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67 results for “unidentified”
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
Fig. 17. Unidentified material from Aixheim, collected from the Stubensandstein. A in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 17. Unidentified material from Aixheim, collected from the Stubensandstein. A. GPIT-PV-60390, fragment of a scapular blade in lateral view. B. GPIT-PV-60400, serrated conical tooth. C. GPIT-PV-60401, fragment of a vertebra. D. GPIT-PV-60402, indeterminate bone fragment. E. GPIT-PV-60403, rib fragment. F. GPIT-PV-60404, indeterminate bone fragment. G. GPIT-PV-60405, rib fragment. H. GPIT- PV-60406, bone fragment. I. GPIT-PV-60407, rib fragment. J. GPIT-PV-60408, zygapophysis. K. GPIT- PV-60409, rib shaft fragment. L. GPIT-PV-60410, zygapophysis. M. GPIT-PV-60411, rib fragment. N. GPIT-PV-60412, zygapophysis. O. GPIT-PV-60413, ventral margin of centrum. P. GPIT-PV-60414, fragment of a phalanx. Q. GPIT-PV-60415, fragment of a phalanx. R. GPIT-PV-60416, partial phalanx.
Supplemental material to the journal article "The complete mitogenome of an unidentified Oikopleura species"
<ul> <li>Wibisana2024)_rev2.tar.gz: aligned sequence files, command-line notes and figures related to the phylogenetic tree in the journal article “The complete mitogenome of an unidentified Oikopleura species”, revision 2.</li> <li>Wibisana2024_rDNA_PacBio_read.fa: a sequence read from the same run used to assemble the mitogenome, that contains a copy of the rDNA locus of the nuclear genome.</li> <li>Wibisana2024_supplementary_rev2.pdf: supplementary figures and tables for the article, revision 2.</li> </ul>
Text-fig. 6. Zoophycos showing spreiten structure with a continuously meandering tunnel. Schematic drawing of the specimen from unidentified layer from a block out of the measured profile. Scale in centimetres. in Early Complex Tiering Pattern: Upper Ordovician, Barrandian Area, The Czech Republic
Text-fig. 6. Zoophycos showing spreiten structure with a continuously meandering tunnel. Schematic drawing of the specimen from unidentified layer from a block out of the measured profile. Scale in centimetres.
Concordance of the Qumran Cave 4 'Unidentified fragments' on PAM 43691 (IAA # 96)
<p>Lists of agreement with the PAM 43691 (IAA # 96) Qumran Cave 4 unidentified fragments with fragments on earlier photographs in the series of Unidentified fragments (cf. DJD 33) </p>
Fig. 3. Unidentified sphenacodontids. A. Sphenacodontidae indet. 1 in The sphenacodontid synapsid Neosaurus cynodus, and related material, from the Permo-Carboniferous of France
Fig. 3. Unidentified sphenacodontids. A. Sphenacodontidae indet. 1, left dentary (MNHN.F.LOD213), from Saint-Julien, Sakmarian, in lateral view. B. Sphenacodontidae indet. 2, right dentary (UM 5902), from Le Capitoul, Sakmarian, in medial view. C, D. Sphenacodontidae indet. 3, right dentary (UM 5903), from Saint-Julien, Sakmarian, in lateral (C) and medial (D) views. Photographs (C1, D1), explanatory drawings (C2, D2).
Linked collectors and determiners for: Occurrence data for unidentified species and for species not yet listed in the species checklist of Seychelles.
Natural history specimen data linked to collectors and determiners held within, "Occurrence data for unidentified species and for species not yet listed in the species checklist of Seychelles". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/99ccf1cc-03e3-4bd4-8a78-50d46dee8cb7">https://bionomia.net/dataset/99ccf1cc-03e3-4bd4-8a78-50d46dee8cb7</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/99ccf1cc-03e3-4bd4-8a78-50d46dee8cb7">https://gbif.org/dataset/99ccf1cc-03e3-4bd4-8a78-50d46dee8cb7</a>. Formatted as a Frictionless Data package.
Text-fig. 56. Number of specimens and number of species for the four major plant groups recovered in the Torres Vedras mesofossil flora. Unidentified specimens such as seed fragments, stamen fragments without pollen grains, coprolites without recognizable plant fragments and strongly distorted specimens are not included in this overview. in The Early Cretaceous Mesofossil Flora Of Torres Vedras (Ne Of Forte Da Forca), Portugal: A Palaeofloristic Analysis Of An Early Angiosperm Community
Text-fig. 56. Number of specimens and number of species for the four major plant groups recovered in the Torres Vedras mesofossil flora. Unidentified specimens such as seed fragments, stamen fragments without pollen grains, coprolites without recognizable plant fragments and strongly distorted specimens are not included in this overview.
