73 research outputs found

    System Error Separation and Revision for Aspheric Lens On-Machine Measurement

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    为了解决非球面在线检测的系统误差问题,针对系统误差产生的机理、误差的数学模型、分离方法以及补偿方法进行了研究.提出一种将空间误差投影到不同平面上进行分析从而解决测量系统误差的新方法并建立了各系统误差的数学模型.根据最小二乘法的基本思想,建立了基于标准球面的系统误差分离数学模型,得到了各参数的最小二乘估计值,并利用误差修正模型进行了校正.利用标准球面进行测量实验,验证了该方法的有效性和精确性.实验结果表明所提出的解决测量系统误差的思路可行,最终可使测量系统精度达到1μM数量级,从而满足精磨阶段在线检测的需要.For the system errors in aspheric lens on-machine measurement,their mechanism,mathematic model,separation and compensation methods were investigated.A new approach of projecting spatial errors onto different planes for eliminating system errors was presented and the mathematic models for system errors were established.Based on the principle of the least square method,system error separation model for standard lens was set up and the least square estimations of the parameters were obtained and revised with error revision model.Measurement tests for standard lens were conducted to verify the effectiveness and precision of the proposed method.Test results indicate that the proposed approach is feasible and the precision of the on-machine measurement is up to 1μm magnitude order,which meets the requirement of fine grinding.国家高技术研究发展计划(863计划)资助项目(2006AA804206);福建省科技创新团队发展计划资助项

    A Control System Design for Welding Oscillator Based on STC Single Chip

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    介绍了基于STC单片机焊接摆动器控制系统的设计,包括电源模块、单片机控制模块、直流电机脉宽调制(PWM)调速模块、红外线二极管检测与放大电路模块、人机交互模块等系统硬件设计,以及用C语言实现的系统软件设计.该系统能够控制焊枪以特定的预置参数进行摆动并配合一台小车进行流水线操作,从而达到自动焊接过程中的特殊要求.通过现场运行,系统稳定,可靠性高,满足工业现场要求.This paper introduces a design of control system of welding oscillator on the basis of STC single chip.It does not only include system hardware design consisting of power module,single-chip control module,module of DC motor speed regulation system of Pulse Width Modulation(PWM),module of infrared diode detection and amplifier circuit,and module of human-computer interaction,but also software design achieved by C.The system is able to control the welding torch that swings with the specific preset parameters and operates with a trolley on the pipeline in order to achieve the special requirements of the automatic welding process.Through on-site operation,the system is stable,high reliable and meets the demands of industrial field

    曲锥前体/内转进气道一体化设计与试验研究

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    介绍了曲锥前体/内转进气道一体化的设计方法,针对进气道侧壁外扩角这一设计因素,设计了具有不同捕获形状的两套一体化构型,并完成了两套模型在马赫数Ma=6.0、0°迎角状态下的风洞试验及数值模拟对比。结果表明,基于该一体化设计方法,曲锥前缘产生的初始入射激波在设计状态下能够完全封闭进气道唇罩,进而起到抑制唇罩溢流和提高一体化构型流量捕获能力的效果。在设计条件下,进气道侧壁外扩角的增加有助于减少侧壁产生的溢流,从而提高一体化构型的流量捕获能力。同时,外扩角的增大将导致下游反压前传速度加快,从而恶化进气道的内部流场并降低一体化构型的反压特性。因此,设计此类一体化构型时,需要考虑外扩角对捕获流量和进气道出口性能的综合影响,选择合适的进气道侧壁外扩角度以达到设计需求。国家自然科学基金项目(51606161,91441128,11602209)中央高校基本科研业务费专项资金项目(20720170055

    Preparation of monoclonal antibodies against 3D protein of EV71 based on HBc particles as expression vector

