A method for monitoring changes in biodegradable polymers during hydrolysis is proposed. This wireless and non-destructive method is based on inductively coupled passive resonance sensors embedded in the polymer shell. In this study, we prepared specimens using two poly(lactide-co-glycolide) copolymers possessing different degradation profiles. The copolymer embedded sensors were immersed in buffer solution and their resonance features were compared with periodically performed conventional polymer characterization methods. A clear difference was noticed in the wirelessly measured signals between the two tested copolymer materials. Also the reference methods showed clear differences between the degradation profiles of the copolymers. The wir...
Biodegradable resonance circuits were studied. The circuits have a novel two-layer resonator structu...
The degradation behavior of a tissue adhesive is critical to its ability to repair a wound while min...
Electrophysiological signals are collected to characterize human health and applied in various field...
Capacitive sensors can be used to monitor changes in materials by monitoring complex permittivity. I...
[[abstract]]An ultrasonic technique was used to measure material property change during hydrolytic d...
Designing novel or optimizing existing biodegradable polymers for biomedical applications requires n...
A sensor system for investigating (bio)degradationprocesses of polymers is presented. The system uti...
AbstractA sensor system for investigating (bio)degradationprocesses of polymers is presented. The sy...
Biodegradation of polymeric materials affect a wide range of industries, information on degradabilit...
In vitro studies of the degradation kinetic of biopolymers are essential for the design and optimiza...
The properties and the structure of biodegradable polymers alter during degradation. The conventiona...
Implantable sensors have been extensively investigated to facilitate diagnosis or to provide a means...
In vitro studies of the degradation kinetic of biopolymers are essential for the design and optimiza...
A critical property for tissue adhesives is a controllable degradation rate so that these adhesives ...
Investigation of the degradation kinetics of biodegradable polymers is essential for the development...
Biodegradable resonance circuits were studied. The circuits have a novel two-layer resonator structu...
The degradation behavior of a tissue adhesive is critical to its ability to repair a wound while min...
Electrophysiological signals are collected to characterize human health and applied in various field...
Capacitive sensors can be used to monitor changes in materials by monitoring complex permittivity. I...
[[abstract]]An ultrasonic technique was used to measure material property change during hydrolytic d...
Designing novel or optimizing existing biodegradable polymers for biomedical applications requires n...
A sensor system for investigating (bio)degradationprocesses of polymers is presented. The system uti...
AbstractA sensor system for investigating (bio)degradationprocesses of polymers is presented. The sy...
Biodegradation of polymeric materials affect a wide range of industries, information on degradabilit...
In vitro studies of the degradation kinetic of biopolymers are essential for the design and optimiza...
The properties and the structure of biodegradable polymers alter during degradation. The conventiona...
Implantable sensors have been extensively investigated to facilitate diagnosis or to provide a means...
In vitro studies of the degradation kinetic of biopolymers are essential for the design and optimiza...
A critical property for tissue adhesives is a controllable degradation rate so that these adhesives ...
Investigation of the degradation kinetics of biodegradable polymers is essential for the development...
Biodegradable resonance circuits were studied. The circuits have a novel two-layer resonator structu...
The degradation behavior of a tissue adhesive is critical to its ability to repair a wound while min...
Electrophysiological signals are collected to characterize human health and applied in various field...