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2,359 results for “Southwest”
Figure 3 from: Starrett J, Derkarabetian S, Richart CH, Cabrero A, Hedin M (2016) A new monster from southwest Oregon forests: Cryptomaster behemoth sp. n. (Opiliones, Laniatores, Travunioidea). ZooKeys 555: 11-35. https://doi.org/10.3897/zookeys.555.6274
Figure 3 - A–D Maximum likelihood nuclear gene trees; numbers adjacent to nodes indicate bootstrap support greater than 70%. Trees were rooted with Speleomaster lexi (not shown, see Suppl. material 2: Fig. S2–5). Blue text = Cryptomaster leviathan, red text = Cryptomaster behemoth. A Toll B F-box/LRR-repeat protein C phosphatase 2A protein D Neuromusculin E NeighborNet network generated from summary distances (ingroup nuclear data only) calculated in POFAD.
Figure 1 from: Starrett J, Derkarabetian S, Richart CH, Cabrero A, Hedin M (2016) A new monster from southwest Oregon forests: Cryptomaster behemoth sp. n. (Opiliones, Laniatores, Travunioidea). ZooKeys 555: 11-35. https://doi.org/10.3897/zookeys.555.6274
Figure 1 - Distribution of Cryptomaster leviathan (closed circles) and Cryptomaster behemoth (open circles) in southwestern Oregon. Small X's represent locations in a potential Cascade to Coast corridor where we have collected other travunioids, but not Cryptomaster. Inset: male Cryptomaster leviathan from the Sixes River location.
Figure 9 from: Starrett J, Derkarabetian S, Richart CH, Cabrero A, Hedin M (2016) A new monster from southwest Oregon forests: Cryptomaster behemoth sp. n. (Opiliones, Laniatores, Travunioidea). ZooKeys 555: 11-35. https://doi.org/10.3897/zookeys.555.6274
Figure 9 - Cryptomaster penises. A–B Apicolateral ("D" indicates dorsal side) A Cryptomaster leviathan, Laverne County Park B Cryptomaster behemoth, Brice Creek C–D Apicodorsal C Cryptomaster leviathan, Judge Hamilton D Cryptomaster behemoth, Oakridge E–F Apical E Cryptomaster leviathan, Judge Hamilton F Cryptomaster behemoth, Brice Creek. Scale bar: 100 µm (A, B, E, F); 200 µm (C, D).
Figure 2 from: Starrett J, Derkarabetian S, Richart CH, Cabrero A, Hedin M (2016) A new monster from southwest Oregon forests: Cryptomaster behemoth sp. n. (Opiliones, Laniatores, Travunioidea). ZooKeys 555: 11-35. https://doi.org/10.3897/zookeys.555.6274
Figure 2 - Maximum likelihood COI gene tree with vertical bars showing results of discovery and validation analyses. Blue text = Cryptomaster leviathan, red text = Cryptomaster behemoth. Numbers adjacent to nodes indicate bootstrap support greater than 70%. The tree was rooted with Speleomaster lexi (not shown, see Suppl. material 2: Fig. S1).
Figure 6 from: Starrett J, Derkarabetian S, Richart CH, Cabrero A, Hedin M (2016) A new monster from southwest Oregon forests: Cryptomaster behemoth sp. n. (Opiliones, Laniatores, Travunioidea). ZooKeys 555: 11-35. https://doi.org/10.3897/zookeys.555.6274
Figure 6 - Cryptomaster diagnostic morphological characters. A–B Lateral view of seta-bearing tubercle found on ventral side of palpal trochanter A Cryptomaster leviathan, Judge Hamilton B Cryptomaster behemoth, Brice Creek C–D Lateral view of male penis ("D" indicates dorsal side) C Cryptomaster leviathan, Laverne County Park. D Cryptomaster behemoth, Oakridge E–F Close-up lateral view of penis tip showing spines on dorsal plate E Cryptomaster leviathan, Laverne County Park, detail showing erect apical spines F Cryptomaster behemoth, Oakridge, detail showing appressed apical spines. Scale bar: 200 µm (A, B); 300 µm (C–D); 40 µm (E–F).
