High numerical aperture objective lenses and optical system improved objective type total internal reflection fluorescence microscopy

被引:11
|
作者
Kawano, Y [1 ]
Abe, C [1 ]
Kaneda, T [1 ]
Aono, Y [1 ]
Abe, K [1 ]
Tamura, K [1 ]
Terakawa, S [1 ]
机构
[1] Olympus Amer Inc, Sci Equipment Grp, Melville, NY 11747 USA
来源
OPTICAL DEVICES AND DIAGNOSTICS IN MATERIALS SCIENCE | 2000年 / 4098卷
关键词
total internal reflection fluorescence microscopy; TIRFM;
D O I
10.1117/12.401623
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Recently, the total internal reflection fluorescence microscopy (TIRFM) has gained popularity among many biologists for observing cells and single molecules. The objective lens type TIRFM is a very useful tool because the near-field fluorescence image can be observed with leaving an open space on the other side of the lens. Therefore, a manipulation on the preparation becomes possible, and simultaneous observations by scanning probe microscopy or by DIC microscopy are also possible. Currently, many investigators are using 100x, NA 1.40 objective lens for this purpose. Some scientists have little experience in aligning optical systems and tend to have difficulty because the laser needs to pass through the very perimeter of the 100x NA 1.40 objective lens. The critical angle for the 100x NA 1.40 objective lens with a water-immersed specimen (cells) is 65.63 degrees and the maximum light pass angle is 67.53 degrees. The angle available for the total internal reflection is 1.9 degrees. As a result, it is very difficult to align the laser beam to this NA 1.40 objective lens, which makes the evanescent wave illumination fail most of times. To solve this problem, we designed Apo 100x NA 1.65 and Plan Apo 60x NA 1.45 objective lenses, When we use these lenses for water-immersed specimens, the marginal angle available for the total internal reflection becomes larger compared with NA 1.40 objective lens. Therefore, the alignment of the laser beam to the objective lens becomes very easy. We also designed the TIRFM illuminator. A single mode fiber is connected between the laser and illuminator. The laser beam is conducted through the fiber and supplied to the illuminator with a pre-adjusted positioning. Almost no additional alignment of illumination Light is necessary.
引用
收藏
页码:142 / 151
页数:10
相关论文
共 50 条
  • [21] Optical disk system using a high-numerical aperture single objective lens and a blue LD
    Itonaga, M
    Chaen, S
    Nakano, E
    Nakamura, H
    Ito, F
    Iwata, K
    Kondo, T
    Nakagawa, E
    Kojima, T
    Nishizawa, A
    Miyazaki, K
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS, 2000, 39 (2B): : 978 - 979
  • [22] Two-dimensional materials for improved resolution in total internal reflection fluorescence microscopy
    Uddin, Shiekh Zia
    Talukder, Muhammad Anisuzzaman
    MATERIALS RESEARCH EXPRESS, 2017, 4 (09):
  • [23] A comparison of optical geometries for combined flash photolysis and total internal reflection fluorescence microscopy
    Conibear, PB
    Bagshaw, CR
    JOURNAL OF MICROSCOPY-OXFORD, 2000, 200 (03): : 218 - 229
  • [24] High-numerical-aperture objective lens for blue laser disk system
    Sato, M
    Ezuka, T
    Koike, K
    Murao, N
    Kikuchi, I
    Maeda, T
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS, 2001, 40 (3B): : 1790 - 1791
  • [25] Fluorescence Signal Generation Optimization by Optimal Filling of the High Numerical Aperture Objective Lens for High-Order Deep-Tissue Multiphoton Fluorescence Microscopy
    Wang, Ke
    Liang, Runfu
    Qiu, Ping
    IEEE PHOTONICS JOURNAL, 2015, 7 (06):
  • [26] Artifact-free objective-type multicolor total internal reflection fluorescence microscopy with light-emitting diode light sources-Part I
    Kogel, Alexander
    Kalwa, Hermann
    Urban, Nicole
    Schaefer, Michael
    JOURNAL OF BIOPHOTONICS, 2019, 12 (11)
  • [27] Excitation schemes in objective-based ring-beam total-internal-reflection fluorescence
    Mo, Gary C. H.
    Yip, Christopher M.
    BIOPHYSICAL JOURNAL, 2007, : 158A - 158A
  • [28] Direct measurement of the evanescent field profile produced by objective-based total internal reflection fluorescence
    Mattheyses, AL
    Axelrod, D
    JOURNAL OF BIOMEDICAL OPTICS, 2006, 11 (01)
  • [29] Direct measurement of the evanescent field profile produced by objective-based total internal reflection fluorescence
    Department of Physics, University of Michigan, Biophysics Research Division, 930 N. University, Ann Arbor, MI 48109, United States
    J Biomed Opt, 2006, 1
  • [30] Direct measurement of the evanescent field profile produced by objective-based total internal reflection fluorescence
    University of Michigan, Biophysics Research Division, 930 N. University, Ann Arbor, MI 48109, United States
    不详
    J Biomed Opt, 2006, 1