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Text-fig. 10. Photo of a cave lion (Panthera spelaea) upper premolar P3 root cut. The approximate age of individual is 3 years (No 2 in Tabs 6, 7). Photo by M. Nývltová Fišáková. in The Mammalian Fauna Of Barová Cave (Moravian Karst, The Czech Republic)
Text-fig. 10. Photo of a cave lion (Panthera spelaea) upper premolar P3 root cut. The approximate age of individual is 3 years (No 2 in Tabs 6, 7). Photo by M. Nývltová Fišáková.
Text-fig. 9. Photo of a cave lion (Panthera spelaea) upper premolar P4 root cut. The approximate age of individual is 11 years (No 1 in Tabs 6, 7). Photo by M. Nývltová Fišáková. in The Mammalian Fauna Of Barová Cave (Moravian Karst, The Czech Republic)
Text-fig. 9. Photo of a cave lion (Panthera spelaea) upper premolar P4 root cut. The approximate age of individual is 11 years (No 1 in Tabs 6, 7). Photo by M. Nývltová Fišáková.
Text-fig. 8. Photo of gnawing marks on the distal joint of humerus of a bear from the cave bear group (Ursus ex gr. spelaeus). Photo by V. Káňa. in The Mammalian Fauna Of Barová Cave (Moravian Karst, The Czech Republic)
Text-fig. 8. Photo of gnawing marks on the distal joint of humerus of a bear from the cave bear group (Ursus ex gr. spelaeus). Photo by V. Káňa.
Text-fig. 5. Photo of a small segment of an instructive profile in the Under the Ladder test pit and the Fox Passage test pit. Visible in the figure are mainly the bones of bears from the cave bear group. Photo by M. Polách. in The Mammalian Fauna Of Barová Cave (Moravian Karst, The Czech Republic)
Text-fig. 5. Photo of a small segment of an instructive profile in the Under the Ladder test pit and the Fox Passage test pit. Visible in the figure are mainly the bones of bears from the cave bear group. Photo by M. Polách.
Text-fig. 12. Photo of a cave hyena (C. crocuta spelaea) lower canine root cut. The approximate age of individual is 9 years (No 5 in Tabs 6, 7). Photo by M. Nývltová Fišáková. in The Mammalian Fauna Of Barová Cave (Moravian Karst, The Czech Republic)
Text-fig. 12. Photo of a cave hyena (C. crocuta spelaea) lower canine root cut. The approximate age of individual is 9 years (No 5 in Tabs 6, 7). Photo by M. Nývltová Fišáková.
Text-fig. 7. Photo of a skull with lower jaw of a cave lion subadult female (registration number is Ok-139786), discovered in layer C of sector 4 of the Under the Ladder test pit. Photo by V. Káňa. in The Mammalian Fauna Of Barová Cave (Moravian Karst, The Czech Republic)
Text-fig. 7. Photo of a skull with lower jaw of a cave lion subadult female (registration number is Ok-139786), discovered in layer C of sector 4 of the Under the Ladder test pit. Photo by V. Káňa.
Text-fig. 6. Photo of cave lion lower premolar p4 root cut. The approximate age of individual is 9.5 years (No 3 in Tabs 6, 7). The thin layers on the edge of root are the dental cement increments; number 1 marks winter increment, number 2 marks summer increment. Photo by M. Nývltová Fišáková. in The Mammalian Fauna Of Barová Cave (Moravian Karst, The Czech Republic)
Text-fig. 6. Photo of cave lion lower premolar p4 root cut. The approximate age of individual is 9.5 years (No 3 in Tabs 6, 7). The thin layers on the edge of root are the dental cement increments; number 1 marks winter increment, number 2 marks summer increment. Photo by M. Nývltová Fišáková.
