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367 results for “180”
Data for the detection of the boreal chorus frog (Pseudacris maculata) using environmental DNA and call surveys at 180 ponds sampled in 2017-2018 in southeastern Québec, Canada
<p>The boreal chorus frog (<em>Pseudacris maculata</em>) is at risk of extinction in parts of its range in Canada. Our objectives were to quantify the influence of local and landscape characteristics on the occurrence of the species in wetlands in southern Québec. We hypothesized that site occupancy depends on local characteristics and landscape characteristics contributing to site connectivity. We developed an environmental DNA (eDNA) method to detect the species and compared the detection probability of this method to traditional call surveys. We collected water samples at a total of 180 sites (90 in 2017, 110 in 2018), whereas we surveyed a subset of 63 sites using both eDNA and call surveys in 2018. Site occupancy varied across years, but was higher in sites where the species had been previously detected during the last 12 years by other studies. Site occupancy did not vary with other local and landscape characteristics, in part due to an apparent decrease in the number of sites occupied by the species since the last 12 years. Detection probability via eDNA (0.81; 95% CI: [0.31; 0.98]) did not differ from that of call surveys (0.62; 95% CI: [0.25; 0.89]). To identify the optimal sampling period for the boreal chorus frog, future studies should estimate the detection probability of eDNA during the breeding season and the larval development period of the species.</p>
FIGURE 180 in Survey of Linyphiidae (Arachnida: Araneae) spiders from Yunnan, China
FIGURE 180. Distribution of Linyphia species.
Correlated k coefficients for H2-He atmospheres; 180 spectral windows and 1460 pressure-temperature points
<p>There are 108 correlated k-coefficients datasets, using the naming convention sonora_2020_fehxxxx_co_yyy.data.196.tar.gz (78 models) or sonora_2020_fehxxxx_co_yyy_noTiOVO.data.196.tar.gz (78 models), where xxxx is the metallicity in 10x dex relative to solar, and yyy is the 100x C/O ratio relative to solar, as a multiplication factor. For example a metallicity of +000 and a C/O ratio of 100 indicates solar abundances, feh+070 should be read as a metallicity of +0.7 dex, feh-100 as -1.0 dex, co_025 should be read as 0.25x C/O relative to solar, and co_200 as 2x C/O relative to solar. We use the Lodders et al. 2010 value for the solar C/O=0.458. The files with “noTiOVO” in the filename contain the correlated k-coefficients calculated without the opacity of TiO and VO. The rest of the molecular abundances and opacities are the same as the equilibrium chemistry values in the regular files. These files are useful for calculating models without any TiO- and VO-induced temperature inversion in the atmosphere.</p> <p>The correlated-k coefficients are calculated using pre-mixed opacities, with abundances given by equilibrium chemistry for each metallicity-C/O combination, as described in Marley et al. 2021. There are 13 Fe/H values: 0.0, 0.3, 0.5, 0.7, 1.0, 1.3, 1.5, 1.7, 2.0, -0.3, -0.5, -0.7, and -1.0; and 6 C/O values: 0.25, 0.5, 1.0, 1.5, 2.0 and 2.5. The k-coefficients are calculated for a grid of 1460 pressure-temperature points, from10^−6 to 3000 bar and from 75 to 4000 K, listed in the file 1460_layer_list, and can be read in using the IDL script read_k_coefficients.pro. The spectral windows are listed in the file 180_windows.txt (intervals defined as starting at lambda1 and ending at lambda2). NB Please note that for metallicities between 1.3 and 2.0 the value of <em>max_windows</em> has changed from 200 to 1000.</p> <p>The opacity sources included in the calculations are: C2H2, C2H4, C2H6, CH4, CO, CO2, CrH, Fe, FeH, H2, H3+, H2O, H2S, HCN, LiCl, LiF, LiH, MgH, N2, NH3, OCS, PH3, SiO, TiO, and VO, in addition to alkali metals (Li, Na, K, Rb, Cs). The corresponding high resolution opacities for these atoms and molecules can be found in the Zenodo repository 10.5281/zenodo.6600976. The references for the line lists used in these opacity calculations are listed in the file Opacity_references_2021.pdf. Please include these references, as well as the reference to this Zenodo repository when publishing your paper.