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FIGURES 126–129 in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 126–129. Dorsal habitus and labels of holotypes of 126). Ninyas punctatus Baranowski, 2005; 127). Ninyas woodruffi Baranowski, 2005; 128). Ochrimnus (Ochrimnus) bracensis Baranowski & Slater, 1998; 129). Ochrimnus (Orthochrimnus) marginatus Baranowski, 2005. Scale bars = 1 mm.
FIGURES 142–145 in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 142–145. Dorsal habitus and labels of holotypes of 142). Brachycerocoris woodruffi Eger, 2022; 143). Caribo subgibbus Rolston, 1984; 144). Elanela hevera Rolston, 1980; 145). Thyanta (Argosoma) infuscata Rider, 1991. Scale bars = 1 mm.
FIGURES 164b–167a in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 164b–167a. Front and back of syntype slides of 164b). Lindingaspis floridana Ferris, 1942; Ventral view of 165a). Lindingaspis floridana Ferris, 1942; Front and back of syntype slides of 165b). Lindingaspis floridana Ferris, 1942; Ventral view of 166a). Palinaspis quohogiformis (Merrill, 1923); Front and back of syntype slides of 166b). Palinaspis quohogiformis (Merrill, 1923); Ventral view of 167a). Palinaspis quohogiformis (Merrill, 1923). Scale bar 165a = 0.5 mm, scale bar 166a & 167a = 0.1 mm, scale bars 164b, 165b & 166b = 1 cm.
FIGURES 169b–172a in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 169b–172a. Front and back of syntype slides of 169b). Praecocaspis diversa Ferris, 1942; Ventral view of 170a). Praecocaspis diversa Ferris, 1942; Front and back of syntype slides of 170b). Praecocaspis diversa Ferris, 1942; Ventral view of 171a). Praecocaspis diversa Ferris, 1942; Front and back of syntype slides of 171b). Praecocaspis diversa Ferris, 1942; Ventral view of 172a). Matsucoccus krystalae Ahmed & Miller, 2020. Scale bars 170a & 171a = 0.1 mm, scale bar 172a = 1 mm, scale bars 169b, 170b & 171b = 1 cm.
FIGURES 175b–178 in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 175b–178. Front and back of syntype slides of 175b). Lachnodiella acritocera Chaffin, 1923; Dorsal habitus and labels of holotypes of 176). Craspedolepta euthamiae Burckhardt & Halbert, 2020; 177). Katacephala wineriterae Burckhardt & Halbert, 2020; 178). Pseudophacopteron gumbolimbo Burckhardt & Halbert, 2020. Scale bar 175b = 1 cm, scale bars 176– 178 = 1 mm.
FIGURES 156a–158b in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 156a–158b. Ventral view of 156a). Ceroplastes feltyi Hodges, 2002; Front and back of holotype slides of 156b). Ceroplastes feltyi Hodges, 2002; Ventral view of 157a). Phalacrococcus howertoni Hodges & Hodgson, 2010; Front and back of holotype slides of 157b). Phalacrococcus howertoni Hodges & Hodgson, 2010; Ventral view of 158a). Chionaspis hamoni Liu & Kosztarab, 1987; Front and back of holotype slides of 158b). Chionaspis hamoni Liu & Kosztarab, 1987. Scale bars 156a, 157a & 158a = 1 mm, scale bars 156b, 157b & 158b = 1 cm.
FIGURES 179–180 in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 179–180. Dorsal habitus and labels of holotypes of 179). Nothotrioza longipedis Burckhardt & Halbert, 2020; 180). Trioza myresae Burckhardt & Halbert, 2020. Scale bars = 1 mm.
FIGURES 153a–155b in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 153a–155b. Ventral view of 153a). Massilieurodes myricae Jensen, 2001; Front and back of holotype slides of 153b). Massilieurodes myricae Jensen, 2001; Ventral view of 154a). Carolinaia (Carolinaia) floridensis Remaudière & Muñoz Viveros, 1993; Front and back of holotype slides of 154b). Carolinaia (Carolinaia) floridensis Remaudière & Muñoz Viveros, 1993; Ventral view of 155a). Thripsaphis (Thripsaphis) polytricha Quednau, 2010; Front and back of holotype slides of 155b). Thripsaphis (Thripsaphis) polytricha Quednau, 2010. Scale bar 153a = 0.5 mm, scale bars 154a & 155a = 1 mm, scale bars 153b, 154b & 155b = 1 cm.
FIGURES 4–6 in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 4–6. Dorsal habitus and labels of holotypes of 4). Cacama moorei Sanborn & Heath, 2011; 5). Calyria hyperochelabrys Sanborn, 2020; 6). Carineta acclivis Sanborn, 2017. Scale bars = 5 mm.
