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7篇 您的检索式:作者名="Junming Qiu"
    题名 作者 年代 出处 被引量
1Curative effect of Xuebijing injection on severe pulmonary contusion显示文摘OBJECTIVE: To investigate the curative effects of Xuebijing(XBJ) injection, a Chinese patent medicine, on severe pulmonary contusion(PC). METHODS: Sixty-three patients with PC were randomized to conventional therapy plus XBJ injection(n=33) or conventional therapy alone(n=30). Between groups differences in corticosteroid treatment, immune regulation therapy, hemofiltration, infusion volume, transfusion volume and antibiotic period were measured, as were intensive care unit (ICU)-free time, ventilation time, 28-day mortality rate and incidence of ventilation-associated pneumonia(VAP). Serum concentrations of procalcitonin(PCT), tumor necrosis factor-α(TNF-α), interleukin(IL)-6, and IL-10, white blood cell(WBC) counts and percentages of human leukocyte antigen DR/ CD14+(HLA-DR/CD14+) peripheral blood mononuclear cells were compared. Markers of ventilation were determined by blood gas analysis and ventilator parameters. RESULTS: WBC counts and serum concentrations of PCT, TNF-α, IL-6 and IL-10 were reduced significantly more quickly, and CD14+ percentage was increased significantly earlier, in the XBJ group than in the control group(P<0.05 each).The level of ventilation and oxygenation index were ameliorated earlier in the XBJ than in the control group(P< 0.05). XBJ treatment significantly reduced ICU-stay time, ventilation time and incidence of VAP(P<0.05 each), but had no effect on 28-day mortality rate(P>0.05). CONCLUSION: XBJ treatment can shorten ICU-free and ventilation times and reduce the incidence of VAP, improving outcomes in patients with severe PC. XBJ may act by regulating inflammation and immunity, alleviating systemic inflammatory response syndrome induced by trauma.Yi Chen Huasheng Tong Wang Zhang Xingqin Zhang Zhigguo Pan Junming Qiu Ruihuan Pan Lei Su 2013Journal of Traditional Chinese Medicine2013,33,6:6
2Study on application of the blends of nitrile rubber with acrylate rubber in the coat- metal sealing gasket 显示文摘Qiu Zumin Qin Chaoyan Qiu Junming 2012Advanced Materials Research2012,393,:1
3Profiling seed soluble sugar compositions in 1164 Chinese soybean accessions from major growing ecoregions显示文摘Soluble sugar is a key quality trait of soybean seeds.We developed rapid and economic extraction and quantification methods for seed soluble sugars using an ultra-high performance liquid chromatography system with a refractive index detector.We evaluated the soluble sugar compositions of 1164 soybean accessions collected from diverse ecoregions and grown in multiple locations and years.Total soluble sugar(TSS)content was influenced by accession type,year of cultivation,and ecoregion.The mean contents of fructose,glucose,sucrose,raffinose,stachyose and TSS were 3.31,5.21,55.60,6.60,35.47,and 106.19 mg g^(-1),respectively.The highest mean TSS content(108.71 mg g^(-1)) was observed in accessions from Northern Region of China.Cultivars contained higher contents of sucrose,raffinose,and TSS,whereas landraces had a higher content of stachyose.Fourteen accessions with mean TSS contents>130 mg g^(-1) were identified as elite soybean resources.TSS was correlated with sucrose,raffinose,stachyose,protein,oil and total tocopherol.The main soluble sugar components were correlated with latitude and longitude,indicating that the geographical origin of the accessions affected their seed soluble sugar compositions.The developed methods and elite identified accessions can be used in the food and feed industry and in soybean breeding programs aimed at improving soybean seed nutrition.Jie Qi Shengrui Zhang Muhammad AzamAbdul wahab S.Shaibu Ahmed M.Abdelghany Yue Feng Yuanyuan HuaiHuoyi Feng Yitian Liu Caiyou Ma Berhane S.Gebregziabher Suprio Ghosh Jing Li Deyue Yu Bin Li Lijuan Qiu Junming Sun 2022The Crop Journal2022,10,6:0
