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Appendix 4 in Kryptonesticus deelemanae gen. et sp. nov. (Araneae, Nesticidae), with notes on the Mediterranean cave species

Appendix 4. Records of Typhlonesicus absoloni (Kratochvíl, 1933) from Cetinjska pećina from the CBSS collection. Date format: dd.mm.yyyy.

opencc-by-3.0Dec 2017View details →
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Fig. 2. Sampling localities. A in Glossostyles perspicua gen. et sp. nov. and other fungivorous Cecidomyiidae (Diptera) new to the Czech and Slovak Republics

Fig. 2. Sampling localities. A. Velká Kotlina Glacial Cirque (Czech Republic) with a Malaise trap used in 2006. Frequent avalanches are the main cause of the unique subalpine biodiversity of this locality (e.g., more than 350 species of vascular plants have been recorded from there) B. Hrončecký grúň Reserve in Poľana Mts (Slovak Republic) with a Malaise trap used in 2005. This is a virgin forest mainly composed of fir and beech intermixed with ash, spruce and sycamore maple and with an enormous and unique diversity of flies (see Roháček & Ševčík 2009). Photos by J. Ševčík

opencc-by-3.0Mar 2017View details →
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Fig. 3 in Glossostyles perspicua gen. et sp. nov. and other fungivorous Cecidomyiidae (Diptera) new to the Czech and Slovak Republics

Fig. 3. Morphology of Glossostyles perspicua Jaschhof & Sikora gen. et sp. nov. A. Wing, setae omitted (♀ from Tyresta). B. Gonostylus, lateral (specimen from Tyresta). C. Female genitalia, lateral view (specimen from Tyresta). D. Male genitalia, ventral (holotype). E. Male fourth flagellomere, lateral view (holotype). F. Female fourth flagellomere, lateral (specimen from Tyresta). Scale bars: A = 1 mm; B–F = 0.05 mm.

opencc-by-3.0Mar 2017View details →
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Fig. 1. Sampling localities. A in Glossostyles perspicua gen. et sp. nov. and other fungivorous Cecidomyiidae (Diptera) new to the Czech and Slovak Republics

Fig. 1. Sampling localities. A. Rejvíz peat-bog (Czech Republic) with a Malaise trap used in 2004. A well preserved postglacial peat-bog with Pinus rotundata growth. B. Rejvíz peat-bog with the Malaise trap used in 2005. Photos by J. Ševčík.

opencc-by-3.0Mar 2017View details →
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Fig. 7 in Osteology and relationships of Rhinopycnodus gabriellae gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon

Fig. 7. Rhinopycnodus gabriellae gen. et sp. nov. Caudal skeleton of holotype CLC S-725. The arrows point at the more external principal caudal rays.

opencc-by-3.0Dec 2013View details →
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Fig. 5 in Osteology and relationships of Rhinopycnodus gabriellae gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon

Fig. 5. Rhinopycnodus gabriellae gen. et sp. nov. Pelvic girdle of holotype CLC S-725, surrounding pelvic and postcloacal scales and beginning of the anal fin.

opencc-by-3.0Dec 2013View details →
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Fig. 4 in Osteology and relationships of Rhinopycnodus gabriellae gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon

Fig. 4. Rhinopycnodus gabriellae gen. et sp. nov. Reconstruction of the skull and shoulder girdle of holotype CLC S-725.

opencc-by-3.0Dec 2013View details →
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Fig. 8 in Osteology and relationships of Rhinopycnodus gabriellae gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon

Fig. 8. Rhinopycnodus gabriellae gen. et sp. nov. A. The first twelve scales of the dorsal ridge. B. Three scales of the ventral keel.

opencc-by-3.0Dec 2013View details →
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Fig. 5 in Hidden in plain sight, Chaetopterus dewysee sp. nov. (Chaetopteridae, Annelida) - A new species from Southern California

Fig. 5. Maximum likelihood tree of Chaetopterus Cuvier, 1830 spp. COI sequences with the Mesochaetopterus Potts, 1914 clade as outgroup, based on Moore et al. (2017). Only bootstrap supports> 80 are shown. The new species Chaetopterus dewysee sp. nov. and C. variopedatus (Renier, 1804) from the type locality are in bold. Number of sequences included for each terminal is in brackets. Details on sequences that were analyzed can be found in Table 1. Haplotype network for the nine Chaetopterus dewysee sp. nov. sequences is shown next to the tree.

opencc-by-4.0May 2020View details →
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Fig. 4 in Hidden in plain sight, Chaetopterus dewysee sp. nov. (Chaetopteridae, Annelida) - A new species from Southern California

Fig. 4. Chaetopterus dewysee sp. nov. micro-CT surface renderings of the cybertype (SIO-BIC A12034). A. Dorsal view of the whole specimen. B. Lateral view of the whole specimen. C. Frontal view with virtual dissection planes (I–III) showing cross-sections along the body. D–E. Lateral view with a virtual dissection window showing the parapodial musculature of region A. Direct link to cybertype: www.morphdbase.de/?E_Tilic_20200122-S-5.1

opencc-by-4.0May 2020View details →
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Fig. 2 in Hidden in plain sight, Chaetopterus dewysee sp. nov. (Chaetopteridae, Annelida) - A new species from Southern California

Fig. 2. Chaetopterus dewysee sp. nov. A. Habitus of a paratype (SIO-BIC A11653). B–C. Anterior region A, chaetigers are numbered a1–10. D–E. Details of chaetiger a4 cutting chaetae; * marks a developing cutting chaeta. p = palps, ey = eyes, cg = ciliated groove, nt = notopodium.

opencc-by-4.0May 2020View details →
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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.

opencc-by-3.0Jun 2017View details →
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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.

opencc-by-3.0Jun 2017View details →
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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.

opencc-by-3.0Jun 2017View details →
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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.

opencc-by-3.0Jun 2017View details →
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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.

opencc-by-3.0Jun 2017View details →
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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.

opencc-by-3.0Jun 2017View details →
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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.

opencc-by-3.0Jun 2017View details →
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Appendix Morphometric parameters of Chaetonotus (Chaetonotus) antrumus Kolicka sp. nov. Abbreviations: N = number of specimens or structures analysed; Range = the smallest and the largest structure measurement found among all specimens measured; SD = standard deviation. All measurements are given in micrometers (μm); all indicators are given as a percentage (%) and italicized. in A new species of freshwater Chaetonotidae (Gastrotricha, Chaetonotida) from Obodska Cave (Montenegro) based on morphological and molecular characters

Appendix Morphometric parameters of Chaetonotus (Chaetonotus) antrumus Kolicka sp. nov. Abbreviations: N = number of specimens or structures analysed; Range = the smallest and the largest structure measurement found among all specimens measured; SD = standard deviation. All measurements are given in micrometers (μm); all indicators are given as a percentage (%) and italicized.

opencc-by-3.0Sep 2017View details →
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Fig. 1 in Ufocandona hannaleeae gen. et sp. nov. (Crustacea, Ostracoda) from an artesian well in Texas, USA

Fig. 1. Type locality for Ufocandona hannaleeae gen. et sp. nov. A. The Edwards Aquifer (in blue). B. The unconfined (tan) and confined (blue) portions of the Edwards Aquifer. C. The city of San Marcos, the San Marcos artesian well, and San Marcos springs. Red line shows approximate boundary of the freshwater-saline water interface.

opencc-by-3.0Nov 2017View details →

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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

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.

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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