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2,399 results for “fragmenter”
Limited proteolysis fragments of full-length huntingtin with chymotrypsin – mass spectrometry analysis (2016/04/21)
<p>Open lab note book for huntingtin structure function project</p>
FIGURE 7. a in A new brevicipitid species (Brevicipitidae: Callulina) from the fragmented forests of the Taita Hills, Kenya
FIGURE 7. a) Maximum likelihood tree showing branch lengths. (-ln likelihood = 5576.01891). Nucleotide frequencies A= 0.3306 C= 0.2645 G= 0.1413 T= 0.2636, Nst=6, Rmat= 1.0000 2.2193 1.0000 1.0000 and 4.7793, Rates=gamma, Shape= 0.7896, Pinvar= 0.3855. Numbers below branches refer to bootstrap support. b) Maximum Parsimony exhaustive tree showing branch lengths. Numbers below branches refer to bootstrap support.
FIGURE 1 in A new brevicipitid species (Brevicipitidae: Callulina) from the fragmented forests of the Taita Hills, Kenya
FIGURE 1. Map of the Taita Hills. White squares show localities of (black lowercase) named towns, filled polygons are principle remaining indigenous (black uppercase) named forests, and filled circles collection localities for specimens of Callulina dawida, holotype collection locality is shown with a star.
FIGURE 3. a in A new brevicipitid species (Brevicipitidae: Callulina) from the fragmented forests of the Taita Hills, Kenya
FIGURE 3. a) Urostyle elements of Callulina dawida (A3535), Abbreviations, uro= Urostyle, sa= Sacrum, att= ilialurostyle muscle attachment, il= ilium. b) Pectoral elements of Callulina dawida (A3535). Abbreviations, omo= Omosternum, clav= Clavicle, cor= Coracoid, procor= Procorocoid, ster= Sternum.
FIGURE 4 in A new brevicipitid species (Brevicipitidae: Callulina) from the fragmented forests of the Taita Hills, Kenya
FIGURE 4. Ventral close up of hands (1mm scale) (a) Callulina dawida (NMK A/4267) (b) C. kreffti (2000.196) (c) C. kisiwamsitu (BM 2002.45).
FIGURE 9. DNA fragments amplified from rDNA ITS 1 in Differentiation of larvae and pupae of aquatic genera of Nearctic Hemerodromiinae (Diptera: Empididae)
FIGURE 9. DNA fragments amplified from rDNA ITS 1 primers for the following Hemerodromiinae: 1 = Hemerodromia sp. pupa, 2 = Hemerodromia burdicki adult male, 3 = Neoplasta sp. larva, 4 = Neoplasta sp. pupa, 5 = Neoplasta paramegorchis adult male, 6 = Metachela sp. larva, 7 = Metachela sp. pupa, 8 = Metachela collusor adult male, 9 = Chelifera sp. larva, 10 = Chelifera sp. pupa, 11 = Chelifera caliga adult male. Electrophoretic gel is 1.5% agarose with 100 base pair markers. For reference, numbers 3-5 = ca. 300 base pairs and numbers 6-8 = ca. 500 base pairs.
FIGURES 8–12 in Phytoseiidae (Acari) in forest fragments in the State of São Paulo, Brazil
FIGURES 8–12. Amblyseius novagranadensis sp. nov., female. 8. Dorsal shield, 9. Ventral idiosoma, 10. Chelicera, 11. Spermatheca, 12. Leg IV, genu, tibia and tarsus.
FIGURES 1–7 in Phytoseiidae (Acari) in forest fragments in the State of São Paulo, Brazil
FIGURES 1–7. Amblyseius biotafapesp sp. nov. 1–5. Female. 1. Female, dorsal shield, 2. Female, ventral idiosoma, 3. Female, chelicera, 4. Female, spermatheca, 5. Female, leg IV, genu, tibia and tarsus. 6. Male, ventri-anal shield, 7. Male, spermadactyl.
FIGURE 5 in Substrate dependent talitrid amphipods from fragmented beaches on the north coast of Crete (Crustacea, Amphipoda, Talitridae), including a redefinition of the genus Orchestia and descriptions of Orchestia xylino sp. nov. and Cryptorchestia gen. nov.
FIGURE 5. Orchestia xylino sp. nov., holotype, male, 13.1 mm, AM P.89967, all parts except, female, paratype, 10.6 mm, AM P.89969, Gournes, Heraklion, Crete, Greece. Scale lines for P5–7 represent 1.0 mm, remainder represent 0.2 mm.
FIGURE 3 in Substrate dependent talitrid amphipods from fragmented beaches on the north coast of Crete (Crustacea, Amphipoda, Talitridae), including a redefinition of the genus Orchestia and descriptions of Orchestia xylino sp. nov. and Cryptorchestia gen. nov.
FIGURE 3. Orchestia xylino sp. nov., holotype, male, 13.1 mm, AM P.89967, Gournes, Heraklion, Crete, Greece. Scale lines represent 0.1 mm, except MX1OP represents 0.05 mm.
FIGURE 1 in Substrate dependent talitrid amphipods from fragmented beaches on the north coast of Crete (Crustacea, Amphipoda, Talitridae), including a redefinition of the genus Orchestia and descriptions of Orchestia xylino sp. nov. and Cryptorchestia gen. nov.
FIGURE 1. Sampling sites. From West to East: a) Sand West; b) Banquette, mainly Posidonia; c) Mixed West; d) Sand East; e) Cobble; f) Mixed East. Pictures were taken during the summer season (July 2012) to highlight the human use of the supralittoral on the two sandy beaches and on Mixed East.