Wmid-6771ac - Unidentified artefact
A complete copper alloy artefact of uncertain function but probably of Post Medieval dating. The artefact is circular, with a square perforation at the centre. A small upright groove is present on the edge, probably for alignment purposes. No decoration is present on either face. The square perforation measures 12.3 mm by 12.6 mm. For more information, please visit the online database record available at: https://finds.org.uk/database/artefacts/record/id/1073467 Source: Objaverse 1.0 / Sketchfab
Figure 54. Four unidentified Cosmophasis species. 1 in Three new jumping spiders of the genus Cosmophasis from Wallacea (Araneae: Salticidae: Chrysillini)
Figure 54. Four unidentified Cosmophasis species. 1, Cosmophasis sp. A with a Green Tree Ant (Oecophylla smaragdina) from Pulau Penem in the Fam Islands, just west of Waigeo. 2, Female Cosmophasis sp. B from Sidangoli, Halamhera Island (9.5 mm?). 3, Penultimate male Cosmophasis sp. B from Ternate Island (10.0 mm?). Adults have similar colouration. 4, Adult male Cosmophasis sp. C from Manokwari, West Papua (17.0 mm?). 5-7, Adult male Cosmophasis species D. from Lembeh Island. Photo credits: 1, © Leoš Smutný, used with permission (Smutný 2020); 2-4, © David Knowles, used with permission; 5-7, © Dan Schofield, used under a CC BY-NC 4.0 license (Scofield 2020a, 2020b, 2020c).
Table 2 Unidentified species with a in Checklist of Water mites in Mexico. Historical background and DNA barcoding perspectives
<p><b>Table 2</b> Unidentified species with a DNA barcode in BOLD database. BINs indicate putative species. * Unique BINs this database.</p><table><tbody><tr><th><i>Taxa</i></th><th>BIN</th><th><i>Taxa</i></th><th>BIN</th><th><i>Taxa</i></th><th>BIN</th></tr></tbody><tbody><tr><th>Arrenuridae</th><td></td><td>Limnesiidae</td><td></td><td><b>Pionidae</b></td><td></td></tr><tr><th>Arrenuridae</th><td>AEA 4828*</td><td><i>Limnesiidae</i></td><td>AEA 4382*</td><td><i>Pionidae</i></td><td>AEA 4809*</td></tr><tr><th><i>Arrenurus cristinae</i></th><td>AEA 7842*</td><td><i>Centrolimnesia</i></td><td>AEA 3914*</td><td><i>Piona</i></td><td>AEA 5358*</td></tr><tr><th><i>Arrenurus eduardoi</i></th><td>AEA 7844*</td><td><i>Limnesia</i></td><td>AEA 6471*</td><td><i>Piona</i></td><td>AEE 5501*</td></tr><tr><th><i>Arrenurus federicoi</i></th><td>AEB 7095*</td><td><i>Limnesia</i></td><td>ACX 7759</td><td><i>Piona</i></td><td>AEN 6046*</td></tr><tr><th><i>Arrenurus ecosur</i></th><td>ACX 8463</td><td><i>Limnesia</i></td><td>ACY 7380</td><td><i>Piona</i></td><td>AEO 7290*</td></tr><tr><th><i>Arrenurus marshallae</i></th><td>ACL2521</td><td><i>Limnesia</i></td><td>AEA 5595</td><td><i>Piona</i></td><td>AER1599 *</td></tr><tr><th><i>Arrenurus</i></th><td>ACX 8462*</td><td><b>Hygrobatidae</b></td><td></td><td><i>Piona</i></td><td>AER1600 *</td></tr><tr><th><i>Arrenurus</i></th><td>ACX 8788*</td><td>Hygrobatidae</td><td>AEA 5236*</td><td><i>Piona</i></td><td>AER1601 *</td></tr><tr><th><i>Arrenurus</i></th><td>ACX 8789*</td><td>Hygrobatidae</td><td>AEA 4089*</td><td><b>Mideopsidae</b></td><td></td></tr><tr><th><i>Arrenurus</i></th><td>ACY 6809*</td><td><i>Atractides</i></td><td>ACX 7786*</td><td>Mideopsidae</td><td>AEB 4633*</td></tr><tr><th><i>Arrenurus</i></th><td>ADI 3752*</td><td><i>Hygrobates</i></td><td>AEA 3689*</td><td><i>Mideopsis</i></td><td>ACY 7169*</td></tr><tr><th><i>Arrenurus</i></th><td>ADI 4458*</td><td><i>Hygrobates</i></td><td>AEA 3690*</td><td><i>Mideopsis</i></td><td>AEA 6512*</td></tr><tr><th><i>Arrenurus</i></th><td>AEA 3972*</td><td><i>Hygrobates</i></td><td>AEA 