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Fig. 8 in Taxonomic implications of describing a new species of Loimia (Annelida, Terebellidae) with two size-dependent morphotypes

Fig. 8. Phylogenetic reconstruction after Maximum Likelihood analyses of the cox1 fragment. Bootstrap support values (BS) above nodes.

opencc-by-4.0Jul 2022View details →
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Fig. 3 in Taxonomic implications of describing a new species of Loimia (Annelida, Terebellidae) with two size-dependent morphotypes

Fig. 3. Loimia davidi sp. nov., holotype (CEAB A.P. 935A), preserved. A–C. Chaetae from chaetiger 11. A. Alimbate capillary chaeta. B. Unilimbate capillary chaeta. C. Bilimbate capillary chaeta. — D–G. Chaetiger 12. D. Ventro-lateral section of thoracic parapodium. E. Uncini of the same, arranged in two rows, back to back. F. Single thoracic uncinus of the same. G. Detail of the uncinal growing region of the same. — H–I. Segment 25. H. Abdominal parapodium (arrow pointing to uncinal growing zone). I. Single abdominal uncinus of the same.

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Fig. 1 in Taxonomic implications of describing a new species of Loimia (Annelida, Terebellidae) with two size-dependent morphotypes

Fig. 1. Loimia davidi sp. nov., holotype (CEAB A.P. 935A), living. A. Entire body in two fragments. B. Thorax and anterior abdomen, lateral view. C. Thorax, ventral view. D. Fragment of tube.

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Fig. 6 in Taxonomic implications of describing a new species of Loimia (Annelida, Terebellidae) with two size-dependent morphotypes

Fig. 6. Loimia davidi sp. nov., paratype MNCN 16.01/19140. A. Alimbate capillary chaeta. B. Unilimbate capillary chaeta. C. Position of the thoracic uncini from segment 10. D. Single thoracic uncinus from segment 10 (thorax). E. Single abdominal uncinus from segment 22 (abdomen).

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Fig. 7 in Taxonomic implications of describing a new species of Loimia (Annelida, Terebellidae) with two size-dependent morphotypes

Fig. 7. Loimia gigantea (Montagu, 1819), ARC-Loimia-IND2. A. Dorsolateral section of thoracic neuropodium 12, showing the uncinal growing zone (black arrow). B. View of entire abdominal neuropodium 4. C. Detail of the uncinal arrangement of abdominal neuropodium 4. D. Uncinus from thoracic neuropodium 8. E. Uncinus from abdominal neuropodium 4.

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Text-fig. 1. Modern vegetation proxies as delivered by the Drudge 1 and 2 tools for Parschlug. Left column results from KovarEder et al. (2021) based on the floristic spectrum published by Kovar-Eder et al. (2004). The other three columns result from three variants using the enlarged floristic spectrum herein. Differences between variants 1–3 from this study are caused by differences in assignment of some taxa and morphotypes (see Appendix 1). European vegetation formations: Formation C – Subarctic, boreal and nemoral-montane open woodlands as well as subalpine and oro-Mediterranean vegetation; Formation D – Mesophytic and hygromesophytic coniferous and mixed broad-leaved-coniferous forests; Formation F – Mesophytic broadleaved deciduous and mixed broadleaved/conifer forests; Formation G – Thermophilous mixed deciduous broadleaved forests; Formation J – Mediterranean sclerophyllous forests and scrub; Formation K – Xerophytic coniferous forests, coniferous woodland and scrub. East Asian vegetation types: MCF China, Japan – Montane Coniferous Forests China, Honshu, Yakushima; BLDF N and NE Provinces, China – Broad-leaved Deciduous Forests of the Northern and Northeastern Provinces (China); BLDF Upper Yangtze, Honshu – Broad-leaved Deciduous Forest, Upper Yangtze Provinces, Mt. Emei, and Honshu; MMF China – Mixed Mesophytic Forest, Lower Yangtze Provinces; BLEF China, Japan – Broad-leaved Evergreen Forests, China, Japan; Meili Snow Mt. high altitude SCL and BLF, China – Meili Snow Mt., Sclerophyllous and broad-leaved forest zone (2,580-3,650 m alt.). (Designations of European vegetation formations follow Bohn et al. (2004) and Asian ones follow Kovar-Eder et al. (2021). in Floristic, Vegetation And Climate Assessment Of The Early/Middle Miocene Parschlug Flora Indicates A Distinctly Seasonal Climate

