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A Confocal Microscope for Molecular, Cellular, and Integrative Biology

A Confocal Microscope for Molecular, Cellular, and Integrative Biology
适用于分子、细胞和综合生物学的共焦显微镜
批准号:
0088911
负责人:
Margaret Saha
金额:
$17.24万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-08-01 至 2002-07-31

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中文摘要
翻译
激光扫描共聚焦显微镜将显着提高和扩大一组分子,细胞和综合生物学家在威廉和玛丽学院的研究能力。目前,这些研究人员使用传统的光和落射荧光显微镜,由于某些固有的限制,排除了某些类型的研究。 共焦显微镜可以产生生物标本的光学切片,然后可以使用计算机重建将这一系列光学切片进行断层组装,以产生可以通过任何平面进行光学观察的极其精确的三维图像。 这允许对活组织和厚生物样本中的荧光信号进行成像。 共聚焦显微镜非常适合同时观察同一细胞中的多个荧光信号,并允许对共定位进行精确的定量测量。 研究人员可以检测到微弱或模糊的图像,同时与标准的落射荧光相比,大大提高了图像的分辨率。 此外,即使是亚细胞结构或信号也可以定位在组织切片或活胚胎的细胞内。 共聚焦显微镜的获得将使这些研究人员能够更有效地进行他们目前的研究项目,并将他们的研究扩展到新的方向。 该仪器将对七个不同的研究项目产生重大影响,包括:(1)了解控制脑血管发育的分子和细胞机制,特别是引起脑血管发育的组织相互作用和遗传反应;(2)研究核激素受体的亚核运输;(3)确定调节草原鹿鼠生殖反应和抑制的生理和遗传机制:(4)揭示白足鼠光反应背后的遗传变异;(5)研究了C.本研究的主要目的是:(1)研究线虫的温度调节机制,特别是后期促进复合物的作用;(2)分析下丘脑中温度调节神经元的功能形态学,以了解生物体如何调节其温度;(3)确定在B细胞发育过程中调节Pax-5转录因子活性的遗传机制。 此外,来自生物系的其他研究人员以及来自其他学科的研究人员,包括生物心理学,运动机能学和应用科学,也将利用共聚焦显微镜。 该仪器的收购将产生深远的影响,不仅对研究人员的研究能力,但也将在威廉和玛丽学院有重大的教育影响。该技术将被整合到细胞生物学,分子生物学和神经生物学课程中。大量的硕士生和本科生将利用共焦显微镜在他们的研究过程中。
英文摘要
A laser scanning confocal microscope will significantly enhance and expand the research capabilities of a group of molecular, cellular, and integrative biologists at the College of William and Mary. Currently, these investigators use conventional light and epifluorescence microscopy which, due to certain inherent limitations, precludes certain types of studies. Confocal microscopy can produce optical sectioning of biological specimens and this series of optical sections can then be tomographically assembled using computer reconstruction to produce extremely precise three dimensional images that could be optically viewed through any plane. This allows for imaging fluorescent signals in both living tissues and in thick biological specimens. Confocal microscopy is extremely well suited for visualizing multiple fluorescent signals in the same cell simultaneously and allows for an accurate quantitative measurement of colocalization. The investigator can detect weak or faint images while dramatically increasing the resolution of the image compared to standard epifluorescence. Moreover, even subcellular structures or signals can be localized within a cell in the context of a tissue slice or a living embryo. The acquisition of a confocal scope will enable these investigators to conduct their current research projects more efficiently and productively as well as extend their research in new directions. This instrumentation will have a major impact on seven different research projects including (1) understanding the molecular and cellular mechanisms governing the development of brain vasculature, in particular the tissue interactions and genetic responses that give rise to the brain vasculature ; (2) investigating subnuclear trafficking of nuclear hormone receptors; (3) determining the physiological and genetic mechanisms regulating reproductive responsiveness and inhibition in prairie deermice; (4) uncovering genetic variation underlying photoresponsiveness in the white-footed mouse; (5) investigating the metaphase to anaphase transition during mitosis and meiosis in C. elegans, particularly the role of the anaphase promoting complex; (6) analyzing the functional morphology of thermoregulatory neurons in the hypothalamus in order to understand how organisms regulate their temperature; and (7) determining the genetic mechanisms regulating the activity of the Pax-5 transcription factor during B cell development. In addition, additional investigators from the Biology Department as well investigators from other disciplines including BioPsychology, Kinesiology and Applied Science, will also utilize the confocal microscope. The acquisition of this instrument will have a profound effect not only on the research capabilities of the investigators but will also have a significant educational impact at the College of William and Mary. This technology will be integrated into the cell biology, molecular biology, and neurobiology courses. A substantial number of both Master's degree students and undergraduates will utilize the confocal microscope in the course of their research.
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Compensatory Mechanisms Regulating Neuronal Fate Following Notch Signaling Perturbation
  • 批准号:
    1257895
  • 项目类别:
    Standard Grant
  • 资助金额:
    $40.0万
  • 财政年份:
    2013
  • 负责人:
    Margaret Saha
  • 依托单位:
Presidential Faculty Fellows
  • 批准号:
    9553176
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $49.99万
  • 财政年份:
    1996
  • 负责人:
    Margaret Saha
  • 依托单位:
CRI: In Vivo Neural Gene Imaging Using a Novel Radiation Detector
  • 批准号:
    9602865
  • 项目类别:
    Standard Grant
  • 资助金额:
    $10.0万
  • 财政年份:
    1996
  • 负责人:
    Margaret Saha
  • 依托单位:
RUI: Determination of the Dorsal-Ventral Neural Axis in Xenopus
  • 批准号:
    9406326
  • 项目类别:
    Standard Grant
  • 资助金额:
    $25.48万
  • 财政年份:
    1994
  • 负责人:
    Margaret Saha
  • 依托单位:
海外基金