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2,359 results for “Southwest”
Bathymetric,Magnetic data and code for Coupled detachment faulting and hydrothermal circulation at 49.7°E Southwest Indian Ridge revealed by seafloor magnetism
<p>The dataset contains the Dragon Horn area bathymetric data, near-bottom magnetic survey data, and the SimPEG (V0.15.2) source code used in the forward and inversion of magnetic anomalies.</p>
FIGURE 8 in Revision of goblin spiders (Araneae: Oonopidae) in the Nansei Islands, Southwest Japan, with description of a new species
FIGURE 8. Ischnothyreus ogatai sp. nov. (A–D Holotype female: NSMT-Ar 21921and E–L Paratype male: NSMT-Ar 21922 from Iriomote Island) A, E Habitus, dorsal view. B, F Habitus, ventral view. G Habitus, lateral view. C Epigastric region, ventral view. D Epigastric region, clarified, ventral view. H Carapace and chelicerae, frontal view. I Chelicerae, posterior view. J Left palp, prolateral view. K Left palp, dorsal view. L Left palp, retrolateral view. Scale bars: 0.5mm (A, B, E–G); 0.1 mm (C, D, I–L).
FIGURE 10 in Revision of goblin spiders (Araneae: Oonopidae) in the Nansei Islands, Southwest Japan, with description of a new species
FIGURE 10. Heteroonops spinimanus (Simon, 1892) (A–E female: NSMT-Ar 21923 from Okinawa Island) and Orchestina flava Ono, 2005 (F–I male and J–L female: NSMT-Ar 21924 from Iriomote Island).A, J Habitus, dorsal view. B Habitus, ventral view. C Habitus, lateral view. F Carapace, dorsal view. D, G, K Carapace, frontal view. C Habitus, lateral view. E, L Epigastric region, ventral view. H Left palp, ventral view. I Left palp, dorso-retrolateral view. Scale bars: 0.5 mm (A–D, J); 0.2 mm (F, G, K); 0.1 mm (E, H, I, L).
FIGURE 7 in Revision of goblin spiders (Araneae: Oonopidae) in the Nansei Islands, Southwest Japan, with description of a new species
FIGURE 7. Ischnothyreus peltifer (Simon, 1891) (A–E male and F–H female: NSMT-Ar 21918 from Iriomote Island) and Ischnothyreus velox Jackson, 1908 (I–M male and N–P female: NSMT-Ar 21919 from Shimoji Island). A, F, I, N Habitus, dorsal view. B, G, J, O Habitus, lateral view. C Carapace and chelicerae, frontal view. D Carapace and chelicerae, lateral view. E, K Left palp, retrolateral view. L Left palp, dorsal view, M Left palp, prolateral view. H, P Epigastric region, ventral view. Arrows in Fig. 7E and 7L–M indicate a triangular lobe and a thin appendix, respectively. Scale bars: 1.0 mm (A, B, F, G, N, O); 0.5 mm (I, J), 0.2 mm (C, D); 0.1 mm (E, H, K–M, P).
FIGURE 9 in Revision of goblin spiders (Araneae: Oonopidae) in the Nansei Islands, Southwest Japan, with description of a new species
FIGURE 9. Ischnothyreus ogatai sp. nov. (A–C Holotype female: NSMT-Ar 21921 and D–J Paratype male: NSMT-Ar 21922 from Iriomote Island) A, D Habitus, dorsal view. B Epigastric region, ventral view. E Habitus, lateral view. C Epigastric region, clarified, ventral view. F Carapace and chelicerae, frontal view. G Chelicerae, ventral view. H Left palp, prolateral view. I Left palp, dorsal view, J Left palp, retrolateral view. Abbreviations: ap—apodeme, atr—atrium, fsp—finger-shaped sclerotized process, sr—sclerotized ridge, wt—winding tube, vpr—ventral protuberance. Scale bars: 0.5 mm (A, D, E); 0.1 mm (B, C, F–J). Arrows 1, 2 indicate two processes on distal part of palp.
