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628 results for “GM”
GM Snow Study at the University of Michigan Biological Station, Pellston, MI (1982-1987)
Wet and dry deposition were monitored at the University of Michigan Biological Station, which is located near the northern tip of Michigan's lower peninsula, for three winters. Dry deposition was measured by both conventional bucket method and by measuring increases in concentration in snow samples. Average results of the two methods were in reasonable agreement. The cumulative wet and dry deposition quantities are in good agreement with snowpack accumulations until the first thaw period. Dry deposition to snow accounts for less than 15% of the total H+, SO4-2, NO-3, NH4+, and approximately 25% of the Ca2+, Mg2+, Na+, J+, and Cl-, during an average precipitation year. Snowpack measurements were also made under deciduous and red pine canopies. Decreases in H+ and NO-3 were observed under the red pine canopy. Snowmelt and runoff were studied during the 1986-87, 1983-84, and the 1982-83 winters at the University of Michigan Biological Station. For the 1982-83 and 1983-84 winters the first 50% of snowpack acidity was released in melt and rain water equal to 25% of the original snowpack water content. Interaction between the meltwater and the litter layer produced large changes in the concentrations of most species. Runoff to two streams had high SO4-2 and very low NO-3 concentrations. It is concluded that most of the NO-3 is either biologically utilized or retained in the ecosystem, even during the early snowmelt period at this site.
Data from "A multi-frequency ALMA characterization of substructures in the GM Aur protoplanetary disk"
<p>Image cubes, self-calibrated visibilities, and self-calibration and imaging scripts for data associated with Huang et al., 2020, "A multi-frequency ALMA characterization of substructures in the GM Aur protoplanetary disk," The Astrophysical Journal, 891, 48, arXiv:2001.11040</p> <p>The raw data are available on the ALMA archive under program IDs 2017.1.01151.S and 2018.1.01230.S (PI: Jane Huang). </p> <p><strong>Scripts:</strong></p> <p>reduction_utils.py: Set of helper functions for self-calibration scripts</p> <p>B4continuumreduction.py: Self-calibration and imaging script for Band 4 (2.1 mm) continuum (GMAurB4continuumfinal.image.fits) from GMAurB4continuum.final.ms.tgz</p> <p>B6continuumreduction.py: Self-calibration and imaging script for Band 6 (1.1 mm) continuum (GMAurB6continuumfinal.image.fits) from GMAurB6continuum.final.ms.tgz</p> <p>HCOp_imaging.py: Script producing GMAur_HCOp_continuumsubtracted.image.fits and GMAur_HCOp_withcontinuum.image.fits from GMAurB6_HCOp.ms.contsub.cvel and GMAurB6_HCOp.ms.cvel, respectively</p> <p><strong>Measurement sets:</strong></p> <p>GMAurB4continuumfinal.ms.tgz: Self-calibrated 2.1 mm continuum visibilities for GM Aur</p> <p>GMAurB6continuumfinal.ms.tgz: Self-calibrated 1.1 mm continuum visibilities for GM Aur</p> <p>GMAurB6_HCOp.ms.cvel.tgz: Self-calibrated HCO<sup>+ </sup>3-2 visibilities without continuum subtraction</p> <p>GMAurB6_HCOp.ms.contsub.cvel.tgz: Self-calibrated HCO<sup>+ </sup>3-2 visibilities with continuum subtraction</p> <p><strong>Images: </strong></p> <p>GMAurB6continuumfinal.image.fits: 1.1 mm continuum image of GM Aur</p> <p>GMAurB4continuumfinal.image.fits: 2.1 mm continuum image of GM Aur</p> <p>GMAur_HCOp_withcontinuum.image.fits: HCO<sup>+ </sup>3-2 image cube toward GM Aur without continuum subtraction</p> <p>GMAur_HCOp_continuumsubtracted.image.fits: HCO<sup>+ </sup>3-2 image cube toward GM Aur with continuum subtraction</p> <p> </p> <p> </p>
Datasets produced by SCALE-GM in QBO-like oscillation experiments.
<p>Data produced by SCALE-GM and used in the manuscript submitted to the AMS journal Monthly Weather Review.</p> <p>Authors: <br> Hiroki Kashimura, Hisashi Yashiro, Seiya Nishizawa, Hirofumi Tomita, Kensuke Nakajima, Masaki Ishiwatari, Yoshiyuki O. Takahashi, and Yoshi-Yuki Hayashi<br> Corresponding Author:<br> Hiroki Kashimura (hiroki@gfd-dennou.org)<br> Manuscript Title:<br> Dependence of a QBO-like oscillation on time-step intervals in a non-hydrostatic general circulation model</p> <p>See README.txt for more details.</p> <p> </p>
Text-fig. 3. Briveichthys chantepieorum gen. et sp. nov. a, b: drawing and photograph of the jaws, jugal, medial gular and first lepidotrichia of the pectoral fin, GMC 126, whitened, scale bar 5 mm. Abbreviations: Aup – autopalatinum, De – dentalosplenial, ff – fringing fulcra, Gm – medial gular, gpl – gular pit line, ioc – infraorbital sensory canal, Ju – jugal, lep – lepidotrichia, mc – pores of the mandibular sensory canal, Mx – maxilla. in New Actinopterygians From The Permian Of The Brive Basin, And The Ichthyofaunas Of The French Massif Central
Text-fig. 3. Briveichthys chantepieorum gen. et sp. nov. a, b: drawing and photograph of the jaws, jugal, medial gular and first lepidotrichia of the pectoral fin, GMC 126, whitened, scale bar 5 mm. Abbreviations: Aup – autopalatinum, De – dentalosplenial, ff – fringing fulcra, Gm – medial gular, gpl – gular pit line, ioc – infraorbital sensory canal, Ju – jugal, lep – lepidotrichia, mc – pores of the mandibular sensory canal, Mx – maxilla.