</p> <p>Each dataset contains the following files:</p> <p>ascii_data: the correlated k coefficients file in ascii format. This can be read by the included IDL code.</p> <p>binary_data: the correlated k coefficients file in binary format</p> <p>full_abunds: the relative abundances for all the species from the chemistry files, on the 1460-point pressure-temperature grid</p> <p>sum_in_atoms: relative abundances for the alkali metals</p> <p>sum_in_layer: relative abundances for all molecules included in the correlated k-coefficients calculations</p> <p><em>Resources supporting this work were provided by the NASA High-End Computing (HEC) Program through the NASA Advanced Supercomputing (NAS) Division at Ames Research Center.</em></p>
Data for the article "Laser-Induced Creation of Antiferromagnetic 180-Degree Domains in NiO/Pt Bilayers"
<p>The authors thank T. Reimer and L. Schnitzspan for skillful technical assistance and O. Gomonay for her comments. Experiments were performed at the CIRCE beamline at ALBA Synchrotron with the collaboration of ALBA staff. The authors thank HZB for the allocation of synchrotron radiation beamtime and thankfully acknowledge the financial support by HZB. The authors acknowledge the Paul Scherrer Institute, Villigen, Switzerland for the beamtime allocation under proposal 20211822 at the SIM beamline of the SLS. B.B. and A. R. acknowledge funding from the European Union’s Framework Programme for Research and Innovation Horizon 2020 (2014–2020) under the Marie Skłodowska- Curie Grant Agreement No. 860060 (ITN MagnEFi). M.K. acknowledges support from the Graduate School of Excellence Materials Science in Mainz (MAINZ) DFG 266, the DAAD (Spintronics network, Project No. 57334897 and Insulator Spin-Orbitronics, Project No. 57524834), and all groups from Mainz and Kaiserslautern acknowledge that this work was funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation), TRR 173-268565370 (Project Nos. A01, A08, B02 and B03) and KAUST (OSR-2019-CRG8-4048). B.S. further acknowledges funding by the Dynamics and Topology Research Center (TopDyn) funded by the State of Rhineland Palatinate. M.K. acknowledges financial support from the Horizon 2020 Framework Programme of the European Commission under FET-Open Grant Agreement No. 863155 (s-Nebula). This work was also supported by ERATO “Spin Quantum Rectification Project” (Grant No. JPMJER1402) and the Grant-in-Aid for Scientific Research on Innovative Area, “Nano Spin Conversion Science” (Grant No. JP26103005), Grant-in-Aid for Scientific Research (S) (Grant No. JP19H05600) from JSPS KAKENHI, Japan. M.A.N. and M.F. acknowledge Spanish ICNN funding through project ECLIPSE (PID2021- 122980OB-C54). R.R. also acknowledges support from the Grant RYC 2019-026915-I, the Project TED2021-130930B-I00 funded by thee MCIN/ AEI/10.13039/501100011033 and by the ESF investing in your future and the European Union NextGenerationEU/PRTR, the Xunta de Galicia (ED431F 2022/04, ED431B 2021/013, Centro Singular de Investigación de Galicia Accreditation 2019-2022, ED431G 2019/03) and the European Union (European Regional Development Fund - ERDF)</p>
Tanum 180:1 Prästgården
Lasermodel of Tanum 180:1 at Prästgården. Documentationproject Länsstyrelsen Västra Götaland. Source: Objaverse 1.0 / Sketchfab
Safety, Tolerability, Pharmacokinetics and Efficacy of 180 mg Subcutaneous Risperidone From 6 mg Oral Risperidone
ClinicalTrials.gov study NCT03978832. IPD Sharing: NO. Countries: 1. Publications: 1.
Data for the detection of the boreal chorus frog (Pseudacris maculata) using environmental DNA and call surveys at 180 ponds sampled in 2017-2018 in southeastern Québec, Canada
Open the record for dataset details and reuse information.
