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FIG. 3. — Microphotina viridula n in Les mantes (Dictyoptera, Mantodea) du massif du Mitaraka (Guyane), in Touroult J. (ed.), "Our Planet Reviewed" 2015 large-scale biotic survey in Mitaraka, French Guiana.
FIG. 3. — Microphotina viridula n. sp., holotype mâle: A, vue dorsale; B, vue ventrale de l'avant-corps; C, étiquettes. Échelles: A, 1 cm; B, 5 mm. Photos M. Depraetere.
FIG. 4. — Microphotina viridula n in Les mantes (Dictyoptera, Mantodea) du massif du Mitaraka (Guyane), in Touroult J. (ed.), "Our Planet Reviewed" 2015 large-scale biotic survey in Mitaraka, French Guiana.
FIG. 4. — Microphotina viridula n. sp.: A, plaque sous-génitale d'un paratype; B, genitalia de l'holotype en vue ventrale avec en plus grand l'apex de l'épiphallus gauche (D) et sa variabilité chez un paratype (C). Échelles: A, B, 1 mm; C, D, 0,5 mm.
Simulated data from "Gravitational instability in a planet-forming disk"
<h2>Repository Contents</h2> <blockquote> <p><strong>Simulated data from:</strong> Speedie et al. (2024)<br>"Gravitational instability in a planet-forming disk", J. Speedie, R. Dong, C. Hall, C. Longarini, B. Veronesi, T. Paneque-Carreño, G. Lodato, Y. Tang, R. Teague, & J. Hashimoto, <a href="https://www.nature.com/articles/s41586-024-07877-0"><em>Nature</em></a>, (2024).</p> <p><strong>Paper DOI:</strong> <a href="https://doi.org/10.1038/s41586-024-07877-0">https://doi.org/10.1038/s41586-024-07877-0</a></p> </blockquote> <p>This repository contains synthetic ALMA 13CO (J=2-1) image cubes and moment maps generated from 3D smoothed-particle hydrodynamic (SPH) simulations of a gravitationally unstable disk and a Keplerian counterpart. The following products are available:</p> <ul> <li>PHANTOM products</li> <li>MCFOST products</li> <li>Synthetic ALMA image cubes & moment maps</li> </ul> <p>The README provides a more detailed description. In the article, these synthetic data were compared with observed ALMA 13CO (J=2-1) data of the AB Aurigae disk from program 2021.1.00690.S (PI: R. Dong). Those ALMA data can be found here: <a href="https://doi.org/10.11570/24.0087">https://doi.org/10.11570/24.0087</a></p>
FIG. 14 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 14. — Histological sections of A, Unciherpia hirsuta (MNHN-IM-2019-18279): circumpharyngeal glands and B, Dorymenia vagans (MNHN-IM-2019-18271): copulatory stylets; C-E, Anamenia gorgonophila (MNHN-IM-2019-18270): C, anterior foregut region; D, radular region; D', detail of the radula, radular sac and ventrolateral foregut glands; E, oblique section of posterior region with abdominal spicules visible on the animal's right side. Abbreviations: see Material and methods. Scale bars: 100 µm.
FIG. 11 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 11. — Histological sections of the anterior region of Pruvotina impexa (Pruvot, 1890) (MNHN-IM-2019-1746): A-D, atrial cavity; E-H', region between the atrial opening and the mouth; H´, detail of the ventral region between the opening of the atrium and the mouth, without cuticular layer. Abbreviations: see Material and methods. Scale bars: 100 µm.
FIG. 7 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 7. — SEM images of the sclerites of A-D, Nematomenia banyulensis (Pruvot, 1890) (MNHN-IM-2019-1747); E, Tegulaherpia cf. myodoryata (MNHN-IM-2019-16176); F, Simrothiella margaritacea (Koren & Danielssen, 1877) (MNHN-IM-2019-18280); G, H, Dorymenia vagans (Kowalevsky & Marion, 1887) (MNHN-IM-2019-18274); I, Anamenia gorgonophila (Kowalevsky, 1880) (MNHN-IM-2019-18270). Scale bars: 20 µm.
