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July 24, 2000Physical Review Letters507 citationsOpen Access

Scanning Probe-Based Frequency-Dependent Microrheology of Polymer Gels and Biological Cells

RMRachel MahaffyCSChih‐Kang ShihFMF. C. MacKintosh

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Abstract

A new scanning probe-based microrheology approach is used to quantify the frequency-dependent viscoelastic behavior of both fibroblast cells and polymer gels. The scanning probe shape was modified using polystyrene beads for a defined surface area nondestructively deforming the sample. An extended Hertz model is introduced to measure the frequency-dependent storage and loss moduli even for thin cell samples. Control measurements of the polyacrylamide gels compare well with conventional rheological data. The cells show a viscoelastic signature similar to in vitro actin gels.

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Mahaffy et al. (2000) studied this question.

synapsesocial.com/papers/6a209dac6236d09b9bcd2ffdhttps://doi.org/10.1103/physrevlett.85.880
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