...
首页> 外文期刊>Methods: A Companion to Methods in Enzymology >A high-speed multispectral spinning-disk confocal microscope system for fluorescent speckle microscopy of living cells.
【24h】

A high-speed multispectral spinning-disk confocal microscope system for fluorescent speckle microscopy of living cells.

机译:用于活细胞荧光斑点显微镜的高速多光谱旋转盘共聚焦显微镜系统。

获取原文
获取原文并翻译 | 示例

摘要

Fluorescent speckle microscopy (FSM) uses a small fraction of fluorescently labeled subunits to give macromolecular assemblies such as the cytoskeleton fluorescence image properties that allow quantitative analysis of movement and subunit turnover. We describe a multispectral microscope system to analyze the dynamics of multiple cellular structures labeled with spectrally distinct fluorophores relative to one another over time in living cells. This required a high-resolution, highly sensitive, low-noise, and stable imaging system to visualize the small number of fluorophores making up each fluorescent speckle, a means by which to switch between excitation wavelengths rapidly, and a computer-based system to integrate image acquisition and illumination functions and to allow a convenient interface for viewing multispectral time-lapse data. To reduce out-of-focus fluorescence that degrades speckle contrast, we incorporated the optical sectioning capabilities of a dual-spinning-disk confocal scanner. The real-time, full-field scanning allows the use of a low-noise, fast, high-dynamic-range, and quantum-efficient cooled charge-coupled device (CCD) as a detector as opposed to the more noisy photomultiplier tubes used in laser-scanning confocal systems. For illumination, our system uses a 2.5-W Kr/Ar laser with 100-300mW of power at several convenient wavelengths for excitation of few fluorophores in dim FSM specimens and a four-channel polychromatic acousto-optical modulator fiberoptically coupled to the confocal to allow switching between illumination wavelengths and intensity control in a few microseconds. We present recent applications of this system for imaging the cytoskeleton in migrating tissue cells and neurons.
机译:荧光斑点显微镜(FSM)使用一小部分荧光标记的亚基来产生大分子装配体,例如细胞骨架荧光图像特性,从而可以定量分析运动和亚基转换。我们描述了一种多光谱显微镜系统,用于分析在活细胞中随着时间的流逝,标记有光谱上互不相同的荧光团的多个细胞结构的动力学。这就需要高分辨率,高灵敏度,低噪声且稳定的成像系统,以可视化构成每个荧光斑点的少量荧光团,一种可以在激发波长之间快速切换的方法以及一个基于计算机的系统来进行集成图像采集和照明功能,并提供方便的界面来查看多光谱延时数据。为了减少散焦的荧光而降低散斑对比度,我们引入了双旋转盘共聚焦扫描仪的光学切片功能。实时的全场扫描允许使用低噪声,快速,高动态范围和量子效率的冷却电荷耦合器件(CCD)作为检测器,而不是使用噪声更大的光电倍增管在激光扫描共聚焦系统中。对于照明,我们的系统使用2.5W Kr / Ar激光器,在几个方便的波长下具有100-300mW的功率,用于激发昏暗的FSM样品中的少量荧光团,以及一个与共焦光纤耦合的四通道多色声光调制器,以允许在几微秒内在照明波长和强度控制之间切换。我们目前该系统的成像系统中迁移的组织细胞和神经元的细胞骨架的最新应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号