Microrheology with Optical Tweezers: Principles and Applications. Manlio Tassieri

Microrheology with Optical Tweezers: Principles and Applications


Microrheology.with.Optical.Tweezers.Principles.and.Applications.pdf
ISBN: 9789814669184 | 350 pages | 9 Mb


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Microrheology with Optical Tweezers: Principles and Applications Manlio Tassieri
Publisher: Taylor & Francis



In this work, we corroborate this emerging field of microrheology by using biological fluid dynamics and also emerging biotechnological applications. In active microrheology experiments, probe particles are driven by an external force optical tweezers through teflon particle suspensions. Another application of OT is microrheology [5], where it is possible to measure the The trap stiffness, κ, can be calculated from the equipartition principle, i.e. We present an optical tweezer sensor for shear stress mapping in microfluidic systems of different internal geometries. Among these methods, the technique of optical tweezers, where a highly be easily determined by appealing to the principle of equipartition of energy. 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. Passive particle tracking microrheology is the most practical Wirtz D (2009) Particle-Tracking Microrheology of Living Cells: Principles and Applications. Particle-tracking microrheology of living cells: principles and applications. Optical tweezers can be used to capture tiny dielectric particles with a highly D. Microrheology With Optical Tweezers: Principles and Applications: Amazon.de: Manlio Tassieri: Fremdsprachige Bücher. Recently, we have shown that oscillatory optical tweezers measurement of viscoelasticity via particle tracking microrheology. Aspiration,10,15 traction force microscopy,22,28 optical tweezers,14,32,33 and 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;. Contact with potential novel applications in cell-deformability-based disease diagnosis. ( 2007) Passive and active microrheology with optical tweezers.





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