首页> 外文会议>SPIE biophotonics Australasia >Compact multispectral fluorescence imaging system with spectral multiplexed volume holographic grating
【24h】

Compact multispectral fluorescence imaging system with spectral multiplexed volume holographic grating

机译:紧凑的多光谱荧光成像系统,具有光谱多路复用体全息光栅

获取原文
获取原文并翻译 | 示例

摘要

Traditional spectral imaging systems mainly rely on spatial scanning or spectral scanning methods to acquire spatial and spectral features. The acquisition is time-consuming and cannot fully satisfy the need of monitoring dynamic phenomenon and observing different structures of the specimen simultaneously. To overcome these barriers, we develop a video-rate simultaneous multispectral imaging system built with a spectral multiplexed volume holographic grating (VHG) and few optical components. Four spectral multiplexed volume holograms optimized for four discrete spectral bands (centered at 488 run, 530 nm, 590 nm and 620 ran) are recorded into an 8×12 mm photo-thermal refractive glass. The diffraction efficiencies of all the holograms within the multiplexed VHG are greater than 80%. With the high throughout multiplexed VHG, the system can work with both reflection and fluorescence modes and allow simultaneous acquisition of spectral and spatial information with a single exposure. Imaging experiments demonstrate that the multispectral images of the target illuminated with white light source can be obtained. Fluorescence images of multiple fluorescence objects (two glass beads filled with 20 uL 1.0 mg/mL quantum dots solutions that emit 530 ± 15 nm and 620 ± 15 nm fluorescence, respectively) buried 3 mm below the surface of a tissue mimicking phantom are acquired. The results demonstrate that the system can provide complementary information in fluorescence imaging. The design diagram of the proposed system is given to explain the advantage of compactness and flexibility in integrating with other imaging platforms.
机译:传统的光谱成像系统主要依靠空间扫描或光谱扫描方法来获取空间和光谱特征。采集很耗时,不能完全满足监视动态现象和同时观察样品不同结构的需要。为了克服这些障碍,我们开发了一种视频速率同步多光谱成像系统,该系统由光谱多路复用体全息光栅(VHG)和少量光学组件构成。将针对四个离散光谱带(以488 run,530 nm,590 nm和620 ran为中心)优化的四个光谱多路复用体全息图记录到8×12 mm光热折射玻璃中。在多路复用的VHG中所有全息图的衍射效率均大于80%。借助高全复用VHG,该系统可以在反射和荧光模式下工作,并允许通过一次曝光同时获取光谱和空间信息。成像实验表明,可以获得用白光源照明的目标的多光谱图像。获取多个荧光对象的荧光图像(两个玻璃珠分别装有20 uL 1.0 mg / mL量子点溶液,分别发射出530±15 nm和620±15 nm荧光)埋在模仿模型的组织表面下方3 mm处。结果表明,该系统可以在荧光成像中提供补充信息。给出了拟议系统的设计图,以说明与其他成像平台集成时的紧凑性和灵活性。

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