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Fig. 4 in Two new endemic species of Bistriopelma (Araneae: Theraphosidae) from Peru, including a new remarkable horned tarantula
Fig. 4. Palpal bulb of Bistriopelma peyoi sp. nov., holotype, ♂ (MUBI 73). A. Prolateral view (arrow indicates the basal triangular projection on tegulum). B. Retrolateral view. Scale bars = 1mm.
Figs 24–29 in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades
Figs 24–29. Macrobiotus polypiformis sp. nov. 24. Chorion. 25. Long, hair-like flexible filaments on terminal discs. 26. Egg processes with faint annular undulations. 27. Surface between egg processes with reticular design. 28. Terminal discs with small, randomly arranged granules. 29. Small granules on filaments. All in SEM. Scale bars in μm.
Figs 20–23 in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades
Figs 20–23. Macrobiotus polypiformis sp. nov. 20. Chorion. 21. Long, hair-like flexible filaments on terminal discs. 22. Egg processes and the surface between egg processes with reticular design. 23. Egg processes with filaments. All in PCM. Scale bars in μm.
Figs 16–19 in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades
Figs 16–19. Macrobiotus polypiformis sp. nov., paratypes. 16. Granulation on the II pair of legs, arrow (PCM). 17. Granulation on IV pair of legs, arrow (PCM). 18. Granulation on II pair of legs (SEM). 19. Modified claw IV (arrowheads) and granulation on IV pair of legs, arrow (SEM). Scale bars in μm.
Figs 3–6 in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades
Figs 3–6. Macrobiotus polypiformis sp. nov. 3. Cuticular pores visible in PCM (paratype). 4. Cuticular pores visible in SEM (paratype). 5–6. Bucco-pharyngeal apparatus (dorso–ventral projection), the filled arrowhead indicates the first macroplacoid with central constriction (Fig. 5 = paratype in PCM; Fig. 6 = holotype in DIC). Scale bars in μm.
Figs 7–9 in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades
Figs 7–9. Macrobiotus polypiformis sp. nov., paratypes. 7. Third band of teeth visible under PCM (empty arrowhead). 8–9. Oral cavity armature (SEM), the filled arrowheads indicate teeth of the first band, arrows indicate teeth of the second band, the empty arrowheads indicate teeth of the third band, M = median teeth, L = lateral teeth, a = accessory teeth, rhombi = ring folds, asterisks = ventral side.
Figs 10–15. Claws. 10. Claw II in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades
Figs 10–15. Claws. 10. Claw II with smooth lunules (PCM, paratype). 11. Claw IV (PCM, holotype). 12. Indented lunules on claw IV (PCM, paratype). 13. Claw I with smooth lunules (SEM, paratype). 14. Claw IV with indented lunules (SEM, paratype). 15. Aberrant claw IV (SEM, paratype). Numbers 1–2 indicate normally developed claw branches/spurs, whereas 3–4 indicate aberrant claw branches/ spurs. Scale bars in μm.
Figs 1–2 in Macrobiotus polypiformis sp. nov., a new tardigrade (Macrobiotidae; hufelandi group) from the Ecuadorian Pacific coast, with remarks on the claw abnormalities in eutardigrades
Figs 1–2. Macrobiotus polypiformis sp. nov., holotype, habitus, dorso-ventral projection. 1. Seen in PCM. 2. Seen in DIC. Scale bars in μm.
Fig. 1 in Global checklist of species of Grania (Clitellata: Enchytraeidae) with remarks on their geographic distribution
Fig. 1. Specimen of Grania chilensis Prantoni, De Wit & Erséus, 2016. Photograph by Pierre De Wit.
Fig. 2 in Global checklist of species of Grania (Clitellata: Enchytraeidae) with remarks on their geographic distribution
Fig. 2. World map showing the description localities, and the three evolutionary lineages (color-marked) of Grania spp. genetically analyzed by Prantoni et al. (2016: clades A, B and C). Green numbers = Atlantic species (clade A); red numbers = South Pacific and Atlantic species (clade B); blue numbers = Australian and Asian species (clade C); black numbers = species presently without molecular data, i.e., not yet allocated to any particular lineage.
Fig. 7 in A new species of Lynceus Müller, 1776 from New Caledonia (Crustacea: Branchiopoda: Laevicaudata) from dolines, with remarks on zoogeography
Fig. 7. Lynceus insularis sp. nov., ♀, light microscopy (allotype, ZMUC-CRU-4784), thoracopods of right side seen from anterior. A–I. Thoracopods 1–9. J. Close-up of dorsal part of exopod of thoracopod 9. K–M. Thoracopods 10–12. N. Opercular lamellae seen from anterior. O. Lamina abdominalis of left side seen from dorsal side. P. Close-up of rod-like structure proximal to endite 1. Abbreviations: e1–e5 = endites 1–5.
