000 01670 a2200433 4500
005 20250518045854.0
264 0 _c20200402
008 202004s 0 0 eng d
022 _a1091-6490
024 7 _a10.1073/pnas.1814271116
_2doi
040 _aNLM
_beng
_cNLM
100 1 _aStaunton, Jack R
245 0 0 _aHigh-frequency microrheology in 3D reveals mismatch between cytoskeletal and extracellular matrix mechanics.
_h[electronic resource]
260 _bProceedings of the National Academy of Sciences of the United States of America
_c07 2019
300 _a14448-14455 p.
_bdigital
500 _aPublication Type: Journal Article; Research Support, N.I.H., Intramural
650 0 4 _aActomyosin
_xmetabolism
650 0 4 _aAmides
_xpharmacology
650 0 4 _aCell Culture Techniques
_xmethods
650 0 4 _aCell Movement
_xdrug effects
650 0 4 _aCytoskeleton
_xphysiology
650 0 4 _aExtracellular Matrix
_xphysiology
650 0 4 _aHeterocyclic Compounds, 4 or More Rings
_xpharmacology
650 0 4 _aHumans
650 0 4 _aHydrogels
650 0 4 _aLaminin
_xmetabolism
650 0 4 _aMCF-7 Cells
650 0 4 _aMarine Toxins
650 0 4 _aMechanotransduction, Cellular
_xdrug effects
650 0 4 _aOxazoles
_xpharmacology
650 0 4 _aPyridines
_xpharmacology
650 0 4 _aRheology
_xmethods
650 0 4 _aViscosity
700 1 _aSo, Woong Young
700 1 _aPaul, Colin D
700 1 _aTanner, Kandice
773 0 _tProceedings of the National Academy of Sciences of the United States of America
_gvol. 116
_gno. 29
_gp. 14448-14455
856 4 0 _uhttps://doi.org/10.1073/pnas.1814271116
_zAvailable from publisher's website
999 _c29863190
_d29863190