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2,239 results for “MicroED”
Figure 35 in The symphytognathoid spiders of the Gaoligongshan, Yunnan, China (Araneae: Araneoidea): Systematics and diversity of micro-orbweavers
Figure 35. Simaoa kavanaugh sp. n. from Xiao Hei Shan Nature Reserve. A, male, lateral; B, female, lateral; C, female, dorsal; D, female, ventral; E, female, posterior.
Figure 16 in The symphytognathoid spiders of the Gaoligongshan, Yunnan, China (Araneae: Araneoidea): Systematics and diversity of micro-orbweavers
Figure 16. Mysmena changouzi sp. n. from No. 12 Bridge Camp area, male palp. A, prolateral; B, retrolateral. B: base of cymbium; CB: cymbium; E: embolus; G: cymbial groove; T: tegulum.
Top: puffs of cornstarch reveal dense and varied tiny cryptic webs in the Gaoligongshan. Shown here upper left to lower right are a symphytognathid Patu jidanweishi sp. n., a mysmenid Gaoligonga changya gen. n., sp. n., and an unidentified linyphiid. Bottom: this misty mountain landscape at QiQi is typical of the Gaoligongshan in The symphytognathoid spiders of the Gaoligongshan, Yunnan, China (Araneae: Araneoidea): Systematics and diversity of micro-orbweavers
Top: puffs of cornstarch reveal dense and varied tiny cryptic webs in the Gaoligongshan. Shown here upper left to lower right are a symphytognathid Patu jidanweishi sp. n., a mysmenid Gaoligonga changya gen. n., sp. n., and an unidentified linyphiid. Bottom: this misty mountain landscape at QiQi is typical of the Gaoligongshan
Figure 41 in The symphytognathoid spiders of the Gaoligongshan, Yunnan, China (Araneae: Araneoidea): Systematics and diversity of micro-orbweavers
Figure 41. Gaoligonga changya sp. n., SEM. A, epigynum, ventral; B, epigynum, posterior; C, epiandrous gland spigots; D, fang and cheliceral teeth, female; E, labrum, anterior, female; F, labrum, lateral, female.
Figure 71 in The symphytognathoid spiders of the Gaoligongshan, Yunnan, China (Araneae: Araneoidea): Systematics and diversity of micro-orbweavers
Figure 71. Patu jidanweishi sp. n. from Chang Yan He, SEM of spinnerets. A-D, female; E, F, male. A, spinnerets; B, ALS; C, E, PMS; D, F, PLS. AC: aciniform gland spigot; AG: aggregate gland spigot; ALS: anterior lateral spinneret; CY: cylindrical gland spigot; FL: flagelliform gland spigot; MAP: major ampullate gland spigot; mAP: minor ampullate gland spigot; n: nubbin; PI: piriform gland spigot; PLS: posterior lateral spinneret; PMS: posterior median spinneret; t: tartipore.
Figure 31. A, B in The symphytognathoid spiders of the Gaoligongshan, Yunnan, China (Araneae: Araneoidea): Systematics and diversity of micro-orbweavers
Figure 31. A, B, Mysmena shibali sp. n. from Shibali; C, D, Simaoa yaojia sp. n. from Yaojiaping; E, F; Simaoa kavanaugh sp. n. from Xiao Hei Shan Nature Reserve; G, H, Simaoa maku sp. n. from Maku ridge; I, Simaoa bianjing sp. n. from Haban Falls. A, C, E, G, epigynum, ventral veiw; B, D, F, H, I, cleared vulva, dorsal view. AL: anterior lobe; PL: posterior lobe.
Figure 80. Crassignatha yinzhi from Xiao Hei Shan Nature Reserve. A in The symphytognathoid spiders of the Gaoligongshan, Yunnan, China (Araneae: Araneoidea): Systematics and diversity of micro-orbweavers
Figure 80. Crassignatha yinzhi from Xiao Hei Shan Nature Reserve. A, male, lateral; B, female, lateral; C, female, dorsal; D, female, ventral; E, male leg II, prolateral.