Fig. 5 in A new species of Lynceus Müller, 1776 from New Caledonia (Crustacea: Branchiopoda: Laevicaudata) from dolines, with remarks on zoogeography
Fig. 5. Lynceus insularis sp. nov., scanning electron microscopy (paratypes, ZMUC-CRU-4787; A, Ƌ; B–F, ♀). A. Head, rostrum and labrum of right side. B. Second antenna, left side. C. Gnathal edge of mandible, left side. D. First maxillae from posterior. E. First maxilla, left side, from ventral. F. Posteriomedial spine bearing corner of first maxilla.
Fig. 4 in A new species of Lynceus Müller, 1776 from New Caledonia (Crustacea: Branchiopoda: Laevicaudata) from dolines, with remarks on zoogeography
Fig. 4. Lynceus insularis sp. nov., ♀, scanning electron microscopy (ZMUC-CRU-4787). A. Left lateral view with carapace valve removed. B. Head/rostrum, anterior view. C. Rostrum, anterior view. D. Frontal sensory fields and pore leading to compound eyes. E–F. Lamella abdominalis and eggs of left side. G. Attachment of thoracopod 10 exopod to eggs.
Fig. 8 in A new species of Lynceus Müller, 1776 from New Caledonia (Crustacea: Branchiopoda: Laevicaudata) from dolines, with remarks on zoogeography
Fig. 8. Lynceus insularis sp. nov., ♀, scanning electron microscopy (paratype, ZMUC-CRU-4787). Thoracopod 1 of left side from anterior. A. View of entire limb. B. Endites 4–5 and endopod. C. Close-up of scraping setae of endopod. D. Close-up of marginal setation of endite 2. E. Close-up of intermediatesized seta of endite 2. F. Endite 1. G. Close-up of spiniform setae of endite 1. H. Close-up of proximal setae of endite 2.
Fig. 3 in A new species of Lynceus Müller, 1776 from New Caledonia (Crustacea: Branchiopoda: Laevicaudata) from dolines, with remarks on zoogeography
Fig. 3. Lynceus insularis sp. nov., ƋƋ, scanning electron microscopy (paratypes, ZMUC-CRU-4787). A. Right lateral view with carapace valve removed. B. Right ventrolateral view with carapace valve removed. C. Head and rostrum, anterior view. D. Rostrum/labrum, anterior view. E. Dorsal organ. F. Frontal sensory fields. G. First antenna, right side. H. Rostrum, labrum and first antennae from posterior. I. Clasper, right side seen from anterior. J. Clasper, right side seen from posterior.
Fig. 6 in A new species of Lynceus Müller, 1776 from New Caledonia (Crustacea: Branchiopoda: Laevicaudata) from dolines, with remarks on zoogeography
Fig. 6. Lynceus insularis sp. nov., Ƌ, light microscopy (holotype, ZMUC-CRU-4783), thoracopods of right side seen from anterior. A. Thoracopod 1 (clasper limb). B. Clasper of thoracopod 1. C–K. Thoracopods 2–10. Abbreviations: e1–e5 = endites 1–5.
Fig. 1 in A new species of Lynceus Müller, 1776 from New Caledonia (Crustacea: Branchiopoda: Laevicaudata) from dolines, with remarks on zoogeography
Fig. 1. Aerial photographs of the distribution area of Lynceus insularis sp. nov. in New Caledonia and photographs of the type locality. A. Overview of New Caledonia. B. Close-up of southern part of New Caledonia with position of localities where L. insularis sp. nov. has been found. C. Overview of mining area with four out of the five sinkholes where L. insularis sp. nov. has been found. The type locality is DOL-03. The fifth locality (DOL-16) is approximately 9 km NE of DOL-03, outside of the area shown. D–E. Type locality (DOL-03) of L. insularis sp. nov. F–G. Additional localities of D. insularis sp. nov., DOL-02 and DOL-07, respectively. A–C modified from Google Earth.
Fig. 2-3 in Two new Atomaria S , 1829 (Coleoptera: Cryptophagidae) from the Oriental Region with remarks on further Atomaria species
Fig. 2-3: (2) Atomaria schuhi nov.sp., paratype, male, West Java; (3) Atomaria lewisi REITTER, 1877 from Europe. Fig. 4-5: (4) Atomaria horridula REITTER, 1877, China; (5) Atomaria incertula JOHNSON, 1971, Nepal.
Figure 2 in A remarkable new genus and species of Rogadinae (Hymenoptera: Braconidae) of uncertain tribal placement, from Papua New Guinea, resembling Betylobraconini stat. nov.
Figure 2. Cyranorogas depardeui gen. nov. et sp. nov. Holotype female: (A) mesoscutum to scutellum, dorsal view; (B) mesosoma lateral view; (C) propodeum and metasomal tergites 1–3, oblique dorsal view.
Figure 1 in A remarkable new genus and species of Rogadinae (Hymenoptera: Braconidae) of uncertain tribal placement, from Papua New Guinea, resembling Betylobraconini stat. nov.
Figure 1. Cyranorogas depardeui gen. nov. et sp. nov. Holotype female: (A) habitus; (B) head, lateral view; (C) head, dorsal view; (D) head, anterior view.
ScienceDex guides
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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.