Text-fig. 1. Modern vegetation proxies as delivered by the Drudge 1 and 2 tools for Parschlug. Left column results from KovarEder et al. (2021) based on the floristic spectrum published by Kovar-Eder et al. (2004). The other three columns result from three variants using the enlarged floristic spectrum herein. Differences between variants 1–3 from this study are caused by differences in assignment of some taxa and morphotypes (see Appendix 1). European vegetation formations: Formation C – Subarctic, boreal and nemoral-montane open woodlands as well as subalpine and oro-Mediterranean vegetation; Formation D – Mesophytic and hygromesophytic coniferous and mixed broad-leaved-coniferous forests; Formation F – Mesophytic broadleaved deciduous and mixed broadleaved/conifer forests; Formation G – Thermophilous mixed deciduous broadleaved forests; Formation J – Mediterranean sclerophyllous forests and scrub; Formation K – Xerophytic coniferous forests, coniferous woodland and scrub. East Asian vegetation types: MCF China, Japan – Montane Coniferous Forests China, Honshu, Yakushima; BLDF N and NE Provinces, China – Broad-leaved Deciduous Forests of the Northern and Northeastern Provinces (China); BLDF Upper Yangtze, Honshu – Broad-leaved Deciduous Forest, Upper Yangtze Provinces, Mt. Emei, and Honshu; MMF China – Mixed Mesophytic Forest, Lower Yangtze Provinces; BLEF China, Japan – Broad-leaved Evergreen Forests, China, Japan; Meili Snow Mt. high altitude SCL and BLF, China – Meili Snow Mt., Sclerophyllous and broad-leaved forest zone (2,580-3,650 m alt.). (Designations of European vegetation formations follow Bohn et al. (2004) and Asian ones follow Kovar-Eder et al. (2021).

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Text-fig. A3. a: Leaf morphotype 1 Tebano MSF SG 049. b: Leaf morphotype 2 Oriolo MSF 631. c: Leaf morphotype 3 Oriolo MSF n.n. d, f: Leaf morphotype 4. d: Oriolo MSF 891. e: Oriolo MSF 856. f: Oriolo MSF 858. g: Leaf morphotype 5 Oriolo MSF 783. h: Leaf morphotype 6 Oriolo MSF 952. i: Leaf morphotype 7 Oriolo MSF 862. j, l: Leaf morphotype 8. j: Oriolo MSF 912. k: Oriolo MSF 662. l: Oriolo MSF 662-1. m: Leaf morphotype 9 Oriolo MSF 715. n: Leaf morphotype 10 Oriolo MSF 716. o: Leaf morphotype 11, overview and detail of margin Oriolo MSF 880. p–z: Various rosaceous leaves/ leaflets. p: Oriolo MSF 943. q: Oriolo MSF 890. r: Oriolo MSF 950. s: Oriolo MSF 958. t: Oriolo MSF 966 aff. Sorbus. u: Oriolo MSF 956. v: Oriolo MSF 961. w: Oriolo MSF 962. x: Oriolo MSF 874. y: Oriolo MSF 883. z: Oriolo MSF 960. in The Late Early Pleistocene Flora Of Oriolo, Faenza (Italy): Assembly Of The Modern Forest Biome

Text-fig. A3. a: Leaf morphotype 1 Tebano MSF SG 049. b: Leaf morphotype 2 Oriolo MSF 631. c: Leaf morphotype 3 Oriolo MSF n.n. d, f: Leaf morphotype 4. d: Oriolo MSF 891. e: Oriolo MSF 856. f: Oriolo MSF 858. g: Leaf morphotype 5 Oriolo MSF 783. h: Leaf morphotype 6 Oriolo MSF 952. i: Leaf morphotype 7 Oriolo MSF 862. j, l: Leaf morphotype 8. j: Oriolo MSF 912. k: Oriolo MSF 662. l: Oriolo MSF 662-1. m: Leaf morphotype 9 Oriolo MSF 715. n: Leaf morphotype 10 Oriolo MSF 716. o: Leaf morphotype 11, overview and detail of margin Oriolo MSF 880. p–z: Various rosaceous leaves/ leaflets. p: Oriolo MSF 943. q: Oriolo MSF 890. r: Oriolo MSF 950. s: Oriolo MSF 958. t: Oriolo MSF 966 aff. Sorbus. u: Oriolo MSF 956. v: Oriolo MSF 961. w: Oriolo MSF 962. x: Oriolo MSF 874. y: Oriolo MSF 883. z: Oriolo MSF 960.

