Search Results - "Xu, Suqing"
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1
Decrease in the CO₂ Uptake Capacity in an Ice-Free Arctic Ocean Basin
Published in Science (American Association for the Advancement of Science) (30-07-2010)“…It has been predicted that the Arctic Ocean will sequester much greater amounts of carbon dioxide (CO₂) from the atmosphere as a result of sea ice melt and…”
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2
ILC2 regulates hyperoxia-induced lung injury via an enhanced Th17 cell response in the BPD mouse model
Published in BMC pulmonary medicine (30-05-2023)“…Recent research has focused on the role of immune cells and immune responses in the pathogenesis of bronchopulmonary dysplasia (BPD), but the exact mechanisms…”
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3
Dynamic Changes of NCR− Type 3 Innate Lymphoid Cells and Their Role in Mice with Bronchopulmonary Dysplasia
Published in Inflammation (01-04-2022)“…— Inflammation is one of the important pathogenesis of bronchopulmonary dysplasia (BPD). Type 3 innate lymphoid cells (ILC3) play a role in a variety of…”
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4
Tissue-Resident Type 2 Innate Lymphoid Cells Arrest Alveolarization in Bronchopulmonary Dysplasia
Published in Journal of immunology research (31-10-2020)“…Bronchopulmonary dysplasia (BPD) is a severe complication of the respiratory system associated with preterm birth. Type 2 innate lymphoid cells (ILC2s) play a…”
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5
Clinical features and risk factors of lung cancer in elderly patients with dermatomyositis
Published in Thoracic cancer (01-05-2023)“…Background Although there are concerns about the association between dermatomyositis (DM) and malignancy, the clinical features in elderly DM patients with…”
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6
Sea–air CO2 fluxes in the Southern Ocean for the late spring and early summer in 2009
Published in Remote sensing of environment (01-03-2016)“…The Southern Ocean is an important sink of atmospheric carbon dioxide (CO2). However, the magnitude of the CO2 sink is uncertain because of the scarcity of…”
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7
Global air-sea CO2 exchange flux since 1980s: results from CMIP6 Earth System Models
Published in Journal of oceanology and limnology (01-07-2022)“…The ocean could profoundly modulate the ever-increasing atmospheric CO 2 by air-sea CO 2 exchange process, which is also able to cause significant changes of…”
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8
Determinant of Sea Salt Aerosol Emission in the Southern Hemisphere in Summer Time
Published in Earth and space science (Hoboken, N.J.) (01-11-2022)“…High‐time resolution (1h) aerosol composition measurements were performed in the Southern Hemisphere during February 2018–April 2018. Na+ was the most abundant…”
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9
Identification of gout in unusual sites by dual energy computed tomography
Published in Annals of Saudi medicine (01-09-2016)Get full text
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10
Estimation of monthly air-sea CO2 flux in the southern Atlantic and Indian Ocean using in-situ and remotely sensed data
Published in Remote sensing of environment (15-08-2011)“…Empirical relationships between the sea surface partial pressure of carbon dioxide (pCO2), sea surface chlorophyll-a concentration (Chl-a), and sea surface…”
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11
Characteristics of Atmospheric Inorganic Nitrogen Wet Deposition in Coastal Urban Areas of Xiamen, China
Published in Atmosphere (01-11-2021)“…To evaluate the impact of increasing atmospheric nitrogen deposition input to the coastal ecosystem, measurements were conducted to analyze the inorganic…”
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12
Effect of sea ice retreat on marine aerosol emissions in the Southern Ocean, Antarctica
Published in The Science of the total environment (25-11-2020)“…Sea ice retreat in the polar region is expected to increase the emissions of sea salt aerosols and biogenic gases, which may significantly impact the climate…”
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13
Influence on the conversion of DMS to MSA and SO42− in the Southern Ocean, Antarctica
Published in Atmospheric environment (1994) (15-07-2020)“…Dimethyl sulfide (DMS), methanesulphonic acid (MSA) and sulfate (SO42−) were measured simultaneously at high-time resolution in the Southern Ocean (SO) during…”
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14
Low contributions of dimethyl sulfide (DMS) chemistry to atmospheric aerosols over the high Arctic Ocean
Published in Atmospheric environment (1994) (15-11-2023)“…The Arctic Ocean is continuously warming, resulting in sea ice retreat, which significantly impacts the marine biogenic sulfur cycle. The formation of aerosols…”
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15
Significant Underestimation of Gaseous Methanesulfonic Acid (MSA) over Southern Ocean
Published in Environmental science & technology (19-11-2019)“…Methanesulfonic acid (MSA), derived from the oxidation of dimethylsulfide (DMS), has a significant impact on biogenic sulfur cycle and climate. Gaseous MSA…”
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16
Non-ignorable contribution of anthropogenic source to aerosols in Arctic Ocean
Published in Environmental research (01-10-2021)“…Arctic Ocean (AO) atmospheric aerosols, which are a factor influencing regional and global climate, have been greatly influenced by an increase in…”
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Dry-deposition of inorganic and organic nitrogen aerosols in Xiamen Bay: Fluxes, sources, and biogeochemical significance
Published in The Science of the total environment (01-04-2022)“…Increased dry deposition of nitrogen aerosols (aerosol-N) as a result of anthropogenic emissions has caused large negative impacts on marine ecosystems. We…”
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18
High‐resolution distribution pattern of surface water nitrous oxide along a cruise track from the Okhotsk Sea to the western Arctic Ocean
Published in Limnology and oceanography (01-01-2021)“…Nitrous oxide in the surface water was measured using an automatic underway system, along with measurements of surface water pCO2, dissolved oxygen, salinity,…”
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Abundant microzooplankton possibly cause ultrahigh seawater dimethylsulfide during Southern Ocean algal blooms
Published in Progress in oceanography (01-03-2022)“…[Display omitted] •Ultrahigh seawater DMS levels (>40 nM) were detected near the Antarctic Peninsula.•Ultrahigh DMS was only found in waters of algal bloom and…”
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Unravelling Surface Seawater DMS Concentration and Sea‐To‐Air Flux Changes After Sea Ice Retreat in the Western Arctic Ocean
Published in Global biogeochemical cycles (01-06-2021)“…The receding of the seasonal ice cover in the Arctic due to climate change has been predicted by models to increase climate‐active biogenic trace gas…”
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