3924*</td><td><i>Mideopsis</i></td><td>ACX 8679</td></tr><tr><th><i>Arrenurus</i></th><td>AEA 7182*</td><td><i>Hygrobates</i></td><td>ACX 7887</td><td><b>Krendowskiidae</b></td><td></td></tr><tr><th><i>Arrenurus</i></th><td>AEA 7843*</td><td><i>Hygrobates</i></td><td>ADO 7098</td><td><i>Krendowskia</i></td><td>ACX 8435*</td></tr><tr><th><i>Arrenurus</i></th><td>AEA 8234*</td><td><b>Unionicolidae</b></td><td></td><td><i>Geayia</i></td><td>ACT 6195</td></tr><tr><th><i>Arrenurus</i></th><td>AEF1989 *</td><td>Unionicolidae</td><td>AEA 6658*</td><td><b>Hydrachnidia</b></td><td>AEA3823*</td></tr><tr><th><i>Arrenurus</i></th><td>AEF 8444*</td><td>Unionicolidae</td><td>ACY 7381</td><td></td><td>AEA4343*</td></tr><tr><th><i>Arrenurus</i></th><td>ACL2418</td><td>Unionicolidae</td><td>AEB1594 *</td><td></td><td>AEF3494*</td></tr><tr><th><i>Arrenurus</i></th><td>ACX 8464</td><td>Unionicolidae</td><td>AEA 7951*</td><td></td><td>AEF8255*</td></tr><tr><th><b>Limnocharidae</b></th><td></td><td>Unionicolidae</td><td>AEA 6062*</td><td></td><td>AEF0324*</td></tr><tr><th>Limnocharidae</th><td>AEA 4515*</td><td>Unionicolidae</td><td>AEA 4829*</td><td></td><td>AEI2293*</td></tr><tr><th><i>Limnochares</i></th><td>ACY 6840*</td><td>Unionicolidae</td><td>AEA 3726*</td><td></td><td>AEI2954*</td></tr><tr><th><i>Limnochares</i></th><td>ADI 4862*</td><td>Unionicolidae</td><td>AEA 4514*</td><td></td><td>AEI4296*</td></tr><tr><th><i>Eylaidae</i></th><td></td><td><i>Unionicola</i></td><td>ACX 8035*</td><td></td><td>AEI4327*</td></tr><tr><th><i>Eylaidae</i></th><td>AEA 4696*</td><td><i>Unionicola</i></td><td>ADM 7936*</td><td></td><td>AEI4328*</td></tr><tr><th><i>Eylaidae</i></th><td>AEA 5669*</td><td><i>Unionicola</i></td><td>AEB 4634*</td><td></td><td>AEI4329*</td></tr><tr><th><i>Eylais</i></th><td>ADD 9174*</td><td><i>Unionicola</i></td><td>AEE 0841*</td><td></td><td>AEI8266*</td></tr><tr><th><b>Hydryphantidae</b></th><td></td><td><i>Unionicola</i></td><td>ACX 9008</td><td></td><td>AEI8707*</td></tr><tr><th><i>Hydryphantes</i></th><td>AEA 5005*</td><td><i>Unionicola</i></td><td>AEF2345</td><td></td><td>AEI 9124*</td></tr><tr><th><b>Hydrodromidae</b></th><td></td><td><i>Unionicola</i></td><td>ACX 8034</td><td></td><td>AEJ2119*</td></tr><tr><th><i>Hydrodroma</i></th><td>ADF 3732</td><td><i>Neumania</i></td><td>AEA 8101*</td><td></td><td>AEN6047*</td></tr><tr><th><b>Anisitsiellidae</b></th><td></td><td><i>Neumania</i></td><td>ACY 6829</td><td></td><td>AEN8226*</td></tr><tr><th><i>Mamersellides</i></th><td>AEA 6955*</td><td><i>Koenikea</i></td><td>ACY 7384*</td><td></td><td>AEN8227*</td></tr><tr><th><i>Mamersellides</i></th><td>AEA 6956*</td><td><i>Koenikea</i></td><td>ACB 9299</td><td></td><td>AEO5260*</td></tr><tr><th><i>Torrenticolidae</i></th><td></td><td><i>Koenikea</i></td><td>ADI2928</td><td></td><td>AER2566 *</td></tr><tr><th><i>Torrenticolidae</i></th><td>AEA 4395*</td><td><i>Koenikea</i></td><td>ADI 3114</td><td></td><td>AEB1898</td></tr><tr><th><i>Torrenticola</i></th><td>AEA 7372*</td><td></td><td></td><td></td><td></td></tr></tbody></table>
Structure of phospholipase Cε reveals an integrated RA1 domain and previously unidentified regulatory elements
