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1,118 results for “subterranean biology”
Figure 3 from: Brescovit AD, Zampaulo RA, Pedroso LM, Cizauskas I (2021) Four new species of the genus Ochyrocera (Araneae, Ochyroceratidae) from iron caves of the state of Minas Gerais, with the description of the third anophtalmic species from Brazil. Subterranean Biology 41: 43-68. https://doi.org/10.3897/subtbiol.41.72895
Figure 3 SEM images of Ochyrocera dorinha sp. nov., male palp (IBSP 189194) A cymbial extension, prolateral view B same, prolateral view C cymbium and bulb, anterior view D cymbium, tarsal organ, detail E embolus, ventral view F embolus, distal area, detail, ventral view.
Figure 14 from: Brescovit AD, Zampaulo RA, Pedroso LM, Cizauskas I (2021) Four new species of the genus Ochyrocera (Araneae, Ochyroceratidae) from iron caves of the state of Minas Gerais, with the description of the third anophtalmic species from Brazil. Subterranean Biology 41: 43-68. https://doi.org/10.3897/subtbiol.41.72895
Figure 14 Distribution map of the four new species of Ochyrocera from the state of Minas Gerais (MG), Brazil: O. dorinha sp. nov. (yellow triangles), O. magali sp. nov. (blue circles), O. monica sp. nov. (pink circles), and O. rosinha sp. nov. (green stars).
Figure 10 from: Nilsai A, Detcharoen M, Godeiro NN, Jantarit S (2021) Four new species of troglomorphic Coecobrya Yosii, 1956 (Collembola, Entomobryidae) from Thailand based on morphological and molecular evidence, with an updated key of Thai troglomorphic species. Subterranean Biology 41: 1-42. https://doi.org/10.3897/subtbiol.41.76926
Figure 10 Coecobrya ellisi sp. nov., continued A Chaetotaxy of dorsal Th. II– III B Chaetotaxy of dorsal Abd. I– III C Chaetotaxy of dorsal Abd. IVD Chaetotaxy of dorsal Abd. V.
Figure 11 from: Brescovit AD, Zampaulo RA, Pedroso LM, Cizauskas I (2021) Four new species of the genus Ochyrocera (Araneae, Ochyroceratidae) from iron caves of the state of Minas Gerais, with the description of the third anophtalmic species from Brazil. Subterranean Biology 41: 43-68. https://doi.org/10.3897/subtbiol.41.72895
Figure 11 Ochyrocera rosinha sp. nov., male (IBSP 196435) A habitus, dorsal view B female (UFLA 60680), habitus, dorsal view C left male palp, prolateral view D same, retrolateral view. Abbreviations: C, cymbium; E, embolus; T, tegulum.
Figure 8 from: Brescovit AD, Zampaulo RA, Pedroso LM, Cizauskas I (2021) Four new species of the genus Ochyrocera (Araneae, Ochyroceratidae) from iron caves of the state of Minas Gerais, with the description of the third anophtalmic species from Brazil. Subterranean Biology 41: 43-68. https://doi.org/10.3897/subtbiol.41.72895
Figure 8 SEM images of Ochyrocera magali sp. nov., male palp (IBSP 188946) A cymbium and bulb, retrolateral view B palpal tibiae, retrolateral view C cymbium, distal area, retrolateral view D cymbial extension, retrolateral view, arrow indicating the tarsal organ E cymbium, tarsal organ, detail.
Figure 2 from: Brescovit AD, Zampaulo RA, Pedroso LM, Cizauskas I (2021) Four new species of the genus Ochyrocera (Araneae, Ochyroceratidae) from iron caves of the state of Minas Gerais, with the description of the third anophtalmic species from Brazil. Subterranean Biology 41: 43-68. https://doi.org/10.3897/subtbiol.41.72895
Figure 2 SEM images of Ochyrocera dorinha sp. nov., male (IBSP 198876) A carapace, anterior view B chelicerae, frontal view C endites, crosier-like macrosetae, dorsal view D epiandrous area, abdomen, ventral view E male palp, prolateral view F cymbium, distal view.
Figure 3 from: Ćurčić S, Vesović N, Vrbica M, Popović S, Radovanović Ž, Ćurčić NB, Rađa T (2021) A new species of Leonhardia Reitter, 1901 (Coleoptera, Leiodidae, Leptodirini) from Bosnia and Herzegovina, with a key to species of the genus. Subterranean Biology 41: 69-85. https://doi.org/10.3897/subtbiol.41.75613
Figure 3 SEM images of morphological features of Leonhardia solaki sp. nov. from the Golubnjača kod Skucana Pit, village of Skucani, close to the town of Glamoč, western Bosnia and Herzegovina A paratype male, habitus, dorsal aspect B paratype male, habitus, lateral aspect C paratype male, head, dorsal aspect D paratype male, microsculpture of head, dorsal aspect E paratype male, right antenna, dorsal aspect F paratype male, pronotum, dorsal aspect G paratype male, microsculpture of pronotum, dorsal aspect H paratype male, mesosternal carina, lateral aspect I paratype male, mesoventrite, ventral aspect J paratype male, scutellum, dorsal aspect K paratype male, elytra, dorsal aspect L paratype male, microsculpture of elytra, dorsal aspect. Scale bars: 1.0 mm (A, B); 0.5 mm (E, F, H, I, K); 0.2 mm (C, J); 0.1 mm (D, G, L).
