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2,651 results for “habit”
Figure 4 in An extraordinary shift in life habit within a genus of cyclopid copepods in Lake Tanganyika
Figure 4. Eucyclops bathanalicola sp. nov. paratype female. A, antenna; B, vestigial maxilliped; C, left leg 3 and intercoxal sclerite, anterior; D, Left leg 4 and intercoxal sclerite, anterior. Scale bars: A, 100 µm, B–D, 50 µm.
Figure 1 in An extraordinary shift in life habit within a genus of cyclopid copepods in Lake Tanganyika
Figure 1. Position of Eucyclops bathanalicola sp. nov. within the mantle cavity of its host, Bathanalia straeleni. Scale bar, 1 mm. Abbreviations: ct, ctenidium; dg, digestive gland; f, foot; hgl, hypobranchial gland; int, intestine; kd, kidney; os, osphradium; ov, ovary; ovi, pallial oviduct; per, pericardium; sto, stomach; t, cephalic tentacle.
Source: Photos courtesy of M.M. Le Roux (a–d) and K.S. Mashego (e–f) FIGURE 1: Morphological characters of Thesium confine (a, d, e) and T. durum (b, c, f) showing (a) the scale-like leaves found in both species; (b) involucral bracts that are invariably present in T. durum; (c) longitudinal section of a flower showing the dense hairs on the perianth lobes, stigma opposite the anthers and the twisted placental column; the habit of (d) T. confine and typical herbarium specimens of (e) T. confine and (f) T. durum. in A taxonomic evaluation of the Thesium confine species complex (Santalaceae)
Source: Photos courtesy of M.M. Le Roux (a–d) and K.S. Mashego (e–f) FIGURE 1: Morphological characters of Thesium confine (a, d, e) and T. durum (b, c, f) showing (a) the scale-like leaves found in both species; (b) involucral bracts that are invariably present in T. durum; (c) longitudinal section of a flower showing the dense hairs on the perianth lobes, stigma opposite the anthers and the twisted placental column; the habit of (d) T. confine and typical herbarium specimens of (e) T. confine and (f) T. durum.
Data from the NASCENT campaign used in the publications: "Conditions favorable for secondary ice production in Arctic mixed-phase clouds" and "Understanding the history of two complex ice crystal habits deduced from a holographic imager"
<p>This repository contains the data from the Ny‐Ålesund AeroSol Cloud ExperimeNT campaign (NASCENT). This data were used to produce the figures in the two papers:</p> <p>(1) Pasquier, J. T., Henneberger, J., Ramelli, F., Korolev, A.,Wieder, J., Lauber, A., Li, G., David, R. O., Carlsen, T., Gierens, R., Maturilli, M., and Lohmann, U.: Understanding the history of two complex ice crystal habits deduced from a holographic imager, Geophys. Res. Lett., accepted, 2022</p> <p> </p> <p>(2) Pasquier J. T., Henneberger J., Ramelli F., Lauber A., David O. D., Wieder J., Carlsen T., Gierens R., Maturilli M., and Lohmann U.:Conditions favorable for secondary ice production in Arctic mixed-phase clouds, ACP, accepted.</p> <p>More information can be found in the README files.</p> <p> </p> <p>The scripts to reproduced the Figures are available on Zenodo</p> <p>(1) https://doi.org/10.5281/zenodo.7402296</p> <p>(2) https://doi.org/10.5281/zenodo.7407107</p>
Dataset for "Narrow range of early habitable Venus scenarios permitted by modelling of oxygen loss and radiogenic argon degassing"
