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1,929 results for “ARMS”
Coat of arms of Ukraine
Герб України Source: Objaverse 1.0 / Sketchfab
1734 Moodie Arms, Warbeth Cemetery, Orkney
This coat of arms belongs to the Moodie family of Breckness or Melsetter and lies in the old section of Warbeth Cemetery, Stromness, Orkney. The coat of arms has chevron with a 'castle/beacon' to the top left and two pheons points upwards and a hunting horn in chief. The date '1734' has the initials 'IM' above it to the left and '?M' to the right. A complete model of the monument it has fallen from can be found here: https://sketchfab.com/models/d9fe8769eb83400199ab6546147005b3 The detail is difficult to appreaciate with the texture and is much clearer in matcap mode. Source: Objaverse 1.0 / Sketchfab
Coat of arms of Napoleon
Coat of arms of Napoleon Source: Objaverse 1.0 / Sketchfab
FIGURE 6 in Forty years later: a new Andean stream treefrog of the genus Hyloscirtus (Anura: Hylidae) from Ecuador, with comments on arm hypertrophy in the H. larinopygion group
FIGURE 6. Hyloscirtus arcanus sp. nov. in life. (KU 202731, paratype, adult male, SVL 67.8 mm). Photo: D. Hillis (1984).
FIGURE 8 in Forty years later: a new Andean stream treefrog of the genus Hyloscirtus (Anura: Hylidae) from Ecuador, with comments on arm hypertrophy in the H. larinopygion group
FIGURE 8. Map showing currently known localities for species of the southern clade of the Hyloscirtus larinopygion group, including Hyloscirtus arcanus sp. nov. (the species with the northernmost distribution of the clade).
FIGURE 5 in Forty years later: a new Andean stream treefrog of the genus Hyloscirtus (Anura: Hylidae) from Ecuador, with comments on arm hypertrophy in the H. larinopygion group
FIGURE 5. Paratype series of Hyloscirtus arcanus sp. nov.. On top dorsal view, on the bottom ventral view. From left to right: female KU 202729, males KU 202728 and KU 202731. Scale bars = 20 mm.
FIGURE 4 in Forty years later: a new Andean stream treefrog of the genus Hyloscirtus (Anura: Hylidae) from Ecuador, with comments on arm hypertrophy in the H. larinopygion group
FIGURE 4. Drawings of Hyloscirtus arcanus sp. nov. (KU 202730, holotype). (A) Head in lateral view (B) head in dorsal view; (C) left hand in ventral view; (D) left foot in ventral view. Scale bars = 10 mm.
FIGURE 1 in Forty years later: a new Andean stream treefrog of the genus Hyloscirtus (Anura: Hylidae) from Ecuador, with comments on arm hypertrophy in the H. larinopygion group
FIGURE 1. Phylogenetic relationships of Hyloscirtus as recovered in one of the 92 most parsimonious trees obtained from the analysis of 12S, tRNAVal, and 16S rRNA gene fragments with gaps as fifth state, equal weights for all transformations, and zero-length branches collapsed. Black circles indicate nodes that collapse in the strict consensus. Numbers above nodes are parsimony jackknife support values. An asterisk (*) indicates groups with 100% for parsimony jackknife frequencies. Nodes lacking values have <50% jackknife support; all are retained in the strict consensus.
FIGURE 2 in Forty years later: a new Andean stream treefrog of the genus Hyloscirtus (Anura: Hylidae) from Ecuador, with comments on arm hypertrophy in the H. larinopygion group
FIGURE 2. Dorsal view of right leg of (A) holotype of Hyloscirtus arcanus sp. nov. (KU 202730) and (B) paratopotype of H. lindae (KU 155475), both males. Notice the presence of scattered spiculae on the shank in (A), absent in (B). Scale bars = 5 mm.