Text-fig. 3. Eastern wall of Jirásek's Quarry with studied section, with light-grey Acanthopyge Limestones in lower half of the wall, the UDI (in brown) in upper half followed by bioclastic breccia (Bed 46 sensu Hladil 1993) near the edge of the wall (a) and detail of UDI and adjacent limestones with the most productive beds (b). Photo January, 2019. in Rhynchonelliform Brachiopods And Trilobites Of The 'Upper Dark Interval' In The Koněprusy Area Devonian, Eifelian, Kačák Event; The Czech Republic
Text-fig. 3. Eastern wall of Jirásek's Quarry with studied section, with light-grey Acanthopyge Limestones in lower half of the wall, the UDI (in brown) in upper half followed by bioclastic breccia (Bed 46 sensu Hladil 1993) near the edge of the wall (a) and detail of UDI and adjacent limestones with the most productive beds (b). Photo January, 2019.
Photo 1-4 in A new genus and two species of apterous Mezirinae from Madagascar (Heteroptera, Aradidae)
Photo 1-4: Antsirabenus nov.gen., dorsal view; (1) A. granulatus nov.sp. holotype male, (2) ditto, paratype female; (3) A. setulosus nov.sp. holotype male; (4) ditto paratype female.
Photos 1-5 in New genera and species of Aradidae in Cretaceous Burmese Amber (Hemiptera: Heteroptera)
Photos 1-5: Calisiomorpha yuripopovi nov.gen., nov.sp.; (1) habitus dorsal view; (2) ventral view; (3) Ellenbergeria oviventris nov.gen., nov.sp., dorsal view; (4) Archearadus elongatus nov.sp., dorsal view; (5) Aradoleptus birmanus nov.gen., nov.sp., dorsal view with attached exuvia.
Source: Photos courtesy of M.M. Le Roux (a–d) and K.S. Mashego (e–f) FIGURE 1: Morphological characters of Thesium confine (a, d, e) and T. durum (b, c, f) showing (a) the scale-like leaves found in both species; (b) involucral bracts that are invariably present in T. durum; (c) longitudinal section of a flower showing the dense hairs on the perianth lobes, stigma opposite the anthers and the twisted placental column; the habit of (d) T. confine and typical herbarium specimens of (e) T. confine and (f) T. durum. in A taxonomic evaluation of the Thesium confine species complex (Santalaceae)
Source: Photos courtesy of M.M. Le Roux (a–d) and K.S. Mashego (e–f) FIGURE 1: Morphological characters of Thesium confine (a, d, e) and T. durum (b, c, f) showing (a) the scale-like leaves found in both species; (b) involucral bracts that are invariably present in T. durum; (c) longitudinal section of a flower showing the dense hairs on the perianth lobes, stigma opposite the anthers and the twisted placental column; the habit of (d) T. confine and typical herbarium specimens of (e) T. confine and (f) T. durum.
Experimental investigation of composite materials for sliding friction dampers: data, plots, photos and videos of the tests
<p><strong>Folder DATA</strong></p> <p>This folder contains the data acquired by testing the friction pads M1, M2, M3, M4 and M5 under the following loading protocols:</p> <ul> <li>Linear static loading (M);</li> <li>Cyclic loading with constant amplitude (CA);</li> <li>Cyclic loading with decreasing amplitude at low rate (DA);</li> <li>Cyclic loading with increasing amplitude at low rate (IA);</li> <li>Cyclic loading with increasing amplitude at moderate rate (IA-H);</li> <li>Cyclic loading with increasing amplitude at high rate (IA-HH);</li> <li>Pulse-like loading protocol (PL);</li> <li>Mainshock-aftershock protocol (MS-AS): mainshock (MS), first aftershock (AS1) and second aftershock (AS2).</li> </ul> <p>The data include:</p> <ul> <li><em>Time</em>: time (unit: second);</li> <li><em>F</em>: axial force experienced by the sliding friction damper (unit: kN);</li> <li><em>N_bolt</em>: bolt preload (unit: kN);</li> <li><em>mu</em>: friction coefficient of the considered pad (unit: dimensionless);</li> <li><em>delta</em>: axial displacement experienced by the sliding friction damper (unit: mm);</li> <li><em>Cum. delta</em>: total cumulative displacement experienced by the sliding friction damper (unit: mm);</li> <li><em>Cum. E</em>: total cumulative energy dissipated by the sliding friction damper (unit: kJ);</li> <li><em>max Tin</em>: maximum temperature tracked close to the sliding interface (unit: Celsius);</li> <li><em>Tout</em>: temperature tracked at the surface of the inner slotted plate (unit: Celsius).