Mechanotransduction of Ultrasound is Frequency Dependent Below the Cavitation Threshold

Author:

Louw Tobias M.,Budhiraja Gaurav,Viljoen Hendrik J.,Subramanian Anuradha

Funder

American Recovery and Reinvestment

Department of Health and Human Services

Publisher

Elsevier BV

Subject

Acoustics and Ultrasonics,Radiology Nuclear Medicine and imaging,Biophysics,Radiological and Ultrasound Technology

Reference80 articles.

1. Image processing with ImageJ;Abramoff;Biophotonics Int,2004

2. Propagation of sound in porous media: Modelling sound absorbing materials;Allard,2009

3. Large deformation finite element analysis of micropipette aspiration to determine the mechanical properties of the chondrocyte;Baaijens;Ann Biomed Eng,2005

4. Cell cycle genes in chondrocyte proliferation and differentiation;Beier;Matrix Biol,1999

5. Measures of microstructure to improve estimates and bounds on elastic constants and transport coefficients in heterogeneous media;Berryman;Mech Mater,2006

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