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Figure 24 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 24 - Carasobarbus luteus, live specimen from Nahr al Khābūr.
Figure 20 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 20 - Carasobarbus harterti, live specimen from Oued Oum er Rbia.
Figure 17 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 17 - Carasobarbus fritschii, from Oued Ksob.
Figure 15 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 15 - Juvenile Carasobarbus exulatus, live specimen from Wādī al Khūn.
Figure 14 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 14 - Adult Carasobarbus exulatus, live specimen from Wādī al Khūn.
Figure 11 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 11 - Carasobarbus chantrei, live specimen from Buḩayratt Qaţţīnah.
Figure 12 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 12 - Head length / body depth; TES = Tigris-Euphrates system.
Figure 2 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 2 - Carasobarbus apoensis, live specimen from Wādī Turabah.
Figure 10 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 10 - Carasobarbus chantrei, paralectotype (MNHN A-3939) from Orontes at Ḩamāh.
Figure 9 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 9 - Carasobarbus canis, live specimen from Wadi al-'Arab.
Figure 22 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 22 - Carasobarbus kosswigi, live specimen from Rūdkhāneh-ye Karkheh.
Figure 8 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 8 - Carasobarbus canis, lectotype (MNHN 1413) from Jordan River.
Figure 25 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 25 - Carasobarbus luteus, specimen (CMNFI 79-0187) from Rūdkhāneh-ye Sarzeh.
Figure 18 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 18 - Map of the distribution of Carasobarbus fritschii and Carasobarbus harterti.
Figure 4 from: Borkenhagen K, Krupp F (2013) Taxonomic revision of the genus Carasobarbus Karaman, 1971 (Actinopterygii, Cyprinidae). ZooKeys 339: 1-53. https://doi.org/10.3897/zookeys.339.4903
Figure 4 - Last unbranched dorsal-fin ray length / head length; TES = Tigris-Euphrates system.
Day 339: Harp room
Captured with scaniverse at [Gravensteen](https://en.wikipedia.org/wiki/Gravensteen), a medieval Castle in Gent, Belgium I'm trying to post 1 scan a day in 2021. You can follow the tag [#1scanaday](http://sketchfab.com/tags/1scanaday), or my [2021 collection here](https://sketchfab.com/alban/collections/1-scan-a-day-in-2021). You can also join at anytime, as long as you try keeping up from there. My tips on iphone lidar scanning: http://bit.ly/lidarscanning Source: Objaverse 1.0 / Sketchfab
MOA Study of Ze 339 in Seasonal Allergic Rhinitis
ClinicalTrials.gov study NCT00862225. IPD Sharing: Not stated. Countries: 1. Publications: 0.
MicroRNA Profiling of Plasma Exosomes in Heart Failure Characterized by Reduced Ejection Fraction Reveals hsa-miR-339-5p as a Regulator of Ventricular Remodeling via NOD-like Receptor Family CARD Doma
GEO Series GSE287015. Homo sapiens. 10 samples. Type: Non-coding RNA profiling by high throughput sequencing.
25 new long-term variables in the GX 339-4 field: two years of MeerKAT monitoring
<p>These are the radio light curves for the 25 new long-term variable sources found in weekly ThunderKAT monitoring of the low-mass X-ray binary GX 339-4 with MeerKAT. These data are part of a publication submitted to Monthly Notices for the Royal Astronomical Society (Driessen et al., submitted) and part of Laura's Driessen PhD thesis (the jodrell Bank Centre for Astrophysics, the University of Manchester, UK).</p> <p>The observations are MeerKAT L-band observations. Each epoch is approximately 10-15 minutes long, these are the first two years of weekly monitoring, from September 2018 to the end of August 2020. The light curves have been extracted from the images using the <a href="https://tkp.readthedocs.io/en/latest/introduction.html">LOFAR Transients Pipeline (TraP)</a>.</p> <p>Each file contains the information for a single source. The files are formatted with columns as follows:</p> <ul> <li>mjd: the modified Julian Date (MJD) of the observation. The MJD is given by MJD=JD-2400000.5 where JD is the Julian Date</li> <li>f_int_median_scaled_Jy: the flux density of the source in Jansky (Jy) determined by the LOFAR TraP, after the systematic correction model has been applied (see Driessen et al. 2021)</li> <li>f_int_median_scaled_err_Jy: the uncertainty on f_int_median_scaled_Jy in Jansky determined by the LOFAR TraP, after the systematic correction model has been applied (see Driessen et al. 2021)</li> <li>freq_eff_Hz: the effect frequency in Hertz (Hz)</li> <li>median_scaled_eta: the chi squared variability parameter for the source in the specified frequency band/subband. This parameter is defined in Driessen et al. 2021, Swinbank et al. 2015 and on the <a href="https://tkp.readthedocs.io/en/latest/introduction.html">LOFAR TraP website</a></li> <li>median_scaled_V: the modulation variability parameter for the source in the specified frequency band/subband. This parameter is defined in Driessen et al. 2021, Swinbank et al. 2015 and on the <a href="https://tkp.readthedocs.io/en/latest/introduction.html">LOFAR TraP website</a></li> <li>name: this is the name of the source as defined in Driessen et al. 2021</li> <li>subband: this file contains the light curve of the source from multi-frequency synthesis (MFS) imaging of the full MeerKAT L-band (from 856 to 1712 MHz) epochs, plus 8 subband images with central frequencies: 909, 1016, 1123, 1230, 1337, 1444, 1551 and 1658 MHz. This column shows which subband or MFS the values in the row are from</li> </ul> <p>The files were made using the Pandas package, so we recommend Python users load them using </p> <pre><code class="language-python">import pandas as pd pd.read_csv(filename, comment='#') </code></pre> <p>If you use the data shared here please ensure that you cite the MNRAS paper (Driessen at al. submitted) and the Zenodo DOI: 10.5281/zenodo.5069119.</p> <p> </p> <p>The MeerKAT telescope is operated by the South African Radio Astronomy Observatory, which is a facility of the National Research Foundation, an agency of the Department of Science and Innovation.<br> LND acknowledges support from the European Research Council (ERC) under the European Union's Horizon 2020 research and innovation programme (grant agreement No 694745).</p>
Transcribed ultraconserved region 339 promotes carcinogenesis by sequestering tumor suppressor microRNAs
GEO Series GSE70540. Homo sapiens. 12 samples. Type: Expression profiling by array.
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International Brain Laboratory public data
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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.