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215 results for “LEO”
Figure 6 in The holotypes of the upper Pleistocene Crocuta crocuta spelaea (Goldfuss, 1823: Hyaenidae) and Panthera leo spelaea (Goldfuss, 1810: Felidae) of the Zoolithen Cave hyena den (South Germany) and their palaeo-ecological interpretation
Figure 6. Original skull of the holotype of 'Felis spelaea Goldfuss, 1810' from Zoolithen Cave, southern Germany (Museum für Naturkunde der Humboldt-Universität Berlin No. MB.Ma.50948). A, ventral with lower jaws; B, ventral without lower jaws.
Figure 3 in The holotypes of the upper Pleistocene Crocuta crocuta spelaea (Goldfuss, 1823: Hyaenidae) and Panthera leo spelaea (Goldfuss, 1810: Felidae) of the Zoolithen Cave hyena den (South Germany) and their palaeo-ecological interpretation
Figure 3. Original skull of the holotype of 'Hyena spelaea Goldfuss, 1823' from Zoolithen Cave, southern Germany (Goldfuss-Museum Bonn No. M2609). A, lateral right; B, ventral; C, occipital; D, dorsal.
Figure 5 in The holotypes of the upper Pleistocene Crocuta crocuta spelaea (Goldfuss, 1823: Hyaenidae) and Panthera leo spelaea (Goldfuss, 1810: Felidae) of the Zoolithen Cave hyena den (South Germany) and their palaeo-ecological interpretation
Figure 5. Original skull of the holotype of 'Felis spelaea Goldfuss, 1810' from Zoolithen Cave, southern Germany (Museum für Naturkunde der Humboldt-Universität Berlin No. MB.Ma.50948). Skull with bite mark and pathology on the middle of the saggital crest (cf. Figs 4, 9). A, lateral left with lower jaws; B, dorsal view with lower jaws. The bite mark on the right parietal and pathology is characteristic of this skull.
Figure 9. A in The holotypes of the upper Pleistocene Crocuta crocuta spelaea (Goldfuss, 1823: Hyaenidae) and Panthera leo spelaea (Goldfuss, 1810: Felidae) of the Zoolithen Cave hyena den (South Germany) and their palaeo-ecological interpretation
Figure 9. A, male lion with strong bite damage, which died in an early stage of the callus-healing process [holotype of P. l. spelaea (Goldfuss, 1810) from Zoolithen Cave, southern Germany]. B, skull of a lioness with a partially healed bite scratch or braincase fracture [original lioness skeleton of P. l. spelaea (cf. Diedrich & Žák, 2006) from Srbsko, central Czech Republic].
Figure 2 in The holotypes of the upper Pleistocene Crocuta crocuta spelaea (Goldfuss, 1823: Hyaenidae) and Panthera leo spelaea (Goldfuss, 1810: Felidae) of the Zoolithen Cave hyena den (South Germany) and their palaeo-ecological interpretation
Figure 2. Original figure of the holotype of 'Hyaena spelaea Goldfuss, 1823' from Goldfuss (1810) from Zoolithen Cave, southern Germany. Skull is damaged on the left side and lacks most teeth (cf. Fig. 3).
Figure 8 in The holotypes of the upper Pleistocene Crocuta crocuta spelaea (Goldfuss, 1823: Hyaenidae) and Panthera leo spelaea (Goldfuss, 1810: Felidae) of the Zoolithen Cave hyena den (South Germany) and their palaeo-ecological interpretation
Figure 8. Original skull of the holotype of 'Felis spelaea Goldfuss, 1810' from Zoolithen Cave, southern Germany (Museum für Naturkunde der Humboldt-Universität Berlin No. MB.Ma.50948). Skull with bite mark and pathology on the middle of the saggital crest (cf. Figs 6, 7). 1. lower jaw composed of two different individuals. The right mandible is much larger and from a very old male, whereas the smaller left one seems to be from a lioness. A, right mandible, lateral; B, jaws, dorsal. 2, bite mark in the saggital crest and long scratch groove on the right parietal. The callus indicates that the animal survived for a short time after the bite.
Figure 10 in The holotypes of the upper Pleistocene Crocuta crocuta spelaea (Goldfuss, 1823: Hyaenidae) and Panthera leo spelaea (Goldfuss, 1810: Felidae) of the Zoolithen Cave hyena den (South Germany) and their palaeo-ecological interpretation
Figure 10. Ice Age spotted hyenas hauling injured male steppe lion carcass into their cave den (Zoolithen Cave, southern Germany) (Illustration: Rinaldino, 2007).