FIGURE 6 in Revision of goblin spiders (Araneae: Oonopidae) in the Nansei Islands, Southwest Japan, with description of a new species
FIGURE 6. Ischnothyreus narutomii (Nakatsudi, 1942) (A, B, D–F male: FB, per. coll., from Kanagawa Prefecture; C, G male: FB, per.coll., from Yakushima Island; H, I, K female: FB, per. coll., from Kanagawa Prefecture; J, L female: FB, per. coll., from Yakushima Island). A, C, H, J Habitus, dorsal view. B, I Habitus, lateral view. D Carapace, frontal view. E Left palp, dorsal view. F, G Left palp, retrolateral view. K, L Epigastric region, ventral view. Abbreviations: 0.5 mm (A–C, H–J); 0.2 mm (D); 0.1 mm (E–G, K, L).
FIGURE 5. Opopaea deserticola Simon, 1891 in Revision of goblin spiders (Araneae: Oonopidae) in the Nansei Islands, Southwest Japan, with description of a new species
FIGURE 5. Opopaea deserticola Simon, 1891 (A–C male: NSMT-Ar 21912 from Okinawa Island and D–F female: NSMT-Ar 21913 from Yonaguni Island) and Opopaea syarakui (Komatsu, 1967) (G–K male: FB, per. coll., from Izena Island and L–P female: NSMT-Ar 21915 from Kumamoto Prefecture). A, D, G, L Habitus, dorsal view. B Prosoma, lateral view. H, M Habitus, lateral view. I, N Habitus, ventral view. C, J Left palp, retrolateral view. E, O Epigastric region, ventral view. F, K, P Abdomen, frontal view. Abbreviations: cb—cymbiobulbus, fm—femur, pt—patella, pds—pedicel tube dorsolateral spikes, psr—paired scutuml ridges. Scale bars: 0.5 mm (A, D, G–I, L–N); 0.25 mm (B, F, K, O, P); 0.1 mm (C, E, J).
FIGURE 3 in Revision of goblin spiders (Araneae: Oonopidae) in the Nansei Islands, Southwest Japan, with description of a new species
FIGURE 3. Xyphinus karschi (B̂senberg & Strand, 1906) (A–E male: NSMT-Ar 21909 and F–H female: NSMT-Ar 21910 from Okinawa Island, I female from Kumamoto Prefecture). A, F Habitus, dorsal view. B Habitus, lateral view. C, G Habitus, ventral view. D Left palp, dorso-prolateral view. E Left palp, retrolateral view. H, I Epigastric region, ventral view. Scale bars: 0.5 mm (A–C, F, G); 0.1 mm (D, E, H, I).
FIGURE 4 in Revision of goblin spiders (Araneae: Oonopidae) in the Nansei Islands, Southwest Japan, with description of a new species
FIGURE 4. Opopaea cornuta Yin & Wang, 1984 (A–E male: NSMT-Ar 21911 and F–H female: NSMT-Ar 21911 from Okinawa Island) A, F Habitus, dorsal view. B Prosoma, lateral view. C Prosoma, frontal view. D Left palp, prolateral view. E Left palp, retrolateral view. G Epigastric region, ventral view. H Abdomen, frontal view. ap—apodeme, cb—cymbiobulbus, cps—carapace posterolateral spike, fm—femur, pt—patella, pds—pedicel tube dorsolateral spikes, psr—paired scutuml ridges. Scale bars: 0.5 mm (A–C, F); 0.1 mm (D, E, G, H).
FIGURE 2. Xestaspis parmata Thorell, 1890 in Revision of goblin spiders (Araneae: Oonopidae) in the Nansei Islands, Southwest Japan, with description of a new species
FIGURE 2. Xestaspis parmata Thorell, 1890 (A–F, M–O male: NSMT-Ar 21907 from Yonaguni Island and G–L, P–R female: NSMT-Ar 21908 female from Iriomote Island). A, G Habitus, dorsal view. B, H Habitus, lateral view. C, I Habitus, ventral view. D, M Left palp, retrolateral view. E, N, Embolic part, retrolateral view. F, O Left palp, prolateral view. J, P Abdomen, frontal view. K, Q Epigastric region, ventral view. L, R Vulva, dorsal view. Scale bars: 1.0 mm (A–C, G–I); 0.5 mm (J, P); 0.2 mm (K–L, Q, R); 0.1 mm (D–F, M–O). Abbreviations: A1—apodeme 1, A2—apodeme 2, A3—apodeme 3, bc—book lung covers, gap—globular appendix, na—nail like process, psc—paddle like sclerite, psr—paired scutuml ridges, usr—upper scutuml ridge, re—receptaculum. Arrows 1, 2, 3 indicate shortest process, twisted tip of bifurcated process, and blunt tip of bifurcated process, respectively.