Text-fig. 2. Stratigraphic column of the Govone section with a detail of the sampled intervals on the right. CCS – Cassano Spinola Conglomerates; Gm and Gg – sedimentary cycles, respectively marl-dominated or gypsum-dominated; MES – Messinian Erosional Surface; MSC – Messinian Salinity Crisis; PLG – Primary Lower Gypsum; RLG – Resedimented Lower Gypsum. in Remains Of A Subtropical Humid Forest In A Messinian Evaporitebearing Succession At Govone, Northwestern Italy - Preliminary Results
Text-fig. 2. Stratigraphic column of the Govone section with a detail of the sampled intervals on the right. CCS – Cassano Spinola Conglomerates; Gm and Gg – sedimentary cycles, respectively marl-dominated or gypsum-dominated; MES – Messinian Erosional Surface; MSC – Messinian Salinity Crisis; PLG – Primary Lower Gypsum; RLG – Resedimented Lower Gypsum.
Рис. 1. Размерная структура Gm. fasciatus в ΛитораΛьной зоне озера АрахΛей: 1 — в июне; 2 — в августе; 3 — в октябре; 4 — в Αекабре 2017 г. и июне 2018 г. Fig. 1. Gm. fasciatus population size structure in the Lake Arakhley littoral zone: 1 — June; 2 — August; 3 — October; 4 — December, 2017 and June, 2018 in The life cycle of Gmelinoides fasciatus (Stebbing, 1899) and Gammarus lacustris (Sars, 1863) amphipods in the lake Arakhley littoral during the extreme low-water phase of the hydrological cycle
Рис. 1. Размерная структура Gm. fasciatus в ΛитораΛьной зоне озера АрахΛей: 1 — в июне; 2 — в августе; 3 — в октябре; 4 — в Αекабре 2017 г. и июне 2018 г. Fig. 1. Gm. fasciatus population size structure in the Lake Arakhley littoral zone: 1 — June; 2 — August; 3 — October; 4 — December, 2017 and June, 2018
GEF and GM data of coast effect
<p>GEF data</p> <p>list in row: NS EW NE ns ew ne<br> unit: mV/km<br> sample: 1 min<br> start time: 2015-03-15 00:00 UT+8<br> end time: 2015-03-20 23:59 UT+8<br> data length: 8640</p> <p>GM data</p> <p>list in row: Time D-component H-component Z-component <br> unit: nT<br> sample: 1 second<br> start time: 2015-03-15 00:00:00 UT+8<br> end time: 2015-03-20 23:59:59 UT+8<br> data length: 86400*10<br> </p>
GM EEG data zip 2 of 2
<p>This is the EEG dataset part 2 of 2 for the paper "Reduction of Pavlovian bias in schizophrenia"</p> <p>See part 1 for more information: 10.5281/zenodo.29601</p>
Data from: IFN-γ-independent control of M. tuberculosis requires CD4 T cell-derived GM-CSF and activation of HIF-1α
<p><strong>RNA sequencing dataset from "Van Dis et al., IFN-γ-independent control of M. tuberculosis requires CD4 T cell-derived GM-CSF and activation of HIF-1α. 2022"</strong></p> <p>The prevailing model of protective immunity to tuberculosis is that CD4 T cells produce the cytokine IFN-γ to activate bactericidal mechanisms in infected macrophages. Although IFN-γ-independent CD4 T cell based control of <em>M. tuberculosis</em> infection has been demonstrated <em>in vivo</em> it is unclear whether CD4 T cells are capable of directly activating macrophages to control infection in the absence of IFN-γ. We developed a co-culture model using CD4 T cells isolated from the lungs of infected mice and <em>M. tuberculosis</em>-infected murine bone marrow-derived macrophages (BMDMs) to investigate mechanisms of CD4 dependent control of infection. This dataset represents RNA sequencing data from M. tuberculosis-infected wild-type and <em>Ifngr-/- </em>murine bone marrow-derived macrophages (BMDMs) after 24 hours of lung CD4 T cell co-culture.</p> <p>CD4 T cells induced differential regulation of 1825 genes in wild-type BMDMs and 1142 genes in <em>Ifngr-/-</em> BMDMs compared to untreated. Although wild-type and <em>Ifngr-/-</em> BMDMs infected with <em>M. tuberculosis</em> were transcriptionally very similar prior to activation, the transcriptome of these genotypes of macrophages diverged after CD4 T cell co-culture. This is likely due in part to the presence or absence of IFN-γ signaling as IFN-γ alone regulates the expression of >2500 genes during <em>M. tuberculosis</em> infection. Still, 769 genes were altered in an IFN-γ-independent manner, with >2-fold upregulation in both wild-type and <em>Ifngr-/- </em>BMDMs. We found no difference in macrophage polarization between untreated M. tuberculosis-infected wild-type and <em>Ifngr-/-</em> BMDMs, and no significant increase in the expression of genes associated with M2 macrophages after CD4 T cell co-culture in either genotype. However, there was significant upregulation of genes associated with M1 macrophages after CD4 T cell co-culture in both genotypes, with wild-type BMDMs slightly more polarized. Collectively, these results show comparable patterns of activation in wild-type and <em>Ifngr-/-</em> macrophage during CD4 T cell co-culture, indicating that CD4 T cells elicit significant polarizing, inflammatory and antimicrobial effects in <em>M. tuberculosis</em>-infected macrophages irrespective of IFN-γ signaling.</p>
