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Figure 4 in A revision of the extinct Mesozoic family Prochydoridae Smirnov, 1992 (Crustacea: Cladocera) with a discussion of its phylogenetic position
Figure 4. SEM micrographs of Archeoxus mirabilis from Khotont, Mongolia. A–C, holotype PIN 4307/2028, general view, head and ventral margin of valve. D, E, PIN 4307/2018, general view and antenna II. F, G, paratype PIN 4397/2007, antenna II and postabdominal claws. H, paratype PIN 4307/2012, general view. Scale bars: A, D, H, 1 mm; B, C, E–G, 0.1 mm.
Figure 6 in A revision of the extinct Mesozoic family Prochydoridae Smirnov, 1992 (Crustacea: Cladocera) with a discussion of its phylogenetic position
Figure 6. SEM (A–D, F) and optical (E, G, H) micrographs of Recent Anomopoda. A, Chydorus sphaericus. B, Leberis diaphanus. C, D, Daphnia barbata, lateral view and head. E, Saycia cooki, head shield. F, Eurycercus lamellatus, dissected head. G, Daphnia magna, exuvium. H, Daphnia magna, mandibular articulation. Scale bars: 0.1 mm.
Figure 7 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 7. Reconstruction of the postpharyngeal genital organs of Dreuxiola philippi sp. nov., seen from the right. Refer to the Appendix for a list of abbreviations.
Figure 4 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 4. Hard parts of the copulatory organ of Meidiama uruguayensis sp. nov. (A; inset, terminal opening in the holotype), Meidiama lutheri (B), and Meidiama schockaerti (C).
Figure 15 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 15. The needles and the muscular supports of the copulatory organ in the species of Serrula. A, Serrula byronensis sp. nov.; B, Serrula maxillaria sp. nov.; C, Serrula concharum sp. nov.; D, Serrula acuta sp. nov. Refer to the Appendix for a list of abbreviations.
Figure 3 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 3. Reconstruction of the copulatory organ in Meidiama lutheri and Meidiama uruguayensis sp. nov., seen from the left, based on sections of M. uruguayensis sp. nov. and the whole mounts of both species. Refer to the Appendix for a list of abbreviations.
Figure 14 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 14. Posteriormost body part in live animals. A, Serrula byronensis sp. nov.; B, Serrula maxillaria sp. nov.; C, Serrula concharum sp. nov. Refer to the Appendix for a list of abbreviations.
Figure 2 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 2. Sagittal reconstruction of the female system, seen from the left, of the species of Meidiama, mainly based on sections of Meidiama uruguayensis sp. nov. The lower figure is the continuation of the upper part. Refer to the Appendix for a list of abbreviations.
Figure 5. A in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 5. A living animal of Dreuxiola philippi sp. nov. Refer to the Appendix for a list of abbreviations.
Figure 11 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 11. Sagittal reconstruction of the postpharyngeal genital organs of Yorknia aprostatica sp. nov., seen from the left. Refer to the Appendix for a list of abbreviations.
Figure 5 in A revision of the extinct Mesozoic family Prochydoridae Smirnov, 1992 (Crustacea: Cladocera) with a discussion of its phylogenetic position
Figure 5. SEM micrographs of Palaeorak scherbakovi gen. nov., sp. nov. from Khasurty, Buryat Autonomous Republic, Russia. A–C, holotype, 5026/178, general view, head and antenna II. D, lateral view, 5026/183. E, denticles on ventral margin of valve, 5026/182. F, postabdominal claws, 5026/177. G, antenna II, PIN 5026/179. H, antenna II, 5026/181. Scale bars: A, D, 1 mm; B, C, E–H, 0.1 mm.
Figure 12 in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 12. Copulatory organ of Yorknia aprostatica sp. nov., as seen in the whole mounts. A, in the holotype; B, in the paratype. Refer to the Appendix for a list of abbreviations.
Figure 10. Drawings from a in A new family of lithophoran Proseriata (Platyhelminthes), with the description of seven new species from the Indo-Pacific and South America, and the proposal of three new genera
Figure 10. Drawings from a living animal of Yorknia aprostatica sp. nov. A, the whole animal; B, the postpharyngeal genital organs. Refer to the Appendix for a list of abbreviations.
Figure 17 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 17. Lucioblivio kozaensis gen. nov., sp. nov., holotype, female, 6.3 mm, NSMT-Cr 16662. A, pereopod 3; B, dactylus of pereopod 3; C, pereopod 4; D, dactylus of pereopod 4; E, coxa–merus of pereopod 5; F, pereopod 6; G, dactylus of pereopod 6; H, pereopod 7; I, dactylus of pereopod 7; J, pleopod 1 (plumose setae on rami are omitted); K, retinacula; L, bifid setae; M, pleopod 2 (rami are omitted); N, pleopod 3 (rami are omitted). Scale bars = 0.1 mm unless indicated otherwise.
Figure 14 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 14. Lucioblivio kozaensis gen. nov., sp. nov., holotype, female, 6.3 mm, NSMT-Cr 16662. A, antenna 1 (some flagellar articles are omitted); B, accessory flagellum of antenna 1; C, aesthetasc on flagellum of antenna 1; D, antenna 2; E, calceolus on peduncular article 5 of antenna 2; F, upper lip; G, lower lip; H, left mandible; I, left mandible; J, distal part of palp article 3 of left mandible; K, right mandible; L, maxilla 1; M, apical setae on palp of maxilla 1; N, robust apical setae on outer plate of maxilla 1; O, maxilla 2. Scale bars = 0.1 mm.
Figure 20 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 20. Strict consensus tree obtained by maximum parsimony analysis, rooted by the outgroup taxon Melita sp.
Figure 18 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 18. Scanning electron micrographs of Lucioblivio kozaensis gen. nov., sp. nov., female, 5.6 mm. A, calceolus on antenna 2; B, antenna 2; C, right mandible; D, incisor and racinia mobilis of right mandible; E, molar of right mandible.
Figure 8 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 8. Octopupilla felix gen. nov., sp. nov., holotype, female, 7.7 mm, NSMT-Cr 16655. A, upper lip; B, lower lip; C, left mandible; D, lacinia and incisor of left mandible; E, right mandible; F, lacinia and incisor of right mandible; G, right maxilla 1; H, inner plate of right maxilla 1; I, apical setae on palp of right maxilla 1; J, apical setae on palp of left maxilla 1; K, robust apical setae on outer plate of right maxilla 1; L, maxilla 2; M, maxilliped; N, inner plate of maxilliped; O, outer plate of maxilliped. Scale bars = 0.1 mm.
Figure 11 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 11. Octopupilla felix gen. nov., sp. nov., holotype, female, 7.7 mm, NSMT-Cr 16655. A, pereopod 5; B, dactylus of pereopod 5; C, pereopod 6; D, dactylus of pereopod 6; E, pereopod 7; F, dactylus of pereopod 7; G, pleopod 1 (some plumose setae on rami are omitted); H, retinacula; I, bifid setae; J, pleopod 2 (some articles of rami are omitted); K, pleopod 3 (some articles of rami are omitted). Scale bars = 0.1 mm.
Figure 7 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 7. Octopupilla felix gen. nov., sp. nov., holotype, female, 7.7 mm, NSMT-Cr 16655. A, habitus, left; B, head, left; C, antenna 1 (some flagellar articles are omitted); D, accessory flagellum of antenna 1; E, antenna 2 (some flagellar articles are omitted); F, telson, dorsal. Scale bars = 0.1 mm unless indicated otherwise.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
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.
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.
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.