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Text-fig. 17. Angiosperm leaf morphotypes in late Aptian and early-middle Albian of Primorye. a, k: Dicotylophyllum sp. 1, 2; b: Araliaephyllum vittenburgii GOLOVN. et VOLYNETS; c: Araliaephyllum ussuriense (KRASSILOV) GOLOVN.; d: Trochodendroides sp., e: undescribed species, spec. IBSS 320-137; f: Asiatifolium elegans G.SUN, SHUANG X.GUO et SHAO L.ZHENG; g: Sapindopsis cf. angusta (HEER) SEWARD et V.M.CONWAY; h: Sapindopsis sp.; i: Achaenocarpites capitellatus KRASSILOV et VOLYNETS; j: Jixia pinnatipartita SHUANG X.GUO et G.SUN; l: Pandanites ahnertii (KRYSHT.) GOLOVN.; m: Araliaephyllum luciferum (KRYSHT.) GOLOVN. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia

Text-fig. 17. Angiosperm leaf morphotypes in late Aptian and early-middle Albian of Primorye. a, k: Dicotylophyllum sp. 1, 2; b: Araliaephyllum vittenburgii GOLOVN. et VOLYNETS; c: Araliaephyllum ussuriense (KRASSILOV) GOLOVN.; d: Trochodendroides sp., e: undescribed species, spec. IBSS 320-137; f: Asiatifolium elegans G.SUN, SHUANG X.GUO et SHAO L.ZHENG; g: Sapindopsis cf. angusta (HEER) SEWARD et V.M.CONWAY; h: Sapindopsis sp.; i: Achaenocarpites capitellatus KRASSILOV et VOLYNETS; j: Jixia pinnatipartita SHUANG X.GUO et G.SUN; l: Pandanites ahnertii (KRYSHT.) GOLOVN.; m: Araliaephyllum luciferum (KRYSHT.) GOLOVN.

opencc-by-4.0Dec 2021View details →
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FIG. 78. Striate elytral morphotypes. A, B. Morphotype 92, VMNH 95536. C, D. Morphotype 93, VMNH 97305. E, F. Morphotype 94, VMNH 97583. G, H. Morphotype 95, VMNH 98277. I, J. Morphotype 96, VMNH 95971. K, L. Morphotype 97, VMNH 96824 in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 78. Striate elytral morphotypes. A, B. Morphotype 92, VMNH 95536. C, D. Morphotype 93, VMNH 97305. E, F. Morphotype 94, VMNH 97583. G, H. Morphotype 95, VMNH 98277. I, J. Morphotype 96, VMNH 95971. K, L. Morphotype 97, VMNH 96824. Scale bars: 0.5 mm.

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FIG. 77. Striate elytral morphotypes. A, B. Morphotype 86, VMNH 50186. C, D. Morphotype 87, VMNH 97304. E, F. Morphotype 88, VMNH 97376. G, H. Morphotype 89, VMNH 98968. I, J. Morphotype 90, VMNH 129483. K, L. Morphotype 91, VMNH 97346 in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 77. Striate elytral morphotypes. A, B. Morphotype 86, VMNH 50186. C, D. Morphotype 87, VMNH 97304. E, F. Morphotype 88, VMNH 97376. G, H. Morphotype 89, VMNH 98968. I, J. Morphotype 90, VMNH 129483. K, L. Morphotype 91, VMNH 97346. Scale bars: 0.5 mm.

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FIG. 67. Morphotype 61, VMNH 49597. A. Counterpart. B in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 67. Morphotype 61, VMNH 49597. A. Counterpart. B. Foreleg of part. C. Head of counterpart. D. Foreleg of counterpart showing bilobed segment. E. Elytron covered in dense, fine nodules. Scale bars: A: 5 mm; B–D: 1 mm; E: 0.5 mm.

