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FIG. 6 in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 6. — Dr René H. B. Fraaije, ferociously attacked by one of his dinosaurs at the entrance of the 'Oertijdmuseum' at Boxtel, the Netherlands. Anterior view. u, up; ll, left lateral. Scale bar: 15 cm.
FIG. 26. — A in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 26. — A, Consensus tree of the matrix based on Duboys de Lavigerie et al. 2020. The numbers at the nodes indicate the Bremer support values.
FIG. 8. — Persufflatius renefraaijeni n. gen., n in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 8. — Persufflatius renefraaijeni n. gen., n. sp., MAB 010293, holotype. Posterodorsal view. a, anterior; l, lateral. Scale bar: 10 cm.
FIG. 1 in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 1. — Location of the holotype of Persufflatius renefraajieni n. gen., n. sp.: A, in the Netherlands (green), the blue square indicates the type locality; B, the vicinity of Liessel. The holotype of Persufflatius renefraaijeni n. gen., n. sp. was discovered at 'De Brink' (bright blue spot, 51°25'40"N, 5°49'46"E).
FIG. 7. — Persufflatius renefraaijeni n. gen., n in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 7. — Persufflatius renefraaijeni n. gen., n. sp.; MAB 010293, holotype and some closely related species. Line drawings in dorsal view, on the same scale. a, anterior; rl, right lateral. A, Isanacetus laticephalus MFM 28501, holotype; B, 'Balaenoptera' ryani CASG 1733, MFM 28501; C, Pelocetus calvertensis USNM 11976, holotype; D, Atlanticetus patulus USNM 23690, holotype; E, Morenocetus parvus MPL 5-11, holotype; F, Persufflatius renefraaijeni n. gen., n. sp., MAB 010293, holotype (original: right, purple-grey side; mirrored: left, green side); G, Tiucetus rosae MNHN.F.PPI261, holotype; H, 'Diorocetus' chichibuensis SMNH- VeF-68, holotype; I, 'Diorocetus' shobarensis HMN-F00005, holotype; J, Uranocetus gramensis MSM p 813, holotype; K, Parietobalaena palmeri USNM 10668, holotype; L, USNM 16119, referred specimen; M, Diorocetus hiatus USNM 16783, holotype. Scale bar 20 cm.
FIG. 16. — Persufflatius renefraaijeni n. gen., n in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 16. — Persufflatius renefraaijeni n. gen., n. sp., MAB 010293, holotype. Lateral stereo view and annotated line draw of the endocast of the right cerebral imprint as preserved. d, dorsal; a, anterior. Grey areas, missing fragments due to fracture. At the right side is the imprint of the frontoparietal lobe. To the left is the protruding imprint of the laterally protruding temporal lobe. Scale bars: 5 cm.
FIG. 12. — Persufflatius renefraaijeni n. gen., n in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 12. — Persufflatius renefraaijeni n. gen., n. sp., MAB 010293, holotype. Ventral view, with the periotic in place. l, lateral; p, posterior. Dashed magenta line, (maximum) estimated shape of the missing tip of the anterior process, based on the limited room left by the posterodorsal part of the pseudoval foramen and the shape and curvature of the preserved part of the anterior process of the periotic; pink surface, pseudoval process. Scale bar: 10 cm.
FIG. 21. — Persufflatius renefraaijeni n. gen., n in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 21. — Persufflatius renefraaijeni n. gen., n. sp., MAB 010293, holotype. Posterior view. d, dorsal; l, lateral. Scale bar: 10 cm. TABLE 6. — Measurements of periotic foramina in mm.
FIG. 20. — Persufflatius renefraaijeni n. gen., n in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 20. — Persufflatius renefraaijeni n. gen., n. sp., MAB 010293, holotype. Right periotic in situ in squamosal. Light blue line, burrow. Ventral view.
FIG. 19. — Persufflatius renefraaijeni n. gen., n in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 19. — Persufflatius renefraaijeni n. gen., n. sp., MAB 010293, holotype. Right periotic: E, posterior view; F, lateroventral view. a, anterior; d, dorsal; l, lateral. Scale bar: 5 cm.
FIG. 15. — Persufflatius renefraaijeni n. gen., n in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 15. — Persufflatius renefraaijeni n. gen., n. sp., MAB 010293, holotype. Medial view without periotic. d, dorsal; l, lateral; p, posterior. Stereo image. Scale bars: 10 cm.