<p>Code and datasets required to reproduce figures in main text of Warren & Kite 2023 "Narrow range of early habitable Venus scenarios permitted by modelling of oxygen loss and radiogenic argon degassing." https://www.pnas.org/doi/full/10.1073/pnas.2209751120</p> <p>Code and usage instructions are also available at: github.com/aowarren/Venus_O2</p> <p>After downloading, code will need to be modified to find files in chosen directories for running the full model (also requires installation of VolcGases from github.com/Nicholaswogan/VolcGases) and files for re-creating plots. All .zip files contain data used to create figures in paper. Instructions to reproduce figures below:</p> <p> </p> <p><strong>1. To reproduce full dataset</strong>, download all files excluding .zip files and install VolcGases. Modify "modular_functions_clean_redox.py" to match VolcGases installation.</p> <p><em>For runaway greenhouse runs:</em> Ensure "modular_functions_clean_redox.py" line 512 is commented out. Run "adding_dissolution_clean.py" followed by "ext1line.py" to pre-run runaway greenhouse model and save output to read into full model (this speeds up running the entire suite of "melting" models, but is not strictly necessary). Next, use "gridsearch_all_redox.csv" to set model parameters, then run "input_clean_redox.py" to initiate model. </p> <p><em>For runs without runaway greenhouse melting:</em> uncomment "modular_functions_clean_redox.py" line 512. Use "gridsearch_all_redox.csv" to set model parameters, then run "input_clean_redox.py" to initiate model. </p> <p><strong>2. To reproduce Figures 2, 3, S1, and S2</strong>, either download all zip files beginning with "Fig2_" and "Fig3_", extract all files to single location, or save all new model output into a single directory and use "plot_together.py" to generate figures (instructions contained within script). Use same script to reproduce Figures S9 and S10 with data in "t_atm_sensitivity.zip" and "bH_sensitivity.zip". </p> <p><strong>3. To reproduce Figures 4 and 5</strong>, If using new model runs to generate plots, first run "gen_data_forplots.py". Alternatively, download:</p> <ul> <li>e_statistics_nomelt_CO_FMQ0.npz </li> <li>e_wd_statistics_melt_CO_FMQ0.npz</li> <li>40_Ar_hab_dlith_KU_mix_52522.csv</li> <li>40_Ar_hab_dlith_KU_nomix_52522.csv</li> </ul> <p>Then, run maintext_plotting_new.py.</p> <p><strong>4. To reproduce Figures S5 to S8</strong>, run "Ar_plots.py". Requires: "serpent_dehyd2.csv" and "eclogite_transition.csv".</p>
Fig. 2. Life habit. A in A systematic revision of the genus Juga from fresh waters of the Pacific Northwest, USA (Cerithioidea, Semisulcospiridae)
Fig. 2. Life habit. A. On leaves. Drift Creek on Cascade Highway NE, Oregon (J. plicifera (I. Lea, 1838)). B. Under submerged stones (with gelatinous egg masses). Youngs River Falls, just upstream of Youngs River Rd, Oregon (J. plicifera). C. On mud and leaves. Muddy Hollow, Oregon (J. bulbosa (A. Gould, 1847)). D. On submerged wood. Unnamed Creek at Skookum Creek Rd, Oregon (J. canella sp. nov.). E. On sand. Hat Creek, California (J. douglasi sp. nov.). F. On the spray-moistened sides of boulders. Pit River at U.S. Hwy 299, California (J. occata (Hinds, 1844)).
Plate 3 a. Costus kupensis Maas & H.Maas. Basal inflorescence. – b. Costus lateriflorus Baker. Habit showing lateral inflorescences. – c. Costus tappenbeckianus J.Braun & K.Schum. Inflorescence with flower. – d. Costus lilaceus Maas & H.Maas. Lateral inflorescence. – e. Costus phyllocephalus K.Schum. Inflorescence. – f in Monograph of African Costaceae
Plate 3 a. Costus kupensis Maas & H.Maas. Basal inflorescence. – b. Costus lateriflorus Baker. Habit showing lateral inflorescences. – c. Costus tappenbeckianus J.Braun & K.Schum. Inflorescence with flower. – d. Costus lilaceus Maas & H.Maas. Lateral inflorescence. – e. Costus phyllocephalus K.Schum. Inflorescence. – f. Costus maboumiensis Pellegr. Inflorescence (a: Maas et al. 10575; b: photographed in Lyon Arboretum Hawaï, no specimen collected; c: Burgers' Bush number 20140016; d: photographed in Burgers' Bush, Arnhem, The Netherlands, no specimen collected; e: Maas et al. 10407; f: Maas et al. 10227). — Photos: a, c–f: P.J.M.Maas; b: J.Mood.
