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FIGURE 8 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 8. Conocephalus conocephalus, Shorori Wetland (1610 m), Ethiopia. Scale bar represents 1 cm.
FIGURE 5 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 5. Pseudorhynchus lanceolatus, Dembi Forest (1260 m), Ethiopia. Scale bar represents 1 cm.
Quasi-periodic Gaussian process rotation period posterior samples for 1132 Kepler objects of interest.
<p>1132 .h5 files containing light curves, hyperparameter priors, period priors and posterior samples for the QP-GP rotation period model in Angus, Morton, Aigrain, Foreman-Mackey & Rajpaul (2017).</p> <p>1132 .png light curve images.</p> <p>To load the samples in python:</p> <p>>>> df = pd.read_hdf("KOI-1.h5", key="samples")</p> <p>>>> ln_period_samples = df.ln_period</p> <p>>>> ln_A_samples = df.ln_A</p> <p>>>> ln_l_samples = df.ln_l</p> <p>>>> ln_G_samples = df.ln_G</p> <p>>>> ln_sigma_samples = df.ln_sigma</p> <p> </p>
Fig. 1. Conothele truncicola n in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Fig. 1. Conothele truncicola n. sp. - Female dorsally. - Scale bar = 2.0 mm. Orig.
Fig. 60. Cenemus mikehilli n in New species and interesting new records of spiders from Seychelles (Arachnida, Araneaea)
Fig. 60. Cenemus mikehilli n. sp. - Epigyneal area ventrally. Scale=0.2 mm. Orig.
CONDITIONS FOR THE FORMATION OF STUDENTS' COGNITIVE INTERESTS.
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CONDITIONS FOR THE FORMATION OF STUDENTS' COGNITIVE INTERESTS.
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Figs 1–5. Moths, dorsal view. 1 in New and interesting records of Lepidoptera for several Russian regions
Figs 1–5. Moths, dorsal view. 1 – Psilogramma increta (Walker, 1865), ♂, Primorsky Krai; 2, 3 – Enispa lutefascialis (Leech, 1889), ♂, Buryatia; 4 – Metachrostis sinevi Kononenko et Matov, 2009, ♂, Primorsky Krai; 5 – Paragabara curvicornuta Kononenko et Matov, 2010, ♀, Amurskaya Oblast. Scale bar = 1 cm.
INCREASING INTEREST IN THE SPORT OF KURASH AMONG STUDENTS OF HIGHER EDUCATIONAL INSTITUTIONS
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TABLE 2 in Ferula ermenekense (Apiaceae), an interesting new species from Southern Anatolia in the eastern Mediterraenean Basin
<p><b>TABLE 2</b> Comparison of mericarp characteristics of <i>Ferula ermenekense, F. lycia, F. duranii</i> and <i>F. pisidica</i> (L: length, W: width, T: thickness, SD: standard deviation; values in mm).</p><table><tbody><tr><th><b>Mericarpcharacters</b></th><th><i>F. ermenekense</i></th><th><i>F. lycia</i></th><th><i>F. duranii</i></th><th><i>F. pisidica</i></th></tr></tbody><tbody><tr><th>L,W</th><td>9.02–15.01mm, 5.02–7.50 mm</td><td>7.00–10.3mm, 4.00–7.01 mm</td><td>6.02–10.01 mm, 3.03–5.02 mm</td><td>8.01–14.2 mm, 5.03–8.04 mm</td></tr><tr><th>T</th><td>1.92–2.03 mm</td><td>1.25–1.50 mm</td><td>0.70–1.51 mm</td><td>1.45–2.001 mm</td></tr><tr><th>L/W</th><td>12.015/6.26:1.91</td><td>8.65/5.505:1.57</td><td>8.015/4.025:2.01</td><td>11.105/6.535:1.69</td></tr><tr><th>Mericarp Shape</th><td>obovate-eliptical</td><td>rounded-oblong</td><td>narrowly elliptical-oblong</td><td>oblong</td></tr><tr><th>Mericarp Color</th><td>brown</td><td>light brownish</td><td>dark brown</td><td>light brownish</td></tr><tr><th>Mericarp size (mm)</th><td>9–15 × 5–7,5</td><td>7–10 × 4–7</td><td>6–10 × 3–5</td><td>8–14 × 