FIG. 9 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 9. — Sclerites of A-E, Eleutheromenia sierra (Pruvot, 1890) (MNHN-IM-2019-1749): A, light microscopy image of the cuticle (the dorsal keel); B, general view of the sclerites in the dorsal region of the body; C, closer view of the hook-shaped sclerites and acicular sclerites in the dorsal region of the body (arrow, thin sclerites; star: longer and thicker sclerites); D, detail of the hook-shaped sclerites; E, acicular sclerites in the ventral region of the body; F-I, Unciherpia hirsuta (MNHN-IM-2019-18279): F, hook-shaped and harpoon-shaped sclerites (star, harpoon-shaped sclerites); G, acicular sclerites in the ventral region of the body; H, I, hook-shaped sclerites. Scale bars: A, 200 µm, B-I, 20 µm.
FIG. 6 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 6. — SEM images of the sclerites of Dondersia festiva (Pruvot, 1890) (MNHN-IM-2019-16170): A, layer of oval-shaped scales (many are broken) with palletshaped scales among them; B, oval-shaped scales; C, short pallet-shaped scales with a long stem; D, short pallet-shaped scales with a short stem; E-G, distal end of long pallet-shaped scales. H, long pallet-shaped scales with a long stem; I, long pallet-shaped scales with a short stem.; J, striated acicular sclerites; K, detail of the striated acicular sclerites; L, pallet-shaped scales of the anterior region. Scale bars: 20 µm. Symbols: arrows, oval-shaped scales from the basal layer.
FIG. 5 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 5. — Habitus of Pruvotina impexa (Pruvot, 1890): A, MNHN-IM-2019-18281 (photo of the preserved specimen); A', MNHN-IM-2019-18281 (photo of the living animal); A'', detail of the atrio-buccal region of MNHN-IM-2019-18281, arrow indicates the muscular ridge separating the atrium and pedal pit; B, MNHN-IM-2019-1746 (photo of the living animal); C, MNHN-IM-2019-1748 (photo of the living animal); D, MNHN-IM-2019-1745 (photo of the preserved specimen); E, MNHN-IM-2019-18285 (photo of the preserved specimen); F, MNHN-IM-2019-18273 (photo of the living animal and expelled gut contents); G, MNHN-IM-2019-16179 (photo of the preserved specimen). Scale bar: 1 mm. Symbols: stars, the anterior end of the animals.
FIG. 3 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 3. — Habitus of A, Dondersia festiva Hubrecht, 1888 (photo of the living animal – MNHN-IM-2019-18277); A', Dondersia festiva (photo of the living animal – MNHN-IM-2019-16169); A'', detail of the dorsoterminal sensory organs (MNHN-IM-2019-16169); B, Anamenia gorgonophila (Kowalevsky, 1880) (photo of the living animal on Paramuricea sp.): B', Anamenia gorgonophila (photo of the preserved specimen – MNHN-IM-2019-18270); C, Nematomenia banyulensis (Pruvot, 1890) (photo of the preserved specimen – MNHN-IM-2019-16178); D, Dorymenia vagans (Kowalevsky & Marion, 1887) (photo of the preserved specimen – MNHN-IM-2019-18274). Scale bars: 1 mm. Symbols: arrows, dorsoterminal sensory organs; stars, anterior end of the animals.
FIG. 1 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 1. — Map of Corsica indicating the areas sampled during CORSICABENTHOS 1, 2 and 3 and the Solenogastres species collected in each area.
FIG. 4 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 4. — Habitus of A, Tegulaherpia cf. myodoryata (photo of the living animal – MNHN-IM-2019-16176); A', Tegulaherpia cf. myodoryata (photo of the preserved specimen – MNHN-IM-2019-16176); B, Eleutheromenia sierra (Pruvot, 1890) (photo of the preserved specimen – MNHN-IM-2019-1749); C, Pruvotia cf. sopita (photo of the preserved specimen – MNHN-IM-2019-1744 – on Sertularella sp.); D, Unciherpia hirsuta García-Alvarez, Urgorri & Salvini-Plawen, 2001 (photo of the living animal – MNHN-IM-2019-18279); E, Simrothiella margaritacea (Koren & Danielssen, 1877) (photo of the preserved specimen – MNHN-IM-2019-18280). Scale bars 1 mm. Symbols: arrow, copulatory stylets; stars, anterior end of the animals.
FIG. 13 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 13. — Histological sections of the anterior region of Eleutheromenia sierra (Pruvot, 1890) (MNHN-IM-2019-1749): A, atrial cavity; B, region between the atrial opening and the mouth, without ventral cuticle; C, opening of the mouth; D, radular region of the foregut; D', detail of the radula; E, paired region of the spawning duct; E', detail of the seminal vesicles; F, fused region of the spawning duct.; G, opening of the mantle cavity with respiratory folds. Abbreviations: see Material and methods. Symbol: Arrows indicate the outlet of the abdominal spicules Scale bars: 100 µm.