Figure 7 from: Brescovit AD, Zampaulo RA, Pedroso LM, Cizauskas I (2021) Four new species of the genus Ochyrocera (Araneae, Ochyroceratidae) from iron caves of the state of Minas Gerais, with the description of the third anophtalmic species from Brazil. Subterranean Biology 41: 43-68. https://doi.org/10.3897/subtbiol.41.72895
Figure 7 Ochyrocera magali sp. nov., female (IBSP 196412) A habitus, dorsal view B male palp, retrolateral view C same, prolateral view D same, dorsal view E epyginal plate, ventral view F female genitalia (IBSP 188947), enzyme cleared, dorsal view. Abbreviations: C, cymbium; CE, cymbial extension, E, embolus, LP, lateral pockets, NUE, neck of uterus externus; PP, pore-plate, SP, spermathecae; T, tegulum; UE, uterus externus.
Figure 3 from: Iepure S, Bădăluţă C-A, Moldovan OT (2021) An annotated checklist of groundwater Cyclopoida and Harpacticoida (Crustacea, Copepoda) from Romania with notes on their distribution and ecology. Subterranean Biology 41: 87-108. https://doi.org/10.3897/subtbiol.41.72542
Figure 3 Distribution of Romanian groundwater copepods in Apuseni Mountains (numbers correspond to localities; cf. List of species in Suppl. material 1; green squares – Cyclopoida; blue squares – Harpacticoida).
Figure 2 from: Iepure S, Bădăluţă C-A, Moldovan OT (2021) An annotated checklist of groundwater Cyclopoida and Harpacticoida (Crustacea, Copepoda) from Romania with notes on their distribution and ecology. Subterranean Biology 41: 87-108. https://doi.org/10.3897/subtbiol.41.72542
Figure 2 The distribution of the four most abundat stygobite species of copepods in the dataset. a Distribution of Spelaeocamptus spelaeus (Harpacticoida) in Romania based on 16 occurences (15 caves and one tap water) b Distribution of Acanthocyclops milotai (Cyclopoida) in Romania based based on 13 occurences (caves) c Distribution of Diacyclops clandestinus in Romania based on 13 occurences (caves, hyporheic, wells, springs, tap water) d Distribution of Acanthocyclops kieferi in Romania based on 12 occurences (caves, hyporheic, wells, tap water).
Figure 5 from: Iepure S, Bădăluţă C-A, Moldovan OT (2021) An annotated checklist of groundwater Cyclopoida and Harpacticoida (Crustacea, Copepoda) from Romania with notes on their distribution and ecology. Subterranean Biology 41: 87-108. https://doi.org/10.3897/subtbiol.41.72542
Figure 5 Distribution of Romanian groundwater copepods in Dobrogea (numbers correspond to localities; cf. List of species – Suppl. material 1).
Figure 4 from: Iepure S, Bădăluţă C-A, Moldovan OT (2021) An annotated checklist of groundwater Cyclopoida and Harpacticoida (Crustacea, Copepoda) from Romania with notes on their distribution and ecology. Subterranean Biology 41: 87-108. https://doi.org/10.3897/subtbiol.41.72542
Figure 4 Distribution of Romanian groundwater copepods in Banat (numbers correspond to localities; cf. List of species – Suppl. material 1).
Supplementary material 1 from: Iepure S, Bădăluţă C-A, Moldovan OT (2021) An annotated checklist of groundwater Cyclopoida and Harpacticoida (Crustacea, Copepoda) from Romania with notes on their distribution and ecology. Subterranean Biology 41: 87-108. https://doi.org/10.3897/subtbiol.41.72542
Checklist of groundwater Copepoda (Cyclopoida, Harpacticoida) from Romania
Figure 1 from: Iepure S, Bădăluţă C-A, Moldovan OT (2021) An annotated checklist of groundwater Cyclopoida and Harpacticoida (Crustacea, Copepoda) from Romania with notes on their distribution and ecology. Subterranean Biology 41: 87-108. https://doi.org/10.3897/subtbiol.41.72542
Figure 1 Geological map and distribution of the subterranean localities in Romania with the location of the records of groundwater Cyclopoida (green square) and Harpacticoida (blue square) (I-V: biospeleological provinces after Gibert and Decu 1994).
