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Figure 5 from: Ng PKL, Meyer C (2016) A new species of pea crab of the genus Serenotheres Ahyong & Ng, 2005 (Crustacea, Brachyura, Pinnotheridae) from the date mussel Leiosolenus Carpenter, 1857 (Mollusca, Bivalvia, Mytilidae, Lithophaginae) from the Solomon Islands. ZooKeys 623: 31-41. https://doi.org/10.3897/zookeys.623.10272
Figure 5 - Serenotheres janus sp. n., holotype ♀ (8.9 × 7.9 mm) (USNM). A overall carapace dorsal lamellum B frontal view of cephalothorax (left side denuded) C outer view of right MXP3 and exopod (denuded) D inner view of right MXP3 (denuded) E abdominal somites 4–6 and telson (pits and eroded areas not drawn, left side denuded). Scales: A, B, E = 1.0 mm; C, D = 0.5 mm.
Figure 4 from: Erkens RHJ, Oosterhof J, Westra LYT, Maas PJM (2017) Revisions of Ruizodendron and Pseudephedranthus (Annonaceae) including a new species and an overview of most up-to-date revisions of Neotropical Annonaceae genera. PhytoKeys 86: 75-96. https://doi.org/10.3897/phytokeys.86.13773
Figure 4 - a Close up of flowering branch of Pseudephedranthus enigmaticus (Evans et al. 3437) b Close up of fruiting branch of Pseudephedranthus enigmaticus (Herrera C. et al. 9959).
Figure 3 from: Erkens RHJ, Oosterhof J, Westra LYT, Maas PJM (2017) Revisions of Ruizodendron and Pseudephedranthus (Annonaceae) including a new species and an overview of most up-to-date revisions of Neotropical Annonaceae genera. PhytoKeys 86: 75-96. https://doi.org/10.3897/phytokeys.86.13773
Figure 3 - Drawing of Ruizodendron ovale. a Top of a branch b Flower c Base of flower with part of petals removed to show the interior d Fruit e Monocarp f Monocarp in longitudinal section showing laterally attached seed g Seed viewed clockwise starting from right: longitudinal view, hilum side, and in longitudinal section. Drawings by H. Rypkema.
Figure 7 from: Erkens RHJ, Oosterhof J, Westra LYT, Maas PJM (2017) Revisions of Ruizodendron and Pseudephedranthus (Annonaceae) including a new species and an overview of most up-to-date revisions of Neotropical Annonaceae genera. PhytoKeys 86: 75-96. https://doi.org/10.3897/phytokeys.86.13773
Figure 7 - Fruit of Pseudephedranthus fragrans. Venezuela, Amazonas: Piedra de Cucuy (Maas et al. 6878).
Figure 5 from: Erkens RHJ, Oosterhof J, Westra LYT, Maas PJM (2017) Revisions of Ruizodendron and Pseudephedranthus (Annonaceae) including a new species and an overview of most up-to-date revisions of Neotropical Annonaceae genera. PhytoKeys 86: 75-96. https://doi.org/10.3897/phytokeys.86.13773
Figure 5 - Drawing of Pseudephedranthus enigmaticus. a Flowering branch (Clarke 3420, U) b Flower in lateral view c Staminate flower in longitudinal section d Outer petal e Inner petal f Stamen (b–f Evans et al. 3437, WAG) g Fruit (Herrera C. 9959, WAG) h Seed, small part of seed coat removed to show lamellate ruminations i Cross section of monocarp and enclosed seed showing 4-parted rumination (h–i Strudwick et al. 3808, U). Drawings by Esmée Winkel.
Figure 2 from: Erkens RHJ, Oosterhof J, Westra LYT, Maas PJM (2017) Revisions of Ruizodendron and Pseudephedranthus (Annonaceae) including a new species and an overview of most up-to-date revisions of Neotropical Annonaceae genera. PhytoKeys 86: 75-96. https://doi.org/10.3897/phytokeys.86.13773
Figure 2 - a Flowering branch of Ruizodendron ovale b The asymmetrical, transversely-ellipsoid monocarps of Ruizodendron ovale (van der Werff 22749, MO). Missouri Botanical Garden, used with permission. Photograph 1b downloaded from http://www.tropicos.org. Photograph 1a taken by Abel Monteagudo, 1b taken by Rodolfo Vásquez.
French national map of 2022 mowing dates
<p>National map of mowing dates for 2022. Produces using machine learning and sentinel-2 time series.</p>
Chapter 4 – Characterising the Gamburtsev Subglacial Mountains by detrital apatite, rutile, and titanite U-Pb dating and trace element analysis: How passive tectonics led to inception of the Antarctic Ice Sheet
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Chapter 2 - Dynamic collapse and regrowth of the Antarctic Ice Sheet in the Weddell Sea Sector during the Middle Miocene: A novel multi-proxy sedimentary provenance approach using in-situ 87Rb/87Sr dating of detrital K-feldspar - Supplementary Materials
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High Temporal Resolution UAS Phenotyping Provides Unique Information Between Flight Dates
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FIGURE 2 in A new perspective on the molecular dating of the brown trout complex with an extended phylogeographic information on the species in Serbia
FIGURE 2 Median-joining network of CR mtDNA sequences. Haplotypes are represented by colored circles (supplementary table S1), with individual colors corresponding to the different lineages. The haplotypes found in the present study are framed, and for those, the size of the circles is proportional to the haplotype frequencies in the sample. Mutations are represented by hatch marks on the lines connecting the haplotypes. Missing or theoretical haplotypes are shown as black dots.
