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Mechanical study revealed that the yield stress of PCL/HA-Ag composite nanofibers showed a higher value than that of PCL/HA composite, possibly due to the addition of metallic Ag nanoparticles.
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Dynamic mechanical studies revealed an increase in the storage modulus and glass transition temperature in the presence of polysulfone.
Scanning electron microscopy and mechanical studies revealed that the use of plasma for surface activation allows for the non-destructive immobilization of bioactive compounds like hyaluronic acid.
Mechanical studies revealed that the presence of branched amine in MS helped in enhancing the ductility property for PLA-MS composite films.
Dynamic mechanical studies revealed the coexistence of two amorphous phases in the crystallized blends: a mixed phase held between the crystal lamellae (interlamellar) and a PA 6I-rich phase excluded to interfibrillar and interspherulitic regions.
Dynamic mechanical studies revealed that polyurea remains as an elastomer under the frequency range associated with the shock tube testing and behaves as a catcher system for the fragments formed due to blast loading.
Dynamic mechanical studies reveal that these composites exhibit considerably higher storage modulus and glass transition temperature than non-compatibilized samples.
Applying this range to the knees in the present study revealed that mechanical limb alignment was within the acceptable range for 270 (86 %) knees.
Our study revealed that in patients with sepsis, mechanical ventilation with a lower tidal volume may be beneficial in decreasing mortality and increasing the number of ventilator-free days although the difference was found to be statistically insignificant.
This study revealed that scaffolds supported osteoblast growth and mineralization and offered mechanical tunability.
Our study revealed that polymers with 40%, 50 %, 60 4KG5-DB (mass fraction) showed more excellent mechanical properties, 40% also showed outstanding vitro degradation properties.
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