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    FIGURE 5 in Description of a new cyprinid species, Labeo meroensis n. sp. (Teleostei: Cyprinidae), from the River Nile

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    FIGURE 5. Type locality of Labeo meroensis n. sp.: river Nile at Shendi, Republic of Sudan. View upstream (above) and view to the shore (below) from middle of river.Published as part of Moritz, Timo, 2007, Description of a new cyprinid species, Labeo meroensis n. sp. (Teleostei: Cyprinidae), from the River Nile, pp. 55-62 in Zootaxa 1612 on page 61, DOI: 10.5281/zenodo.17896

    Postcranial skeletal development of the Atlantic herring (Clupeomorpha: Clupeidae: Clupea harengus)

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    Fischbach, Vivian, Moritz, Timo, Thieme, Philipp (2022): Postcranial skeletal development of the Atlantic herring (Clupeomorpha: Clupeidae: Clupea harengus). Zoologischer Anzeiger 299: 189-199, DOI: 10.1016/j.jcz.2022.06.002, URL: http://dx.doi.org/10.1016/j.jcz.2022.06.00

    Figure 4 in Ontogeny and homology of the basipterygoid articulation in Pantodon buchholzi (Teleostei: Osteoglossomorpha)

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    Figure 4. Neurocranium and left hyopalatine arch of Pantodon buchholzi, lateral view. A, 5.3 mm. B, 7.0 mm. C, 11.5 mm. D, 13.5 mm. E, 17.5 mm. F, 57.0 mm.Published as part of Moritz, Timo & Britz, Ralf, 2005, Ontogeny and homology of the basipterygoid articulation in Pantodon buchholzi (Teleostei: Osteoglossomorpha), pp. 1-13 in Zoological Journal of the Linnean Society 144 (1) on page 6, DOI: 10.1111/j.1096-3642.2005.00163.x, http://zenodo.org/record/543378

    Description of two new Bathyaethiops species (Teleostei: Alestidae) from the Congo basin

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    Moritz, Timo, Schliewen, Ulrich K. (2016): Description of two new Bathyaethiops species (Teleostei: Alestidae) from the Congo basin. Zootaxa 4117 (4): 476-490, DOI: 10.11646/zootaxa.4117.4.

    Figure 5 in Ontogeny and homology of the basipterygoid articulation in Pantodon buchholzi (Teleostei: Osteoglossomorpha)

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    Figure 5. SEMs of parasphenoid (A, B) and endopterygoid (C, D) of 57.0 mm Pantodon buchholzi. A, ventral view. B, posterior and slightly ventral view. C, posterior and slightly medial view on the internal face. D, dorsal view of the articular groove.Published as part of Moritz, Timo & Britz, Ralf, 2005, Ontogeny and homology of the basipterygoid articulation in Pantodon buchholzi (Teleostei: Osteoglossomorpha), pp. 1-13 in Zoological Journal of the Linnean Society 144 (1) on page 8, DOI: 10.1111/j.1096-3642.2005.00163.x, http://zenodo.org/record/543378

    FIGURE 10 in Description of two new Bathyaethiops species (Teleostei: Alestidae) from the Congo basin

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    FIGURE 10. Pigmentation pattern (only melanophores) of species presently recognized in the genus Bathyaethiops. A—B. flammeus (type locality); B—B. flammeus (Boende); C—B. caudomaculatus (strong pigmentation); D—B. greeni;E—B. caudomaculatus (weak pigmentation); F—B. breusenghemi; G—B. baka; H—B. atercrinis.Published as part of Moritz, Timo & Schliewen, Ulrich K., 2016, Description of two new Bathyaethiops species (Teleostei: Alestidae) from the Congo basin, pp. 476-490 in Zootaxa 4117 (4) on page 488, DOI: 10.11646/zootaxa.4117.4.2, http://zenodo.org/record/25792

    Figure 4 in Postcranial skeletal development of Mugil cephalus (Teleostei: Mugiliformes): morphological and life-history implications for Mugiliformes

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    Figure 4. Detailed photographs of the anterior vertebral column of a cleared and stained specimen of Mugil cephalus (DMM IE/16314; L6: 6.5 mm standard length). A, dorsal view. B, dorsolateral view of the right side. Abbreviations: ec, epicentral; ep, epipleural; pa, parapophysis; ri, rib; vc, vertebral centrum. Scale bars: 200 µm.Published as part of Thieme, Philipp, Vallainc, Dario & Moritz, Timo, 2021, Postcranial skeletal development of Mugil cephalus (Teleostei: Mugiliformes): morphological and life-history implications for Mugiliformes, pp. 1071-1089 in Zoological Journal of the Linnean Society 192 (4) on page 1078, DOI: 10.1093/zoolinnean/zlaa123, http://zenodo.org/record/530143