4Surface passivation and hole extraction:Bifunctional interfacial engineering toward high-performance all-inorganic CsPbIBr2 perovskite solar cells with efficiency exceeding 12%显示文摘All-inorganic CsPbIBr2perovskite solar cells(PSCs)have attracted considerable research attention in recent years due to their excellent thermal stability.However,their power conversion efficiencies(PCEs)are relatively low and still far below the theoretical limit.Here,we report the use of an organic dye molecule(namely VG1-C8)as a bifunctional interlayer between perovskite and the hole-transport layer in CsPbIBr2PSCs.Combined experimental and theoretical calculation results disclose that the multiple Lewis base sites in VG1-C8 can effectively passivate the trap states on the perovskite films.Meanwhile,theπ-conjugated dye molecule significantly accelerates the hole extraction from the perovskite absorber as evidenced by the photoluminescence analysis.Consequently,the VG1-C8 treatment simultaneously boosts the photovoltage and photocurrent density values from 1.26 V and 10.80 mA cm^(-2) to 1.31 V and 12.44 m A cm^(-2),respectively.This leads to a significant enhancement of PCE from 9.20%to12.10%under one sun irradiation(AM 1.5G).To our knowledge,this is the record efficiency reported so far for CsPbIBr_(2) PSCs.Thus,the present work demonstrates an effective interfacial passivation strategy for the development of highly efficient PSCs.Qi Liu Junming Qiu Xianchang Yan Yuemeng Fei Yue Qiang Qingyan Chang Yi Wei Xiaoliang Zhang Wenming Tian Shengye Jin Ze Yu Licheng Sun 2022Journal of Energy Chemistry2022,31,11:0
5Ligand exchange engineering of FAPbI_(3) perovskite quantum dots for solar cells显示文摘Formamidinium lead triiodide(FAPbI_(3))perovskite quantum dots(PQDs)show great advantages in photovoltaic applications due to their ideal bandgap energy,high stability and solution processability.The anti-solvent used for the post-treatment of FAPbI_(3) PQD solid flms signifcantly afects the surface chemistry of the PQDs,and thus the vacancies caused by surface ligand removal inhibit the optoelectronic properties and stability of PQDs.Here,we study the efects of diferent anti-solvents with diferent polarities on FAPbI_(3) PQDs and select a series of organic molecules for surface passivation of PQDs.The results show that methyl acetate could efectively remove surface ligands from the PQD surface without destroying its crystal structure during the post-treatment.The benzamidine hydrochloride(PhFACl)applied as short ligands of PQDs during the post-treatment could fll the A-site and X-site vacancies of PQDs and thus improve the electronic coupling of PQDs.Finally,the PhFACl-based PQD solar cell(PQDSC)achieves a power conversion efciency of 6.4%,compared to that of 4.63%for the conventional PQDSC.This work provides a reference for insights into the surface passivation of PQDs and the improvement in device performance of PQDSCs.Wentao Fan Qiyuan Gao Xinyi Mei Donglin Jia Jingxuan Chen Junming Qiu Qisen Zhou Xiaoliang Zhang 2022Frontiers of Optoelectronics2022,15,3:0
6A Prospective, Randomized, Controlled Clinical Trial of the Effects of Ursodeoxycholic Acid in Alleviating Ischemia/ Reperfusion Injury in Liver Transplantation显示文摘Shuyun Wang Huamei Tang Zhihai Peng Guoqiang Qiu Guoqing Chen Junming Xu Lin Zhong 2008器官移植内科学杂志2008,3,2:0
7Microbial Community Profiles Related to Volatile Fatty Acids Production in Mesophilic and Thermophilic Fermentation of Waste Activated Sludge Pretreated by Enzymolysis显示文摘Mesophilic and thermophilic anaerobic fermentation performance of waste activated sludge(WAS)pretreated by enzymes catalysis associated with microbial community shifts were investigated.WAS disintegration was boosted considerably by enzymolysis with 8750 mg/L of soluble COD release within 180 min.Mesophilic anaerobic fermentation(MAF)produced nearly equal VFA accumulation with over 3200 mg COD/L compared with that of thermophilic fermentation(TAF).Bacterial community consortia showed great shifting differences in dynamics of main T⁃RFs between MAF and TAF.Moreover,MAF was conducive to form intermediate bacterial community evenness compared to TAF,which preserved a robust function of VFA production.The enzymes catalysis prompted bio⁃energy(electricity)recovery potential of WAS organics via anaerobic fermentation(MAF/TAF)with evaluating electricity conversion efficiency of 0.75-0.82 kW·h/kg VSS(3.9 times higher than control test).Finally,this study proposed some novel thinking on future WAS treatment/management towards energy recovery coupled with energy⁃sufficient wastewater treatment by co⁃locating WAS anaerobic fermentation,MFC plant with wastewater treatment plant(s).Xiaodong Xin Bingxin Wang Junming Hong Junguo He Wei Qiu Bor-Yann Chen 2020Journal of Harbin Institute of Technology(New Series)2020,27,4:0
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