FIG. 12 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 12. — Histological sections of Pruvotina impexa (Pruvot, 1890) (MNHN-IM-2019-1746) A-E, anterior region (continuation of Fig. 11): A-C, mouth and dorsal gland; C', detail of the ventral cuticle between the opening of the mouth and the pedal pit; D, radular region of the foregut; D', detail of the radula; E, section of the glandular esophagus; F, G, posterior region: F, mid region of the spawning duct; G, section of the abdominal spicules; G', detail of the abdominal spicules; H, respiratory folds; I, posterior region of the body with the dorsoterminal sensory organ. Abbreviations: see Material and methods. Scale bars: 100 µm.
FIG. 2 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 2. — Maximum likelihood phylogenetic reconstruction based on COI. MNHN CORSICABENTHOS specimens are shaded with colors corresponding to those used in Fig 1. BOLD (ALPNB #s) and NCBI accession numbers precede species names for publicly available sequences and both NCBI accession numbers and museum catalog numbers precede the species names for the Corsica specimens. Symbols: *, the taxa considered as reference sequences based on Kocot et al. (2019); gray blocks, species delimitation results according to Assemble Species by Automatic Partitioning (ASAP, Puillandre et al. 2021).
FIG. 8 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 8. — SEM images of the sclerites of A-G, Pruvotina impexa (Pruvot, 1890): A, general view of the sclerites in the dorsal body region (MNHN-IM-2019-18281); B, acicular sclerites and scales of the pedal groove (arrow) in the ventral region of the body (MNHN-IM-2019-18281); C, general view of the sclerites in the dorsal body region (MNHN-IM-2019-1746); D, two types of hook-shaped sclerites (star, long distal region of the hook; dot, short distal region of the hook) (MNHN-IM-2019-1746); E, hook-shaped sclerites with long distal region of the hook (star) and the serrated sclerites (encircled) (MNHN-IM-2019-18281); F, hook-shaped sclerites with short distal region of the hook (MNHN-IM-2019-18281); G, hook-shaped sclerites with long distal region of the hook (MNHN-IM-2019-18281); H-J, Pruvotina impexa (MNHN-IM-2019-16179): H, general view of the sclerites in the dorsal region of the body; I, hook-shaped sclerite; J, scales of the pedal groove; K, L, acicular sclerites of Pruvotia cf. sopita (MNHN-IM-2019-1744). Scale bars: 20 µm.
FIG. 10 in New data on the biodiversity of Solenogastres (Mollusca, Aplacophora) in the Mediterranean Sea: findings from the program "Our Planet Reviewed" Corsica 2019-2022
FIG. 10. — Histological sections of Dondersia festiva (MNHN-IM-2019-18272): A, radular region; A', detail of the radula and radular sac; B, posterior region, spawning duct, and bag of the copulatory stylets; C, posterior section with copulatory stylets (circled) (MNHN-IM-2019-16169); D, posterior region, mantle cavity; E, mantle cavity and dorsoterminal sensory organ. Abbreviations: see Material and methods. Scale bars: 100 µm.
