Variable stiffness catheters are typically composed of an encapsulated core. The core is usually composed of a low melting point alloy (LMPA) or a thermoplastic polymer (TP). In both cases, there is a need to encapsulate the core with an elastic material. This imposes a limit to the volume of variable stiffness (VS) material and limits miniaturization. This paper proposes a new approach that relies on the use of thermosetting materials. The variable stiffness catheter (VSC) proposed in this work eliminates the necessity for an encapsulation layer and is made of a unique biocompatible thermoset polymer with an embedded heating system. This significantly reduces the final diameter, improves manufacturability, and increases safety in the event...
Materials that can be designed with programmable properties and which change in response to external...
The performance of a new variable modulus composite material based upon shape memory polymer (SMP) r...
Throughout the evolution of human technologies, electronic-based actuators have been unreplaceable. ...
Variable stiffness catheters are typically composed of an encapsulated core. The core is usually com...
Variable stiffness (VS) is an important feature that significantly enhances the dexterity of magneti...
Variable stiffness (VS) is an important feature that significantly enhances the dexterity of magneti...
Minimally invasive robotic surgery often requires functional tools that can change their compliance...
Remote magnetic navigation of catheters is a technique used to perform radiofrequency ablation of he...
Smart materials that can actively tune their stiffness are of great interest to many fields, includi...
Smart materials that can actively tune their stiffness are of great interest to many fields, includi...
Materials with tunable stiffness responsive to stimuli are useful in a wide range of fields, such as...
Variable stiffness for robotics is attracting increasing attention from researchers in the field of ...
In Natural Orifice Transluminal Endoscopic Surgery (NOTES), a surgical robot that can access the hum...
As technology becomes more integrated into our daily lives, the need for machines that can safely an...
The field of surgery is under continuous evolution, surgeons explore new approaches to improve outco...
Materials that can be designed with programmable properties and which change in response to external...
The performance of a new variable modulus composite material based upon shape memory polymer (SMP) r...
Throughout the evolution of human technologies, electronic-based actuators have been unreplaceable. ...
Variable stiffness catheters are typically composed of an encapsulated core. The core is usually com...
Variable stiffness (VS) is an important feature that significantly enhances the dexterity of magneti...
Variable stiffness (VS) is an important feature that significantly enhances the dexterity of magneti...
Minimally invasive robotic surgery often requires functional tools that can change their compliance...
Remote magnetic navigation of catheters is a technique used to perform radiofrequency ablation of he...
Smart materials that can actively tune their stiffness are of great interest to many fields, includi...
Smart materials that can actively tune their stiffness are of great interest to many fields, includi...
Materials with tunable stiffness responsive to stimuli are useful in a wide range of fields, such as...
Variable stiffness for robotics is attracting increasing attention from researchers in the field of ...
In Natural Orifice Transluminal Endoscopic Surgery (NOTES), a surgical robot that can access the hum...
As technology becomes more integrated into our daily lives, the need for machines that can safely an...
The field of surgery is under continuous evolution, surgeons explore new approaches to improve outco...
Materials that can be designed with programmable properties and which change in response to external...
The performance of a new variable modulus composite material based upon shape memory polymer (SMP) r...
Throughout the evolution of human technologies, electronic-based actuators have been unreplaceable. ...