FIG. 7 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 7. — Lion blessé d'une flèche. Crédit: M. Spruyt (d'après le relief du British Museum no 1992,0404.1).
FIG. 8 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 8. — Détail de la scène de chasse au lion montée (British Museum, relief no 1856,0909.48). Crédit photo: M. Spruyt.
FIG. 9 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 9. — Détail de la scène de chasse au lion menée à pied. (British Museum, relief no 1856,0909.48). Crédit photo: M. Spruyt.
FIG. 6 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 6. — Lionne blessée de trois flèches. Crédit: M. Spruyt (d'après le relief du British Museum no 1856,0909.15).
FIG. 4 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 4. — Relevé de la scène de chasse aux 18 lions. Crédit: Watanabe (2018: 222,fig. 238; d'après les reliefs du British Museum no 1856,0909.16 [BM 124862-124870]).
FIG. 5 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 5. — Lion libéré d'une cage. Crédit: M. Spruyt (d'après le relief du British Museum no 1856,0909.48).
FIG. 2 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 2. — Un soldat impassible muni d'un fouet et sa monture (British Museum, relief no 1856,0909.48). Crédit photo: M. Spruyt.
FIG. 3 in Un visage animal dans les reliefs ninivites d'Assurbanipal ( siècle av. J.-C.)? Le cas du cheval (Equus caballus Linnaeus, 1758) et du lion (Panthera leo Linnaeus, 1758)
FIG. 3. — Le roi suivi de deux soldats dont l'un menant une monture de remplacement. Crédit: Barnett (1976: pl. lii).
Raw FITS and AAV data of the Bluewalker 3 LEO communication satellite.
<p>Separate tar/zip files of raw images from each telescope used in the l2022 observing campaign of the AST SpaceMobile prototype Bluewalker 3 LEO communication satellite, led and organised by the International Astronomical Union (IAU) <a href="https://cps.iau.org/">Centre for the Protection of the Dark and Quiet Sky from Satellite Constellation Interference</a> (CPS). The images along with their associated calibration frames were used in the publication (Nandakumar+ <a href="https://doi.org/10.21203/rs.3.rs-2557594/v1">2023</a>) and are freely available to the community. The reduced data (e.g. apparent magnitude, TLE accuracy, and phase angles) are provided in (Nandakumar+ <a href="https://doi.org/10.21203/rs.3.rs-2557594/v1">2023</a>) as supplementary machine readable data tables.</p>
Dataset of: Community perspectives on the prospect of lion (Panthera leo) reintroduction to Comoé National Park, Côte d'Ivoire (West Africa)
<p><span>The civil war in Côte d'Ivoire led to a hike in human disturbances and the extirpation of the African lion (<em>Panthera</em> <em>leo</em>) from the Comoé National Park (CNP). After the war, many efforts have been made to restore this ecosystem and management is considering the reintroduction of lions. In participatory management with people at the center of conservation, there is a need to discuss with communities the initiatives affecting their livelihoods. We assessed the acceptance of lion reintroduction by the local communities; through semi-structured questionnaires to 307 volunteer participants in surrounding 23 villages. Most respondents had knowledge of lions from CNP (93%, n=286). A generalized linear model (GLM) revealed that </span><span>sex, profession, perceived benefits and risks, and an appreciation of the current management system are the main significant determinants for the acceptance of lion reintroduction in CNP.</span><span> A large majority (73%, n=223) were in favor of the lion reintroduction with significant variance among socio-professional categories. The majority of respondents (81%, n=250) acknowledged having coexisted with lions, with previous lion conflicts reported by 20% (n = 61), and a willingness to coexist in the future by 74% (n = 227). More than 84% (n=260) believed that there would be benefits associated with lion reintroduction to CNP and 53% (n=162) believed that the potential benefits would be greater than the possible risks associated with lions. Most respondents (88%; n=270) confirmed the possibility of taking precautions to prevent future lion attacks. While only 42% (n = 129) of respondents felt that current management was participatory, most of them felt that it was acceptable (83%; n = 254). </span><span>Our data shows a large degree of lion support, positive perceptions, and willingness to coexist with lions in the future. These results form part of a fundamental step in the direction for ethical reintroduction, as described by the IUCN reintroduction specialist group</span><span>. </span><span>We recommend the improvement of the involvement of indigenous communities in potential reintroduction of lions, especially the pastoralists, and the sharing of any associated benefits.</span></p>