<p><span><span><span><span><span><span><span><span><span><span><span>Phospholipase Cepsilon (PLCepsilon) generates lipid-derived second messengers in the cardiovascular system at the plasma and perinuclear membranes. It is activated in response to a wide variety of signals, such as those conveyed by Rap1A and Ras, through a mechanism that involves its C-terminal Ras association (RA) domains (RA1 and RA2). However, the complexity and size of PLCepsilon has hindered its structural and functional analysis. In this manuscript, we report the 2.7 Å crystal structure of fragment of PLCepsilon that retains catalytic activity. The strutcure includes the RA1 domain, which forms an integral part of the conserved core. In addition, a highly conserved amphipathic helix in the autoinhibitory X–Y linker is shown to modulate activity <em>in vitro</em> and in cells. </span></span></span></span></span></span></span></span></span></span></span><span><span><span><span><span><span><span><span><span><span><span>The studies provide a structural framework for the core of this critical cardiovascular enzyme that will allow for a better understanding of its regulation and roles in disease.</span></span></span></span></span></span></span></span></span></span></span></p>
Guerrero Unidentified Iron Concretion (2019)
A substantial but unidentified iron object from Site 2-04-8MO02343 is possibly an iron ingot or ballast block. Two short iron rods or pins are alongside it. These pieces are part of the larger deposit called Iron Objects Feature No.2, found along the east side of the site (see https://skfb.ly/6SBIJ). Model created June, 2019. Scale = 10 centimeters. Source: Objaverse 1.0 / Sketchfab
Supporting information for: Clade-specific elemental signatures across an Early Triassic marine fauna pave the way for deciphering the affinities of unidentifiable fossils
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Structure of phospholipase Cε reveals an integrated RA1 domain and previously unidentified regulatory elements
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Discovery of an unidentified species of nicothoid copepod infesting cancrid crabs in Santa Barbara, California
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FIGURE 6. Unidentified species and Ceramaster grenadensis. A. Unidentified genus and species 1 in New species, occurrence records and observations of predation by deep-sea Asteroidea (Echinodermata) from the North Atlantic by NOAA ship Okeanos Explorer
FIGURE 6. Unidentified species and Ceramaster grenadensis. A. Unidentified genus and species 1, NW Florida Escarpment, Gulf of Mexico, 2178 m. B. C. grenadensis in situ feeding. Unidentified stalks emerging from below (indicated with arrows). Richardson Scarp, North Atlantic. 897 m C. C. grenadensis feeding on coral rubble. Richardson Scarp, North Atlantic. 954 m D. C. grenadensis with yellow scale worm associate (indicated by arrow). Okeanos Ridge, 734 m.
data on ant species unidentified in each of 25 study sites
<p>The table presents presence-absence data on ants nesting in the ground of R - Rosa rugosa plots and K-control plots. </p>
FIGURE 6 in A new Australian genus and five new species of Rogadinae (Hymenoptera: Braconidae), one reared as a gregarious endoparasitoid of an unidentified limacodid (Lepidoptera)
FIGURE 6. Teresirogas billbrysoni gen. et. sp. nov. A, fore wing; B, head and anterior of mesosoma, lateral view; C, propodeum, metasoma, mid- and hind legs, lateral view; D, propodeum and metasomal tergites 1 and 2, dorsal view.
FIGURE 7 in A new Australian genus and five new species of Rogadinae (Hymenoptera: Braconidae), one reared as a gregarious endoparasitoid of an unidentified limacodid (Lepidoptera)
FIGURE 7. Teresirogas nolani gen. et. sp. nov. A, habitus; B, head, front view; C, head and mesosoma, lateral view; D, head dorsal view; E, F, views of hind telotarsus and claw showing reduced basal lobe.
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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.