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| 1 | Red and Blue Lights Significantly Affect Photosynthetic Properties and Ultrastructure of Mesophyll Cells in Senescing Grape Leaves显示文摘Light quality significantly affects photosynthetic efficiency in plants. The mechanisms for how light quality affects photosynthesis in grape is poorly understood. Therefore, to investigate the effects of different light qualities on chloroplast ultrastructure and photosynthesis efficiency, two grape cultivars ‘Italia'(slower speed of leaf senescence) and ‘Centennial Seedless'(faster speed of leaf senescence) grown under protected and delayed conditions were used. The three treatments, replicated three times, were control(no supplemental lighting), red light and blue light. Chlorophyll content, net photosynthetic rate, and the ratio of F_v/F_m significantly increased in red light relative to the control. The opposite trend was observed in blue light in the early phase of leaf senescence. At later stages, physiological indexes were gradually higher than that of control, resulting in a delay in leaf senescence. Compared to the control, red and blue light both significantly increased the chlorophyll a/b ratio. Electron microscopy showed that blue light caused severe damage to the fine structure of chloroplasts at early stages of leaf senescence, but effects at later stages of leaf senescence became less severe compared to the control. The degradation of chloroplast ultrastructure was apparently delayed in red light throughout the experimental timeframe compared to other treatments. In this experiment, ‘Italia' showed higher chlorophyll content, net photosynthetic rate, ratios of F_v/F_m, chlorophyll a/b and better preserved chloroplast ultrastructure relative to ‘Centennial Seedless', resulting in a slower rate of leaf senescence. | WANG Shuai WANG Xiaodi SHI Xiangbin WANG Baoliang ZHENG Xiaocui WANG Haibo LIU Fengzhi | 2016 | Horticultural Plant Journal2016,2,2: | 10 |
| 2 | Hydroisomerization performance of platinum supported on ZSM-22/ZSM-23 intergrowth zeolite catalyst显示文摘Hydroisomerization catalysts Pt/ZSM-22,Pt/ZSM-23,and Pt/ZSM-22/ZSM-23 were prepared by supporting Pt on ZSM-22,ZSM-23,and intergrowth zeolite ZSM-22/ZSM-23,respectively.The typical physicochemical properties of these catalysts were characterized by X-Ray Diffraction(XRD),N2 absorption-desorption,Pyridine-Fourier Transform Infrared(Py-FTIR),Transmission Electron Microscopy(TEM),X-Ray Fluorescence(XRF),Scanning Electron Microscopy(SEM) and NH3-Temperature Programmed Desorption(NH3-TPD),and the performance of these catalysts in n-dodecane hydroisomerization was evaluated in a continuous down-flow fixed bed with a stainless steel tubular reactor.The characterization results indicated that the intergrowth zeolite ZSM-22/ZSM-23 possessed the dual structure of ZSM-22 and ZSM-23,and the catalyst Pt/ZSM-22/ZSM-23 had similar pores and weak acidity to Pt/ZSM-22 and Pt/ZSM-23 catalysts.Moreover,Pt/ZSM-22/ZSM-23 catalyst showed a high selectivity in hydroisomerization of long chain n-alkanes to mono-branched isomers.The evaluation results for n-dodecane hydroisomerization indicated that the activity of Pt/ZSM-22/ZSM-23 was the lowest,while the hydroisomerization selectivity was the highest among the three catalysts.The maximum yield of i-dodecane product was 68.3% over Pt/ZSM-22/ZSM-23 at 320 oC. | Chi Kebin Zhao Zhen Tian Zhijian Hu Sheng Yan Lijun Li Tianshu Wang Bingchun Meng Xiangbin Gao Shanbin Tan Mingwei Liu Yanfeng | 2013 | Petroleum Science2013,10,2: | 8 |
| 3 | Variability in the composition and export of silica in the Huanghe River Basin显示文摘Concentrations of suspended particle material(SPM), dissolved silicate(DSi), biogenic silica(BSi), phytoliths(plant produced siliceous microscopic structures), and other parameters were analyzed to examine the influence of both natural processes and human activities on silica delivery to the estuary of the Huanghe River(Yellow River). Our results indicate that the concentrations of DSi in the river decreased significantly since 1986. Approximately 34% of dissolved silica was trapped in the basin between 1986 and 2010 due to a reduction of soil erosion. Phytoliths comprised 67.2%–96.3% of BSi, with the smoothing bar type