FIG. 5. — Persufflatius renefraaijeni n. gen., n in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 5. — Persufflatius renefraaijeni n. gen., n. sp.; MAB 010293, holotype. The neurocranium of Persufflatius n. gen. compared to the outline drawings of Pelocetus, Atlanticetus, Parietobalaena, Piscobalaena (a typical Cetotheriidae) and Balaenoptera acutorostrata (a typical derived Balaenopteridae). Notice the rounded, bulbous, 'inflated' shape of the postglenoid process, the exoccipital, the anterior squamosal and the supraoccipital (arrows).
FIG. 4. — Persufflatius renefraaijeni n. gen., n in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 4. — Persufflatius renefraaijeni n. gen., n. sp., MAB 010293, holotype, partial right neurocranium: A, posterior view; B, posterodorsal view; C, dorsal view; D, anterior view; E, anteroventral-ventral view (with periotic removed); F, anteroventral view (with periotic in place). Colour images: original; grey images: reconstruction of the left side by mirroring the original. Scale bar: 30 cm.
FIG. 27. — A in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 27. — A, Consensus tree of the matrix based on Bisconti et al. 2020. The numbers at the nodes are Bremer support values.
FIG. 25 in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 25. — Camera lucida drawings of the bone samples shown in Fig. 24: A, anterior parietal (at vertex); compactness: 0.545; B, pterygoid-squamosal suture; compactness: 0.631; C, anteroventral squamosal border; compactness: 0.594; D, posterior fracture of anterior supraoccipital; compactness: 0.836; E, postglenoid process; compactness: 0.348; F, jugular notch; compactness: 0.461; G, medial anterior supraoccipital shield; compactness: G1, top: 0.808; G2, middle: 0.509; G3, bottom: 0.775; H, base of the zygomatic process; compactness: 0.391; I, lateral exoccipital; compactness: 0.413. The bone compactness was calculated using 'Bone ProfileR' (Girondot & Laurin 2003). Scale bar: 10 mm. See also Table 4.
FIG. 24 in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 24. — Series of bone samples of the neurocranium of the holotype (MAB 010293), showing some different bone structures. Left, neurocranium of holotype: A, anterior view; B, posterior to posterodorsal view; C, posterodorsal view. a, anterior; d, dorsal; m, medial; l, lateral. Magenta ovals show positions where the bone samples were taken. Scale bar: 10 cm exept photos of the bone samples (on the right), to the same scale (10 mm).
FIG. 3 in The discovery of a Balaenomorpha (Persufflatius renefraaijeni n. gen., n. sp.) from the upper Miocene of the Netherlands sheds new light on the cranial anatomy of archaic rorqual relatives
FIG. 3. — Distribution chart of palynomorphs in the sandy sample, the newly defined specimen (MAB 010293) was dated from. The sample, consisting of fine glauconitic sand, was intercalated between the periotic and the squamosal of the holotype. Abbreviations: SP, sporomorphs; MP, miscellaneous palynomorphs.
Figures 85–88 Figures 85–86 in Reanalysis of the Yunnan population of Scorpiops kubani with a description of a new species, Scorpiops lowei sp. n. (Scorpiones: Scorpiopidae)
Figures 85–88 Figures 85–86. The PTC recorded for all the specimens studied from these four populations. The number above each column represents the sample size of the pectines calculated with the corresponding number. Figure 87–88. Scatterplot showing the counts for IAD and MD of pedipalp movable fingers of the specimens from four populations: S. lowei sp. n., S. sp. (Jinghong), S. sp. (Menglun) and S. vachoni. Figure 87. Scatterplot generated for visualizing the means of IAD and MD on the left/right fingers of each individual (if one finger was abnormal, then it was excluded and cited only the counts of the normal finger). Figure 88. Scatterplot generated for visualizing the IAD and MD on both fingers of each individual (abnormal fingers were excluded).
Figures 33–45 in Reanalysis of the Yunnan population of Scorpiops kubani with a description of a new species, Scorpiops lowei sp. n. (Scorpiones: Scorpiopidae)
Figures 33–45: Scorpiops lowei sp. n., male holotype, pedipalp chela dorsal (33), external (34) and ventral (35) view, patella dorsal (36), external (37) and ventral (38) view, femur and trochanter dorsal (39), external (40) and ventral (41) view, left movable finger (42), right movable finger (43), and dorsal (44) and ventral (45) views of chelicera. The trichobothrial pattern is indicated in Figures 33–38 and finger dentition is captioned in Figures 42–43. Scale bar = 1 mm.
Figures 31–32 in Reanalysis of the Yunnan population of Scorpiops kubani with a description of a new species, Scorpiops lowei sp. n. (Scorpiones: Scorpiopidae)
Figures 31–32: Scorpiops lowei sp. n., sternites under UV light. Figures 31. Male holotype. Figures 32. Female allotype. Scale bar = 1 mm.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.