Figure 11. A, B in The symphytognathoid spiders of the Gaoligongshan, Yunnan, China (Araneae: Araneoidea): Systematics and diversity of micro-orbweavers
Figure 11. A, B, Zoma dibaiyin sp. n. from Pee He; C, D, Wendilgarda muji sp. n. from Xiao Hei Shan Nature Reserve; E, F, Coddingtonia euryopoides sp. n. from Zaotang He at Baihualing village; G-I, Mysmena changouzi sp. n. from from No. 12 Bridge Camp area. A, C, E, G, epigynum, ventral view; B, D, F, I, cleared vulva, dorsal view; H, epigynum, lateral view. Arrow in B indicates lateral pit.
MicroED datasets from two proteinase K lamellae using a 20 micrometre C2 condenser aperture
<p>These four diffraction data sets were used to determine the proteinase K structure from two crystalline lamellae by electron diffraction, as deposited in the PDB with id <a href="http://doi.org/10.2210/pdb6ZEV/pdb">6ZEV</a> and published in <a href="https://doi.org/10.3389/fmolb.2020.00179">https://doi.org/10.3389/fmolb.2020.00179</a></p> <p>A script is provided that allows indexing of the diffraction spots using DIALS 3.1. This is adapted from the commands used to process the data for the publication, which used DIALS 1.10.</p>
Using coupled micropillar compression and micro-Laue diffraction to investigate deformation mechanisms in a complex metallic alloy Al13Co4
<p>In this investigation, we have used <em>in-situ</em> micro-Laue diffraction combined with micropillar compression of focused ion beam milled Al<sub>13</sub>Co<sub>4</sub> complex metallic alloy to study the evolution of deformation in Al<sub>13</sub>Co<sub>4</sub>. Streaking of the Laue spots showed that the onset of plastic flow occured at stresses as low as 0.8 GPa, although macroscopic yield only becomes apparent at 2 GPa. The measured misorientations, obtained from peak splitting, enabled the geometrically necessary dislocation density to be estimated as 1.1 x 10<sup>13</sup> m<sup>-2</sup>.</p>
Figure 12. from: Eupolybothrus cavernicolus Komerički & Stoev sp. n. (Chilopoda: Lithobiomorpha: Lithobiidae): the first eukaryotic species description combining transcriptomic, DNA barcoding and micro-CT imaging data - Biodiversity Data Journal 1: e1013 (28 October 2013) https://doi.org/10.3897/BDJ.1.e1013
Figure 12. - Map of Croatia showing the locality of Eupolybothrus cavernicolus Komerički & Stoev sp. n.
Figure 10a. from: Eupolybothrus cavernicolus Komerički & Stoev sp. n. (Chilopoda: Lithobiomorpha: Lithobiidae): the first eukaryotic species description combining transcriptomic, DNA barcoding and micro-CT imaging data - Biodiversity Data Journal 1: e1013 (28 October 2013) https://doi.org/10.3897/BDJ.1.e1013
Figure 10a. - Eupolybothrus cavernicolus Komerički & Stoev sp. n., male paratype. Figure 10a. close up of the tip of prefemoral spine p Figure 10b. coxal pore pit, meso-ventral view <br> close up of the tip of prefemoral spine p
Figure 9b. from: Eupolybothrus cavernicolus Komerički & Stoev sp. n. (Chilopoda: Lithobiomorpha: Lithobiidae): the first eukaryotic species description combining transcriptomic, DNA barcoding and micro-CT imaging data - Biodiversity Data Journal 1: e1013 (28 October 2013) https://doi.org/10.3897/BDJ.1.e1013
Figure 9b. - Eupolybothrus cavernicolus Komerički & Stoev sp. n., male paratype. Figure 9a. close up of the clusp of setae on male prefemur 15 Figure 9b. close up of the setose protuberance on male prefemur 15 <br> close up of the setose protuberance on male prefemur 15
Figure 8a. from: Eupolybothrus cavernicolus Komerički & Stoev sp. n. (Chilopoda: Lithobiomorpha: Lithobiidae): the first eukaryotic species description combining transcriptomic, DNA barcoding and micro-CT imaging data - Biodiversity Data Journal 1: e1013 (28 October 2013) https://doi.org/10.3897/BDJ.1.e1013
Figure 8a. - Eupolybothrus cavernicolus Komerički & Stoev sp. n., male paratype. Figure 8a. prefemur 15, mesoventral view. Abbreviations: prefemoral knob (pk), circular setose protuberance (cp), cluster of setae (sc). Figure 8b. close up of the prefemoral knob, ventral view <br> prefemur 15, mesoventral view. Abbreviations: prefemoral knob (pk), circular setose protuberance (cp), cluster of setae (sc).