FIGURES 1–3 in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 1–3. Dorsal habitus and labels of holotypes of 1). Ariasa venezuelaensis Sanborn, 2020; 2). Brevialavenosa aurepilosa Sanborn, 2021; 3). Cacama collinaplaga Sanborn & Heath, 2011. Scale bars = 5 mm.
FIGURES 86–89 in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 86–89. Dorsal habitus and labels of holotypes of 86). Neohadria delecta Freytag, 2007; 87). Neohadria grisea Freytag, 2007; 88). Neokrisna stena Freytag, 2012; 89). Osbornellus (Nereius) arcus Freytag, 2008. Scale bars = 1 mm.
FIGURES 37–39 in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 37–39. Dorsal habitus and labels of holotypes of 37). Herrera quadrimacula Sanborn, 2020; 38). Herrera quinimaculata (Sanborn, 2011); 39). Herrera sigillata Sanborn, 2018. Scale bars = 5 mm.
FIGURES 19–21 in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 19–21. Dorsal habitus and labels of holotypes of 19). Diceroprocta bimaculatus (Sanborn, 2010); 20). Diceroprocta heathi (Sanborn, 2010); 21). Guyalna dyticamazona Sanborn, 2020. Scale bars = 5 mm.
FIGURES 10–12 in An annotated and illustrated catalog of the primary type material of Hemiptera deposited in the Florida State Collection of Arthropods
FIGURES 10–12. Dorsal habitus and labels of holotypes of 10). Carineta ensifera Sanborn, 2019; 11). Carineta hamata Sanborn, 2019; 12). Carineta modesta Sanborn, 2011. Scale bars = 5 mm.
Data from: Catalog of non-seismic short duration events offshore cascadia
Open the record for dataset details and reuse information.
Global catalog of alluvial fans and other fan-shaped features on Mars, with morphology characteristics
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Value at Induced Risk (VaIR): Pohang template matching catalog and cut seismogram
<p><strong># README is written by J.-U. Woo (woong1440@gmail.com).</strong><br> Template earthquake catalog for Pohang earthquakes and cut seismogram at PHA2 station</p> <p><strong>Suggested citation for the uploaded catalog:</strong><br> <strong>1.</strong> C. Langenbruch, W. L. Ellsworth, J.-U. Woo and D. J. Wald, 2020, Value at Induced Risk: Injection-induced seismic risk from low-probability, high-impact events. Geophysical Research Letters, 47, e2019GL085878. http://doi.org/10.1029/2019GL085878.</p> <p><strong>Further citations for Pohang seismicity:</strong><br> <strong>2.</strong> W.L. Ellsworth, D. Giardini, J. Townend, S. Ge, and T. Shimamoto, 2019, Triggering of the Pohang, Korea, Earthquake (MW 5.5) by Enhanced Geothermal System Stimulation. Seismological Research Letters, 90(5), 1844-1858.<br> <strong>3.</strong> K.-K. Lee, W.L. Ellsworth, D. Giardini, J. Townend, S. Ge, T. Shimamoto, I.-W. Yeo, T.-S. Kang, J. Rhie, D.-H. Sheen, C. Chang, J.-U. Woo, C. Langenbruch, 2019, Managing injection-induced seismic risks. Science, 364(6442), 730-732.<br> <strong>4. (Citation for the hypoDD location of the earthquakes in the catalog)</strong> J.‐U. Woo, M. Kim, D.‐H. Sheen, T.‐S. Kang, J. Rhie, F. Grigoli, W.L. Ellsworth, D. Giardini, 2019, An In‐Depth Seismological Analysis Revealing a Causal Link Between the 2017 MW 5.5 Pohang Earthquake and EGS Project, JGR solid earth, doi:10.1029/2019JB018368.</p> <p><strong>Description:</strong><br> [1] VaIR.gz : Cut seismogram at PHA2 station. Each SAC file is named as "(station name).(ID of event).(component; E/N/Z).sac".<br> [2] Table_S1.txt : Template earthquake catalog.</p>
Mosaic image of Crab region extracted from a sample of 50 randomly selected ScWs, together with the display of the catalog of detectedsources.
