Samples # 1 - # 3 are not shown in this graph as their elasticity is more than three times higher than that of sample # 4. The standard deviation calculated from five re-tests of sample # 7 is also shown. Samples # 5, # 7 and # 9 (—) were chosen for the tissue-mimicking phantom, other samples are displayed as—- -.</p
An experimental dynamic material property identification technique is presented that is based on the...
Linear viscoelastic material parameters of porcine brain tissue and two brain substitute/ materials ...
<p>Elastic modulus, <i>E</i>, of silicone gels prepared by mixing the base (B) and cross-linker (C) ...
AbstractA measurement technique of viscoelastic properties of polymers is proposed to investigate co...
<p>The two independent methods of calculating Young’s modulus were significantly correlated (r = 0.9...
Characterising the mechanical response of ultra-soft materials is challenging, particularly at high ...
Distribution of samples Young’s modulus in macroscopic (A) and histological (B) groups. Young’s modu...
The mechanical properties of soft tissue have long been of interest in biomedical research and app...
International audienceSimulating the deformations of soft tissues has gained importance in recent ye...
International audienceThis study aims at evaluating Magnetic Resonance Elastography (MRE) as a relia...
As far as their mechanical properties are concerned, cancerous lesions can be confused with healthy ...
techniques estimate tissue stiffness. Depend-ing on the technique, various stiffness-related paramet...
Elasticity-based imaging modalities are becoming popular diagnostic tools in clinical practice. Gela...
Many pathological processes in tissues are recognized by morphological changes that reflect alterati...
In a stiffness estimation of living body, an internal structure under the skin influences the measur...
An experimental dynamic material property identification technique is presented that is based on the...
Linear viscoelastic material parameters of porcine brain tissue and two brain substitute/ materials ...
<p>Elastic modulus, <i>E</i>, of silicone gels prepared by mixing the base (B) and cross-linker (C) ...
AbstractA measurement technique of viscoelastic properties of polymers is proposed to investigate co...
<p>The two independent methods of calculating Young’s modulus were significantly correlated (r = 0.9...
Characterising the mechanical response of ultra-soft materials is challenging, particularly at high ...
Distribution of samples Young’s modulus in macroscopic (A) and histological (B) groups. Young’s modu...
The mechanical properties of soft tissue have long been of interest in biomedical research and app...
International audienceSimulating the deformations of soft tissues has gained importance in recent ye...
International audienceThis study aims at evaluating Magnetic Resonance Elastography (MRE) as a relia...
As far as their mechanical properties are concerned, cancerous lesions can be confused with healthy ...
techniques estimate tissue stiffness. Depend-ing on the technique, various stiffness-related paramet...
Elasticity-based imaging modalities are becoming popular diagnostic tools in clinical practice. Gela...
Many pathological processes in tissues are recognized by morphological changes that reflect alterati...
In a stiffness estimation of living body, an internal structure under the skin influences the measur...
An experimental dynamic material property identification technique is presented that is based on the...
Linear viscoelastic material parameters of porcine brain tissue and two brain substitute/ materials ...
<p>Elastic modulus, <i>E</i>, of silicone gels prepared by mixing the base (B) and cross-linker (C) ...