Compact and low-cost instrument for digital holographic microscopy of immobilized micro-particles

被引:9
|
作者
Patel, Nimit [1 ]
Rawat, Siddharth [1 ]
Joglekar, Mugdha [1 ]
Chhaniwal, Vani [1 ]
Dubey, Satish Kumar [2 ]
O'Connor, Timothy [3 ]
Javidi, Bahram [3 ]
Anand, Arun [1 ,4 ]
机构
[1] Maharaja Sayajirao Univ Baroda, Appl Phys Dept, Opt Lab, Vadodara 390001, Gujarat, India
[2] IIT Delhi, Ctr Sensors Instrumentat & Cyberphys Syst Engn, New Delhi 110016, India
[3] Univ Connecticut, Dept Elect Engn, Storrs, CT 06269 USA
[4] Maharaja Sayajirao Univ Baroda, Inst Interdisciplinary Studies, Vadodara, India
关键词
Optical Tweezers; Digital holographic microscopy; Scalar Diffraction; Fourier Transform; Cell Imaging; RED-BLOOD-CELLS; OPTICAL TWEEZERS; SINGLE-CELL; IDENTIFICATION; MANIPULATION; PARTICLES; ROTATION; TRAP;
D O I
10.1016/j.optlaseng.2020.106397
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A compact and low-cost system capable of Digital Holographic Microscopic (DHM) imaging of immobilized micro-particles is presented. The proposed design, integration, and manufacturing can lead to wider use and increased accessibility of this device for research, education, and biomedical applications. The optical tweezer system for particle immobilization is built using the optical pickup unit taken from a DVD burner. DHM is integrated into the system through the addition of a glass plate which enables one arm of the system to operate as a lateral shearing digital holographic interferometer. The operation of the system is confirmed by trapping, quantitative phase imaging and analysis of polystyrene micro-spheres for which the corner frequency measurements, carried using an in-house developed low-cost Quadrant Photodiode, compare favorably with simulated results. Furthermore, the system is illustrated for trapping and simultaneous quantitative phase imaging of micro-particles, including biological specimen such as red blood cells. The use of a low-cost easily implementable DHM integrated optical tweezer system provides vast information content, which enable in-depth analysis of immobilized micro-particles.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Accurate three-dimensional detection of micro-particles by means of digital holographic microscopy
    Antkowiak, Maciej
    Callens, Natacha
    Schockaert, Cedric
    Yourassowsky, Catherine
    Dubois, Frank
    [J]. OPTICAL MICRO- AND NANOMETROLOGY IN MICROSYSTEMS TECHNOLOGY II, 2008, 6995
  • [2] Automatic three-dimensional localization of micro-particles using digital holographic microscopy
    Antkowiak, Maciej
    Callens, Natacha
    Yourassowsky, Catherine
    Dubois, Frank
    [J]. Interferometry XIV: Applications, 2008, 7064
  • [3] Compact, low-cost instrument measures color
    Martens, AE
    McCarthy, CJ
    [J]. LASER FOCUS WORLD, 2000, 36 (01): : 223 - 224
  • [4] Dynamic imaging of micro-particles in 3D using lensless in-line digital holographic microscopy
    Singh, Vijay Raj
    Darakis, Emmanouil
    Asundi, Anand
    [J]. FOURTH INTERNATIONAL CONFERENCE ON EXPERIMENTAL MECHANICS, 2010, 7522
  • [5] Miniaturized low-cost digital holographic interferometer
    Michalkiewicz, Aneta
    Kujawinska, Malgorzata
    Marc, Pawel
    Jaroszewicz, Leszek R.
    [J]. OPTICAL MICRO- AND NANOMETROLOGY IN MICROSYSTEMS TECHNOLOGY, 2006, 6188
  • [6] Polarization digital holographic microscopy using low-cost liquid crystal polarization rotators
    Dovhaliuk, Rostyslav Yu
    [J]. OPTICAL ENGINEERING, 2018, 57 (02)
  • [7] Compact, low-cost Blu-Ray pickup-based digital holographic microscope
    Grare, Stanislas
    [J]. OPTICS AND LASERS IN ENGINEERING, 2023, 160
  • [8] Compact low-cost lensless digital holographic microscope for topographic measurements of microstructures in reflection geometry
    Adinda-Ougba, A.
    Kabir, B.
    Koukourakis, N.
    Mitschker, F.
    Gerhardt, N. C.
    Hofmann, M. R.
    [J]. OPTICAL SYSTEMS DESIGN 2015: OPTICAL FABRICATION, TESTING, AND METROLOGY V, 2015, 9628
  • [9] Assessment of spatial optical trapping with digital holographic sensing for biological micro-particles studying
    Shostka, Natalya, V
    Sokolenko, Bogdan, V
    Poletaev, Dmitrii
    Prisyazhniuk, Andrei
    [J]. SPIE FUTURE SENSING TECHNOLOGIES (2020), 2020, 11525
  • [10] Wavefront Analysis and Optimization from Conventional Liquid Crystal Displays for Low-Cost Holographic Optical Tweezers and Digital Holographic Microscopy
    Weber, Andreas
    Clavero, Valentin Ortega
    Schroeder, Werner
    [J]. SPIE ECO-PHOTONICS 2011: SUSTAINABLE DESIGN, MANUFACTURING, AND ENGINEERING WORKFORCE EDUCATION FOR A GREEN FUTURE, 2011, 8065