<p><a href="https://www.astro.unige.ch/cdci/astrooda_?src_name=Crab&RA=83.633080&DEC=22.014500&T1=2003-03-15T23:27:40.0&T2=2018-03-16T00:03:15.0&T_format=isot&instrument=isgri&osa_version=OSA10.2&radius=15&use_scws=no&E1_keV=20&E2_keV=40&query_type=Real&detection_threshold=7.5&product_type=isgri_image">www.astro.unige.ch/cdci/astrooda_?src_name=Crab&RA=83.633080&DEC=22.014500&T1=2003-03-15T23:27:40.0&T2=2018-03-16T00:03:15.0&T_format=isot&instrument=isgri&osa_version=OSA10.2&radius=15&use_scws=no&E1_keV=20&E2_keV=40&query_type=Real&detection_threshold=7.5&product_type=isgri_image</a></p>
Cataloging Accreted Stars within Gaia DR2 Using Deep Learning
<p>In [<a href="http://arxiv.org/abs/1907.06652">1907.06652</a>], a neural network is used to determine whether a star was accreted onto the Milky Way or was born in situ using only 5D phase space information. The inputs to the network are [l, b, parallax, pmra, pmdec] from the Gaia DR2 catalog. Stars with a score greater than 0.75 are marked as accreted. The subset of stars with 6D phase space information was studied in more detail in [<a href="https://arxiv.org/abs/1907.07190">1907.07190</a>] and [<a href="http://arxiv.org/abs/1907.07681">1907.07681</a>].</p> <p>In this release of the catalog, the data is in the HDF5 file format. We recommended using the pandas package within python (with <a href="https://www.pytables.org/usersguide/installation.html">pytables</a> installed). Then the DataFrame can be loaded with </p> <pre><code class="language-python">Stars = pd.read_hdf('Public_AllStars_6D.h5')</code></pre> <p>We have included 4 different files. The scores for all of the stars with <span class="math-tex">\(\delta \varpi / \varpi < 0.1\)</span> are given in Public_AllStars_5D.h5. The subset of these stars which also have line-of-sight velocity measurements are given in Public_AllStars_6D.h5. The files denoted with SelectedByNetwork have only stars which pass the neural network selection as being accreted, with 5D and 6D the same as for AllStars. Each file include the columns</p> <ol> <li><strong>source_id, int64</strong></li> <li><strong>l, float64</strong></li> <li><strong>b, float64</strong></li> <li><strong>ra, float64</strong></li> <li><strong>dec, float64</strong></li> <li><strong>parallax, float64</strong></li> <li><strong>pmra, float64</strong></li> <li><strong>pmdec, float64</strong></li> <li><strong>phot_g_mean_mag, float32</strong></li> <li><strong>phot_bp_mean_mag, float32</strong></li> <li><strong>phot_rp_mean_mag, float32</strong></li> <li><strong>radial_velocity, float64</strong></li> <li><strong>Score, float32</strong></li> <li><strong>PhotometricScores, float32</strong></li> </ol> <p>The "source_id" should match with Gaia DR2, allowing for easy cross referencing. The "Score" column is the output of the network using only 5D kinematic information, to be considered as accreted, the score needs to be larger than 0.75. The "PhotometricScores" column is the network output for the neural network which uses the "phot" columns along with the 5D kinematics. The optimal cut for this is 0.9, but as shown in the paper, <em>these results are less robust than the first network</em>.</p> <p> </p> <p>If you use our catalog in any of your works, please cite <br> @article{Ostdiek:2019gnb,<br> author = "Ostdiek, Bryan and Necib, Lina and Cohen, Timothy and<br> Freytsis, Marat and Lisanti, Mariangela and<br> Garrison-Kimmel, Shea and Wetzel, Andrew and Sanderson,<br> Robyn E. and Hopkins, Philip F.",<br> title = "{Cataloging Accreted Stars within Gaia DR2 using Deep<br> Learning}",<br> year = "2019",<br> eprint = "1907.06652",<br> archivePrefix = "arXiv",<br> primaryClass = "astro-ph.GA",<br> SLACcitation = "%%CITATION = ARXIV:1907.06652;%%”<br> }<br> and <br> @article{Necib:2019zka,<br> author = "Necib, Lina and Ostdiek, Bryan and Lisanti, Mariangela<br> and Cohen, Timothy and Freytsis, Marat and<br> Garrison-Kimmel, Shea",<br> title = "{Chasing Accreted Structures within Gaia DR2 using Deep<br> Learning}",<br> year = "2019",<br> eprint = "1907.07681",<br> archivePrefix = "arXiv",<br> primaryClass = "astro-ph.GA",<br> SLACcitation = "%%CITATION = ARXIV:1907.07681;%%”<br> }.<br> Also, please cite <br> @article{Necib:2019zbk,<br> author = "Necib, Lina and Ostdiek, Bryan and Lisanti, Mariangela<br> and Cohen, Timothy and Freytsis, Marat and<br> Garrison-Kimmel, Shea and Hopkins, Philip F. and Wetzel,<br> Andrew and Sanderson, Robyn",<br> title = "{Evidence for a Vast Prograde Stellar Stream in the Solar<br> Vicinity}",<br> year = "2019",<br> eprint = "1907.07190",<br> archivePrefix = "arXiv",<br> primaryClass = "astro-ph.GA",<br> SLACcitation = "%%CITATION = ARXIV:1907.07190;%%"<br> }<br> for any follow up study of Nyx.</p>
Figure 3 in The Diptera of Panama. I. Annotated catalog of the Tipulomorpha of Panama
Figure 3. Comparison between the number of crane fly species purportedly endemic to Panama and the Panamanian species with regional affinities.
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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.