FIGURES 1–3 in A new species of Pseudopyrochroa Pic, 1906 from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae) based on the last instar larva and adults, with natural history observations
FIGURES 1–3. Mature larva (exuviae) of Pseudopyrochroa euryfoveata sp. n.: 1. Habitus, dorsal; 2. Head, dorsal; 3. Mouthparts, exuviae, dorsal.
FIGURES 6–9 in A new species of Pseudopyrochroa Pic, 1906 from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae) based on the last instar larva and adults, with natural history observations
FIGURES 6–9. Adults of Pseudopyrochroa euryfoveata sp. n.: 6. Habitus, holotype ♁, dorsal; 7. Habitus, allotype ♀, dorsal; 8. Head, holotype ♁, cranial apparatus, dorsal. Adult male Pseudopyrochroa satoi Young: Head: cranial apparatus, dorsal.
FIGURES 10–12 in A new species of Pseudopyrochroa Pic, 1906 from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae) based on the last instar larva and adults, with natural history observations
FIGURES 10–12. Larval habitat of Pseudopyrochroa euryfoveata sp. n.: 10. Macrohabitat; 11. Standing, decaying stump; 12. Detail of subcortical region with frass and fungal mycelium.
FIGURES 4–5 in A new species of Pseudopyrochroa Pic, 1906 from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae) based on the last instar larva and adults, with natural history observations
FIGURES 4–5. Mature larva (exuviae) of Pseudopyrochroa euryfoveata sp. n.: 4. Abdominal segments VIII–IX, dorsal; 5. Abdominal segments VIII–IX, ventral.
FIGURE 3 in Cherax woworae, a new freshwater crayfish (Decapoda: Parastacidae) from Southwest Papua Province, Indonesia
FIGURE 3. The Bird's Head Peninsula, Indonesia, and the locality of Cherax woworae n. sp. in Southwest Papua Province indicated by the red dot.
FIGURE 2. Cherax woworae n in Cherax woworae, a new freshwater crayfish (Decapoda: Parastacidae) from Southwest Papua Province, Indonesia
FIGURE 2. Cherax woworae n. sp., a–g, holotype ♁, PCL 29 mm, MZB Cru 5644; h–i, allotype ♀, PCL 31 mm, MZB Cru 5645: a, lateral view of carapace; b, dorsal view of carapace; c, dorsal view of left chela; d, ventral view of left chela; e, dorsal view of left scaphocerite; f, epistome and coxopodite of antennal peduncles; g, outer lateral margin of right male chela; h, outer lateral margin of right female chela; i, sternal keel. Scale bars = 1 cm.
FIGURE 1. Cherax woworae n in Cherax woworae, a new freshwater crayfish (Decapoda: Parastacidae) from Southwest Papua Province, Indonesia
FIGURE 1. Cherax woworae n. sp., holotype ♁, PCL 29 mm, MZB Cru 5644: a, colour in life; b, colour in preservative.
FIGURE 4 in Cherax woworae, a new freshwater crayfish (Decapoda: Parastacidae) from Southwest Papua Province, Indonesia
FIGURE 4. Bayesian analysis consensus phylogram of selected Cherax based on combined COI and 16S dataset. Posterior probabilities and ML bootstrap values are displayed next to each node. An asterisk indicates nodes with full support (1/100) in both analyses. The scale bar indicates the substitution rate.
Rice yield and nutrient balance in southwest China
<p>The optimal application of nutrients, such as nitrogen and phosphorus, to the soil is crucial for achieving high crop yields with minimal environmental impact. However, the effect of spatio-temporal changes in soil nutrient supply on crop yield is poorly understood in China. Here, we present a framework that combines environmental data, fertilizer field experiments, and machine learning to estimate the rice yield responses to different nutrient conditions and overall farmland nutrient sustainability in southwest China from 2009 to 2019. This dataset contains data on the spatial distribution of rice yield forecasts and farmland nutrient balances in Southwest China in 2009 and 2019.</p>
Simulations of dissolved inorganic carbon at a karst catchment (Chenqi) in southwest China
<p>This dataset includes the input and output files for the simulation of dissolved inorganic carbon at a karst catchment (Chenqi) in southwest China. The watershed-scale reactive transport model (RTM) BioRT-Flux-PIHM was used to run the simulation.</p>
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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)
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.