being the dominant form. Concentrations of BSi are significantly higher in the Huanghe River compared to other major rivers throughout the world due to its high sediment yield. We also found that the ratios of BSi/(BSi+DSi) and BSi/SPM were approximately 0.5 and 0.003 at Lijin near the river mouth, indicating that BSi carried in suspension by the Huanghe River was an important component of the rivers silica load. Significant amounts of BSi were also composed of phytoliths in Bohai Sea sediments near the Huanghe River estuary with the smoothing bar form again being the most abundant. The relatively high specific fluxes of BSi in the Huanghe River reflect its high turbidity and high erosion rates in the basin. The high sediment load originating on the Loess Plateau is likely responsible for the higher BSi flux, in agreement with a general trend of increasing BSi flux with increasing sediment flux in global river systems. This study demonstrates that BSi transported by rivers can be composed largely of phytoliths originating from the erosion of topsoils. The flux of phytoliths in river's suspended sediment load may therefore represent a significant contribution to the biogeochemical cycle of silica in coastal waters. | RAN XiangBin CHE Hong ZANG JiaYe YU YongGui LIU Sen ZHENG LiLi | 2015 | Science China Earth Sciences2015,58,11: | 7 |
| 4 | A probabilistic risk assessment framework considering lane-changing behavior interaction显示文摘Understanding the dynamic characteristics of surrounding vehicles and estimating the potential risk of mixed traffic can help reliable autonomous driving.However,the existing risk assessment methods are challenging to detect dangerous situations in advance and tackle the uncertainty of mixed traffic.In this paper,we propose a probabilistic driving risk assessment framework based on intention identification and risk assessment of surrounding vehicles.Firstly,we set up an intention identification model(IIM)via long short-term memory(LSTM)networks to identify the intention possibility of the surrounding vehicles.Then a risk assessment model(RAM)based on the driving safety field is employed to output the potential risk.Specifically,driving safety field can reflect the coupling relationship of drivers,vehicles,and roads by analyzing their interaction.Finally,an integrated risk evaluation model combining both IIM and RAM is developed to form a dynamic potential risk map considering multi-vehicle interaction.For example,in a typical but challenging lane-changing scenario,an intelligent vehicle can assess its driving status by calculating a risk map in real time that represents the risk generated by the estimated intentions of surrounding vehicles.Furthermore,simulations and naturalistic driving experiments are conducted in the extracted lane-changing scenarios,and the results verify the effectiveness of the proposed model considering lane-changing behavior interaction. | Heye HUANG Jianqiang WANG Cong FEI Xunjia ZHENG Yibin YANG Jinxin LIU Xiangbin WU Qing XU | 2020 | Science China(Information Sciences)2020,63,9: | 6 |
| 5 | Response of the sediment geochemistry of the Changjiang River(Yangtze River) to the impoundment of the Three Gorges Dam显示文摘Based on the measurement of major and trace elements in suspended sediments in the low reaches of the Changjiang River during throughout a whole hydrologic year, the origins, seasonal variations, and fluxes of multielements and the human impacts on multielements transport processes have been analyzed along with the influence of weathering in the Changjiang River basin. The results show that most element contents were high in both autumn and winter and low in summer, which was largely caused by the dilution of discharge. Weathering detritus in the Changjiang River basin is the main source of most elements in suspended sediments. However, riverine pollution could bring more loadings of Cd, Pb, As and Zn into river water than it did a few decades ago. The annual average fluxes of Cd, Pb and Zn, which are major contamination elements, to the sea were 179 ± 21 tons/year, 7810 ± 675 tons/year, and 12,000 ± 1320 tons/year,respectively, in which approximately 8.7%, 11.9% and 2.7% of their loadings, respectively,were contributed by pollution inputs. Element exports mainly occurred in the summer(44.4%–57.4%) in the lower part of the Changjiang River. A general relationship between sediment retention and element content suggests a positive feedback mechanism for the decreased number of particles, in which element riverine loadings are reduced due to the enhanced trapping effect by the Three Gorges Dam(TGD). Compared to those in 1980,current element shares of the Changjiang River compared to the global budget have declined due to the construction of the TGD. | Hao Wang Xiangbin Ran Jingxi Li Jun Liu Wentao Wu Menglu Li Jiaye Zang | 2019 | Journal of Environmental Sciences2019,31,9: | 6 |
