with a dichotomous actine. Scale: 4 µm.

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FIGURE 15. Geodia gibberosa Lamarck, 1815 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 15. Geodia gibberosa Lamarck, 1815 [ZMBN 81780]: A. Plagiotriaene and sterrasters. Scale: 200 µm; B. Anatriaene cladome. Scale: 20 µm; C. Sterraster. Scale: 20 µm; D. Star–shaped smooth rosettes and hilum from a sterraster surface. Scale: 4 µm; E. Acanthoxyaster I. Scale: 4 µm; F. Acanthoxyaster II. Scale: 2 µm; G. Acanthoxyasters III. Scale: 2 µm; G. gibberosa [MNHN DT–608, holotype]: H. Smooth rosettes and hilum from a sterraster surface. Scale: 4 µm.

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FIGURE 8 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 8. Stelletta fibrosa (Schmidt, 1870) [ZMBN 81784]: A. Specimen with large oscule on top and smaller oscules on the sides (picture taken shortly after collection); B. Cross–section of specimen showing large and small oscules and their cloacae (large and small arrow). Cortex is clearly visible; C. Base of specimen: color is lighter and small roots are present (arrows). Scale: 2 cm; D. Cross–section showing the skeletal architecture: cortex and choanosome. scc: sub– cortical canal. Scale: 1 mm; S. fibrosa [MCZ 8020, lectotype]: E. Lectotype specimen. Scale: 1 cm; F. Cross–section of cortex and the choanosome. Scale: 1 mm.

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FIGURE 4 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 4. Cinachyrella kuekenthali (Uliczka, 1929) [ZMBN 81787]: A. Gross morphology. Scale: 5 cm; C. kuekenthali [ZMBN 81786]: B. Cross–section showing the skeletal architecture. Scale: 1 mm; C. Microxeas. Scale: 20 µm; D. Sigmaspire. Scale: 2 µm.

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FIGURE 16 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 16. Geodia papyracea (Hechtel, 1965) [UMPCW921]: A. Specimen in situ, growing on a mangrove root, arrow points to the oscule plate with uniporal oscules (Picture: Scott Nichols). Scale: 3 cm; B. Cross–section showing the skeletal architecture: cortex and choanosome. Note the confused arrangement of the megascleres in the choanosome. Scale: 1 mm; C. Sterraster, with an acanthostrongylaster by the warty hilum. Scale: 20 µm; D. Star–shaped warty rosettes from a sterraster surface. Scale: 4 µm; E. Acanthoxyaster I and acanthostrongylasters. Scale: 4 µm; F. Acanthoxyaster II. Scale: 4 µm; G. Acanthostrongylasters. Scale: 2 µm; G. papyracea [YPM 5045, holotype]: H. Warty rosettes and hilum from a sterraster surface. Scale: 4 µm.

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FIGURE 3 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 3. Cinachyrella apion (Uliczka, 1929) [ZMBN 80958]: A. Gross morphology; B. Cross–section showing the skeletal architecture. ect: ectosome. Scale: 1mm; C. Cross–section of oscule. ptI: protriaenes I, ptII: protriaenes II. Scale: 0.5 mm; D. Oxea II. Scale: 20 µm; E. Anatriaene. Scale: 10 µm; F. Sigmaspire. Scale: 1 µm.

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FIGURE 14. Geodia gibberosa Lamarck, 1815 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 14. Geodia gibberosa Lamarck, 1815: A. Large specimen hanging at the tip of a mangrove root. It is overgrown by the purple sponge Chalinula molibta, algae and oysters. Scale: 6 cm; B. Specimen with characteristic tumulose shape; C. Close up of oscular plates of an overgrown specimen in situ. Each oscule is uniporal. Scale: 4 cm; G. gibberosa: [ZMBN 81780]: D. Close up of the cribriporal pores. Scale: 1 mm; E. Cross–section showing the skeletal architecture: cortex and choanosome. Note the radial arrangement of the triaenes right under the cortex. Scale: 1 mm; F. Cross–section of a uniporal oscule. mx: cortical microxeas. s: sphincter. plgt: plagiotriaene. Scale: 0.5 mm.

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FIGURE 1 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 1. Map of the Bocas del Toro archipelago. () Sites surveyed in August 2007, and February 2008.

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FIGURE 2 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 2. Cinachyrella alloclada (Uliczka, 1929) [ZMBN 81788]: A. Specimen in situ. Scale: 1 cm; B. Cross–section showing the skeletal architecture. Scale: 1 mm; C. Oxea II. Scale: 20 µm; D. Oxea II. Scale: 20 µm; E. Anatriaenes. Scale: 20 µm; F. Sigmaspire. Scale: 1 µm.

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FIGURE 13. Erylus formosus Sollas, 1886 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 13. Erylus formosus Sollas, 1886: A. In situ, Adriana's reef (Picture: Deborah Gochfeld). Note the uniporal oscules. Scale: 6 cm; [ZMBN 81644]: B. Cross–section of the uniporal pores showing the skeletal architecture: cortex and choanosome. s: sphincter; p: polychaete living in the canals. Scale: 1 mm; C. Orthotriaene. Scale: 100 µm; D. Microrhabds and acanthotylaster. Scale: 10 µm; E. Aspidaster. Scale: 20 µm; F. Smooth rosettes with bifid or trifid rays on the surface of an aspidaster. Scale: 2 µm.

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FIGURE 7 in Morphological description and DNA barcodes of shallow-water Tetractinellida (Porifera: Demospongiae) from Bocas del Toro, Panama, with description of a new species

FIGURE 7. Spicule repertoire of Ecionemia megastylifera Wintermann-Kilian & Kilian, 1984. A. Oxea I; B. Oxea II; C. Dichotriaene; D. Cladome of protriaene; E. Cladome of anatriaene; F. Acanthomicrorhabds; G. Microxeas; H. Acanthotylaster; I. Acanthoxyaster. Scale 200 µm for A–B–C and F–G. Scale 20 µm for D–E. Scale 2 µm for H–I.

opennotspecifiedDec 2009View 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