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Showing 1 to 4 of 4 for “"Optical Tweezing"”.

  1. Focusing Light Inside Scattering Media with Optical Phase Conjugation

    … beyond ~1 mm deep inside the media to achieve optical imaging and manipulation. Hence, the ability to focus light deep inside scattering media is highly desired, and it could revolutionize biophotonics by enabling deep-tissue non-invasive high-resolution optical microscopy, optical tweezing, …

    wustl Repository record for Focusing Light Inside Scattering Media with Optical Phase Conjugation (opens in a new tab)

  2. Development of Ultrasonic Devices for Microparticle and Cell Manipulation

    … cell and particle manipulation, such as magnetic tweezing, optical tweezing and dielectrophoresis, ultrasonic manipulation has shown excellent capabilities and flexibility in a variety of applications with its advantages of versatile, inexpensive and easy integration into microfluidic systems, …

    dundee Repository record for Development of Ultrasonic Devices for Microparticle and Cell Manipulation (opens in a new tab)

  3. Development of Electronic Systems for Ultrasonic Particle Manipulation

    … from ultrasound sources, known as “acoustic tweezing”, has gained great interest by researchers and been proved useful for its unique advantages. With an analogy to optical tweezing, research has demonstrated the possibility to use modulated acoustic fields generated by ultrasound arrays for …

    dundee Repository record for Development of Electronic Systems for Ultrasonic Particle Manipulation (opens in a new tab)

  4. Development and Optimisation of an Optofluidic Evanescent Field Nano Tweezer System for Trapping Nanometre Crystals for Synchrotron X-Ray Diffraction Experiments

    … combines the advantages of both evanescent field optical tweezing and microfluidics. A low cost commercial Nanotweezer system and optofluidic chip technology were assessed via interferometry and SEM microscopy to determine the microfluidic and waveguide architecture. It was shown that across …

    cambridge Repository record for Development and Optimisation of an Optofluidic Evanescent Field Nano Tweezer System for Trapping Nanometre Crystals for Synchrotron X-Ray Diffraction Experiments (opens in a new tab)