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FIG. 68. Smooth elytral morphotypes. A, B. Morphotype 62, VMNH 97505. C, D. Morphotype 63, VMNH 99030. E, F. Morphotype 64, VMNH 95504. G, H. Morphotype 65, VMNH 97607. I, J. Morphotype 66, VMNH 97319. K, L. Morphotype 67, VMNH 97104 in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 68. Smooth elytral morphotypes. A, B. Morphotype 62, VMNH 97505. C, D. Morphotype 63, VMNH 99030. E, F. Morphotype 64, VMNH 95504. G, H. Morphotype 65, VMNH 97607. I, J. Morphotype 66, VMNH 97319. K, L. Morphotype 67, VMNH 97104. Scale bars: 0.5 mm.

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FIG. 72. Punctate elytral morphotypes. A–C. Morphotype 74, VMNH 97509. D–F. Morphotype 75, VMNH 97500 in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 72. Punctate elytral morphotypes. A–C. Morphotype 74, VMNH 97509. D–F. Morphotype 75, VMNH 97500. Scale bars: 1 mm.

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FIG. 65. Morphotype 60, AMNH 04-59. A, B. Part. C in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 65. Morphotype 60, AMNH 04-59. A, B. Part. C. Left elytron of part showing rows of punctures. D. Head of part. E. Counterpart, head not preserved. F. Elytral apex of counterpart. Scale bars: A–E: 1 mm; F: 0.5 mm.

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FIG. 76. Striate elytral morphotypes. A, B. Morphotype 80, VMNH 95483. C, D. Morphotype 81, VMNH 95443. E, F. Morphotype 82, VMNH 96665. G, H. Morphotype 83, VMNH 96826. I, J. Morphotype 84, VMNH 97581. K, L. Morphotype 85, VMNH 54201 in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 76. Striate elytral morphotypes. A, B. Morphotype 80, VMNH 95483. C, D. Morphotype 81, VMNH 95443. E, F. Morphotype 82, VMNH 96665. G, H. Morphotype 83, VMNH 96826. I, J. Morphotype 84, VMNH 97581. K, L. Morphotype 85, VMNH 54201. Scale bars: 0.5 mm.

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FIG. 69. Elytral morphotypes with color patterns and nodules. A, B. Morphotype 68, VMNH 54567. C, D. Morphotype 69, VMNH 95448. E–G. Morphotype 70, VMNH 95487 in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 69. Elytral morphotypes with color patterns and nodules. A, B. Morphotype 68, VMNH 54567. C, D. Morphotype 69, VMNH 95448. E–G. Morphotype 70, VMNH 95487. Scale bars: A–F: 0.5 mm, G: 0.1 mm.

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FIG. 64. Morphotype 59 in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 64. Morphotype 59, YPM IP 016838. A, B. Part. C. Counterpart, head not preserved. D. Left elytron of part showing rows of fine punctures. E. Head and pronotum of part. Scale bars: A–C: 1 mm; D, E: 0.5 mm.

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FIG. 73. Punctate elytral morphotypes. A–C. Morphotype 76, AMNH 04-87. D–F. Morphotype 77, VMNH 97571 in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 73. Punctate elytral morphotypes. A–C. Morphotype 76, AMNH 04-87. D–F. Morphotype 77, VMNH 97571. Scale bars: A, B, D, E: 1 mm; C, F: 0.25 mm.

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FIG. 58. Morphotype 53 in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 58. Morphotype 53, YPM IP 016827. A, B. Habitus. C. Right elytron showing striae and irregular cells. Photograph taken without ethanol and specimen tilted at an angle. Scale bars: A, B: 0.5 mm; C: 0.25 mm.

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FIG. 61. Morphotype 56, VMNH 129481. A, B. Habitus. C. Partial head and thorax. D in Remarkable Diversity Of Beetles (Coleoptera) In The Late Triassic (Norian) "Solite Deposit" Of Virginia And North Carolina

FIG. 61. Morphotype 56, VMNH 129481. A, B. Habitus. C. Partial head and thorax. D. Left elytron showing dense punctures and depressed, anterolateral ledge. Scale bars: A, B: 1 mm; C, D: 0.5 mm.

opencc-by-4.0May 2024View 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