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| 1 | Imaging energetic electron spectrometer onboard a Chinese navigation satellite in the inclined GEO orbit显示文摘The energetic electron measurement is one of the most important issues to understand dynamics in space physics and the applications for space weather. In this study, the principle and functional components of the imaging energetic electron spectrometer(IES) onboard a Chinese navigation satellite in the inclined GEO orbit(IGSO) was introduced. The IES instrument is developed by the team in Peking University(BeiDa), thus it is named as BD-IES. Based on the pin-hole technique, the instrument can measure 50–600 keV electrons incident from 9 directions over a range of 180° in polar angle. With pulse height analysis(PHA), the spectrum can be determined for each direction. The energy and angular calibrations were performed, which show the good energy and angular characteristics of BD-IES. Monte Carlo simulations show that the anti-proton design of BDIES can effectively decrease the proton contamination on the electron measurements in the inclined GEO orbit. The primary results of BD-IES verify the successful design of this instrument. | ZOU Hong YE YuGuang ZONG QiuGang CHEN HongFei ZOU JiQing CHEN Jiang SHI WeiHong YU XiangQian ZHONG WeiYing WANG YongFu ZHOU XuZhi HAO YiXin CHEN XingRan JIA XiangHong XU Feng SHAO SiPei WANG Bo HAO XiaoYun ZHANG XiaoXin | 2018 | Science China(Technological Sciences)2018,61,12: | 5 |
| 2 | Monte Carlo simulations of the sensor head of imaging energetic electron spectrometer onboard a Chinese IGSO navigation satellite显示文摘An imaging energetic electron spectrometer built by the Peking University team(BD-IES) onboard a Chinese navigation satellite in an inclined GEO orbit has been launched successfully in September 2015, which measures the spectra of the energetic electrons with the energy range of 50–600 keV in nine directions. In this study, Monte Carlo simulations of the BD-IES sensor head were performed using Geant4 and the corresponding characteristic responses to the isotropic energetic particles were derived. The effective geometric factors were estimated using the typical electron and proton spectra in the GEO orbit and the corresponding simulated sensor head responses. It was found that the average effective geometric factors of nine directions are close to the nominal geometric factors calculated with the traditional method, but the effective geometric factor decreases as the center energy of the energy channel decreases. The BD-IES sensor head also responses to the energetic protons, but the average contamination rate of all 72 channels is about 2%, which means that the proton contamination is acceptable. The spectra of the energetic electrons measured by BD-IES are derived using the effective geometric factors of the sensor head and are comparable with the spectra measured by the magnetic electron ion spectrometer(MagEIS) instrument onboard Van Allen Probes. | ZOU Hong YE YuGuang ZONG QiuGang CHEN HongFei LUO Lin ZHOU XuZhi CHEN XingRan HAO YiXin REN Jie WANG YongFu SHI WeiHong YU XiangQian JIA XiangHong XU Feng ZHANG XiaoXin | 2019 | Science China(Technological Sciences)2019,62,7: | 3 |
| 3 | Enhanced antifouling behaviours of polyvinylidene fluoride membrane modified through blending with nano-TiOJpolyethylene glycol mixture 显示文摘 | Zhang Jie Wang Zhiwei Zhang Xingran | 2015 | Applied Surface Science2015,345,: | 1 |
| 4 | Mesh dependence and nonlo- cal regularization of one-dimensional strain softening plas- ticity 显示文摘 | WU Shouxin WANG Xingran | 2010 | Journal of Engineering Mechanics2010,136,11: | 1 |
| 5 | Poleward-moving recurrent auroral arcs associated with impulse-excited standing hydromagnetic waves显示文摘In Earth's high-latitude ionosphere, the poleward motion of east–west elongated auroral arcs has been attributed to standing hydromagnetic waves, especially when the auroral arcs appear quasi-periodically with a recurrence time of a few minutes. The validation of this scenario requires spacecraft observations of ultra-low-frequency hydromagnetic waves in the magnetosphere and simultaneous observations of poleward-moving auroral arcs near the spacecraft footprints. Here we present the first observational evidence from the multi-spacecraft THEMIS (Time History of Events and Macroscale Interactions during Substorms) mission and the conjugated all-sky imager to support the scenario that standing hydromagnetic waves can generate the quasi-periodic appearance of poleward-moving auroral arcs. In this specific event, the observed waves were toroidal branches of the standing hydromagnetic waves, which were excited by a pulse in the solar wind dynamic pressure. Multi-spacecraft measurements from THEMIS also suggest higher wave frequencies at lower L shells (consistent with the distribution of magnetic field line eigenfrequencies), which indicates that the phase difference across latitudes would increase with time. As time proceeds, the enlarged phase difference corresponds to a lower propagation speed of the auroral arcs, which agrees very well with the ground-based optical data. | HuaYu Zhao Xu-Zhi Zhou Ying Liu Qiu-Gang Zong Robert Rankin YongFu Wang QuanQi Shi Xiao-Chen Shen Jie Ren Han Liu XingRan Chen | 2019 | Earth and Planetary Physics2019,3,4: | 1 |