FIGURE 7. A in Forty years later: a new Andean stream treefrog of the genus Hyloscirtus (Anura: Hylidae) from Ecuador, with comments on arm hypertrophy in the H. larinopygion group
FIGURE 7. A. Dorsal view of left forearm of Hyloscirtus arcanus sp. nov. adult male KU 202728 with the three slips of the m. abductor pollicis longus highlighted. White highlights tendons; maroon highlights the slip originating via fleshy attachments on the radioulna; teal highlights the slip originating via a tendon on the distal epicondyle of humerus; olive highlights the slip originating via a fleshy attachment on the cristal lateralis of humerus. The following muscles were previously removed: m. extensor communis, m. extensor carpi ulnaris, m. epicondylo-cubitalis, and m. epitrochleo-cubitalis. Scale bar = 3 mm. B. Ventral cut on abdomen of Hyloscirtus arcanus sp. nov. female specimen (KU 202729) revealing the large and mature oviducal oocytes, with unpigmented animal pole. Scale bar = 2 mm.
FIGURE 3 in Forty years later: a new Andean stream treefrog of the genus Hyloscirtus (Anura: Hylidae) from Ecuador, with comments on arm hypertrophy in the H. larinopygion group
FIGURE 3. Dorsal and ventral view of the holotype of Hyloscirtus arcanus sp. nov. (KU 202730; adult male, SVL 64.9 mm).
DYAMOND-II Model Outputs for "Boundary-Layer-Coupled and Decoupled Clouds in Global Storm-Resolving Models: Comparisons with the ARM Observations"
<p>This dataset contains outputs from the DYAMOND Phase-II simulations, focusing on Global Storm-Resolving Models (GSRMs) at various Atmospheric Radiation Measurement (ARM) sites. The dataset supports the analysis presented in the manuscript "Boundary-Layer-Coupled and Decoupled Clouds in Global Storm-Resolving Models: Comparisons with the ARM Observations."</p> <p>Included are high-resolution model outputs from nine GSRMs, detailing simulations of atmospheric processes at six ARM sites, including variables of clouds, temperature, humidity, wind, and surface fluxes. This dataset allows for a direct comparison between GSRM simulations and ARM field observations, facilitating the evaluation of PBL-coupled and decoupled clouds. For further inquiries or assistance regarding the dataset, please contact the corresponding author at su10@llnl.gov.</p>
Bimanual Robot Arm Cloth Manipulation Dataset
<p>This dataset contains 945 trials of a bimanual robot arm setup, where one arm holds a piece of cloth (e.g., a towel) by one corner while the other arm, equipped with a wrist-mounted camera, captures images from approximately 180 different angles by making a half-circle motion around the cloth. Each trial includes images and the corresponding TCP (Tool Center Point) poses of the second arm. Additionally, the dataset provides annotated positions of the two corners adjacent to the held corner, which are critical for unfolding the cloth by grasping these points. This dataset is valuable for research in robotic manipulation, computer vision, and cloth handling tasks.</p>
FIGURE 5. Ophiactis modesta from the Persian Gulf. A, dorsal disc. B, oral frame. C, dorsal arm. D in New records of the brittle stars Ophiothela venusta and Ophiactis modesta (Echinodermata: Ophiuroidea) from the northern Persian Gulf, with morphological details
FIGURE 5. Ophiactis modesta from the Persian Gulf. A, dorsal disc. B, oral frame. C, dorsal arm. D, ventral arm. Abbreviations as in fig. 4, and DAP, dorsal arm plate, TS, tentacle scale. Scale bars in millimetre.
TEXT-FIGURE 2. Precisions on some dorsal internal terms used for the thecideoid brachiopods (Ospreyella mayottensis sp. nov., MNHN-IB-2017-179). Abbreviations: ibl, interbrachial lobe, i.e. the lobes occurring between the main arms of the lopho- phore in Ospreyella in particular; ibr, intrabrachial ridge, i.e. the ridges immediately within the main arms of the lophophore and which define the brachial lobes; lg, lophophore groove, i.e. the groove that accommodates the main arms of the lophophore; pbr, peribrachial ridge, i.e. the ridge that encloses the outer margins of the main arms of the lophophore. in Recent thecideide brachiopods from a submarine cave in the Department of Mayotte (France), northern Mozambique Channel
TEXT-FIGURE 2. Precisions on some dorsal internal terms used for the thecideoid brachiopods (Ospreyella mayottensis sp. nov., MNHN-IB-2017-179). Abbreviations: ibl, interbrachial lobe, i.e. the lobes occurring between the main arms of the lopho- phore in Ospreyella in particular; ibr, intrabrachial ridge, i.e. the ridges immediately within the main arms of the lophophore and which define the brachial lobes; lg, lophophore groove, i.e. the groove that accommodates the main arms of the lophophore; pbr, peribrachial ridge, i.e. the ridge that encloses the outer margins of the main arms of the lophophore.