5–8</td></tr><tr><th>Mericarp wing wide (mm)</th><td>0.5–0.7</td><td>1–1.5</td><td>0.3–0.5</td><td>0.5–0.7</td></tr><tr><th>Mericarp dorsal ridges</th><td>filiform straight</td><td>slightly filiform</td><td>filiform and slightly undulate</td><td>filiform and slightly undulate</td></tr><tr><th>ornamentation</th><td>rugulose, granules</td><td>rugulose-reticulate</td><td>rugulose</td><td>rugulose-reticulate</td></tr><tr><th>Epicuticular wax</th><td>crust; sparsely irregular platelets</td><td>smooth layer; irregular and sparsely platelets</td><td>smooth layer; diffuse, dense, irregular and nonentire platelets</td><td>smooth layer; tiny and very sparsely irregular platelets</td></tr><tr><th>Epidermal cells shape</th><td>incospicous more or less isodiametric, polygonal</td><td>conspicous more or less isodiametric, especially quadrangle polygonal</td><td>inconspicous more or less isodiametric, polygonal</td><td>inconspicous rounded, more or less isodiametric</td></tr><tr><th>Anticlinal cell walls</th><td>inconspicuous, regularly thickened and straight</td><td>conspicuous, sunken, ribbed, undulate</td><td>inconspicuous, irregularly thickened and straight</td><td>inconspicuous, irregularly thickened and minutely raised to straight</td></tr><tr><th>Periclinal cells walls</th><td>flat</td><td>convex</td><td>concave</td><td>flat</td></tr></tbody></table>
TABLE 1. A in Ferula ermenekense (Apiaceae), an interesting new species from Southern Anatolia in the eastern Mediterraenean Basin
<p><b>TABLE 1.</b> A comparison of selected characters differing among <i>F. ermenekense, F. lycia, F. duranii</i> and <i>F. pisidica</i>.</p><table><tbody><tr><th><b>Characters</b></th><th><i>Ferula ermenekense</i></th><th><i>F. lycia</i></th><th><i>F. duranii</i></th><th><i>F. pisidica</i></th></tr></tbody><tbody><tr><th>Basal leaves</th><td>4–5(–6) pinnate</td><td>6 pinnate</td><td>6–7 pinnate</td><td>6–7 pinnate</td></tr><tr><th>Basal leaves</th><td>sparsely scabrid</td><td>glabrous</td><td>glabrous</td><td>setulose</td></tr><tr><th>Ultimate segments</th><td>linear, 4–10 (–12) × 1–3 mm</td><td>oblong-linear, 1–2 × 0.5–1 mm</td><td>linear, 3–8 × 0.4–0.8 mm</td><td>linear, 1–4 × 0.5–1.5 mm</td></tr><tr><th>Ultimate segments apex</th><td>acuminate</td><td>acute</td><td>acuminate</td><td>obtuse</td></tr><tr><th>Inflorescence</th><td>dense</td><td>lax</td><td>lax</td><td>lax</td></tr><tr><th>Sheaths</th><td>lanceolate</td><td>ovate</td><td>lanceolate</td><td>ovate</td></tr><tr><th>Upper sheaths lamina</th><td>very reduced</td><td>very reduced</td><td>distinctly leafy</td><td>very reduced</td></tr><tr><th>Central umbels rays</th><td>14–26</td><td>6–16</td><td>14–22</td><td>8–22</td></tr><tr><th>Central umbels pedicel</th><td>7–10 mm</td><td>6–14</td><td>5–10 mm</td><td>2–8 mm</td></tr><tr><th>Umbellules flowers</th><td>(10–)15–23</td><td>10–15</td><td>20–40</td><td>9–15</td></tr><tr><th>Petals</th><td>glabrous</td><td>glabrous</td><td>glabrous</td><td>setulose</td></tr><tr><th>Mericarps</th><td>obovate-elliptic, 9–15 × 5–7.5 mm</td><td>orbicular-oblong, 7–10 × 4–7 mm</td><td>narrowly elliptic-blong, 6–10 × 3–5 mm</td><td>oblong, 8–14 × 4–9 mm</td></tr><tr><th>Dorsal vittae per vallecula</th><td>1–2</td><td>1</td><td>2–3</td><td>1–3</td></tr><tr><th>Commussural vittae</th><td>6–8</td><td>2–4</td><td>4–6</td><td>(2–)4–6</td></tr><tr><th>Lateral wings wide</th><td>0.5–0.7 mm</td><td>1–1.5 mm</td><td>0.3–0.5 mm</td><td>0.5–1 mm</td></tr></tbody></table>
