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Shear storage and loss moduli were measured in vivo, just after death and at post-mortem time of ≈24h.
The elastic moduli were measured to be 157 ± 11 and 159 ± 17 GPa, respectively, by nanoindentation.
Mineral mass fraction, collagen fibril angle and indentation moduli were measured in registered anatomical sites using backscattered electron imaging, polarized light microscopy and nano-indentation, respectively.
Employing RGD-functionalized materials, Young's moduli were measured via AFM nanoindentation while the cell spreading behavior was quantitatively evaluated by monitoring morphology and metabolic activity (MTS assay) of L929 fibroblasts.
The compressional wave (Vp) and shear wave (Vs) velocities and dynamic elastic moduli were measured using a GCTS (Geotechnical Consulting and Testing Systems, Tempe, AZ, USA) Computer Aided Ultrasonic Velocity Testing System (CATS ULT-100) apparatus with axial P- and S-wave piezoelectric transducers (Figure 3).
The elastic moduli were measured using a rheometer (AR-G2; TA Instruments, New Castle, DE).
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Elastic moduli are measured both by strain gauges (static approach) and by P-wave propagation (dynamic approach).
Dynamic elastic moduli are estimated from advanced acoustic log tests, and static moduli are measured in the laboratory.
Moduli are measured immediately after applying compression, and after full relaxation which obtains after solvent exudes the gels under compression.
The Young's modulus and the loss and storage moduli are measured as a function of temperature in the sol and gel phases.
The plateau stresses and elastic moduli are measured to be from 1.9 to 38.3 MPa and from 30 to 860 MPa for the TiNi foam samples with porosities ranged from 71%to87%7%, respectively.
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