    Figure 5 in A true caudal fin or not? New insights in the evolution of the gadiform caudal fin

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    Figure 5. Caudal fins of Gadiformes, cleared and stained specimens. A, Coryphaenoides rupestris, Macrouridae, DMM IE/16887, 449 mm TL; B, Muraenolepis microps, Muraenolepididae, ZMH 115205, 145 mm total length (TL); C–E, Trachyrincus scabrus, Trachyrincidae, DMM IE/15809, 140 mm TL (C), 148 mm TL (D), 170 mm TL (E). Abbreviations: ha, haemal arch; hs, haemal spine; na, neural arch; ns, neural spine; pt, pterygiophore; t, terminal centrum; x, terminal dorsal element; y, terminal ventral element; * indicates haemal and neural spines associated with terminal centrum 3.Published as part of Moritz, Timo, Walter, Jacqueline, Grunow, Bianka & Thieme, Philipp, 2023, A true caudal fin or not? New insights in the evolution of the gadiform caudal fin, pp. 26-44 in Zoological Journal of the Linnean Society 199 (1) on page 34, DOI: 10.1093/zoolinnean/zlad017, http://zenodo.org/record/832607

    Figure 1 in A true caudal fin or not? New insights in the evolution of the gadiform caudal fin

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    Figure 1. Neutral nomenclature for skeletal elements of the caudal fin in Gadiformes used in this study; here on a schematized Phycis blennoides. Dorsal terminal elements are coloured in orange, ventral terminal elements in green, and other elements of the vertebral column in grey. Abbreviations: ha, haemal arch; hs, haemal spine; na, neural arch; ns, neural spine; t, terminal centrum; x, terminal dorsal element; y, terminal ventral element; *indicates haemal and neural spines associated with terminal centrum 3.Published as part of Moritz, Timo, Walter, Jacqueline, Grunow, Bianka & Thieme, Philipp, 2023, A true caudal fin or not? New insights in the evolution of the gadiform caudal fin, pp. 26-44 in Zoological Journal of the Linnean Society 199 (1) on page 29, DOI: 10.1093/zoolinnean/zlad017, http://zenodo.org/record/832607

    Figure 2 in Postcranial skeletal development of Mugil cephalus (Teleostei: Mugiliformes): morphological and life-history implications for Mugiliformes

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    Figure 2. Schematic illustration of the sequence of first appearance and development of skeletal elements in Mugil cephalus. Ossification of cartilaginous precursors is shown by the first appearance of bone. The end of the bar indicates the end of isometric growth of the respective structure. Length is shown as notochord length (*) or as standard length (specimen after notochord flexion). Dots indicate hatching, and random dashed lines indicate notochord flexion. Light grey bars, cartilage; dark grey bars, notochordal sheath; black bars, bone. Abbreviations: abdo, abdominal vertebrae; abp, anterior basipterygial process; af, anal fin rays; ap, anal fin pterygiophores; ba, basipterygial arm; bp, basipterygial plate; caud, caudal vertebrae; cl, cleithrum; co, coracoid; d1f, first dorsal fin rays; d1p, first dorsal fin pterygiophores; d2f, second dorsal fin rays; d2p, second dorsal fin pterygiophores; dr, distal radials; eu, epural; ew, external wing; fr, fin rays; ha, haemal arch; hs, haemal spine; hyp, hypural; ip, interdorsal pterygiophores; iw, internal wing; na, neural arch; ns, neural spine; pbp, posterior basipterygial process; pcd, dorsal postcleithrum; pcv, ventral postcleithrum; ph, parhypural; pr, proximal radial; ptm, posttemporal; ri, paired ribs; sc, scapula; su, supracleithrum; uc, ural centrum; ur, uroneural; vc, vertebral centrum.Published as part of Thieme, Philipp, Vallainc, Dario & Moritz, Timo, 2021, Postcranial skeletal development of Mugil cephalus (Teleostei: Mugiliformes): morphological and life-history implications for Mugiliformes, pp. 1071-1089 in Zoological Journal of the Linnean Society 192 (4) on page 1076, DOI: 10.1093/zoolinnean/zlaa123, http://zenodo.org/record/530143
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