Figs 10–13. 10 in Deepor Beel - A Ramsar Site Of India: An Interesting Hot-Spot With Its Rich Rotifera Biodiversity
Figs 10–13. 10 = Filinia camasecla MYERS, dorsal view, 11 = Lecane lateralis SHARMA, ventral view, 12 = Lecane unguitata (FADEEV), ventral view, 13 = Testudinella greeni KOSTE, ventral view
Supplementary material 1 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figures S1–S9
Figure 7 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 7 Phylogenetic tree of Penicillium section Gracilenta based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA, ITS, and rpb2 loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. abidjanumCBS 246.67. The name in red is the new species described in this study. T = Ex-type strain.
Figure 5 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 5 Phylogenetic tree of Penicillium section Exilicaulis based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA, ITS, and rpb2 loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. oxalicumCBS 219.30. The name in green is the strain of P. heteromorphum included in this study. T= Ex-type strain.
Figure 4 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 4 Phylogenetic tree of Penicillium section Canescentia based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA, ITS, and rpb2 loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. sacculumCBS 231.61 and P. senticosumCBS 316.67. The name in red is the new species described in this study. T= Ex-type strain.
Figure 2 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 2 Phylogenetic tree of Penicillium section Robsamsonia based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA, ITS, and rpb2 loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. paradoxumCBS 527.65 and P. malodoratumCBS 490.65. The name in red is the new species described in this study. T= Ex-type strain.
Figure 15 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 15 Morphological characters of Penicillium tardochrysogenum (FMR 17137). A colonies from left to right (top row) CYA, MEA, YES, and OA; (bottom row) CYA reverse, MEA reverse, DG18, and CREAB–E conidiophores on MEAF conidia. Scale Bars: 25 μm (B), 10 μm (C–F).
Figure 6 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 6 Phylogenetic tree of Penicillium section Lanata-Divaricata based on ML analysis obtained by RAxML inferred from the combined tub2, cmdA, ITS, and rpb2 loci. Branch lengths are proportional to phylogenetic distance. Bootstrap support values/Bayesian posterior probability scores above 70%/0.95 are indicated on the nodes. Bold branches indicate bs/pp values 100/1. The tree is rooted to P. restrictumCBS 367.48 and P. corylophilumCBS 312.48. The name in red is the new species described in this study. T= Ex-type strain.
Figure 14 from: Torres-Garcia D, Gené J, García D (2022) New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103-145. https://doi.org/10.3897/mycokeys.86.73861
Figure 14 Morphological characters of Penicillium submersum sp. nov. (ex-type FMR 17140). A colonies from left to right (top row) CYA, MEA, YES, and OA; (bottom row) CYA reverse, MEA reverse, DG18, and CREAB–F conidiophores on MEAG conidia. Scale Bars: 25 μm (B), 10 μm (C–G).
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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.