| 6 | The biogenic silica composition, behavior and budget in the Changjiang Estuary显示文摘Three comprehensive surveys were performed in the Changjiang(Yangtze River) Estuary(CJE) to understand the biogenic silica(BSi) composition, behavior and budget. It is indicated that the BSi is composed of phytoliths,phytoplankton and sponges; phytolith BSi has 16 forms and account for 23% to 83% of the bulk BSi in the maximum turbidity zone. The budget shows that the major exogenous BSi source in the water column of the CJE is the riverine input, accounting for 95% of the total BSi input. Dominant processes that maintain BSi levels in the water column are the primary production(55 Gmol/a) and the subsequent BSi sedimentation(46 Gmol/a); and the BSi pool produced by the primary production represents two point three times the BSi loading of the Changjiang River and 63% of the BSi output, respectively. The net export(26 Gmol/a) of BSi from the CJE to the East China Sea and Yellow Sea roughly equals the riverine BSi loading. The observed total accumulation of BSi is one point seven times larger than the loading of total BSi output, with 53% to 88% of phytolith BSi and their assemblage, indicating that there has already been a 'filter' of terrestrial BSi. The reverse weathering in sediments is an important process for the reactive silica removal in the CJE due to authigenic alterations. It is indicated that the phytolith fluxes in the suspended load represent a significant BSi source in the estuary, and the CJE would act as a net BSi sink. | RAN Xiangbin LIU Jun LIU Sen ZANG Jiaye WANG Baodong ZHAO Jun | 2018 | Acta Oceanologica Sinica2018,37,1: | 3 |
| 7 | Inflammasomes as therapeutic targets in human diseases显示文摘Inflammasomes are protein complexes of the innate immune system that initiate inflammation in response to either exogenous pathogens or endogenous danger signals.Inflammasome multiprotein complexes are composed of three parts:a sensor protein,an adaptor,and pro-caspase-1.Activation of the inflammasome leads to the activation of caspase-1,which cleaves pro-inflammatory cytokines such as IL-ip and IL-18,leading to pyroptosis.Effectors of the inflammasome not only provide protection against infectious pathogens,but also mediate control over sterile insults.Aberrant inflammasome signaling has been implicated in the development of cardiovascular and metabolic diseases,cancer,and neurodegenerative disorders.Here,we review the role of the inflammasome as a double-edged sword in various diseases,and the outcomes can be either good or bad depending on the disease,as well as the genetic background.We highlight inflammasome memory and the two-shot activation process.We also propose the M-and N-type inflammation model,and discuss how the inflammasome pathway may be targeted for the development of novel therapy. | Yangxin Li Hui Huang Bin Liu Yu Zhang Xiangbin Pan Xi-Yong Yu Zhenya Shen Yao-Hua Song | 2021 | Signal Transduction and Targeted Therapy2021,6,8: | 3 |
| 8 | Stem cell-derived exosomes repair ischemic muscle injury by inhibiting the tumor suppressor Rbl-mediated NLRP3 inflammasome pathway显示文摘Dear Editor,Lower-limb ischemia is a serious clinical condition affecting many patients world-wide and there is no effective therapy.Ischemia activates the NLRP3 inflammasome,which triggers tissue damage by releasing inflammatory cytokines including IL-1β and IL-18.1 However,the molecular mechanisms underlying activation of the NLRP3 inflammasome remain largely unknown. | Yanli Wang Wenping Xie Bin Liu Hui Huang Wei Luo Yu Zhang Xiangbin Pan Xi-Yong Yu Zhenya Shen Yangxin Li | 2021 | Signal Transduction and Targeted Therapy2021,6,4: | 3 |
