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| 1 | Prognostic value of systemic immune.inflammation index in patients with gastric cancer显示文摘Background:Inflammation-based indexes have been used to predict survival and recurrence in cancer patients.Systemic immune-inflammation index(Sll) was reported to be associated with prognosis in some malignant tumors.In the present study,we aimed to explore the association between Sll and the prognosis of patients with gastric cancer.Methods:We retrospectively analyzed data from 444 gastric cancer patients who underwent gastrectomy at the First Affiliated Hospital of Sun Yat-sen University between January 1994 and December 2005.Preoperative Sll was calculated.The Chi square test or Fisher's exact test was used to determine the relationship between preoperative Sll and clinicopathologic characteristics.Overall survival(OS) rates were estimated using the Kaplan-Meier method,and the effect of Sll on OS was analyzed using the Cox proportional hazards model.Receiver operating characteristic(ROC)curves were used to compare the predictive ability of Sll,NLR,and PLR.Results:Sll equal to or higher than 660 was significantly associated with old age,large tumor size,unfavorable Borrmann classification,advanced tumor invasion,lymph node metastasis,distant metastasis,advanced TNM stage,and high carcino-embryonic antigen level,high neutrophil-lymphocyte ratio,and high platelet-lymphocyte ratio(all P<0.05).High Sll was significantly associated with unfavorable prognosis(P<0.001) and Sll was an independent predictor for OS(P=0.015).Subgroups analysis further showed significant associations between high Sll and short OS in stage Ⅰ,Ⅱ,Ⅲ subgroups(all P<0.05).Sll was superior to NLR and PLR for predicting OS in patients with gastric cancer.Conclusion:Preoperative Sll level is an independent prognostic factor for OS in patients with gastric cancer. | Kang Wang Feiyu Diao Zhijun Ye Xinhua Zhang Ertao Zhai Hui Ren Tong Li Hui Wu Yulong He Shirong Cai Jianhui Chen | 2017 | Chinese Journal of Cancer2017,36,9: | 30 |
| 2 | Effect of Trimetazidine on Diabetic Patients with Coronary Heart Diseases: A Meta-Analysis of Randomized, Controlled Trials显示文摘Objective To explore the therapeutic effects of trimetazidine(TMZ)on diabetic patients with coronary heart diseases.Methods We conducted a comprehensive electronic search of PubMed,EMBASE,and Cochrane databases between the inception dates of databases and May 2019(last search conducted on 30 May 2019)to identify randomized controlled trials.The evaluation method recommended by Cochrane Collaboration for bias risk assessment was employed for quality assessment.Random or fixed models were used to investigate pooled mean differences in left ventricular function,serum glucose metabolism,serum lipid profile,myocardial ischemia episodes and exercise tolerance with effect size indicated by the 95%confidence interval(CI).Results Additional TMZ treatment contributed to considerable improvement of left ventricular ejection fraction(WMD=4.39,95%CI:3.83,4.95,P<0.00001),left ventricular end diastolic diameter(WMD=-3.17,95%CI:-4.90,-1.44,P=0.0003)and left ventricular end systolic diameter(WMD=-4.69,95%CI:-8.66,-0.72,P=0.02).TMZ administration also significantly decreased fasting blood glucose(SMD=-0.43,95%CI:-0.70,-0.17,P=0.001),glycosylated hemoglobin level(WMD=-0.59,95%CI:-0.95,-0.24,P=0.001),serum level of total cholesterol(WMD=-20.36,95%CI:-39.80,-0.92,P=0.04),low-density lipoprotein cholesterol(WMD=-20.12,95%CI:-32.95,-7.30,P=0.002)and incidence of myocardial ischemia episodes(SMD=-0.84,95%CI:-1.50,-0.18,P=0.01).However,there were no significant differences in serum triglyceride level,high-density lipoprotein cholesterol,exercise tolerance between the TMZ group and the control group.Conclusion TMZ treatment in diabetic patients with coronary heart disease is effective to improve cardiac function,serum glucose and lipid metabolism and clinical symptoms. | Ye Lin Zhenlian Wang Min Yan Feiyu Zhu YeDuan Zhiqin Sun | 2020 | Chinese Medical Sciences Journal2020,35,3: | 2 |