Data for: Performance of a high-frequency (180 kHz) acoustic array for tracking juvenile Pacific salmon in the coastal ocean
Open the record for dataset details and reuse information.
FIGURES 177–180. Megaselia khoyensis n in Twenty one new species of Megaselia Rondani (Diptera: Phoridae) from Iran
FIGURES 177–180. Megaselia khoyensis n. sp. male. 177, whole fly; 178, frons; 179, part of frons; 180, postpedicels, palps and proboscis. Scale bars 20 μm.
FIGURES 180–184 in Taxonomic revision of the Neotropical genus Telemiades Hübner, [1819] (Lepidoptera: Hesperiidae: Eudaminae), with descriptions of fourteen new species
FIGURES 180–184. Female genitalia of Telemiades from the "amphion group". A. Lateral view of sterigma. B. Ventral view. 180. Telemiades amphion (Geyer, 1832) (DZ 25.960—DZUP). 181. Telemiades belli Siewert, Mielke & Casagrande, sp. nov. (OM 55.874—OM). 182. Telemiades fides Bell, 1949 (DZ 26.017—DZUP). 183. Telemiades marpesus (Hewitson, 1876), stat. rest. (OM 52.168—OM). 184. Telemiades pekahia (Hewitson, 1868), stat. rest. (NHMUK 010242391—NHMUK).
FIGS. 173–189. Brunsonia spp. Figs. 173–179. Brunsonia chelanomagna. Fig. 173. Right anterior gonopod, lateral view. Fig. 174. Left posterior gonopod coxite, posterior view. Figs. 175–179. Male legs 3–7, respectively. Figs. 180, 181. Brunsonia selwayana. Fig. 180. Right anterior gonopod, posteriolateral view. Fig. 181. Left posterior gonopod coxite, posterior view. Figs. 182–189. Brunsonia benewah. Fig. 182. Anterior gonopods, posterior view. Fig. 183 in The millipede family Conotylidae in northwestern North America, with a complete bibliography of the family (Diplopoda, Chordeumatida, Heterochordeumatidea, Conotyloidea)
FIGS. 173–189. Brunsonia spp. Figs. 173–179. Brunsonia chelanomagna. Fig. 173. Right anterior gonopod, lateral view. Fig. 174. Left posterior gonopod coxite, posterior view. Figs. 175–179. Male legs 3–7, respectively. Figs. 180, 181. Brunsonia selwayana. Fig. 180. Right anterior gonopod, posteriolateral view. Fig. 181. Left posterior gonopod coxite, posterior view. Figs. 182–189. Brunsonia benewah. Fig. 182. Anterior gonopods, posterior view. Fig. 183. Tip of left anterior gonopod, posterior view. Fig. 184. Left posterior gonopod coxite, posterior view. Figs. 185–189. Male legs 3–7, respectively.
finals_2020_11_180
Log and boot files of game 180
FIGS. 177–180 Bibio auripes FIG. 177 in A Revision of fossil Bibionidae (Insecta: Diptera) from the Oligocene of Germany
FIGS. 177–180 Bibio auripes FIG. 177. Female, habitus. Holotype of Bibio auripes Statz. LACMIP 2533.233 / LACMIP Type 3363. FIG. 178. Male, habitus. LACMIP 2533.228. FIG. 179. Male, head and thorax. LACMIP 2533.228. FIG. 180. Male, hind leg and terminalia. LACMIP 2533.228.
FIGURES 180–187. Chthonius herminii n in The Italian species of the Chthonius ischnocheles group (Arachnida, Pseudoscorpiones, Chthoniidae), with reference to neighbouring countries
FIGURES 180–187. Chthonius herminii n. sp., Speoncia del Diaol (Cavaso del Tomba, Treviso). 180, male holotype, right chela, antiaxial view; 181, male holotype, detail of fingers at the chelal tip, antiaxial view; 182, male holotype, detail of fingers at level of trichobothria est-it and st-t, antiaxial view; 183, male holotype, detail of fingers at level of trichobothrium sb, antiaxial view; 184, female paratype (24.V.1998), right chela, antiaxial view; 185, female paratype (24.V.1998), detail of fingers at the chelal tip, antiaxial view; 186, female paratype (24.V.1998), detail of fingers at level of trichobothria est-it and st-t, antiaxial view; 187, female paratype (24.V.1998), detail of fingers at level of trichobothrium sb, antiaxial view.
