MRI: Acquisition of a Zeiss 880 Multiphoton and AiryScan Microscope System as a Shared Instrument for the Washington University Research Community
MRI: Acquisition of a Zeiss 880 Multiphoton and AiryScan Microscope System as a Shared Instrument for the Washington University Research Community
批准号:
1828481
负责人:
Ram Dixit
金额:
$64.99万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-10-01 至 2021-09-30
中文摘要
为了支持购买多光子共聚焦显微镜,以满足华盛顿大学和圣路易斯地区多个系的一大批不同研究人员的研究需求,颁发了一项合同。新系统将安装在生物系成像核心,大学和区域用户将很容易使用。该仪器的新成像能力将使尖端的多学科研究成为可能,并促进准备充分、多样化的STEM劳动力队伍,包括代表人数不足的群体的学生。显微镜将通过现有的课程加强本科生的动手培训,此外还有许多已经使用CORE的独立学习本科生。此外,该仪器将为其他本科生物课程开发新的教学模块,在这些课程中,由于需要在短时间内为许多学生获取数据,因此无法使用现有的仪器。该仪器还将对参与科学职业探索计划、市中心学校儿童的基督教青年会校园Y计划以及进入神经科学研究生院的代表不足的学生的耐力计划产生重大影响。活细胞成像领域最近使研究人员能够以微米和毫秒的分辨率解析组织深处的细胞中的生理和分子事件。新的多光子系统将首次为华盛顿大学生物、物理和工程系以及地区机构的用户提供深度、快速和超分辨率的成像技术。新系统的初步研究用途将包括植物细胞中的皮质微管;分析根细胞中的生物传感器和花粉动力学。其他致力于动物系统的研究人员将研究神经细胞群体、肌腱束和一系列其他课题。这些研究的结果将发表在同行评议的科学期刊上,在科学会议上展示,并用于培训和推广活动。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
An award is made to support the acquisition of a multiphoton confocal microscope to address the research needs of a large, diverse group of researchers in multiple departments at Washington University and in the St. Louis area. The new system will be housed in the Biology Department Imaging Core and will be readily accessible to university and regional users. The new imaging capabilities of this instrument will enable cutting edge multidisciplinary research and promote a well-prepared, diverse STEM workforce including students in underrepresented groups. The microscope will enhance the hands-on training of undergraduates through existing courses, in addition to the many Independent Study undergraduates that already use the Core. Furthermore, the instrument will enable the development of new teaching modules for other undergraduate biology classes where the need to procure data for many students in a short time frame precludes the use of existing instruments. This instrument will also have a large impact on underrepresented students involved in the Science Career Explorations programs, YMCA campus Y program for inner-city school children, and ENDURE program for underrepresented students entering neuroscience graduate school.The field of live cell imaging has recently enabled researchers to resolve physiological and molecular events in cells deep within tissues with micron- and millisecond-resolution. The new multiphoton system will provide deep, fast and super-resolution imaging technology for the first time to users in the departments of Biology, Physics, and Engineering at Washington University and from area institutions. Initial research uses for the new system will include work on cortical microtubules in plant cells; analysis of biosensors in root cells and pollen dynamics. Other researchers working with animal systems will study neuronal cell populations, tendon fascicles, and a range of other topics. Results from these studies will be published in peer-reviewed scientific journals, presented at scientific meetings, and used in both training and outreach activities.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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专著(0)
科研奖励(0)
会议论文
CAREER: Elucidating acentrosomal microtubule organization by integrating cell biology, single molecule imaging and computational modeling
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批准号:1453726
-
项目类别:Continuing Grant
-
资助金额:$116.39万
-
财政年份:2015
-
负责人:Ram Dixit
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依托单位:
Role of the Plant Kinesin FRA1 in Constructing the Cell Wall
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批准号:1121287
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项目类别:Continuing Grant
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资助金额:$63.43万
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财政年份:2011
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负责人:Ram Dixit
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依托单位:
海外基金