Figure 8 from: Starrett J, Derkarabetian S, Richart CH, Cabrero A, Hedin M (2016) A new monster from southwest Oregon forests: Cryptomaster behemoth sp. n. (Opiliones, Laniatores, Travunioidea). ZooKeys 555: 11-35. https://doi.org/10.3897/zookeys.555.6274
Figure 8 - Cryptomaster appendages. A–B Proximal cheliceral segment, dorsal A Cryptomaster leviathan, Reedsport B Cryptomaster behemoth, Oakridge C–D SBT of palpal trochanter, lateral C Cryptomaster leviathan, Laverne County Park D Cryptomaster behemoth, Oakridge E–F Leg II tibia, distal swelling, retrolateral E Cryptomaster leviathan, Judge Hamilton F Cryptomaster behemoth, Oakridge. Scale bar: 500 µm (A, B); 100 µm (C, D); 400 µm (E, F).
Figure 5 from: Starrett J, Derkarabetian S, Richart CH, Cabrero A, Hedin M (2016) A new monster from southwest Oregon forests: Cryptomaster behemoth sp. n. (Opiliones, Laniatores, Travunioidea). ZooKeys 555: 11-35. https://doi.org/10.3897/zookeys.555.6274
Figure 5 - Cryptomaster dorsal coloration. A Male Cryptomaster leviathan (SDSU_OP4039) B Holotype male Cryptomaster behemoth (CASENT9039221, SDSU_OP4026) C Female Cryptomaster leviathan (SDSU_OP4037) D Allotype female Cryptomaster behemoth (CASENT9039221, SDSU_OP4029). Scale bars: 1 mm.
Figure 10 from: Starrett J, Derkarabetian S, Richart CH, Cabrero A, Hedin M (2016) A new monster from southwest Oregon forests: Cryptomaster behemoth sp. n. (Opiliones, Laniatores, Travunioidea). ZooKeys 555: 11-35. https://doi.org/10.3897/zookeys.555.6274
Figure 10 - Cryptomaster ovipositors. A–E Cryptomaster leviathan, Reedsport A Apical ("DL" indicates dorsal lobe) B Lateral C Apical, emphasizing setae and spine arrangement D Lateral, emphasizing setae and spine arrangement E Apical, spine F Cryptomaster behemoth, Oakridge, sagittal view, emphasizing setae and spine arrangement, 40×. Scale bar: 100 µm (A, B); 50 µm (C, D); 25 µm (E).
Figure 4 from: Starrett J, Derkarabetian S, Richart CH, Cabrero A, Hedin M (2016) A new monster from southwest Oregon forests: Cryptomaster behemoth sp. n. (Opiliones, Laniatores, Travunioidea). ZooKeys 555: 11-35. https://doi.org/10.3897/zookeys.555.6274
Figure 4 - Scute length (mm) distribution of Cryptomaster. Figure made using SPSS 22 (IBM Corp. 2013). Blue = Cryptomaster leviathan, red = Cryptomaster behemoth.
Figure 1 from: Zheng L-P, Chen X-Y, Yang J-X (2016) Molecular systematics of the Labeonini inhabiting the karst regions in southwest China (Teleostei, Cypriniformes). ZooKeys 612: 133-148. https://doi.org/10.3897/zookeys.612.9085
Figure 1 - Phylogenetic tree derived from a partitioned Maximum Likelihood analysis of the combined data set. The nodal numbers are ML bootstrap values and Bayesian posterior probabilities, respectively. Only values above 50% are given.
Figure 2 from: Zheng L-P, Chen X-Y, Yang J-X (2016) Molecular systematics of the Labeonini inhabiting the karst regions in southwest China (Teleostei, Cypriniformes). ZooKeys 612: 133-148. https://doi.org/10.3897/zookeys.612.9085
Figure 2 - Ventral view of the mouth morphology. A Pseudogyrinocheilus longisulcus B Pseudogyrinocheilus prochilus C Cophecheilus bamen.
Figure 4 from: Zheng L-P, Chen X-Y, Yang J-X (2016) Molecular systematics of the Labeonini inhabiting the karst regions in southwest China (Teleostei, Cypriniformes). ZooKeys 612: 133-148. https://doi.org/10.3897/zookeys.612.9085
Figure 4 - Ventral view of the mouth morphology. A Hongshuia megalophthalmus B Discogobio brachyphysallidos C Discocheilus wuluoheensis.
