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229 results for “Lamb”
FIGURE 20. Suberites concinnus Lambe, 1895 in Taxonomic review of Hadromerida (Porifera, Demospongiae) from British Columbia, Canada, and adjacent waters, with the description of nine new species
FIGURE 20. Suberites concinnus Lambe, 1895. Scale bar on A–E is approx. 3 cm; A, orange morph; B, light orange ectosome, orange choanosome, asymmetrical morph; C, white star burst over light orange ectosome, orange choanosome morph; D, white ectosome, orange choanosome, asymmetrical morph; E, white ectosome, white choanosome, spherical morph; F, tangential section through ectosome showing brushes of megascleres, scale bar 100 µm.
FIGURE 9. Polymastia pacifica Lambe, 1893b. A in Taxonomic review of Hadromerida (Porifera, Demospongiae) from British Columbia, Canada, and adjacent waters, with the description of nine new species
FIGURE 9. Polymastia pacifica Lambe, 1893b. A, large living specimen, scale bar 1 cm; B, cross section showing fibre tracts extending to ectosome, scale bar 1 mm; C, palisade of small tylostyles in ectosome, scale bar 50 Μm; D, head of style I, scale bar 50 µm; E, subtylostyle II, scale bar 500 µm; F, head of subtylostyle II, scale bar 50 µm; G, tylostyle I, scale bar 200 Μm; H, head of tylostyle I, scale bar 50 Μm; I, tylostyle II, scale bar 30 Μm; J, head of tylostyle II, scale bar 10 Μm.
FIGURE 9. Suberites aff. latus Lambe, 1893. A–B in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 9. Suberites aff. latus Lambe, 1893. A–B, live specimen of the encrusting form (MNRJ 13688); C, skeleton architecture in transverse ground section (MNRJ 13688); D–E, tylostyles I & II respectively; F–G, tylostyles heads of D–E; H–K, centrotylotes. Scale bars: A, approx. 5 cm; B, 1 cm; C, 500 μm; D–E, 100 μm; F–G, 20 μm; H–K, 10 μm.
FIGURE 8. Suberites aff. latus Lambe, 1893. A–B in Shallow Suberitida (Porifera, Demospongiae) from Peru
FIGURE 8. Suberites aff. latus Lambe, 1893. A–B, live specimen (MNRJ 13698); C, tangential section of the ectosome in ground section (MNRJ 13698); D, skeleton architecture in transverse ground section (MNRJ 13698); E–F, tylostyles I & II, respectively; G–H, tylostyles heads of E–F. Scale bars: A, approx. 2 cm; B, 1 cm; C, 200 µm; D, 500 µm; E–F, 100 µm; G–H, 20 µm.
Data set for 'All-microwave Lamb shift engineering for a fixed frequency multi-level superconducting qubit'
<p>Solurce data for the paper 'All-microwave Lamb shift engineering for a fixed frequency multi-level superconducting qubit' (https://www.nature.com/articles/s42005-024-01841-0).</p>
Consuming Grass Finished Lamb Improves Blood Plasma ω-3 Fatty Acid Response Among Healthy Consumers.
ClinicalTrials.gov study NCT06607354. IPD Sharing: NO. Countries: 1. Publications: 1.
Data from: Tissue-specific carbon concentration, carbon stock, and distribution in Cunninghamia lanceolata (Lamb.) Hookplantations at various developmental stages in subtropical China
Open the record for dataset details and reuse information.
Data from: Genome-wide association and regional heritability mapping to identify loci underlying variation in nematode resistance and body weight in Scottish Blackface lambs
Open the record for dataset details and reuse information.
Data from: Mortality and lamb body mass growth in free-ranging domestic sheep – environmental impacts including lethal and non-lethal impacts of predators
Open the record for dataset details and reuse information.
FIGURE 54. Lagaroceras pulchellum Lamb, 1917 in An overview of the Chloropidae (Diptera) of Saudi Arabia
FIGURE 54. Lagaroceras pulchellum Lamb, 1917. Male.
