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Endothelial, cardiac muscle and skeletal muscle exhibit different viscous and elastic properties as determined by atomic force microscopy

Journal of Biomechanics · 2001 · Vol. 34(12) · pp. 1545–1553
Anshu B. MathurAmy M. CollinsworthW.M. ReichertWilliam E. KrausGeorge A. Truskey
Polymer Surface Interaction StudiesForce Microscopy Techniques and ApplicationsLubricants and Their AdditivesElastic modulusMaterials scienceSkeletal muscleCardiac muscleIndentationDeformation (meteorology)BiophysicsComposite materialAnatomyMedicine

MeSH terms

AnimalsCells, CulturedElasticityEndothelium, VascularHumansModels, BiologicalPapillary MusclesRabbitsViscosityMuscle, SkeletalMicroscopy, Atomic ForceMice

Funding

  • National Science Foundation
  • North Carolina Biotechnology Center
  • National Institutes of Health
Citations
586
FWCI
8.22
field-weighted impact
References
26
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98%
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Cited by
Elastic Modulus Determination of Normal and Glaucomatous Human Trabecular Meshwork
Investigative Ophthalmology & Visual Science · 2011 · 390 citations
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Endothelial, cardiac muscle and skeletal muscle exhibit different viscous and elastic properties as determined by atomic force microscopy · Scinovex