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    目的:预测肠道病毒71型(EV71)非结构蛋白3D的表位,以HBc蛋白为载体展示多肽,制备并鉴定抗EV71-3D的特异性单克隆抗体(mAb); 。方法:应用生物信息学方法分析预测出EV71; 3D蛋白亲水性和免疫原性指数较高的多肽片段,并运用HBc颗粒型蛋白载体展示肽段,构建多肽融合蛋白,免疫BALB/c雌鼠,通过杂交瘤技术和亲和层析; 技术制备和纯化抗EV71-3D蛋白的特异性mAb,用间接ELISA、ELISPOT、IFA和IHC对mAb的性质进行初步鉴定。结果:构建表达分别; 嵌合3D蛋白34~ 43位氨基酸残基、61~ 76位氨基酸残基、151~; 164位氨基酸残基的HBc重组蛋白,免疫并经过多轮克隆化筛选,获得抗EV71-3D单克隆抗体3E1,其亚类为IgG2a;免疫荧光试验、ELISP; OT法和免疫组织化学染色结果显示其可与EV71特异性结合。结论:成功制备可特异性识别EV71的单克隆抗体3E1,为病毒的检测及进一步研究3D蛋白; 的功能奠定了基础,同时还验证了生物信息学技术与HBc颗粒型载体展示多肽技术相结合可快速高效地制备单克隆抗体。Objective: To prepare and preliminarily identify the monoclonal; antibodies(mAbs) specifically against 3D protein of Enterovirus; 71(EV71),using bioinformatics to predict the epitopes of 3D,with HBc; protein as a carrier.Methods: Artificial screening of 3D protein epitope; sequences by bioinformatic method,inserted into the major immunodominant; region(MIR) area of Hepatitis B virus core protein(HBc),to construct the; recombinant protein.BALB/c mice were immunized with the recombinant; virus like particles(VLPs),to prepare the mAbs against 3D protein of; EV71.Affinity chromatography technology was used to purify the mAb.The; indirect ELISA,ELISPOT,immunofluorescence and immunohistochemistry; staining methods were used to identify the characteristic of the; mAb.Results: We displayed 3D(aa34-43),3D(aa61-76) and 3D(aa151-164); epitopes by constructing fusion protein using HBc VLPs as a vector,after; hybridization,one positive hybridoma cell line(3E1) was selected by; ELISA.The isotype of 3E1 was IgG2a.The results of immunofluorescence and; immunohistochemistry staining assay showed that the mAb 3E1 could; specifically recognize EV71.Conclusion: The prepared mAb 3E1 can; specifically recognizes the EV71,which laid the foundation for the; detection of virus and further study on 3D protein,and verified the; bioinformatics technology combined with HBc carrier displaying peptides; could prepare mAb quickly and efficiently.国家自然科学基金项

    Investigation of Structures of the Self-assembled Pseudorotaxane of Cucurbiturils with Some Alkyldiamines

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    以1H核磁共振技术和X射线单晶衍射分析方法考察了 3种瓜环与长链二胺 ( 1,7 庚二胺与 1,8 辛二胺 )相互作用的结构特征 .1HNMR分析表明瓜环 (Q[6]和Q[7] )与有机二胺 ( 1,7 庚二胺与 1,8 辛二胺 )有较强的相互作用 ,形成自组装类轮烷结构 ;Q[8]与 1,7 庚二胺与 1,8 辛二胺之间相互作用力相对较弱 ;晶体结构测定结果表明 ,六元瓜环与辛二胺自组装形成的类轮烷实体中 ,辛二胺是以直链状穿过六元瓜环的空腔 ,两配位氨基留在瓜环两端口之外 .The structures of self-assembled pseudorotaxane of cucurbit[n]urils(n=6~8) with some alkyldiamines have been investigated by 1H NMR technique and single crystal X-ray diffraction method. The results reveal that the interaction between cucurbit[6]uril or cucurbit[7]uril and 1,7-diaminoheptane or 1,8-diaminooctane is stronger than that between cucurbit[8]uril and 1,7-diaminoheptane or 1,8-diaminooctane, and the pseudorotaxanes of cucurbit[n]urils with the alkyldiamines were observed. Particularly, in the pseudorotaxane of cucurbit[6]uril with 1,8-diaminooctane, the amino groups of 1,8-diaminooctane are left outside the ports of cucurbit[6]uril.国家自然科学基金(No.200261002);; 贵州省重点基金(No.20023004);; 贵州省国际合作(No.200211003)资助项目