| 6 | Biodegradable Materials as Nanocarriers for Drugs and Nutrients显示文摘Several important drugs and nutritional supplements are limited by their lack of bioavailability.Nanomaterials display unique beneficial properties that might help improve the bioavailability of drugs and nutritional supplements.Unfortunately,nanomaterials produced from synthetic polymers and metals may have similar difficulties with bioavailability and toxicity.Naturally occurring biopolymers are biodegradable and non-toxic and are adaptable to the synthesis of nanoparticles.Drugs and other substances can be encapsulated or embedded in such particles with an increase in bioavailability.The search for biodegradable nanomaterials is an active research field.This review summarizes the research on nanocrystalline cellulose,starch,lignin,and other biological and environment-friendly nanocomposites which are commonly used as nanocarriers for drugs and nutrients.Further,prospects for the use of biodegradable nanomaterials in targeted therapy,including environmentally responsive therapy,are discussed. | Xingran Kou Qixuan Zhao Wenwen Xu Zuobing Xiao Yunwei Niu Kai Wang | 2021 | Journal of Renewable Materials2021,9,7: | 0 |
| 7 | Photosensitizers with Aggregation-induced Emission and Their Biomedical Applications显示文摘Microorganisms and cancer have always been the fierce enemies of human beings,but the traditional methods of treating them still have many defects.Therefore,it is extremely important to develop rapid,effective and safe treatments.Photodynamic Therapy(PDT)has attracted much attention because of its advantages of non-invasive,non-drug tolerance,high selectivity and low toxicity.As a result,more and more scientists are committed to developing better photosensitizers to enhance the efficiency of PDT in the therapy of microorganisms as well as tumors.The discovery of aggregation-induced emission(AIE)phenomenon provides a novel research direction for the progress of photosensitizer and brings a broader prospect for PDT.This review focuses on the recent progress of photosensitizers(PSs)with AIE properties in PDT from two aspects of anti-microbial and anti-cancer.Among them,anti-microbial aspects were introduced from the perspectives of anti-bacterial,anti-fungal and anti-viral aspects,while anti-cancer aspects were first introduced from the perspective of different target sites of photosensitizers,and then based on the modification of their own structures.Finally,the current limitations,challenges and future development of AIE photosensitizer(AIE-PSs)are clarified in view of the existing strategies and obstacles,so as to promote the development of AIE-PSs in the future clinical applications. | Luojia Chen Xingran Wang Yuncong Yuan Rui Hu Qingrong Chen Lijun Zhu Meijia Gu Chao Shen | 2022 | Engineered Regeneration2022,3,1: | 0 |
| 8 | Relationship between the Level of Serum Golgi Protein 73 and the Risk of Short-term Death in Patients with ALD-ACLF显示文摘Background and Aims:As a hepatocellular carcinoma biomarker,serum Golgi protein 73(GP73)is reportedly related to inflammation.Acute-on-chronic liver failure(ACLF)is characterized by severe systemic inflammation.In this study,we aimed to explore the association between the GP73 level and short-term mortality in patients with alcohol-associated liver disease-related ACLF(ALD-ACLF).Methods:This retrospective cohort study involved 126 Chinese adults with ALD-ACLF.Baseline serum GP73 level was measured using enzymelinked immunosorbent assay.Patients were followed-up for 90 d and outcomes were assessed.Data were analyzed using multivariate Cox regression and piecewise linear regression analyses.The predictive value of GP73 and classic models for the short-term prognosis of participants were evaluated and compared using receiver operating characteristic curves.Results:The serum GP73 level was independently associated with an increased mortality risk in patients with ALD-ACLF.Compared with the lowest tertile,the highest serum GP73 level predisposed patients with ALD-ACLF to a higher mortality risk in the fully adjusted model[at 28 days:hazard ratio(HR):4.29(0.99–18.54),p=0.0511;at 90 days:HR:3.52(1.15–10.79),p=0.0276].Further analysis revealed a positive linear association.GP73 significantly improved the accuracy of the Child-Turcotte-Pugh score,model for end-stage liver disease score,and model for end-stage liver diseasesodium score in predicting short-time prognosis of patients with ALD-ACLF.Conclusions:The serum GP73 level is a significant predictor of the subsequent risk of death in patients with ALD-ACLF.GP73 improved the predictive value of classic prognostic scores. | Jingjing Tong Mingjie Yao Xiuying Mu Leijie Wang Xiajie Wen Xingran Zhai Xiang Xu Yu Wang Jing Chen Xiangwei Zhai Chongdan Guan Fengmin Lu Jinhua Hu | 2022 | Journal of Clinical and Translational Hepatology2022,10,3: | 0 |
| 9 | Numerical simulation of shear band localization in geotechnical materials based on a nonlocal plasticity model显示文摘A new nonlocal plasticity model,which is based on the integral-type nonlocal model and the cubic representative volumetric element(RVE),is proposed to simulate shear band localization in geotechnical materials such as soils and rocks.An algorithm is developed to solve the resulting nonlinear system of equations.In this algorithm,the nonlocal averaging of plastic strain over the RVE is evaluated using C0 elements instead of using C1 elements to solve the second-order gradient of plastic strains.To obtain the average plastic strain,a set of special elements,called the nonlocal elements,are constructed to approximate the RVE.The updating of average stresses of the local element is based on the nonlocal plastic strain of the corresponding nonlocal elements.Numerical examples show that meshindependent results can be achieved using the proposed model and the algorithm,and the thickness of the shear band is insensitive to the mesh refinement. | Shouxin WU Xingran WANG | 2011 | Journal of Modern Transportation2011,19,3: | 0 |