FIGURE 1 in A new perspective on the molecular dating of the brown trout complex with an extended phylogeographic information on the species in Serbia
FIGURE 1 Map of sampling locations. The names and codes of the sampling sites are listed in table 1. Dots on the map represent sampling locations, while river drainages are indicated by different colors, as in the legend. Colored pie charts around the map represent the distribution and frequencies of mitochondrial DNA control region haplotypes per site.
Date
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Рис. 4. Àинамика гибеΛи гусениц коΛьчатого шеΛкопряΔа, собранных в районе УПН, соΔержащихся в Λабораторных усΛовиях. ВертикаΛьно: коΛичество погибших гусениц (% от чисΛа собранных за весь периоΔ иссΛеΔований в 2019 г. гусениц). ГоризонтаΛьно: Δата осмотра в Λаборатории. В правом верхнем угΛу графика: Δата сбора гусениц в районе УПН. — гибеΛь от вируса яΔерного поΛиэΔроза; — гибеΛь от бактериоза Fig. 4. Dynamics of death of the Lackey moth caterpillars collected at the SOM and kept in the laboratory, 2019. Vertical: number of deaths (percentage from the total number of caterpillars collected in 2019 (578 caterpillars)); horizontal: dates of laboratory controls. Upper right corner: collection date. — death from NPV; — death from bacteriosis in Lackey Moth (Malacosoma Neustria L., Lasiocampidae, Lepidoptera) Population During The Eruptive Phase
Рис. 4. Àинамика гибеΛи гусениц коΛьчатого шеΛкопряΔа, собранных в районе УПН, соΔержащихся в Λабораторных усΛовиях. ВертикаΛьно: коΛичество погибших гусениц (% от чисΛа собранных за весь периоΔ иссΛеΔований в 2019 г. гусениц). ГоризонтаΛьно: Δата осмотра в Λаборатории. В правом верхнем угΛу графика: Δата сбора гусениц в районе УПН. — гибеΛь от вируса яΔерного поΛиэΔроза; — гибеΛь от бактериоза Fig. 4. Dynamics of death of the Lackey moth caterpillars collected at the SOM and kept in the laboratory, 2019. Vertical: number of deaths (percentage from the total number of caterpillars collected in 2019 (578 caterpillars)); horizontal: dates of laboratory controls. Upper right corner: collection date. — death from NPV; — death from bacteriosis
Figure 1 from: Bousquet Y (2018) The dating of the fourth volume of Guillaume-Antoine Olivier's "Entomologie, ou histoire naturelle des insectes". ZooKeys 734: 137-148. https://doi.org/10.3897/zookeys.734.22901
Figure 1 A photographic reproduction of an oil portrait of Guillaume-Antoine Olivier [source: Bernard (1997: fig. 1)].
Fig. 6 in A dated molecular perspective of eucalypt taxonomy, evolution and diversification
Fig. 6. Bayesian analyses of macroevolutionary mixtures (BAMM) using the maximum likelihood (ML)
Figure 3. Bayesian dating tree inference performed with cytochrome b in PhylOgeOgraphy and pOtential distributiOn OF Sturnira lilium and S. giannae (ChirOptera: PhyllOstOmidae) With range eXtensiOn FOr S. giannae in the CerradO and Pantanal biOmes
Figure 3. Bayesian dating tree inference performed with cytochrome b gene for Sturnira. Numbers are the nodes ages and values of posterior probability are represented by circles in black (pp ≥ 0.9) and white (pp ≥ 0.8 <0.9). See the list of haplotypes in Table S1 and Fig. S1.
Figure 2 in The gill morphology of the date mussel Lithophaga lithophaga (Bivalvia: Mytilidae)
Figure 2. Axial region of the ctenidia. a. A narrow axis and thin filaments of the gill of L. lithophaga. b. A prominent canal, full of food material (arrows) at the dorsal end of the axial region and a dentation at the lower edge (arrowhead). c. Protozoa trapped in the axial canal. Scale bar: a = 200 µm, b = 100 µm, c = 50 µm.
Figure 5 in The gill morphology of the date mussel Lithophaga lithophaga (Bivalvia: Mytilidae)
Figure 5. Ciliation on the filaments from the frontal view in the gill of L. lithophaga. a. Three very thick layers of cilia are prominent. b. Latero-frontal cilia in pairs. c. Duality in latero-frontal cilia and aggregated (arrowheads) or singly distributed (circles) food particles on the ciliary surface. lf: latero-frontal cilia. Scale bar: a = 40 µm, b = 10 µm, c = 4 µm.
Figure 1. a in The gill morphology of the date mussel Lithophaga lithophaga (Bivalvia: Mytilidae)
Figure 1. a. General anatomy of L. lithophaga. b. Schematic view of the gills showing very prominent double sheets within the mantle cavity. c. A ridged demibranch (*). Ml: mantle layers, Mc: mantle cavity, f: foot, ea: excurrent aperture, ia: incurrent aperture, aam: anterior adductor muscle, arm: anterior retractor muscle, ih: inner hemipalp, od: outer demibranches, id: outer demibranches.
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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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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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