    Effect of Flue-gas Cleaning Devices on Mercury Emission From Coal-fired Boiler

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    为研究燃煤锅炉烟气净化设施对汞排放特性的影响,采用Ontario-Hydro方法,对设有催化脱硝、静电除尘、海水脱硫的300MW燃煤锅炉排放烟气中汞的含量与形态进行分析,同时测定锅炉的煤、底渣、飞灰等固体样品以及脱硫塔前后、曝气之后海水样品中的汞含量。实验结果为:烟气中的气态汞占总汞的79.1%以上,脱硝催化剂对汞的价态具有强烈的转化作用,烟气中83.4%的气态Hg0被氧化成气态Hg2+;静电除尘对颗粒态汞的去除率几乎达到100%;在脱硫塔中,海水对烟气中汞的洗脱率高达73.6%,曝气后排放前的海水中含汞量是新鲜海水的5.5倍。研究表明锅炉烟气净化设施对汞的排放特性有着重要的影响。In order to study the effect of flue-gas cleaning devices on mercury emission from coal-fired boiler, Ontario-Hydro method had been applied to determine the mercury concentration and speciation in the flue-gas emitted from a 300MW coal-fired boiler, which was equipped with various pollution control devices, including selective catalyst reduction (SCR) De-NOx system, electrostatic precipitator (ESP), and flue-gas seawater De-SO2 system (FGD). Mercury concentration in raw coal, bottom ash and fly ash of the boiler, seawater at the inlet and outlet of SO2 absorption reactor and the drainage of aeration sink, were also analyzed. The results indicate that the percentage of gaseous mercury in total mercury discharged is more than 79.1%. De-NOx catalyst strongly affects the mercury speciation transformation, showing a conversion rate of 83.4% for Hg0 to Hg2+. The removal efficiency of particulate mercury by ESP is close to 100%. With seawater FGD, the removal efficiency of mercury is as high as 73.6%. The mercury concentration in the seawater of drainage from aeration sink is 5.5 times higher than that in fresh seawater. The study shows that the flue-gas cleaning devices in coal-fired power plant play an important role on mercury emission characterization

    急性脑卒中患者的记忆障碍与肽类物质的关系

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    本实验对12例缺血性脑血管病(ICVD)患者及12例对照者和12例正常健康对照者进行了临床记忆量表检查,并测定了患者及对照者的CSF、VIP及SS含量。结果:(1) ICVD患者的记忆总分及MQ均显著低于两个对照组;分项测试中联想学习,图像自由回忆成绩亦显著降低。(2) ICVD患者CSF SS含量显著低于对照组。(3) ICVD患者CSF SS含量与MQ呈显著正相关。本结果提示ICVD患者有不同程度的记忆障碍,SS与记忆有关,测定CSF SS对患者记忆状况的判断有参考价值

    Atomic structures of enterovirus D68 in complex with two monoclonal antibodies define distinct mechanisms of viral neutralization

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    11月5日,《自然》子刊《自然•微生物学》(Nature Microbiology)在线刊出了我校夏宁邵教授团队发表的题为“Atomic Structures of Enterovirus D68 in Complex with Two Monoclonal Antibodies Define Distinct Mechanisms of Viral Neutralization”的研究论文。这是夏宁邵教授团队在《自然•通讯》(Nature Communications,2017)、《科学•进展》(Science Advances,2018)上发表手足口病重要病原体CVA6、CVA10研究论文之后的又一项关于肠道病毒的重要研究成果。该研究通过解析肠道病毒D组68型(EV-D68)不同类型病毒颗粒及其免疫复合物的高分辨率结构,系统阐明了EV-D68病毒的生活周期及各时期的病毒中和机制,进一步完善了小RNA病毒的吸附入胞及感染机制理论,为EV-D68新型疫苗、抗病毒治疗药物的研发提供重要的理论指导。该研究依托电镜技术平台,解析了EV-D68病毒生活周期中的三种代表性颗粒成熟颗粒、脱衣壳中间态和前体病毒衣壳的近原子分辨率结构,阐明了三种病毒颗粒间的结构差异,以及成熟颗粒转变为脱衣壳中间态的分子机制。夏宁邵教授、李少伟教授、程通副教授和美国国立卫生研究院(NIH)高级研究员Barney Graham博士为该论文的共同通讯作者。郑清炳工程师、博士生朱瑞、博士后徐龙发、博士生何茂洲和美国加州大学圣地亚哥分校颜晓东博士为该论文共同第一作者。【Abstract】Enterovirus D68 (EV-D68) undergoes structural transformation between mature, cell-entry intermediate (A-particle) and empty forms throughout its life cycle. Structural information for the various forms and antibody-bound capsids will facilitate the development of effective vaccines and therapeutics against EV-D68 infection, which causes childhood respiratory and paralytic diseases worldwide. Here, we report the structures of three EV-D68 capsid states representing the virus at major phases. We further describe two original monoclonal antibodies (15C5 and 11G1) with distinct structurally defined mechanisms for virus neutralization. 15C5 and 11G1 engage the capsid loci at icosahedral three-fold and five-fold axes, respectively. To block viral attachment, 15C5 binds three forms of capsids, and triggers mature virions to transform into A-particles, mimicking engagement by the functional receptor ICAM-5, whereas 11G1 exclusively recognizes the A-particle. Our data provide a structural and molecular explanation for the transition of picornavirus capsid conformations and demonstrate distinct mechanisms for antibody-mediated neutralization.This work was supported by a grant from the National Science and Technology Major Projects for Major New Drugs Innovation and Development (no. 2018ZX09711003-005-003), the National Science and Technology Major Project of Infectious Diseases (no. 2017ZX10304402-002-003), the National Natural Science Foundation of China (no. 81401669 and 81801646) and the Natural Science Foundation of Fujian Province (no. 2015J05073). This work was supported in part by funding by the National Institutes of Health (grants R37-GM33050, GM071940, DE025567 and AI094386). We acknowledge the use of instruments at the Electron Imaging Center for Nanomachines supported by UCLA and by instrumentation grants from the NIH (1S10RR23057 and 1U24GM116792) and NSF (DBI-1338135 and DMR-1548924). 该研究获得了国家自然科学基金、新药创制国家科技重大专项、传染病防治国家科技重大专项和美国国立卫生研究院基金的资助