FIGURE 2 in Substrate dependent talitrid amphipods from fragmented beaches on the north coast of Crete (Crustacea, Amphipoda, Talitridae), including a redefinition of the genus Orchestia and descriptions of Orchestia xylino sp. nov. and Cryptorchestia gen. nov.
FIGURE 2. Orchestia xylino sp. nov., holotype, male, 13.1 mm, AM P.89967, habitus, A1, A2, U1–3, paratype, male, 11.4 mm, AMP.89968, UR, T, Gournes, Heraklion, Crete, Greece. Scale lines represent 0.1 mm, except UR, U1 represent 0.2 mm.
FIGURE 4 in Substrate dependent talitrid amphipods from fragmented beaches on the north coast of Crete (Crustacea, Amphipoda, Talitridae), including a redefinition of the genus Orchestia and descriptions of Orchestia xylino sp. nov. and Cryptorchestia gen. nov.
FIGURE 4. Orchestia xylino sp. nov., holotype, male, 13.1 mm, AM P.89967, all parts except, paratype, male, 11.4 mm, AM P.89968, *G1, *G2, female, paratype, 10.6 mm, AM P.89969, Gournes, Heraklion, Crete, Greece. Scale lines represent 0.2 mm.
FIGURES 22–25 in New species of Dinychus Kramer, 1886 from fragments of the former Gondwanaland (Acari: Uropodina: Dinychidae)
FIGURES 22–25. Dinychus chilensis sp. nov. paratype, deutonymph. 22. Body in dorsal view. 23. Anterior area of dorsal idiosoma. 24. Caudal area of dorsal idiosoma. 25. Body in ventral view.
FIGURES 13–21 in New species of Dinychus Kramer, 1886 from fragments of the former Gondwanaland (Acari: Uropodina: Dinychidae)
FIGURES 13–21. Dinychus chilensis sp. nov. holotype, female. 13. Lateroventral view of gnathosoma and palp. 14. Chelicera. 15. Ventral view of leg I. 16. Ventral view of leg II. 17. Ventral view of leg III. 18. Ventral view of leg IV. 19. Intercoxal area of male paratype. 20. Ventral view of gnathosma of male paratype. 21. Lateral view of leg I of male paratype.
FIGURES 1–3 in New species of Dinychus Kramer, 1886 from fragments of the former Gondwanaland (Acari: Uropodina: Dinychidae)
FIGURES 1–3. Dinychus indica sp. nov. holotype, female. 1. Body in dorsal view. 2. Body in ventral view. 3. Peritreme.
FIGURES 4–9 in New species of Dinychus Kramer, 1886 from fragments of the former Gondwanaland (Acari: Uropodina: Dinychidae)
FIGURES 4–9. Dinychus indica sp. nov. holotype, female. 4. Ventral view of gnathosoma, palp and coxae I. 5. Ventral view of leg I. 6. Ventral view of leg II. 7. Ventral view of leg III. 8. Ventral view of leg IV. 9. Intercoxal area of male paratype.
FIGURES 10–12 in New species of Dinychus Kramer, 1886 from fragments of the former Gondwanaland (Acari: Uropodina: Dinychidae)
FIGURES 10–12. Dinychus chilensis sp. nov. holotype, female. 10. Body in dorsal view. 11. Body in ventral view. 12. Peritreme.
Dataset-Projektarbeit2017HSMainz object Fragment Skyphos
<p>dataset-Projektarbeit2017HSMainz</p> <p><strong>object: Fragment Skyphos</strong></p> <p>- technical metadata of the 3d-model</p> <p>- raw data of 3d-model</p> <p>- photographs for texture</p> <p>- 3d-model with texture</p>
MsnLib multi-stage fragmentation mass spectral libraries - mzml positive and negative
<p>The data for <a href="https://doi.org/10.26434/chemrxiv-2024-l1tqh-v2">MSnLib</a> are divided into several Zenodo records due to size constraints. </p> <p>raw positive: <a href="https://doi.org/10.5281/zenodo.10966404">10966404</a><br>raw negative: <a href="https://doi.org/10.5281/zenodo.10967081">10967081</a><br>mzml positive and negative: <a href="https://doi.org/10.5281/zenodo.10966280">10966280</a><br>spectral libraries: <a href="https://doi.org/10.5281/zenodo.11163380">11163380</a></p> <p>This record includes zipped files containing the converted mzml positive and negative data, acquired using a flow injection method on an Orbitrap ID-X instrument, for all compound libraries. The different polartities are kept separated. </p> <p>9 Compound Libraries:</p> <ul> <li>Short Name: Full name, Provider (Catalog number), total compounds (not all detected during library building)</li> <li>MCEBIO: Bioactive Compound Library, MedChemExpress (HY-L001), 10,315 compounds</li> <li>MCESAF: 5k Scaffold Library, MedChemExpress, (HY-L902), 4998 compounds</li> <li>NIHNP: NIH NPAC ACONN collection of NP, NIH/NCATS, 3988 compounds</li> <li>OTAVAPEP: Alpha-helix Peptiomimetic Library, OTAVAchemicals (a-helix-Peptido), 1298 compounds</li> <li>ENAMDISC: Discovery Diversity Set -10, Enamine (DDS-10), 10,240 compounds</li> <li>ENAMMOL: Carboxylic Acid Fragment Library + Random, Enamine and Molport, 4378 compounds</li> <li>MCEDRUG: FDA-Approved Drug Library, MedChemExpress (HY-L022), 2610 compounds</li> <li>MCEDIV_50k_Sub: Subset of 50K Diversity Library, MedChemExpress (HY-L901), 20000 compounds</li> <li>TargetMolNPHTS: Subset of Natural Product Library for HTS, TargetMol (L6000), 2175 compounds</li> </ul>
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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.