</li> </ul> <p> The data are organized as follows:</p> <ul> <li>Folder <strong>T100</strong></li> </ul> <p>This folder contains the data acquired under the linear static loading protocol (M) for a tightening torque of 100 Nm. Each EXCEL file <strong>T100_M_Y</strong> saved in the folder <strong>T100</strong> contains the data obtained by testing the friction pad Y (Y = M1, M2, M3, M4, M5) under the loading protocol M.</p> <ul> <li>Folder <strong>T200</strong></li> </ul> <p>This folder contains the data acquired under the linear static loading protocol (M) for a tightening torque of 200 Nm. Each EXCEL file <strong>T200_M_Y</strong> saved in the folder <strong>T200</strong> contains the data obtained by testing the friction pad Y (Y = M1, M2, M3, M4, M5) under the loading protocol M.</p> <ul> <li>Folder <strong>Fs150</strong></li> </ul> <p>This folder contains the data acquired for an expected slip load of 150 kN. Each subfolder <strong>Fs150_X</strong> contains the data obtained under the loading protocol X (X = M, CA, DA, IA, IA-H). Each EXCEL file <strong>Fs150_X_Y</strong> saved in the subfolder <strong>Fs150_X</strong> contains the data obtained by testing the friction pad Y (Y = M1, M2, M3, M4, M5) under the loading protocol X.</p> <ul> <li>Folder <strong>Fs300</strong></li> </ul> <p>This folder contains the data acquired for an expected slip load of 300 kN. Each subfolder <strong>Fs300_X</strong> contains the data obtained under the loading protocol X (X = M, CA, DA, IA, IA-H, IA-HH, PL, MS, AS1, AS2). Each EXCEL file <strong>Fs300_X_Y</strong> saved in the subfolder <strong>Fs300_X </strong>contains the data obtained by testing the friction pad Y (Y = M1, M2, M3, M4, M5) under the loading protocol X.</p> <p><strong>Folder PHOTOS</strong></p> <p>This folder contains the following photos:</p> <ul> <li>Folder <strong>01_FrictionDamper</strong>: photos of the sliding friction damper and its components.</li> <li>Folder <strong>02_Instrumentation</strong>: photos of the instrumentation used for the data acquisition during the experimental campaign.</li> <li>Folder <strong>03_FrictionPads</strong>: <ul> <li>Subfolder <strong>BeforeTesting</strong>: photos of the friction pads before the experimental campaign.</li> <li>Subfolder <strong>AfterTesting</strong>: photos of the friction pads at the end of each loading protocol. The photo <strong>Fs150vs300_X_Y</strong> shows the condition of the pad Y (Y = M1, M2, M3, M4, M5) at the end of the loading protocol X (X = M, CA, DA, IA, IA-H, IA-HH, PL, MS, AS1, AS2) performed for an expected slip load of 150 kN and 300 kN (the pads shown at the top of each photo are those tested for an expected slip load of 150 kN). Similarly, the photo <strong>Fs300_X_Y</strong> shows the condition of the pad Y at the end of the loading protocol X performed for an expected slip load of 300 kN.</li> </ul> </li> <li>Folder <strong>04_Tests</strong>: photos taken from the east and north side of the sliding friction damper during the loading protocols that caused the fracture of the pads <ul> <li>Subfolder <strong>Fs150</strong>: photos taken during the tests conducted for an expected slip load of 150 kN. Each folder <strong>Fs150_X_Y</strong> contains the photos taken by testing the pad Y (Y = M1, M2, M4, M5) during the loading protocol X (X = CA, DA, IA, IA-H).</li> <li>Subfolder <strong>Fs300</strong>: photos taken during the tests conducted for an expected slip load of 300 kN. Each folder <strong>Fs300_X_Y</strong> contains the photos taken by testing the pad Y (Y = M1, M2, M4, M5) during the loading protocol X (X = CA, IA, IA-H). A video was recorded live during the loading protocols IA-HH, PL, MS, AS1 and AS2 (see folder <strong>VIDEOS</strong>).