| 9 | Geochemistry, Petrology and Mineralogy of Coal Measure Shales in the Middle Jurassic Yanan Formation from Northeastern Ordos Basin, China: Implications for Shale Gas Accumulation显示文摘The Jurassic Yanan Formation is one of the most important coal-producing formations and hydrocarbon source rocks in the Ordos Basin, North China. To evaluate the shale gas potential of the Yanan shale, a total of 48 samples from north Ordos Basin were sampled, and their geochemical, petrological, mineralogical and pore characteristics were investigated. It was found that the shale samples are a suite of early mature source rock. The total organic carbon(TOC) content ranges from 0.33% to 24.12% and the hydrogen index(HI) ranges from 43.31 mg/g to 330.58 mg/g. The relationship between Tmax and HI indicates the organic matter is type Ⅱ-Ⅲ. This conclusion is also supported by the organic petrological examination results, which shows that the kerogen is mainly liptinite and vitrinite. Minerals in the samples are composed mainly of quartz, clay and feldspar, and the clay minerals are composed of prevailing kaolinite, illite/smectite, chlorite and a small amount of illite. Under scanning electron microscope, OM pores in the Yanan shale are scarce except pores come from the kerogen intrinsic texture or clay aggregates within the organic particles. As the weak compaction caused by shallow burial depth, interparticle pores and intraparticle pores are common, the hydrocarbon storage capacity of the Yanan shale was improved. According to evaluation, the Yanan shale is considered as a good shale gas reservoir, but its hydrocarbon potential is more dependent on biogenic and coal-derived gas as the thermogenic gas is limited by the lower thermal maturity. | CHEN Qian YAN Xiangbin GUO Yuanling HONG Taiyuan NIE Haikuan ZHANG Jinchuan TANG Xuan LI Wanjun LIU Chong | 2018 | Acta Geologica Sinica(English Edition)2018,92,6: | 2 |
| 10 | Structure Fuzzy Optimum Design of Offshore Jacket Platforms 显示文摘 | Kang Haigui Zhai Gangiun Liu Xiangbin | 2001 | ISOPE-2001,,1: | 1 |
| 11 | A fully biodegradable polydioxanone occluder for ventricle septal defect closure显示文摘Ventricular septal defect(VSD)is one of the commonest congenital heart diseases(CHDs).Current occluders for VSD treatment are mainly made of nitinol,which has the risk of nickel allergy,persistent myocardial abrasion and fatal arrythmia.Herein,a fully biodegradable polydioxanone(PDO)occluder equipped with a shape line and poly-L-lactic acid PLLA membranes is developed for VSD closure without the addition of metal marker.PDO occluder showed great mechanical strength,fatigue resistance,geometry fitness,biocompatibility and degradability.In a rat subcutaneous implantation model,PDO filaments significantly alleviated inflammation response,mitigated fibrosis and promoted endothelialization compared with nitinol.The safety and efficacy of PDO occluder were confirmed in a canine VSD model with 3-year follow-up,demonstrating the biodegradable PDO occluder could not only effectively repair VSD,induce cardiac remodeling but also address the complications associated with metal occluders.Furthermore,a pilot clinical trial with five VSD patients indicated that all the occluders were successfully implanted under the guidance of echocardiography and no adverse events occurred during the 3-month follow-up.Collectively,the fully bioresorbable PDO occluder is safe and effective for clinical VSD closure and holds great promise for the treatment of structural CHDs. | Zefu Li Pengxu Kong Xiang Liu Shuyi Feng Wenbin Ouyang Shouzheng Wang Xiaopeng Hu Yongquan Xie Fengwen Zhang Yuxin Zhang Rui Gao Weiwei Wang Xiangbin Pan | 2023 | Bioactive Materials2023,,6: | 1 |