Figure 3 from: Zheng L-P, Chen X-Y, Yang J-X (2016) Molecular systematics of the Labeonini inhabiting the karst regions in southwest China (Teleostei, Cypriniformes). ZooKeys 612: 133-148. https://doi.org/10.3897/zookeys.612.9085
Figure 3 - Ventral view of the mouth morphology. A Stenorynchoacrum xijiangensis B Rectoris posehensis.
Figure 2 from: Qiao M, Du X, Zhang Z, Xu JP, Yu ZF (2018) Three new species of soil-inhabiting Trichoderma from southwest China. MycoKeys 44: 63-80. https://doi.org/10.3897/mycokeys.44.30295
Figure 2 Cultures and anamorph of Trichodermaspeciosum. a–c Cultures (a on CMD, 3 days b on PDA, 3 days c on SNA, 3 days) at 25 °C d–f Conidiophores and phialides (SNA, 4 d) g Conidia (SNA, 20 d); Scale bars: 10 μm (d–g).
Figure 3 from: Qiao M, Du X, Zhang Z, Xu JP, Yu ZF (2018) Three new species of soil-inhabiting Trichoderma from southwest China. MycoKeys 44: 63-80. https://doi.org/10.3897/mycokeys.44.30295
Figure 3 Cultures and anamorph of Trichodermakunmingense. a on CMD at 30 °C, 3 days b, c Cultures (b on PDA, 3 days c on SNA, 3 days) at 25 °C d–g Conidiophores and phialides (SNA, 4 d) h Conidia (SNA, 20 d); Scale bars: 10 μm for (d–h).
Figure 1 from: Qiao M, Du X, Zhang Z, Xu JP, Yu ZF (2018) Three new species of soil-inhabiting Trichoderma from southwest China. MycoKeys 44: 63-80. https://doi.org/10.3897/mycokeys.44.30295
Figure 1 Phylogenetic tree based on Bayesian analysis of the combined tef1, rpb2 and ITS sequences. Nectriaeustromatica is used as the outgroup. Bayesian posterior probabilities greater than 0.90 are given at the nodes (left). Maximum likelihood bootstrap values greater than 70% are given at the nodes (right). The scale bar shows the expected changes per site. New species proposed are in boldface.
Figure 4 from: Qiao M, Du X, Zhang Z, Xu JP, Yu ZF (2018) Three new species of soil-inhabiting Trichoderma from southwest China. MycoKeys 44: 63-80. https://doi.org/10.3897/mycokeys.44.30295
Figure 4 Cultures and anamorph of Trichodermazeloharzianum. a–c Cultures (a on CMD, 3 days b on PDA, 3 days c on SNA, 3 days) at 25 °C d Conidiophore-like structures (SNA, 4 d) e–g Conidiophores and phialides (SNA, 4 d) h Conidia (SNA, 20 d); Scale bars: 10 μm for d–h.
Fig. 90 in Comb-footed spiders (Araneae: Theridiidae) in the tropical rainforest of Xishuangbanna, Southwest China
Fig. 90. Theridion irrugatum sp. nov., holotype male. A. Pedipalpus, prolateral view; B. Pedipalpus, retrolateral view. Scale bar = 0.10 mm.
Fig. 89 in Comb-footed spiders (Araneae: Theridiidae) in the tropical rainforest of Xishuangbanna, Southwest China
Fig. 89. Theridion falcatum sp. nov., holotype male. A. Pedipalpus (cymbium removed), ventral view; B. Pedipalpus, ventral view; C. Pedipalpus, prolateral view; D. Pedipalpus, retrolateral view. Scale bars = 0.10 mm.
Fig. 87 in Comb-footed spiders (Araneae: Theridiidae) in the tropical rainforest of Xishuangbanna, Southwest China
Fig. 87. Theridion falcatum sp. nov., holotype male. A. Pedipalpus, prolateral view; B. Pedipalpus, retrolateral view. Scale bar = 0.10 mm.
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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.