16 research outputs found

    “CALIS重点学科网络资源导航库”标准与规范述评

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    “十五”期间,共54家高校图书馆参与“CALIS重点学科网络资源导航库”项目的导航资源建设工作。为保证信息发现、资源描述等行为的一致性和连续性,项目组制订了相关标准与规范。该文对项目所涉及的标准和规范的建设情况进行了述评、探讨,包括资源选择标准、元数据规范、著录规则和资源类型设定、分类体系的选择等

    学术图书馆学科导航门户资源类型表的设定

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    在对DC和ROADS以及SOSIG、INFOMINE和CSDL等大型学科导航门户对资源类型设定的调研基础上,提出了区分和设定资源类型的原则,并根据该原则设定了适合于CALIS学科导航门户建设的资源类型表

    3D-printed integrative probeheads for magnetic resonance

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    射频探头前端作为核磁共振设备的核心部件之一,极大程度的决定着系统实验性能的优劣。探头前端通常由射频线圈、射频电路及样品检测管道等部分组成。现有的射频线圈制作技术主要是通过手工或机械手段按照所需的线圈形状进行绕制。但是,当线圈结构较为复杂、不规则,或体积尺寸较小时,常规绕制方法便难以满足结构设计和制造的精度需求,因此造成线圈性能的劣化,增大检测区域的射频场不均匀性,对核磁共振检测产生负面影响。本研究中,利用3D打印熔融沉积制造或光敏树脂选择性固化技术精确加工出一体化磁共振探头前端,使用常温液态金属填充线圈模型管路形成射频线圈,搭建出稳定的一体化磁共振射频探头。利用高精度3D打印和液态金属灌注技术制备出包含有射频线圈和定制化样品管道结构在内的一体化磁共振射频探头前端,克服了传统磁共振三维微型线圈成型困难、与样品腔匹配程度差等问题,提高了探头的信噪比,为定制化的磁共振检测提供了新思路。 该工作由厦门大学电子科学与技术学院陈忠教授、游学秋副研究员和孙惠军高级工程师共同指导完成,博士研究生谢君尧为论文第一作者。厦门大学电子科学与技术学院黄玉清高级工程师、王忻昌副教授、倪祖荣助理教授、硕士研究生张德超,化学化工学院杨朝勇教授、博士研究生李星锐,萨本栋微米纳米科学技术研究院陈宏教授为合作作者。【Abstract】Magnetic resonance (MR) technology has been widely employed in scientific research, clinical diagnosis and geological survey. However, the fabrication of MR radio frequency probeheads still face difficulties in integration, customization and miniaturization. Here, we utilized 3D printing and liquid metal filling techniques to fabricate integrative radio frequency probeheads for MR experiments. The 3D-printed probehead with micrometer precision generally consists of liquid metal coils, customized sample chambers and radio frequency circuit interfaces. We screened different 3D printing materials and optimized the liquid metals by incorporating metal microparticles. The 3D-printed probeheads are capable of performing both routine and nonconventional MR experiments, including in situ electrochemical analysis, in situ reaction monitoring with continues-flow paramagnetic particles and ions separation, and small-sample MR imaging. Due to the flexibility and accuracy of 3D printing techniques, we can accurately obtain complicated coil geometries at the micrometer scale, shortening the fabrication timescale and extending the application scenarios.The work is supported by the National Natural Science Foundation of China (Grants U1632274, 11761141010, U1805261, 11475142, 22073078, and 61801411), and China Postdoctoral Science Foundation (2017M622075).研究工作得到国家自然科学基金、中国博士后科学基金等项目支持

    菖蒲对几种常见藻类的化感作用研究

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    自然光照条件下,菖蒲对几种藻类均有化感抑制作用,其中对水华鱼腥藻和小球藻的抑制率分别达100%和91.2%。遮光条件下,菖蒲对各藻类的化感抑制作用受到影响,效果不佳。水华鱼腥藻起始浓度越小,菖蒲种植水对其化感抑制作用越显著。小球藻生长时期越长,越易受菖蒲种植水化感作用的影响

    两种酚酸类化感物质对铜绿微囊藻生长的影响

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    探讨了两种酚酸类化感物质对苯二酚和没食子酸对铜绿微囊藻生长的影响。结果表明,对苯二酚和没食子酸在0.015mg/L和0.1mg/L时,对铜绿微囊藻的作用不明显;随着浓度的增加,两种化感物质对铜绿微囊藻的抑制作用显著增强。没食子酸为2mg/L时,对铜绿微囊藻的抑制率达72.5%,对苯二酚为0.2mg/L时,可完全抑制铜绿微囊藻的生长。对苯二酚和没食子酸对铜绿微囊藻96h半效应浓度EC50分别为0.059mg/L和1.73mg/L。显然,对苯二酚对铜绿微囊藻的作用效果更加显著

    三种湿生植物对微囊藻的化感作用初步分析

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    比较了菖蒲、鸢尾、美人蕉三种湿生植物对铜绿微囊藻的抑制效果。结果表明,对藻的抑制作用菖蒲>鸢尾>美人蕉。用6种有机溶剂提取菖蒲干粉中的抑藻活性物质,显示甲醇提取物的抑藻效果最好,48h抑藻率为98.4%。进一步对甲醇提取物进行分离得到8个组分,每个组分都表现出了抑藻活性,其中前两个组分抑藻活性最大,达99.85%和99.26%

    三种湿生植物对微囊藻的化感作用初步分析

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    比较了菖蒲、鸢尾、美人蕉三种湿生植物对铜绿微囊藻的抑制效果.结果表明,对藻的抑制作用菖蒲>鸢尾>美人蕉.用6种有机溶剂提取菖蒲干粉中的抑藻活性物质,显示甲醇提取物的抑藻效果最好,48h抑藻率为98.4%.进一步对甲醇提取物进行分离得到8个组分,每个组分都表现出了抑藻活性,其中前两个组分抑藻活性最大,达99.85%和99.26%

    两种酚酸类化感物质对铜绿微囊藻生长的影响

    No full text
    探讨了两种酚酸类化感物质对苯二酚和没食子酸对铜绿微囊藻生长的影响.结果表明,对苯二酚和没食子酸在0.015mg/L和0.1mg/L时,对铜绿微囊藻的作用不明显;随着浓度的增加,两种化感物质对铜绿微囊藻的抑制作用显著增强.没食子酸为2mg/L时,对铜绿微囊藻的抑制率达72.5%,对苯二酚为0.2mg/L时,可完全抑制铜绿微囊藻的生长.对苯二酚和没食子酸对铜绿微囊藻96h半效应浓度EC50分别为0.059mg/L和1.73mg/L.显然,对苯二酚对铜绿微囊藻的作用效果更加显著

    Advances of molecular imprinted fluorescence sensing technology and its applications

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    Molecular imprinting is a technique to synthesize molecularly imprinted polymers(MIPs) with specific and selective recognition ability for a given template molecule. As a molecular recognition component, MIPs combined with highly sensitive fluorescent detection to construct molecular imprinting-based fluorescence sensors(MI-FL sensors),which have attracted much attention in the field of trace detection of environmental organic pollutants. According to the expression of fluorescence emission signal, this review introduces the various strategies for MI-FL sensors. The applications of MI-FL sensors in pesticide residues, estrogen, and antibiotic in the environment are described briefly,and the challenges and development are prospected
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