</li> </ul> </li> </ul> <p><strong>Folder PLOTS</strong></p> <p>This folder contains the following MATLAB plots:</p> <ul> <li><em>Force-Disp</em>: axial force – axial displacement response of the sliding friction damper;</li> <li><em>Preload-CumDisp</em>: bolt preload as a function of the total cumulative displacement experienced by the sliding friction damper;</li> <li><em>FrictionCoeff-CumDisp</em>: friction coefficient of the considered pad as a function of the total cumulative displacement experienced by the sliding friction damper;</li> <li><em>Temp-CumDisp</em>: rise in temperature as a function of the total cumulative displacement experienced by the sliding friction damper (the temperature values reported for the expected slip load of 150 kN correspond to “max Tin”, whereas those reported for the expected slip load of 300 kN correspond to “Tout”);</li> <li><em>FrictionCoeff-LoadingHistoryEffect</em>: friction coefficient of the considered pad as a function of the total cumulative displacement experienced by the sliding friction damper under different loading protocols;</li> <li><em>FrictionCoeff-RateEffect</em>: friction coefficient of the considered pad as a function of sliding velocity experienced by the sliding friction damper under different loading protocols;</li> <li><em>FrictionCoeff-TempEffect</em>: friction coefficient of the considered pad as a function of the rise in temperature tracked during different loading protocols;</li> <li><em>FrictionCoeff-PressureDependency</em>: mean and standard deviation of the friction coefficient of the considered pad obtained for different expected slip loads and loading protocols;</li> <li><em>FrictionCoeffStaticDynamic-PressureDependency</em>: mean of the static and dynamic friction coefficient of the considered pad obtained for different expected slip loads and loading protocols.</li> </ul> <p>The MATLAB plots are organized as follows:</p> <ul> <li>Folder <strong>T200</strong></li> </ul> <p>The MATLAB plots saved in this folder illustrate the data obtained by testing the friction pads M1, M2, M3, M4 and M5 under the linear static loading protocol (M) for a tightening torque of 200 Nm.</p> <ul> <li>Folder <strong>Fs150 and Fs300</strong></li> </ul> <p>The MATLAB plots saved in this folder illustrate the data obtained by testing the friction pads M1, M2, M3, M4 and M5 under the considered loading protocol (M, CA, DA, IA, IA-H, IA-HH, PL, MS-AS) for an expected slip load of 150 kN and 300 kN.</p> <p><strong>Folder VIDEOS</strong></p> <p>This folder contains the following videos:</p> <ul> <li>Folder <strong>T100</strong>: videos created from the photos taken during the tests conducted for a tightening torque of 100 Nm under the linear static loading protocol (M). The videos <strong>T100_M_Y_East</strong> and <strong>T100_M_Y_North</strong> show the test conducted on the pad Y (Y = M1, M2, M3, M4, M5) from the east and north side of the sliding friction damper respectively.</li> <li>Folder <strong>T200</strong>: videos created from the photos taken during the tests conducted for a tightening torque of 200 Nm under the linear static loading protocol (M). The videos <strong>T200_M_Y_East</strong> and <strong>T200_M_Y_North</strong> show the test conducted on the pad Y (Y = M1, M2, M3, M4, M5) from the east and north side of the sliding friction damper respectively.</li> <li>Folder <strong>Fs150</strong>: videos created from the photos taken during the tests conducted for an expected slip load of 150 kN. The videos <strong>Fs150_X_Y_East</strong> and <strong>Fs150_X_Y_North</strong> show the loading protocol X (X = M, CA, DA, IA, IA-H) applied to the pad Y (Y = M1, M2, M3, M4, M5) from the east and north side of the sliding friction damper respectively.</li> <li>Folder <strong>Fs300</strong>: videos created from the photos taken during the tests conducted for an expected slip load of 300 kN. The videos <strong>Fs300_X_Y_East</strong> and <strong>Fs300_X_Y_North</strong> show the loading protocol X (X = M, CA, DA, IA, IA-H) applied to the pad Y (Y = M1, M2, M3, M4, M5) from the east and north side of the sliding friction damper respectively. The videos obtained for the loading protocols IA-HH, PL, MS, AS1 and AS2 were recorded live during each test.</li> </ul>
Volker Mahnert in my office, bringing new pseudoscorpions for the MHNG collection (photo P. Schwendinger). in Volker Mahnert 3 December 1943 – 23 November 2018
Volker Mahnert in my office, bringing new pseudoscorpions for the MHNG collection (photo P. Schwendinger).