| 3 | In-situ polymerized cross-linked binder for cathode in lithium-sulfur batteries显示文摘Volume expansion and polysulfide shuttle effect are the main barriers for the commercialization of lithium-sulfur(Li-S) battery.In this work,we in-situ polymerized a cross-linked binder in sulfur cathode to solve the aforementioned problems using a facile method under mild conditions.Polycarbonate diol(PCDL),triethanolamine(TEA) and hexamethylene diisocyanate(HDI) were chosen as precursors to prepare the cross-linked binder.The in-situ polymerized binder(PTH) builds a strong network in sulfur cathode,which could restrain the volume expansion of sulfu r.Moreover,by adopting functional groups of oxygen atoms and nitrogen atoms,the binder could effectively facilitate transportation of Li-ion and adsorb polysulfide chemically.The Li-S battery with bare sulfur and carbon/sulfur composite cathodes and cross-linked PTH binder displays much better electrochemical performance than that of the battery with PVDF.The PTH-bare S cathode with a mass loading of 5.97 mg/cm^2 could deliver a capacity of 733.3 mAh/g at 0.2 C,and remained 585.5 mAh/g after 100 cycles.This in-situ polymerized binder is proved to be quite effective on restraining the volume expansion and suppressing polysulfide shuttle effect,then improving the electrochemical performance of Li-S battery. | Heng Ye Danni Lei Lu Shen Bin Ni Baohua Li Feiyu Kang Yan-Bing He | 2020 | Chinese Chemical Letters2020,31,2: | 2 |
| 4 | An ultrathin and continuous Li_4Ti_5O_(12) coated carbon nanofiber interlayer for high rate lithium sulfur battery显示文摘Severe capacity fading and poor high rate performance of lithium sulfur(Li–S) battery caused by 'shuttle effect' and low conductivity of sulfur hampers its further developments and applications. Li_4Ti_5O_(12) (LTO)possesses high lithium ion conductivity, and it is also can be used as an active adsorbent for polysulfide. Herein, fine LTO particle coated carbon nanofibers(CNF) were prepared and a conductive network both for electron and lithium ion was built, which can greatly promote the electrochemical conversion of polysulfide and improve the rate performance of Li–S batteries. Meanwhile, a quantity of adsorption sites is constructed by defects of the surface of LTO-CNF membrane to effectively immobilize polysulfide. The multifunctional LTO-CNF interlayer could impede the shuttle effect and enhance comprehensive electrochemical performance of Li–S batteries, especially high rate performance. With such LTO-CNF interlayer,the Li–S battery presents a specific capacity of 641.9 mAh/g at 5 C rate. After 400 cycles at 1 C, a capacity of 618.0 mAh/g is retained. This work provides a feasible strategy to achieve high performance of Li–S battery for practical utilization. | Decheng An Lu Shen Danni Lei Lehong Wang Heng Ye Baohua Li Feiyu Kang Yan-Bing He | 2019 | Journal of Energy Chemistry2019,28,4: | 2 |
| 5 | Position and Coordination of SPDs in Building显示文摘 | TAO Xuemei YE Feiyu | 2004 | Proceed of the International Conference on Lightning Protection (27th ICLP)2004,1,2: | 1 |
| 6 | Electropolymerization of Ni(salen) on carbon nanotube carrier as a capacitive material by pulse potentiostatic method显示文摘The composites of poly[Ni(salen)] and multi-walled carbon nanotube(MWCNT) were synthesized by pulse potentiostatic method.The composites were characterized by field emission scanning electron microscopy,Fourier transform infrared spectra,and electrochemical impedance spectroscopy.The wrapping of carbon nanotubes with poly[Ni(salen)] varied significantly with anodic pulse duration.Variance of structure of poly[Ni(salen)] caused by anodic pulse duration affected the ability of absorption to solvent molecules or solvated ions,which was indicated by ν(C≡N) intensity.The ability to store/release charge of poly[Ni(salen)] caused by redox switching was evaluated in the form of low-frequency capacitance.Correlations of chargetransfer resistance/ionic diffusion resistance with potential and anodic pulse duration were investigated. | LI JianLing GAO Fei ZHANG YaKun KANG FeiYu WANG XinDong YE Feng YANG Jun | 2012 | Science China Chemistry2012,55,7: | 1 |
| 7 | On Discovery of Functional Dependencies from Data显示文摘 | Liu Jixue Ye Feiyue Li Jiuyong | 2013 | Data&Knowledge Engineering2013,86,4: | 1 |
| 8 | Association of Carotid Atherosclerotic Plaque Features with Acute Ischemic Stroke: A Magnetic Resonance Imaging Study显示文摘 | Huilin Zhao Xihai Zhao Xiaosheng Liu Ye Cao Daniel S. Hippe Jie Sun Feiyu Li Jianrong Xu Chun Yuan | 2013 | European Journal of Radiology2013,,: | 1 |
| 9 | A New Instruction System by Network | YE Feiyue \ LIU Xingkun Department of Computer,Petroleum University Dongying,Shandong Province,P.R.China,257062 | 1998 | Systems Science and Systems Engineering1998,8,2: | 0 |