Main characteristics of Solar System planets
<pre><span>Main characteristics of Solar System planets. Data are included in the table, which includes non-standard EPN-TAP parameters. Data are retrieved from Archinal et al 2018 (IAU report 2015, 2018CeMDA.130...22A) [radii] and Cox et al 2000 (Allen's astrophysical quantities, 2000asqu.book.....C) [masses, heliocentric distances, and rotation periods]. </meta></span> </pre>
Hasya Katta Official Planet Marathi Meme 1
<p><strong>Hasya</strong> <strong>Katta</strong> <strong>Official</strong> <strong>Planet</strong> <strong>Marathi</strong> <strong>OTT</strong> <strong>Meme</strong> <strong>1</strong></p> <p>A comparison meme between US & India of OTT by Smit Shetye @ Hasya Katta Official.</p> <p> </p> <p><strong>Hasya</strong> <strong>Katta</strong> <strong>Official</strong></p> <p><strong>Smit</strong> <strong>Shetye</strong></p> <p>https://hasyakattaofficial.github.io/</p> <p>https://smitshetye.github.io/</p>
Theoretical Models of Ultra-Cool Objects (Brown Dwarfs and Free-Floating Planets) Including Water Latent Heat Effect: Thermal Structure, Spectra, and Photometry
<p><strong>OVERVIEW</strong><br> Data presented here are from the work of Tang et al. (2021), which present a one-dimensional (vertical) atmospheric structure model for ultra-cool objects<br> that includes moist adiabatic convection (water latent heat release effect).<br> Model grids across a range of effective temperatures (350, 300, 250, 200 K), metallicities ([M/H] of 0.0, 0.5, 0.7, 1.5),<br> and gravities (logg of 4.0, 4.5, 4.7, 5.0) that mimic the atmosphere condition of Y-class brown dwarf and Free-Floating Planets.</p> <p><strong>ATMOSPHERIC THERMAL STRUCTURE</strong><br> The pressure-temperature profile are saved under the ./pT_profiles/, which have two folders:</p> <ol> <li>pT_profile_dry_adiabat: for dry adiabatic treatment.</li> <li>pT_profile_moist_adiabat: for moist adiabatic treatment.</li> </ol> <p>File name of each compressed files gives the effective temperature (Teff, in Kelvin), gravity (in MKS), and metallicity (in [M/H]) information as for example:<br> t200g100nc_m0.0.cmp.gz --> Teff of 200K, gravity as 100 m/s2, and [M/H]=0.0.</p> <p>The table formate of the pressure-temperature profile, i.e., the .cmp files, is made to work with the [<a href="https://natashabatalha.github.io/picaso/">PICASO software</a>](https://natashabatalha.github.io/picaso/).<br> Each .cmp file contains</p> <ul> <li>Column 01 (x) : atmosphere pressure level</li> <li>Column 02 (pressure) : atmosphere pressure in bar</li> <li>Column 03 (DEN) : atmosphere density in cm^{-3}</li> <li>Column 04 (temperature) : atmosphere temperature in kelvin</li> <li>Column 05-14 : molecule mixing ratios for H2, He, CH4, H2O, NH3, CO, PH3, H2S, N2, CO2</li> <li>Column 15 (MU) : mean molecular weight in grams/mole</li> </ul> <p><strong>SPECTRA</strong><br> Model spectra are saved under the ./spectra/ with wavelength ranging from 1 to 30 micron.<br> File name of each compressed file gives the effective temperature (Teff, in Kelvin), gravity (in MKS), metallicity (in [M/H]), adiabatic treatment, and<br> the resolving power information as for example:<br> sp_t200_g100_m0.0_dry_R3000.csv.gz --> Teff of 200K, gravity as 100 m/s2, [M/H]=0.0, with dry adiabatic treatment, and R=3000.<br> Each spetrum .cv file contains two columns:</p> <ul> <li>Column 01 wavelength [micron]</li> <li>Column 02 Flux [W/m2/micron], the spectral fluxes are given at the top of the atmosphere, taken to be 1 Jupiter radius.</li> </ul> <p><strong>PHOTOMETRY</strong><br> Photometry data derived from the spectra at the top of the atmosphere (assuming one Jupiter radius) are given in the syn_photometry.csv.<br> Photometry filters are from the Mauna Kea Observatory (MKO) photometry system, the Wide-field Infrared Survey Explorer (WISE), and the<br> Spitzer Space Telescope. Filter profiles and Vega magnitude zero points are from the [<a href="http://svo2.cab.inta-csic.es/theory/fps/">SVO Filter Profile Service</a>](http://svo2.cab.inta-csic.es/theory/fps/)</p> <ul> <li>Column 01 (gravity) , gravity in MKS</li> <li>Column 02 (teff) , effective temperature in Kelvin</li> <li>Column 03 ([M/H]) , metallicity</li> <li>Column 04-12 , photometry magnitude for IRAC36, IRAC45, W1, W2, GiminiM, MKO_J, MKO_H, MKO_K, MKO_Lp all in Vega system.</li> <li>Column 13 (adiabatic), adiabatic treatment; D: dry adiabatic, M: moist adiabatic</li> </ul> <p><strong>CREDITS</strong><br> Please cite Tang et al. (2021, Astrophysical Journal, in press.)<br> [<a href="https://ui.adsabs.harvard.edu/abs/2021arXiv210507000T/abstract">ADS link</a>](https://ui.adsabs.harvard.edu/abs/2021arXiv210507000T/abstract) if you used data here in your research.</p>
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.