Fig. 5 Costus kupensis Maas & H.Maas. a. Habit showing 2 in Monograph of African Costaceae
Fig. 5 Costus kupensis Maas & H.Maas. a. Habit showing 2 basal inflorescences; b. leaves with ligules; c. bracteole, calyx and ovary; d. inflorescence with flower (a, b: Cheek 7111, K; c: Cable 2471, K; d: after slide of Cheek 7111). — Drawing by Hendrik Rypkema.
Figure 2. A in Roosting habits of disk-winged bats, especially Thyroptera discifera
Figure 2. A "morado" banana (red banana in English, Musa acuminata) in a patch that also includes plantains near La Paloma Lodge at Drake Bay, Puntarenas Province, Costa Rica. Portions of shredded dead leaves hanging from the trunk roll back on themselves to create dark, cone-shaped,roosting sites for bats. The top arrow points to where the colony of perhaps nine disk-winged bats, Thyroptera discifera, was observed roosting for more than a month during February−March 2021. The lower arrow shows where a single individual was found roosting for a single day. Photograph taken on 7 March 2021 by Gómez.
Bioverse: The Habitable Zone Inner Edge Discontinuity as an Imprint of Runaway Greenhouse Climates on Exoplanet Demographics
<p>This repository contains data required to run the <a href="https://github.com/matiscke/hz-inner-edge-discontinuity">pipeline producing the results and figures in Schlecker+2023</a>, in particular results objects created with expensive model grid runs of <a href="https://github.com/danielapai/bioverse">Bioverse</a>.</p>
Fig. 1. Zabelia densipila M.-P. Hong, Y.-C. Kim & B.Y. Lee. A. Habit. B. Inflorescence. C. Fruit. Drawn from the holotype and isotype M.-P. Hong and Y.-C. Kim 2K9-00181 in A new species of Zabelia (Linnaeaceae) from Korea
Fig. 1. Zabelia densipila M.-P. Hong, Y.-C. Kim & B.Y. Lee. A. Habit. B. Inflorescence. C. Fruit. Drawn from the holotype and isotype M.-P. Hong and Y.-C. Kim 2K9-00181 (KB).
Growth form and leaf habit drive contrasting effects of Arctic amplification in long-lived woody species
<p><strong>Raw_and_STD_Chronologies.txt</strong> contains the raw (suffix "_raw") and indexed (suffix "_std") ring-width chronology derived from seven species (<em>Juniperus communis</em> L., <em>Betula nana</em> L., <em>Salix lanata</em> L., <em>Picea abies</em> L., <em>Pinus contorta</em> Douglas, <em>Betula pubescens</em> Ehrh., and <em>Sorbus aucuparia</em> L.) collected from ten sites located across Iceland. In the file, each column addresses the chronology belonging to a precise site and species, coded following the one used in the International Tree-Ring Data Bank (ITRDB) as listed in Grissino_Mayer (1993). This data was used to model growth trends and to perform climate-growth associations over the 1967-2018 period.</p>
Fig. 94. Begonia thyrsoidea Irmsch. A. Habit. B. Staminate flower, side view. C in The genus Begonia (Begoniaceae) in Peru
Fig. 94. Begonia thyrsoidea Irmsch. A. Habit. B. Staminate flower, side view. C. Pistillate flower, side view. Illustration by Peter Moonlight from photographs of M.C. Tebbitt & A. Daza 809 (E).
Fig. 93. Begonia speculum Moonlight & Tebbitt. A. Habit. B. Staminate flower, front view. C. Pistillate flower, side view. D. Stamen, front view. E. Stamen, side view. F. Pistil, front view. G. Pistil, back view. H in The genus Begonia (Begoniaceae) in Peru
Fig. 93. Begonia speculum Moonlight & Tebbitt. A. Habit. B. Staminate flower, front view. C. Pistillate flower, side view. D. Stamen, front view. E. Stamen, side view. F. Pistil, front view. G. Pistil, back view. H. Infructescence. Illustration by Claire Banks from P.W. Moonlight & A. Daza 158 (E). Reproduced from Moonlight & Tebbitt (2016), with the permission of Edinburgh Journal of Botany.