| 10 | Pt nanodendrites with (111) crystalline facet as an efficient, stable and pH-universal catalyst for electrochemical hydrogen production显示文摘High-performance nanomaterial catalysts for hydrogen evolution reaction via electrochemical water splitting are significant to the development of hydrogen energy.In this work,we report a robust and highly active catalyst fabricated through direct electrochemical deposition of Pt nanodendrites at the surface of activated carbon(Pt NDs).Owing to the large elect roc he mically active area and the exposed(111) facet of Pt,Pt NDs exhibits outstanding activity towards hydrogen evolution reaction with a low requiring overpotential of 0.027 V at 10 mA/cm2 and Tafel slope of ≈22 mV/dec in acidic media.In addition,the hydrogen yield of Pt NDs is 30%-45% larger than that of commercial Pt/C at the same Pt loadings.Moreover,Pt NDs exhibits excellent lo ng-term durability whose hydrogen production efficiency remains unchanged after six-hour hydrogen production,while the efficiency of commercial Pt/C catalyst decayed 9% under the same circumstance.Considering the superiority of catalytic activity and stability,this Pt NDs present great potentiality towards practical hydrogen production application. | Huifang Sun Qi Zeng Chen Ye Yangguang Zhu Feiyue Chen Mingyang Yang Li Fu Shiyu Du Jinhong Yu Nan Jiang Jianxiong Liu Tianzhun Wu Cheng-Te Lin | 2020 | Chinese Chemical Letters2020,31,9: | 0 |
| 11 | Commercially Viable Hybrid Li-Ion/Metal Batteries with High Energy Density Realized by Symbiotic Anode and Prelithiated Cathode显示文摘The energy density of commercial lithium(Li)ion batteries with graphite anode is reaching the limit.It is believed that directly utilizing Li metal as anode without a host could enhance the battery’s energy density to the maximum extent.However,the poor reversibility and infinite volume change of Li metal hinder the realistic implementation of Li metal in battery community.Herein,a commercially viable hybrid Li-ion/metal battery is realized by a coordinated strategy of symbiotic anode and prelithiated cathode.To be specific,a scalable template-removal method is developed to fabricate the porous graphite layer(PGL),which acts as a symbiotic host for Li ion intercalation and subsequent Li metal deposition due to the enhanced lithiophilicity and sufficient ion-conducting pathways.A continuous dissolution-deintercalation mechanism during delithiation process further ensures the elimination of dead Li.As a result,when the excess plating Li reaches 30%,the PGL could deliver an ultrahigh average Coulombic efficiency of 99.5% for 180 cycles with a capacity of 2.48 m Ah cm^(-2) in traditional carbonate electrolyte.Meanwhile,an air-stable recrystallized lithium oxalate with high specific capacity(514.3 m Ah g^(-1))and moderate operating potential(4.7-5.0 V)is introduced as a sacrificial cathode to compensate the initial loss and provide Li source for subsequent cycles.Based on the prelithiated cathode and initial Li-free symbiotic anode,under a practical-level3 m Ah capacity,the assembled hybrid Li-ion/metal full cell with a P/N ratio(capacity ratio of Li Ni_(0.8)Co_(0.1)Mn_(0.1)O_(2) to graphite)of 1.3exhibits significantly improved capacity retention after 300 cycles,indicating its great potential for high-energy-density Li batteries. | Kui Lin Xiaofu Xu Xianying Qin Ming Liu Liang Zhao Zijin Yang Qi Liu Yonghuang Ye Guohua Chen Feiyu Kang Baohua Li | 2022 | Nano-Micro Letters2022,14,9: | 0 |
| 12 | Layer-by-layer stacked graphene nanocoatings by Marangoni self-assembly for corrosion protection of stainless steel显示文摘Graphene nanosheets are widely used in anti-corrosion polymeric coating as filler,owing to the excellent electrochemical inertness and barrier property.However,as the arrangement of graphene nanosheets is difficult to form a perfect layered structure,polymeric coating with graphene nanosheets usually needs micron-scale thickness to ensure the enhancement of corrosion protection.In this work,layer-by-layer stacked graphene nanocoatings were fabricated on stainless steel by self-assembly based on Marangoni effect.The anti-corrosion property of graphene coatings were studied through Tafel polarization curves,electrochemical impedance spectroscopy and accelerated corrosion test with extra applied voltage.The self corrosion current density of optimized three-layered graphene coated sample was one quarter of that of bare stainless steel.And the self corrosion potential of optimized sample is increased to-0.045 V.According to the results,graphene nanocoatings composed of layered nanosheets exhibits good anticorrosion property.Besides,the self-assembly method provide a promising approach to make layeredstructure coating for other researches about 2 D material nanosheets. | Chen Ye Yangguang Zhu Hongyan Sun Feiyue Chen Huifang Sun Wen Dai Qiuping Wei Li Fu Aimin Yu Shiyu Du Minghui Yang Liang-Feng Huang Jinhong Yu Nan Jiang Cheng-Te Lin | 2021 | Chinese Chemical Letters2021,32,1: | 0 |