Volker Mahnert on his first zoological expedition as curator at the MHNG; together with Ivan Löbl (left) on the Ionian island of Zakynthos in 1971 (photo B. Hauser). in Volker Mahnert 3 December 1943 – 23 November 2018
Volker Mahnert on his first zoological expedition as curator at the MHNG; together with Ivan Löbl (left) on the Ionian island of Zakynthos in 1971 (photo B. Hauser).
Volker Mahnert chasing aquatic wildlife and being the attraction of village folks on Lefkada Island in 1971 (photo B. Hauser). in Volker Mahnert 3 December 1943 – 23 November 2018
Volker Mahnert chasing aquatic wildlife and being the attraction of village folks on Lefkada Island in 1971 (photo B. Hauser).
Additional set of photos for the publication "The oldest case of paedomorphosis in rove beetles: a new genus of Paederinae from Cretaceous amber (Coleoptera: Staphylinidae)"
<p>Additional set of photos of two specimens of extinct <em>Midinudon juvenis</em> Tokareva & Żyła gen. et sp. nov. (Coleoptera: Staphylinidae) in Burmese amber. Accession codes of specimens in the collection of the Leibniz Institute for the Analysis of Biodiversity Change are GPIH05515 and GPIH05516.</p>
Rīgas pieostas apkaimju foto // Photos of the neighbourhoods around the Riga Harbour (2018-2022)
<p>[English - below]</p> <p>-- Fotogrāfijas (un daži video) pamatā uzņemtas pētnieciskā projekta “Dzīve līdzās ostai: ekonaratīvi, vietējā vēsture un vides aktīvisms Daugavas lejtecē” ietvaros kolektīvās un individuālās ekspedīcijās uz piecām apkaimēm (un dažām robežapkaimēm): Bolderāju, Daugavgrīvu, Kundziņsalu, Mangaļsalu un Vecmīlgrāvi. Dažas foto sērijas uzņemtas privātos ceļojumos, kā arī pēc formālajām projekta beigām.<br> -- foto autori ir Jānis Daugavietis (JD), Agita Pusvilka (AP), Dace Bula (DB), Ieva Garda-Rozenberga (IeG), Kristīne Āboliņa (KA), Kaspars Zellis (KZ).<br> -- Foto laika hronoloģiskais periods: 2018.gada jūlijs - 2022.gada novembris.<br> -- Failu nosaukumos var būt kļūdas (nepareiza apkaime).<br> -- Attēlus drīkst izmantot, atsaucoties uz to autoriem, projektu “Dzīve līdzās ostai”. Ja publicējamos attēlos redzami cilvēki, nepieciešama arī viņu atļauja.</p> <p>«Dzīve līdzās ostai: ekonaratīvi, vietējā vēsture un vides aktīvisms Daugavas lejtecē» (Nr. lzp-2018/1-0446). Projekta vadītāja Dr. philol. Dace Bula.</p> <p> </p> <p>-- The photographs (and some videos) were taken in the course of the research project “Life next to the port: econarratives, local history and environmental activism in the lower Daugava” during collective and individual expeditions to five neighbourhoods (and some border neighbourhoods): Bolderaja, Daugavgriva, Kundzinsala, Mangalsala and Vecmilgravis. Some of the photos were taken on private trips and after the formal end of the project.<br> -- photos by Jānis Daugavietis (JD), Agita Pusvilka (AP), Dace Bula (DB), Ieva Garda-Rozenberga (IeG), Kristīne Āboliņa (KA), Kaspars Zellis (KZ).