    Discovery and structural characterization of a therapeutic antibody against coxsackievirus A10

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    9月20日,《科学》子刊《科学•进展》(Science Advances)刊出了我校夏宁邵教授团队发表的题为“Discovery and structural characterization of a therapeutic antibody against coxsackievirus A10”的研究论文。该研究首次发现手足口病重要病原体柯萨奇病毒A组10型(CVA10)不同类型病毒颗粒共有的优势中和表位,揭示了病毒颗粒及其与优势中和抗体复合物的精确三维结构,阐明了中和抗体的功能与作用机制,为新型疫苗和治疗药物的研制提供了重要的理论基础。 该研究首次揭示并描绘了CVA10的病毒颗粒及其优势中和表位的精确特征,发现了具有良好应用潜能的治疗性中和抗体,为新型疫苗和特异性治疗药物的研究提供了关键基础。 我校夏宁邵教授、程通副教授和美国加州大学洛杉矶分校纳米系统研究所Z. Hong Zhou(周正洪)教授、美国加州大学圣地亚哥分校颜晓东博士为该论文的共同通讯作者。我校博士生朱瑞、徐龙发博士后、郑清炳工程师、李少伟教授和美国加州大学洛杉矶分校崔彦祥博士后为该论文共同第一作者。【Abstract】Coxsackievirus A10 (CVA10) recently emerged as a major pathogen of hand, foot, and mouth disease and herpangina in children worldwide, and lack of a vaccine or a cure against CVA10 infections has made therapeutic antibody identification a public health priority. By targeting a local isolate, CVA10-FJ-01, we obtained a potent antibody, 2G8, against all three capsid forms of CVA10. We show that 2G8 exhibited both 100% preventive and 100% therapeutic efficacy against CVA10 infection in mice. Comparisons of the near-atomic cryo–electron microscopy structures of the three forms of CVA10 capsid and their complexes with 2G8 Fab reveal that a single Fab binds a border region across the three capsid proteins (VP1 to VP3) and explain 2G8’s remarkable cross-reactivities against all three capsid forms. The atomic structures of this first neutralizing antibody of CVA10 should inform strategies for designing vaccines and therapeutics against CVA10 infections.This work was supported by grants from the National Science and Technology Major Projects for Major New Drugs Innovation and Development (2018ZX09711003-005-003), the National Science and Technology Major Project of Infectious Diseases (2017ZX10304402-002-003), the National Natural Science Foundation of China (31670933 and 81801646), and the National Institutes of Health (R37-GM33050, GM071940, DE025567, and AI094386). We acknowledge the use of instruments at the Electron Imaging Center for Nanomachines supported by the University of California, Los Angeles and by instrumentation grants from NIH (1S10RR23057 and 1U24GM116792) and NSF (DBI-1338135 and DMR-1548924). 该研究获得了国家自然科学基金、新药创制国家科技重大专项、传染病防治国家科技重大专项和美国国立卫生研究院基金的资助

    Investigation of structures of the self-assembled pseudorotaxane of cucurbiturils with some alkyldiamines

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    The structures of self-assembled pseudorotaxane of cucurbit [n] urils ( n = 6 similar to 8) with some alkyldiamines have been investigated by H-1 NMR technique and single crystal X-ray diffraction method. The results reveal that the interaction between cucurbit[6]uril or cucurbit[7]uril and 1,7-diaminoheptane or 1,8-diaminooctane is stronger than that between cucurbit[ 8] uril and 1,7-diaminoheptane or 1, 8-diaminooctane, and the pseudorotaxanes of cucurbit[n] urils with the alkyldiamines were observed. Particularly, in the pseudorotaxane of cucurbit [6] uril with 1, 8-diaminooctane, the amino groups of 1, 8-diaminooctane are left outside the ports of cucurbit [6] uril
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