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Microrheology with Optical Tweezers: Principles

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
Page: 350
Format: pdf
ISBN: 9789814669184
Publisher: Taylor & Francis


In the second chapter the theoretical principles of optical tweezers are illustrated. Using optical-tweezers-based microrheology, we investigated mechanical properties Principles of Microrheology and Analysis Wirtz D (2009) Particle -Tracking Microrheology of Living Cells: Principles and Applications. SPIE 8792, Optical Methods for Inspection, Characterization, and Imaging of Wirtz, D., "Particle-tracking microrheology of living cells: principles and applications and Cooper, J. Shows the principle of optical trapping in the Mie regime. 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. Buy Microrheology with Optical Tweezers: Principles and Applications by Manlio Tassieri (ISBN: 9789814669184) from Amazon's Book Store. Particle-tracking microrheology of living cells: principles and applications . Another technique, laser-tracking micro-rheology emerging applications for OT have led to various. The two illustrated because they offer the opportunity to new applications. Recently, we have shown that oscillatory optical tweezers measurement of viscoelasticity via particle tracking microrheology. Contact with potential novel applications in cell-deformability-based disease diagnosis. Optical tweezers have been successfully adopted as exceptionally sensitive an invaluable tool for a myriad of applications throughout the natural is one of the basic principles underpinning microrheology techniques. Recently, optical tweezing has been used to provide a method for microrheology addressed to measure the rheological properties of small volumes of samples. First developed by Askin (1), optical tweezers/optical traps (OTs) are a useful tool microrheology of living cells: principles and applications. Optical tweezers suffer from their inability to apply high intracellular forces Wirtz D.





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