Dataset of: Community perspectives on the prospect of lion (Panthera leo) reintroduction to Comoé National Park, Côte d’Ivoire (West Africa)
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Edge workload traces from Aeneas, Julius, and MR-Leo
<p><strong>Overview</strong></p> <p>The emerging field of edge computing is suffering from a lack of representative data to evaluate rapidly emerging new algorithms or techniques. It is a critical issue as this complex paradigm has numerous different use cases which translate to a highly diverse set of workload types.</p> <p>In this dataset, we collect traces for three available edge applications: Aeneas [1], Julius [2], and MR-Leo [3]. They are provided open-source. Read our article [4] for explanations about the gathering of these traces and an analysis of them.</p> <p>[1] https://www.readbeyond.it/aeneas/<br> [2] https://github.com/julius-speech/julius<br> [3] https://gitlab.liu.se/ida-rtslab/public-code/2019_mrleo_server<br> [4] K. Toczé, N. Schmitt, U. Kargén, A. Aral, and I. Brandic, <strong>Edge Workload Trace Gathering and Analysis for Benchmarking</strong>, in <em>6th IEEE International Conference on Fog and Edge Computing 2022 (ICFEC 2022)</em>, IEEE, 2022. DOI: <a href="https://doi.org/10.1109/ICFEC54809.2022.00012">10.1109/ICFEC54809.2022.00012</a></p> <p><strong>Details about the hardware used for the trace collection</strong></p> <p>The Aeneas trace was gathered using a an HP Elitebook 840 G5 running Ubuntu 18.10. It has 16 GB RAM and an Intel Core i7-8550U CPU (1.8 GHz, 4 cores, 8 threads). Aeneas version 1.7.3 was used.</p> <p>We collect traces for Julius on four Off-The-Shelve servers with varying performance as depicted in the following table. Because Julius is a single-core application, performance is mostly dictated by the clock speed of the CPU. Each server is running Ubuntu 18.04.4 LTS with kernel version 4.15.0-108-generic.<br> As some audio files caused Julius to crash, all files are converted from the original Ogg Vorbis format to WAV by applying \texttt{ffmpeg -i audio.ogg -acodec pcm\_s16le -ac 1 -ar 16000}, resulting in a total of 5724 audio files.<br> </p> <table> <caption>System under test servers for the Julius speech recognition application. (All CPUs are Intel Xeon)</caption> <tbody> <tr> <td>Server</td> <td>CPU @ Clock (Cores / Threads)</td> <td>Memory @ Clock</td> </tr> <tr> <td>A</td> <td>E3-1230 v5 @ 3.4GHz (4/8)</td> <td>1x16GB @ 2133MHz</td> </tr> <tr> <td>B</td> <td>E5-2640 v3 @ 2.6GHz (8/16)</td> <td>2x16GB @ 2133MHz</td> </tr> <tr> <td>C</td> <td>E5-2650 v3 @ 2.3GHz (10/20)</td> <td>2x16GB @ 2133MHz</td> </tr> <tr> <td>D</td> <td>E5-2650 v4 @ 2.2GHz (12/24)</td> <td>2x16GB @ 2133MHz</td> </tr> </tbody> </table> <p>The MR-Leo trace is gathered using a an HP Elitebook 840 G5 running Ubuntu 18.10. It has 16 GB RAM and an Intel Core i7-8550U CPU (1.8 GHz, 4 cores, 8 threads). The MR-Leo implementation using ORB-SLAM2 is used, in the replay mode on the edge server, meaning that the input video was directly streamed on the edge server, and not from an end device.</p> <p><strong>Details about the task id field</strong></p> <p>The task id for the Aeneas trace looks as follows: A_1_3 where the A stands for Aeneas, the first number corresponds to the example used for this task (see Figure 3 in parenthesis) and the second number identify the run number in which the data is collected.</p> <p>The task id field in the trace file uses the format J_C_3_4 where J stands for Julius, the second letter corresponds to the server on which the measurement has been taken (see Table above), the first number is the file that is converted (see Figure 4), and the second number is the run number.</p> <p>The task id field of the MR-Leo trace looks as follows: M_1_4_78. The M stands for MR-Leo, the first number identifies the video, the second number identifies the run number and the last number is the frame number.</p>
Triangular Mesh of the Brain of a Lion (Panthera leo)
<p>Triangular Mesh of the Brain of a Lion (<i>Panthera leo</i>) from http://braincatalogue.org/Lion</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.