<br> -- Chronological period of the photos: July 2018 - November 2022.<br> -- File names may contain errors (wrong neighbourhood).<br> -- Images may be used with attribution to their authors, the project “Life next to the port”. If people are featured in the images to be published, their permission is also required.</p> <p>“Living Next to the Port: Eco-Narratives, Local Histories and Environmental Activism in the Daugava Delta” (lzp-2018/1-0446). Project leader Dr. philol. Dace Bula.</p> <p> </p> <p>LU Literatūras, folkloras un mākslas institūts<br> Mūkusalas iela 3<br> Rīga, LV-1423<br> Tālr. (371) 67229017<br> <a href="mailto:info@lulfmi.lv">info@lulfmi.lv</a><br> <a href="http://lulfmi.lv">http://lulfmi.lv</a></p> <p><a href="https://www.facebook.com/DziveLidzasOstai">https://www.facebook.com/DziveLidzasOstai</a><br> <a href="http://lulfmi.lv/Dzive-lidzas-ostai">http://lulfmi.lv/Dzive-lidzas-ostai</a><br> <a href="https://zenodo.org/communities/ekohum/">https://zenodo.org/communities/ekohum/</a><br> <a href="http://garamantas.lv/lv/repository/1537251/LZP-projekts-Dzive-lidzas-ostai">http://garamantas.lv/lv/repository/1537251/LZP-projekts-Dzive-lidzas-ostai</a><br> <a href="http://lulfmi.lv/en/Living-Next-to-the-Port">http://lulfmi.lv/en/Living-Next-to-the-Port</a> [EN]</p>
Fig. 8. SEM photos. A‒C in Six new species of Zaischnopsis Ashmead (Hymenoptera: Chalcidoidea: Eupelmidae) from China based on morphological and molecular data
Fig. 8. SEM photos. A‒C. Parascrobal region, show sculpture and setae. A. Zaischnopsis covid Jiang & Peng sp. nov. B. Z. campaniformis Tang & Peng sp. nov. C. Z. pacis Jiang & Peng sp. nov. D‒J. Seta of gena. D. Z. covid. E‒F. Z. fuscolivida Tang & Peng sp. nov. G. Z. lii Jiang & Peng sp. nov. H. Z. pacis. I. Z. campaniformis. J. Z. zhongi Jiang & Peng sp. nov. K‒O. Z. lii. K. Mesosoma. L. Setae of anterior convex region of mesoscutal medial lobe. M. Setae of posterior depressed region of mesoscutal medial lobe. N. Setae of mesoscutal lateral lobe. O. Setae of axilla.
Fig. 7. SEM photos. A‒F. Head. A in Six new species of Zaischnopsis Ashmead (Hymenoptera: Chalcidoidea: Eupelmidae) from China based on morphological and molecular data
Fig. 7. SEM photos. A‒F. Head. A. Zaischnopsis covid Jiang & Peng sp. nov. B. Z. fuscolivida Tang & Peng sp. nov. C. Z. lii Jiang & Peng sp. nov. D. Z. pacis Jiang & Peng sp. nov. E. Z. campaniformis Tang & Peng sp. nov. F. Z. zhongi Jiang & Peng sp. nov. G. Z. covid, front part of frons, show sculpture and setae. H. Z. campaniformis, sculpture and setae around anterior ocellus. I. Z. lii, front part of frons, show sculpture and setae.
MEMEX_Ds6b_Photos_v1.0
<p>Photos collected and used for stories from Lisbon participants of the Memex project, resulting from group and individual dynamics. Collected during the facilitated workshop sessions with the pilot group participants, and stored in an anonymized format. </p>
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.