Four-armed starfish in two lipid bilayer models
<div> <div> <h3>Summary</h3> <p>In Helfrich spontaneous curvature model (HSC) the energy functional to be minimized for equilibrium shapes is $W_H=\int{(H-H_0)^2} da$, under constraints of fixed volume and fixed area, where $H$ is the local mean curvature and $H_0$ is the spontaneous curvature parameter.</p> <p>Here we report an experiment that, by adjusting $H_0$ one may yield a qualitatively similar equilibrium shape to the bilayer couple model (BC). In BC, energy is $W=\int{H^2}da$ (see Ziherl & Svetina, 2005) with mean curvature integral $c=\int{H da}/4\pi$ fixed ( $c=c_0$) as a third constraint (the reference shape is the unit sphere with area $4\pi$ and $H=1$).</p> <p>This record includes datasets/ procedures for the open software Surface Evolver.</p> </div> </div>
FIGURE 79. Syagrus schizophylla. A. Habit, note flat topped canopy. B. Pseudopetioles heavily armed with spines. C. Older stem with leaf sheath remains. D in A revision of the genus Syagrus (Arecaceae)
FIGURE 79. Syagrus schizophylla. A. Habit, note flat topped canopy. B. Pseudopetioles heavily armed with spines. C. Older stem with leaf sheath remains. D. Habit at Jardim Botânica Plantarum. E. Inflorescence. F. Infructescence with long peduncle. G. Mature fruit.
Data from: Metapopulation structure of a seed-predator weevil and its host plants in arms race coevolution
Although the importance of gene flow in the geographic structuring of host–parasite interactions has been well discussed, little is known about how dispersal drives the spatial dynamics of other types of coevolutionary interactions in nature. We evaluated the roles of gene flow in the geographically structured processes of a predator–prey arms race involving a seed-predatory weevil with a long mouthpart and its host camellia plant with a thick fruit coat. Molecular genetic analyses showed that both weevil and camellia populations were structured at a spatial scale of several kilometers. Importantly, the spatial pattern of the migration of weevils, but not that of camellias, imposed significant effects on the geographic configuration of the levels of coevolutionary escalation. This result suggests that even if migration is limited in one species (camellia), local coevolution with the other species that migrates between neighboring localities (weevil) can reduce the inter-population difference in the local adaptive optima of the former species. Thus, gene flow of a species potentially homogenizes local biological environments provided by the species and thereby promotes the evolutionary convergence of its coevolving counterparts. Consequently, by focusing on coevolutionary interactions in natural communities, "indirect" effects of gene flow on the adaptive divergence of organisms could be identified.
Corticoreticulospinal tract neurophysiology in an arm and hand muscle in healthy and stroke subjects: Data
<p>Supplemental data of the paper: Corticoreticulospinal tract neurophysiology in an arm and hand muscle in healthy and stroke subjects.</p> <p>This dataset contains the individual raw data for healthy (H) and stroke subjects.</p>
Figure 3. Chromosome arm IL in Nearctic-Palaearctic relationships of black flies (Diptera: Simuliidae): chromosomal and morphological evidence for the Prosimulium magnum species group in Japan
Figure 3. Chromosome arm IL of male larva of Prosimulium yezoense from Shikoku Island, Japan, 5 April 2009. Section numbers refer to the Prosimulium standard map of Ottonen (1966). Breakpoints of floating inversion IL-25 are shown. N.O., nucleolar organizer.
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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
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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
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