Probing mechanical properties of living cells by atomic force microscopy with blunted pyramidal cantilever tips

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Probing mechanical properties of living cells by atomic force microscopy with blunted pyramidal cantilever tips is …
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scholarly articleQ13442814

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P819ADS bibcode2005PhRvE..72b1914R
P356DOI10.1103/PHYSREVE.72.021914
P698PubMed publication ID16196611
P5875ResearchGate publication ID7567730

P50authorFelix RicoQ38360119
Daniel NavajasQ40290006
Ramon Farré VenturaQ40290045
Pere Roca-cusachsQ42722778
P2093author name stringNúria Gavara
Mar Rotger
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Atomic force microscopy imaging of living cells: progress, problems and prospectsQ33873264
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Quantitative analysis of the viscoelastic properties of thin regions of fibroblasts using atomic force microscopyQ34185089
Dynamic elastic modulus of porcine articular cartilage determined at two different levels of tissue organization by indentation-type atomic force microscopyQ34185769
Towards a regional approach to cell mechanicsQ35739281
Cell mechanics and mechanotransduction: pathways, probes, and physiologyQ35800410
Granula motion and membrane spreading during activation of human platelets imaged by atomic force microscopyQ39459258
Atomic force microscopy imaging of living cells: a preliminary study of the disruptive effect of the cantilever tip on cell morphologyQ40890443
Cantilevers and tips for atomic force microscopyQ40902774
Microfabrication of cantilever styli for the atomic force microscopeQ56639734
Calibration of atomic‐force microscope tipsQ56639767
P4510describes a project that usesatomic force microscopyQ112133816
P433issue2 Pt 1
P407language of work or nameEnglishQ1860
P921main subjectmicroscopyQ1074953
P304page(s)021914
P577publication date2005-08-29
P1433published inPhysical Review EQ2128181
P1476titleProbing mechanical properties of living cells by atomic force microscopy with blunted pyramidal cantilever tips
P478volume72

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