data collection for NEMO BGC assessment in idealised models (GM in non-eddying models)
<p>Edit in ver 3, 17 Oct 2023:</p><ul><li>(<strong>important</strong>) there is a bug NEMO GEOMETRIC code (advection of parameterised eddy energy; see ldfeke.F90), fixed in the present version</li><li>new data files updated (everything is included for completeness, although only the ones using GEOMETRIC have been updated)</li><li>data files and software files have been split out into separate zip files to enable easier downloads</li></ul><p>=========================</p><p>Edit in ver 2, 06 Feb 2023:</p><ul><li>added calculation files with Treguier et al variant of GM, supplement data not explicitly leading to figure in paper;</li><li>fixes of masking for boundary values when computing averages (no change to figures, minor changes to numerical values);</li><li>fixing a bug in the calculation of surface vorticity (raw numerical value in units of s-1 correct, but incorrect in units of f_0 because of a missing sin(latitude) factor)</li></ul><p>=========================</p><p>Data archive for "Combined physical and biogeochemical assessment of mesoscale eddy parameterisations in ocean models: eddy induced advection at non-eddying resolutions". Provided are:</p><p>1) modification and configuration files for the GYRE_PISCES configuration in NEMO 4.0.5 (r14538), with sample restart and output files</p><ul><li>CONST restart file at year 2000 (end of spin up, denoted year -300 in the paper)</li><li>CONST, GEOM, R12 restart file at year 2300 (beginning of control/climate change split, denoted year 0 in the paper)</li><li>CONST, GEOM, R12 sample output files at year 2366 to 2370 (denoted year 66 to 70 in paper)</li></ul><p>2) processed time-averaged data for regenerating figures from the article<br>3) python scripts and notebooks for analysing the data</p>
Pembrolizumab and GM-CSF in Biliary Cancer
ClinicalTrials.gov study NCT02703714. IPD Sharing: NO. Countries: 1. Publications: 1.
Vaccine Therapy and GM-CSF in Treating Patients With Acute Myeloid Leukemia, Myelodysplastic Syndromes, Non-Small Cell Lung Cancer, or Mesothelioma
ClinicalTrials.gov study NCT00398138. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Folate Receptor Alpha Peptide Vaccine With GM-CSF Versus GM-CSF Alone in Patients With Platinum Sensitive Ovarian Cancer
ClinicalTrials.gov study NCT02978222. IPD Sharing: NO. Countries: 1. Publications: 1.
Immuno-Augmentation With GM-CSF of Pneumococcal Vaccine in Chronic Lymphocytic Leukemia Patients
ClinicalTrials.gov study NCT00323557. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Inhaled GM-CSF Therapy of Autoimmune PAP
ClinicalTrials.gov study NCT00901511. IPD Sharing: NO. Countries: 1. Publications: 5.
Aspergillosis Detection Via EBC-GM in Ventilated Patients
ClinicalTrials.gov study NCT06333379. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.
Phase II PAP Plus GM-CSF Versus GM-CSF Alone for Non-metastatic Prostate Cancer
ClinicalTrials.gov study NCT01341652. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Vaccination With Autologous Breast Cancer Cells Engineered to Secrete Granulocyte-Macrophage Colony-Stimulating Factor (GM-CSF) in Metastatic Breast Cancer Patients
ClinicalTrials.gov study NCT00317603. IPD Sharing: Not stated. Countries: 1. Publications: 1.
A Randomized, Double-blind, Phase 3 Efficacy Trial of PROSTVAC-V/F +/- GM-CSF in Men With Asymptomatic or Minimally Symptomatic Metastatic Castrate-Resistant Prostate Cancer
ClinicalTrials.gov study NCT01322490. IPD Sharing: Not stated. Countries: 16. Publications: 1.
Rituximab, Alemtuzumab, and GM-CSF As First-Line Therapy in Treating Patients With Early-Stage Chronic Lymphocytic Leukemia
ClinicalTrials.gov study NCT00562328. IPD Sharing: Not stated. Countries: 1. Publications: 1.
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OpenNeuro
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