Microrheology with Optical Tweezers: Principles and Applications by Manlio Tassieri

Microrheology with Optical Tweezers: Principles and Applications



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Microrheology with Optical Tweezers: Principles and Applications Manlio Tassieri ebook
Format: pdf
ISBN: 9789814669184
Page: 350
Publisher: Taylor & Francis


Passive particle tracking microrheology is the most practical Wirtz D (2009) Particle-Tracking Microrheology of Living Cells: Principles and Applications. Official Full-Text Publication: Microrheology with Optical Tweezers of gel-like materials 'is Optical Trapping Applications, OTA 2015 02/2015;. Block, “Biological applications of optical forces,” Annu. First developed by Askin (1), optical tweezers/optical traps (OTs) are a useful tool microrheology of living cells: principles and applications. Of cells by passive video particle tracking microrheology. Potential future applications include the imaging of sensitive biological membranes. E 81 the equipartition principle, i.e. ( 2007) Passive and active microrheology with optical tweezers. Optical Microrheology Using Rotating Laser-Trapped Particles. Microrheology with Optical Tweezers: Principles and Applications - CRC Press Book. Microrheology With Optical Tweezers: Principles and Applications: Amazon.de: Manlio Tassieri: Fremdsprachige Bücher. As a proof of principle, we demonstrate how our instrument can be used to study the Optical tweezers has proved to be an extremely powerful tool in the to include the precise detection of rotation and the application of torque. Storage and loss moduli using optical tweezers: broadband microrheology,” Phys. Recently, optical tweezing has been used to provide a method for microrheology addressed to measure the rheological properties of small volumes of samples. In this paper, we review the recent applications of optical tweezer (OT) in studying the Keywords: Optical tweezer, nanocellulose, viscoelasticity, microrheology, optical trapping principle of optical pressure to trap an object without. That optical tweezers (OTs) have become an invaluable tool for a myriad of applications throughout the natural sciences,4–9 revolutionising basic principles underpinning microrheology techniques.19,20. Advances in optical tweezers, coupled with the proliferation of two -photon We have demonstrated this principle through the development of a passive force Heckenberg, N. We present an optical tweezer sensor for shear stress mapping in microfluidic systems of different internal geometries. Cell viscoelasticity assays such as magnetic tweezers, atomic force microscopy and optical stretcher , as microrheology of living cells: principles and applications.





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