| 12 | Light-Induced Heat Driving Active Ion Transport Based on 2D MXene Nanofluids for Enhancing Osmotic Energy Conversion显示文摘Osmotic energy from the ocean,also called blue energy,serves as a clean,renewable,and vast energy source for the energy demands of the world.Reverse electrodialysis-based blue energy harvesting via ion-selective membranes,by the regulation and manipulation of directional ion transport,has been greatly developed recently.In particular,light has been employed to enhance directional ion transport for energy conversion through an increase in photo-induced surface charge.Here,the authors demonstrate a novel nanofluidic regulation strategy based on the phenomenon of light-induced heat-driven active ion transport through the lamellar MXene membrane.Due to the great light-induced heat effect,a temperature gradient appears as soon as illumination is applied to an off-center position,inducing an actively temperature gradient-driven ionic species transport.By employing this phenomenon,the authors conducted light-induced heat-enhanced osmotic energy conversion and doubled the osmotic energy conversion power density.This study has extended the scope of light-enhanced osmotic energy conversion and could further bring other photothermal materials into this field.Furthermore,the proposed system provides a new avenue of light-controlled ionic transport for ion gathering,desalination,and energy conversion applications. | Pei Liu Teng Zhou Yunfei Teng Lin Fu Yuhao Hu Xiangbin Lin Xiang-Yu Kong Lei Jiang Liping Wen | 2021 | CCS Chemistry2021,3,4: | 1 |
| 13 | Immersion and invariance adaptive control of nonlinearly parameterized nonlinear systems\显示文摘 | LIU Xiangbin ORTEGA R SU Hongye | 2010 | IEEE Transactions on Automatic Control2010,55,9: | 1 |
| 14 | Separating algorithm for cell image based on boundary2stripped 显示文摘 | Liu Xiangbin Zou Beiji Hu Fengsong | 2002 | Journal of Image and Graphics ( A)2002,7,3: | 1 |
| 15 | 显示文摘 | Liu Shijian Zeng Xiangbin Chu Junhao | 2004 | Microelectronics Journal2004,35,7: | 1 |
| 16 | Thermal-sensitive BST thin film capacitors for dielectric bolometer prepared by RF magnetron sputtering显示文摘 | Liu Shijian Zeng Xiangbin Chu Junhao | 2004 | Microelectronics Journal2004,35,7: | 1 |
| 17 | Reflection Loss is a Parameter for Film,not Material显示文摘In studies of microwave absorption in the current literature,theories such as reflection loss,impedance matching,the delta function,and the quarter-wavelength model have been inappropriately applied.As shown in this case study,these problems need to be corrected as they are representative of similar work in the literature. | Ying Liu Xiangbin Yin Michael G.B.Drew Yue Liu | 2023 | Non-Metallic Material Science2023,5,1: | 1 |
| 18 | Ribosome biogenesis in disease:new players and therapeutic targets显示文摘The ribosome is a multi-unit complex that translates mRNA into protein.Ribosome biogenesis is the process that generates ribosomes and plays an essential role in cell proliferation,differentiation,apoptosis,development,and transformation.The mTORC1,Myc,and noncoding RNA signaling pathways are the primary mediators that work jointly with RNA polymerases and ribosome proteins to control ribosome biogenesis and protein synthesis.Activation of mTORC1 is required for normal fetal growth and development and tissue regeneration after birth.Myc is implicated in cancer development by enhancing RNA Pol II activity,leading to uncontrolled cancer cell growth.The deregulation of noncoding RNAs such as microRNAs,long noncoding RNAs,and circular RNAs is involved in developing blood,neurodegenerative diseases,and atherosclerosis.We review the similarities and differences between eukaryotic and bacterial ribosomes and the molecular mechanism of ribosome-targeting antibiotics and bacterial resistance.We also review the most recent findings of ribosome dysfunction in COVID-19 and other conditions and discuss the consequences of ribosome frameshifting,ribosome-stalling,and ribosome-collision.We summarize the role of ribosome biogenesis in the development of various diseases.Furthermore,we review the current clinical trials,prospective vaccines for COVID-19,and therapies targeting ribosome biogenesis in cancer,cardiovascular disease,aging,and neurodegenerative disease. | Lijuan Jiao Yuzhe Liu Xi-Yong Yu Xiangbin Pan Yu Zhang Junchu Tu Yao-Hua Song Yangxin Li | 2023 | Signal Transduction and Targeted Therapy2023,8,2: | 1 |
| 19 | Analysis on velocity characteristics of cavitation flow around hydrofoil显示文摘 | Ei Xiangbin Liu Shuyan Wang guoyu | 2010 | Journal of China Ordnance2010,37,6: | 1 |
| 20 | Thermal-sensitive BST thin film capacitors for dielectric bolometer prepared by RF magnetron sputtering 显示文摘 | Liu Shijian Zeng Xiangbin Chu Junhao | 2004 | Microelectronics Journal2004,35,7: | 1 |