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MRI: Acquisition of a Confocal Laser Scanning Microscope to Enable Undergraduate Research and Research Training across Disciplines

MRI: Acquisition of a Confocal Laser Scanning Microscope to Enable Undergraduate Research and Research Training across Disciplines
MRI:购买共焦激光扫描显微镜以实现跨学科的本科研究和研究培训
批准号:
1428875
负责人:
Elizabeth Glogowski
金额:
$45.96万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-08-15 至 2015-07-31

项目摘要

项目成果

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中文摘要
翻译
非技术性:这种共聚焦激光扫描显微镜的收购使新的研究计划,在材料科学,生物学和化学系在威斯康星州-欧克莱尔大学。 该仪器显著扩展了大学跨学科材料科学中心的成像能力,并用于解决智能悬浮、超导磁体、植物光响应、线虫细胞内运动、神经细胞相互作用、荧光染料开发和纳米材料等研究领域的问题。 该工具还用于扩大硬材料,软材料,纳米材料和细胞生物学的本科生研究培训工作,重点是STEM学科中代表性不足的学生。 该仪器通过材料表征,发育生物学和研究方法等课程进一步融入材料科学和生物学的本科实验室课程。材料科学中心现有的工业合作和K12外展工作也使用该系统。技术:威斯康星大学欧克莱尔分校的这台共聚焦激光扫描显微镜为跨学科教师提供了新的研究方向,为STEM本科生提供了最相关的研究和研究培训经验,有助于为未来招募高质量的研究人员,并与邻近的机构和行业进行合作。主要研究人员和高级人员的研究跨越多个学科,包括跨学科的材料科学中心,生物系和化学系。目前的材料科学项目包括:(1)胶体凝胶的研究,既用于基础分子相互作用研究,也用于诸如催化剂载体和膜的应用,使用温度控制的共聚焦荧光显微镜从用于静止凝胶的共聚焦z-堆叠生成3D重建,并且使用快速共振扫描用于流动下的胶体悬浮液的颗粒跟踪,以及(2)使用高Z分辨率共焦反射高度图表征低温和高温超导体的断裂表面,这将有助于评估复合股线微观结构在整个线断裂韧性中的作用。当前生物学主要研究项目包括:(1)利用活植物细胞中的高分辨率亚细胞荧光蛋白成像和同时检测多个荧光团以确定共定位和Förster共振能量转移实验,探索植物中的光响应途径,(2)荧光-用快速共振扫描共聚焦荧光显微镜和亚细胞定位标记线虫纤毛成分,使用高分辨率共聚焦荧光显微镜定位多个荧光团。其他项目包括:(1)使用3D共聚焦荧光成像研究荧光稀土离子结合的多肽聚集体,(2)使用高分辨率快速共振扫描共聚焦显微镜和环境控制的活细胞成像和细胞相互作用的动力学研究,以及(3)通过使用共聚焦荧光显微镜对活细胞进行染色和3D成像来测试新的位点选择性荧光染料。
英文摘要
Non-technical: The acquisition of this confocal laser scanning microscope enables new research programs in the Materials Science, Biology, and Chemistry departments at the University of Wisconsin - Eau Claire. The instrument significantly expands the imaging capabilities of the University's interdisciplinary Materials Science Center, and is used to solve problems in research areas such as smart suspensions, superconducting magnets, plant light responses, movement within nematode cells, neural cell interactions, fluorescent dye development, and nanomaterials. The instrument is also used to expand undergraduate research training efforts in hard materials, soft materials, nanomaterials and cellular biology, with an emphasis on underrepresented students in the STEM disciplines. The instrument is further integrated into the undergraduate lab curriculum of Materials Science and Biology, through courses such as Materials Characterization, Developmental Biology, and Research Methods. Existing industrial collaborations and K12 outreach efforts in the Materials Science Center also utilize this system.Technical: This Confocal Laser Scanning Microscope at the University of Wisconsin-Eau Claire enables new research directions for faculty across disciplines, provides the most relevant research and research training experiences for STEM undergraduates, helps recruit high-quality researchers for the future, and enables collaborations with neighboring institutions and industry. The research of the principal investigators and senior personnel spans multiple disciplines, including the interdisciplinary Materials Science Center, Biology Department, and Chemistry Department. Current Materials Science projects include: (1) investigation of colloidal gels, both for fundamental molecular interactions research and for applications such as catalyst supports and membranes, using temperature-controlled confocal fluorescence microscopy to generate 3D reconstructions from confocal z-stacks for quiescent gels and fast resonant scanning for particle tracking of colloidal suspensions under flow, and (2) the characterization of fracture surfaces of low temperature and high temperature superconductors using high z resolution confocal reflectance height maps, which will help assess the role of the composite strand microstructure in the overall wire fracture toughness. Current Biology principal investigator projects include: (1) exploration of light response pathways in plants using high resolution subcellular fluorescent protein imaging in living plant cells and simultaneous detection of multiple fluorophores for determination of co-localization and Förster resonance energy transfer experiments, and (2) investigation of the movement of fluorescent-tagged components of the cilia of nematodes using fast resonant scanning confocal fluorescence microscopy and subcellular localization and co-localization of multiple fluorophores using high resolution confocal fluorescence microscopy. Additional projects include: (1) investigation of fluorescent rare earth ion-bound polypeptide aggregates using 3D confocal fluorescence imaging, (2) live cell imaging and kinetic studies of cell interactions using high resolution fast resonant scanning confocal microscopy and environmental control, and (3) the testing of new site-selective fluorescent dyes by staining and 3D imaging live cells using confocal fluorescence microscopy.
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RUI: Solution and Thin Film Properties of Dually Stimuli-Responsive Molecular Brush Block Copolymers
  • 批准号:
    1809532
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $21.73万
  • 财政年份:
    2018
  • 负责人:
    Elizabeth Glogowski
  • 依托单位:
海外基金