Fig. 89. Begonia glabra Aubl. A. Habit. B. Stipule. C. Leaf, adaxial surface. D. Leaf, abaxial surface. E. Staminate flower, side view. F. Staminate flower, front view. G. Androecium, side view. H. Pistillate flower, side view. I. Pistillate flower, front view. J in The genus Begonia (Begoniaceae) in Peru
Fig. 89. Begonia glabra Aubl. A. Habit. B. Stipule. C. Leaf, adaxial surface. D. Leaf, abaxial surface. E. Staminate flower, side view. F. Staminate flower, front view. G. Androecium, side view. H. Pistillate flower, side view. I. Pistillate flower, front view. J. Cross section of ovary. K. Pistils, side view. All photographs taken by D.A. Purvis in the living collections of the Royal Botanic Garden Edinburgh (Accession 20101699, of unknown origin).
Fig. 73. Begonia chemillenensis Moonlight. A. Habit. B in The genus Begonia (Begoniaceae) in Peru
Fig. 73. Begonia chemillenensis Moonlight. A. Habit. B. Branch of infructescence. C. Branch of inflorescence. D. Bract. E. Staminate flower, front view view. F. Stamens, front and side view. G. Pistillate flower, side view. H. Style and stigma, front and back view. Illustration by Claire Banks from I. Huamantupa et al. 11435 (A), P.W. Moonlight & A. Daza 287 (B, F, H), and 317 (C, D, E, G). Reproduced from Moonlight et al. (2017b), with the permission of Edinburgh Journal of Botany.
Fig. 77. Begonia foliosa Kunth. A. Habit. B. Stipule, adaxial view. C. Leaf, abaxial view. D. Leaf, adaxial view. E. Staminate flower, side view. F. Staminate flower, front view. G in The genus Begonia (Begoniaceae) in Peru
Fig. 77. Begonia foliosa Kunth. A. Habit. B. Stipule, adaxial view. C. Leaf, abaxial view. D. Leaf, adaxial view. E. Staminate flower, side view. F. Staminate flower, front view. G. Largest tepal of the staminate flower. H. Smallest tepal of the staminate flower. I. Androecium, front view. J. Pistillate flower, side view. K. Pistillate flower, front view. L. Cross section of ovary. M. Largest tepal of the pistillate flower. N. Smallest tepal of the pistillate flower. O. Gynoecium, front view. All photographs taken by P.W. Moonlight in the living collections of the Royal Botanic Garden Edinburgh (A–I, Accession 20180920a, grown from seeds collected as part of P.W. Moonlight 1242; J–O, Accession 19480286d, of unknown origin).
Fig. 61. Begonia unilateralis Rusby. A. Habit. B. Pistillate flower, front view. C in The genus Begonia (Begoniaceae) in Peru
Fig. 61. Begonia unilateralis Rusby. A. Habit. B. Pistillate flower, front view. C. Staminate flowers, front view. All photographs taken by B. Melchor from B. Melchor 776ª in Sandia Province, Puno Region.
Fig. 58. Begonia hitchcockii Irmsch. A. Habitat. B. Habit. C. Staminate flower, front view. D in The genus Begonia (Begoniaceae) in Peru
Fig. 58. Begonia hitchcockii Irmsch. A. Habitat. B. Habit. C. Staminate flower, front view. D. Staminate flower, front view. All photographs taken by P.W. Moonlight from P.W. Moonlight & A. Daza 123 (A, B) and P.W. Moonlight 1272 (C, D) in Utcubamba and Bagua Provinces, respectively, Amazonas Region.
Fig. 47. Begonia hirtella Link. A. Habit. B. Stipule. C. Leaf, adaxial surface. D. Leaf, abaxial surface. E. Inflorescence. F. Staminate flower, side view. G. Staminate flower, front view. H in The genus Begonia (Begoniaceae) in Peru
Fig. 47. Begonia hirtella Link. A. Habit. B. Stipule. C. Leaf, adaxial surface. D. Leaf, abaxial surface. E. Inflorescence. F. Staminate flower, side view. G. Staminate flower, front view. H. Tepal of staminate flower. I. Androecium, side view. J. Pistillate flower, side view. K. Pistillate flower, front view. L. Cross section of ovary. M. Developing fruit, side view. N. Pistils, side view. O. Smallest tepal of pistillate flower. P. Largest tepal of pistillate flower. Q. Bracteole. All photographs taken by D.A. Purvis from a glasshouse weed in the living collections of the Royal Botanic Garden Edinburgh.
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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.