Figure 20a. from: Eupolybothrus cavernicolus Komerički & Stoev sp. n. (Chilopoda: Lithobiomorpha: Lithobiidae): the first eukaryotic species description combining transcriptomic, DNA barcoding and micro-CT imaging data - Biodiversity Data Journal 1: e1013 (28 October 2013) https://doi.org/10.3897/BDJ.1.e1013
Figure 20a. - Gene annotation. Original data available from GigaScience GigaDB (Stoev et al. 2013). Figure 20a. E-value, identity and species distribution statistics of the sequences that can find homologs on Nr database Figure 20b. COG functional classification of the transcripts Figure 20c. GO categories of the transcripts <br> E-value, identity and species distribution statistics of the sequences that can find homologs on Nr database
Figure 17a. from: Eupolybothrus cavernicolus Komerički & Stoev sp. n. (Chilopoda: Lithobiomorpha: Lithobiidae): the first eukaryotic species description combining transcriptomic, DNA barcoding and micro-CT imaging data - Biodiversity Data Journal 1: e1013 (28 October 2013) https://doi.org/10.3897/BDJ.1.e1013
Figure 17a. - Prefemur of male leg 15. From Stoev et al. (2010). Figure 17a. Eupolybothrus tabularum Figure 17b. Eupolybothrus excellens <br> Eupolybothrus tabularum
Figure 7a. from: Eupolybothrus cavernicolus Komerički & Stoev sp. n. (Chilopoda: Lithobiomorpha: Lithobiidae): the first eukaryotic species description combining transcriptomic, DNA barcoding and micro-CT imaging data - Biodiversity Data Journal 1: e1013 (28 October 2013) https://doi.org/10.3897/BDJ.1.e1013
Figure 7a. - Eupolybothrus cavernicolus Komerički & Stoev sp. n., male paratype. Figure 7a. tarsus 1, tarsus 2 and pretarsus of leg 10, lateral view. Abbreviations: pectinal setae (ps). Figure 7b. pretarsus of leg 15 <br> tarsus 1, tarsus 2 and pretarsus of leg 10, lateral view. Abbreviations: pectinal setae (ps).
Figure 5b. from: Eupolybothrus cavernicolus Komerički & Stoev sp. n. (Chilopoda: Lithobiomorpha: Lithobiidae): the first eukaryotic species description combining transcriptomic, DNA barcoding and micro-CT imaging data - Biodiversity Data Journal 1: e1013 (28 October 2013) https://doi.org/10.3897/BDJ.1.e1013
Figure 5b. - Eupolybothrus cavernicolus Komerički & Stoev sp. n., male paratype. Figure 5a. tergite 7, dorsal view Figure 5b. tergites 12-13, dorsal view <br> tergites 12-13, dorsal view
Figure 11. from: Eupolybothrus cavernicolus Komerički & Stoev sp. n. (Chilopoda: Lithobiomorpha: Lithobiidae): the first eukaryotic species description combining transcriptomic, DNA barcoding and micro-CT imaging data - Biodiversity Data Journal 1: e1013 (28 October 2013) https://doi.org/10.3897/BDJ.1.e1013
Figure 11. - Eupolybothrus cavernicolus Komerički & Stoev sp. n., male paratype. Genitalia, posterio-dorsal view.
Figure 6b. from: Eupolybothrus cavernicolus Komerički & Stoev sp. n. (Chilopoda: Lithobiomorpha: Lithobiidae): the first eukaryotic species description combining transcriptomic, DNA barcoding and micro-CT imaging data - Biodiversity Data Journal 1: e1013 (28 October 2013) https://doi.org/10.3897/BDJ.1.e1013
Figure 6b. - Eupolybothrus cavernicolus Komerički & Stoev sp. n., male paratype. Figure 6a. tergite 14 and intermediate tergite, posteriodorsal view. Abbreviations: seta-free areas (sfa). Figure 6b. pretarsus of leg 10, ventral view. Abbreviations: anterior accessory claw (a), posterior accessory claw (p). <br> pretarsus of leg 10, ventral view. Abbreviations: anterior accessory claw (a), posterior accessory claw (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.