Figure 9 from: Campos-Filho IS, Gallo JS, Gallão JE, Torres DF, Horta L, Carpio-Díaz YM, López-Orozco CM, Borja-Arrieta R, Aguiar JO, Bichuette ME (2022) Unique and fragile diversity emerges from Brazilian caves – two new amphibious species of Xangoniscus Campos-Filho, Araujo & Taiti, 2014 (Oniscidea, Styloniscidae) from Serra do Ramalho karst area, state of Bahia, Brazil. Subterranean Biology 42: 1-22. https://doi.org/10.3897/subtbiol.42.75725
Figure 9 Xangoniscus loboi sp. nov. Male A dorsal scale-seta B cephalon, frontal view C pleonites 4, 5 and telson D antennula E antenna F left mandible G right mandible H maxillula I maxilla J maxilliped.
Figure 8 from: Campos-Filho IS, Gallo JS, Gallão JE, Torres DF, Horta L, Carpio-Díaz YM, López-Orozco CM, Borja-Arrieta R, Aguiar JO, Bichuette ME (2022) Unique and fragile diversity emerges from Brazilian caves – two new amphibious species of Xangoniscus Campos-Filho, Araujo & Taiti, 2014 (Oniscidea, Styloniscidae) from Serra do Ramalho karst area, state of Bahia, Brazil. Subterranean Biology 42: 1-22. https://doi.org/10.3897/subtbiol.42.75725
Figure 8 Xangoniscus loboi sp. nov. A habitus, lateral view B habitus, dorsal view C habitus, lateral view D cephalon and pereonite 1, frontal view. Scale bar: 2 mm (A-C); 1 mm (D).
Figure 7 from: Campos-Filho IS, Gallo JS, Gallão JE, Torres DF, Horta L, Carpio-Díaz YM, López-Orozco CM, Borja-Arrieta R, Aguiar JO, Bichuette ME (2022) Unique and fragile diversity emerges from Brazilian caves – two new amphibious species of Xangoniscus Campos-Filho, Araujo & Taiti, 2014 (Oniscidea, Styloniscidae) from Serra do Ramalho karst area, state of Bahia, Brazil. Subterranean Biology 42: 1-22. https://doi.org/10.3897/subtbiol.42.75725
Figure 7 Xangoniscus lapaensis sp. nov. Male A genital papilla B pleopod 1 C Pleopod 2 D pleopod 3 exopod E pleopod 4 exopod F pleopod 5 exopod.
Figure 6 from: Campos-Filho IS, Gallo JS, Gallão JE, Torres DF, Horta L, Carpio-Díaz YM, López-Orozco CM, Borja-Arrieta R, Aguiar JO, Bichuette ME (2022) Unique and fragile diversity emerges from Brazilian caves – two new amphibious species of Xangoniscus Campos-Filho, Araujo & Taiti, 2014 (Oniscidea, Styloniscidae) from Serra do Ramalho karst area, state of Bahia, Brazil. Subterranean Biology 42: 1-22. https://doi.org/10.3897/subtbiol.42.75725
Figure 6 Xangoniscus lapaensis sp. nov. Male A uropod B pereopod 1 C pereopod 2 D pereopod 3 E pereopod 4 F pereopod 5 G pereopod 6 H pereopod 7.
Figure 3 from: Campos-Filho IS, Gallo JS, Gallão JE, Torres DF, Horta L, Carpio-Díaz YM, López-Orozco CM, Borja-Arrieta R, Aguiar JO, Bichuette ME (2022) Unique and fragile diversity emerges from Brazilian caves – two new amphibious species of Xangoniscus Campos-Filho, Araujo & Taiti, 2014 (Oniscidea, Styloniscidae) from Serra do Ramalho karst area, state of Bahia, Brazil. Subterranean Biology 42: 1-22. https://doi.org/10.3897/subtbiol.42.75725
Figure 3 Natural habitat and habitus of Xangoniscus loboi sp. nov. A karst area where Gruna da Pingueira II cave is located B karst and entrance of Gruna da Pingueira II cave C specimen of Xangoniscus loboi sp. nov. submerged on the silt substrate D damn inside the cave E specimens of Xangoniscus loboi sp. nov. feeding on seed fruits F specimens of Xangoniscus loboi sp. nov. submerged on silt and rocky substrate G specimens of Xangoniscus loboi sp. nov. submerged on the rocky substrate H stream inside Gruna da Pingueira II cave where Xangoniscus loboi sp. nov. occurs.
Figure 5 from: Campos-Filho IS, Gallo JS, Gallão JE, Torres DF, Horta L, Carpio-Díaz YM, López-Orozco CM, Borja-Arrieta R, Aguiar JO, Bichuette ME (2022) Unique and fragile diversity emerges from Brazilian caves – two new amphibious species of Xangoniscus Campos-Filho, Araujo & Taiti, 2014 (Oniscidea, Styloniscidae) from Serra do Ramalho karst area, state of Bahia, Brazil. Subterranean Biology 42: 1-22. https://doi.org/10.3897/subtbiol.42.75725
Figure 5 Xangoniscus lapaensis sp. nov. Male A dorsal scale-setae C pleonites 4 and 5, telson and uropod. Female B cephalon, frontal view D antennula E antenna F left mandible G right mandible H maxillula I maxilla J maxilliped.
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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)
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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.