Virtual Reality Video of a Lamb Carcass
<p>Video of virtual reality applied to a lamb carcass. Images collected from a computed tomography instrument (Siemens Emotion Duo) at the facilities of Teagasc Ashtown Dublin. Image and VR edition using arivis vision 4D software.</p>
Genotypes of Merinoland sheep, lambs and F1 crosses
<p>HD (50K) SNP panel and LD (384) SNP panel of Merinoland sheep, lambs and F1 crosses</p>
Microbial Deterioration of Lamb Meat of Portuguese Origin as Affected by its Intrinsic Properties
<p>Recording of the talk “Microbial deterioration of lamb meat of Portuguese origin as affected by its intrinsic properties”, presented by Ursula Gonzales-Barron at the 71<sup>st</sup> Annual Meeting of the European Federation of Animal Science, EAAP, Online virtual meeting (1-4 Dec 2020).</p>
Juniperus squamata Lamb. (BR0000025050417)
Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
Figure 4 from: Lamb T, Marais E, Bond JE (2017) A second locality for the Namib darkling beetle Onymacris brainei (Tenebrionidae, Coleoptera) and first report on its molecular phylogenetic placement. ZooKeys 687: 63-72. https://doi.org/10.3897/zookeys.687.13660
Figure 4 - ML consensus topology of Onymacris, with bootstrap support indicated by black (> 95%), gray (> 90%), and white (> 70%) nodes. Inset at lower left is a ML tree showing branch lengths.
Figure 3 from: Lamb T, Marais E, Bond JE (2017) A second locality for the Namib darkling beetle Onymacris brainei (Tenebrionidae, Coleoptera) and first report on its molecular phylogenetic placement. ZooKeys 687: 63-72. https://doi.org/10.3897/zookeys.687.13660
Figure 3 - Specimens of Onymacris brainei from the second locality, illustrating variation in degree of elytral striping.
Figure 1 from: Lamb T, Marais E, Bond JE (2017) A second locality for the Namib darkling beetle Onymacris brainei (Tenebrionidae, Coleoptera) and first report on its molecular phylogenetic placement. ZooKeys 687: 63-72. https://doi.org/10.3897/zookeys.687.13660
Figure 1 - Color variation among members of the 'white' Onymacris clade, as represented by: (top row, left to right) Onymacris bicolor, O. marginipennis, O. candidipennis, and (bottom row, left to right) O. langi visseri, O. langi cornelii, and O. langi meridionalis.
Figure 2 from: Lamb T, Marais E, Bond JE (2017) A second locality for the Namib darkling beetle Onymacris brainei (Tenebrionidae, Coleoptera) and first report on its molecular phylogenetic placement. ZooKeys 687: 63-72. https://doi.org/10.3897/zookeys.687.13660
Figure 2 - Map illustrating the type locality for Onymacris brainei (star), surveyed sites with appropriate habitat (white circles), and the second locality for O. brainei (red circle).
Figs 52–57 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions
Figs 52–57. Amygdalops sp. n. (a) near cuspidatus, female (Taiwan). 52 = spermathecae, 53 = postabdomen, dorsal view, 54 = postabdomen, ventral view, 55 = S10 and internal sclerites, lateral view, 56 = ventral receptacle, ventrolateral view, 57 = S10 and internal sclerites, ventral view. Scales: Figs
Figure 1 from: Bond JE, Lamb T (2019) A new species of Pionothele from Gobabeb, Namibia (Araneae, Mygalomorphae, Nemesiidae). ZooKeys 851: 17-25. https://doi.org/10.3897/zookeys.851.31802
Figure 1 Aerial photograph of type locality. Kuiseb River bed in foreground (tree line); the interdune pitfall trap transect lies beyond the dunes (middle right of image).
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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)
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DANDI Archive for NWB datasets
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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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