FIGURES 180–185 in Leaf-mining Nepticulidae (Lepidoptera) from record high altitudes: documenting an entire new fauna in the Andean páramo and puna
FIGURES 180–185. Stigmella nivea Remeikis & Stonis, sp. nov., holotype. 180, 181, male adult; 182, 183, male genitalia, slide no. RA700, capsule with phallus removed; 184, same, gnathos; 185, same, phallus (ZMUC).
FIGURES 178–184. Female genitalia. 178. Lophoptera squammigera. 179. Lophoptera squammilinea. 180 in A taxonomic revision of the Stictopterinae (Lepidoptera, Noctuoidea, Noctuidae) in China
FIGURES 178–184. Female genitalia. 178. Lophoptera squammigera. 179. Lophoptera squammilinea. 180. Lophoptera trigonoprocessa sp. nov. 181. Lophoptera obliquilinea. 182. Lophoptera hypenistis. 183. Lophoptera partitistis. 184. Diascoides ferruginea. Scale bars = 1 mm.
FIGURES171–180 in Revision of Chinese Oretinae (Lepidoptera, Drepanidae)
FIGURES171–180. Female genitalia of Oretinae (Scale bar =1 mm). 171, Oreta pavaca sinensis; 172, Oreta trispinuligera; 173, O. liensis; 174, O. sanguinea; 175, O. eminens; 176, O. angularis; 177, O. insignis; 178, O. fuscopurpurea; 179, O.
FIGURES 172–180 in Revision of the subgenus Cosmiomorpha (Cosmiomorpha) (Coleoptera: Scarabaeidae: Cetoniinae)
FIGURES 172–180. Habitats of Cosmiomorpha species. 172. Habitat of Cosmiomorpha nigripedis new species, Cosmiomorpha maolanensis new species, and Cosmiomorpha decliva (Libo, Guizhou). 173. Habitat of Cosmiomorpha fortis new species (Guiyang, Guizhou). 174–176. Cosmiomorpha modesta: 174–175. Habitat and male feeding on sap on a branch of Broussonetia papyrifera (Mt. Damashan, Nanjing, Jiangsu); 176. Male feeding on sap on trunk of Quercus (Mt. Qiandashan, Zhuji, Zhejiang, by Tiexiong Zhao). 177–180. Cosmiomorpha decliva: 177–178. Habitat and adults mating on the ground (Mt. Qilishan, Xiangyang, Hubei, by Mao Ye); 179–180. Male on ground and female in bush (Mt. Shaoshishan, Dengfeng, Henan, by Long Zhang).
FIGURES 172–183. Terminalia. FIGURES 172, 176 and 180 in Systematic review of the firefly genus Amydetes Illiger, 1807 (Coleoptera: Lampyridae), with description of 13 new species
FIGURES 172–183. Terminalia. FIGURES 172, 176 and 180 syntergite (dorsal) and abdominal sternite (ventral). FIGURES 173–175, 176–178, 180–182 Aedeagus (dorsal. 172, 176, 180. ventral. 173, 177. 181. lateral. 174, 178, 182). FIGURES 172– 175 Amydetes solaris sp. nov.. 176–179 Amydetes goiana sp. nov.. 180–183 Amydetes manezinha sp. nov. Scale.200µm. VP= ventral plate.
FIGURES 175–180 in Further contribution to the knowledge of Georgian species of the Carabus Linnaeus, 1758 subgenus Neoplectes Reitter, 1885, with description of a new subspecies of C. titarenkoi Zamotajlov & Fominykh, 2014 (Coleoptera: Carabidae: Carabini)
FIGURES 175–180. Apical portion of aedeagus and fully inflated endophallus preparation of Carabus szekelyi Retezár, Nakerala env.: 175–177—right lateral view; 178–180—dorsolateral view. Scale bar 10.0 mm.
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Allen Brain Atlas
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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
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