The amputee’s well-being and mobility are distinclty related to socket fit and resulting biomechanical interaction between residual limb and prosthetic socket. Understanding the dynamic interactions at the interface may lead to new socket standards. This paper introduces a physically-motivated reduced model of the interface, describing the dynamic interactions between residual limb and prosthetic socket. The model allows to investigate the sensitivity to changes of specific parameters in an isolated matter. A simulation study shows how stress distribution changes if friction coefficients are varied which might advance liner design
Background. To predict the interface pressure between residual limb and prosthetic socket for trans-...
Study Design: Computational modellingBackground: Finite element (FE) modelling has long been propose...
Background. To predict the interface pressure between residual limb and prosthetic socket for trans-...
The dynamic effects of inertial loads on the interface stresses between a residual limb and the tran...
Comfort is among the most important issues when fitting a prosthesis. However, high stress applied t...
Finite element method has been identified as a useful tool to understand the load transfer mechanics...
Finite element method has been identified as a useful tool to understand the load transfer mechanics...
It is estimated that there are at least three million amputees in the world. Amputation can be cause...
The development of artificial prosthetic lower limbs aims to improve patient's mobility while a...
Abstract—Over the last decade, numerous experimental and numerical analyses have been conducted to i...
Abstract-Over the last decade, numerous experimental and numerical analyses have been conducted to i...
A quantitative understanding of the interface stress distribution between a prosthetic socket and th...
A prosthetic socket used by a lower limb amputee should accommodate the patient’s geometry and biom...
The effects of inertial loads on the interface stresses between trans-tibial residual limb and prost...
Mechanical coupling at the interface between lower limb residua and prosthetic sockets plays an impo...
Background. To predict the interface pressure between residual limb and prosthetic socket for trans-...
Study Design: Computational modellingBackground: Finite element (FE) modelling has long been propose...
Background. To predict the interface pressure between residual limb and prosthetic socket for trans-...
The dynamic effects of inertial loads on the interface stresses between a residual limb and the tran...
Comfort is among the most important issues when fitting a prosthesis. However, high stress applied t...
Finite element method has been identified as a useful tool to understand the load transfer mechanics...
Finite element method has been identified as a useful tool to understand the load transfer mechanics...
It is estimated that there are at least three million amputees in the world. Amputation can be cause...
The development of artificial prosthetic lower limbs aims to improve patient's mobility while a...
Abstract—Over the last decade, numerous experimental and numerical analyses have been conducted to i...
Abstract-Over the last decade, numerous experimental and numerical analyses have been conducted to i...
A quantitative understanding of the interface stress distribution between a prosthetic socket and th...
A prosthetic socket used by a lower limb amputee should accommodate the patient’s geometry and biom...
The effects of inertial loads on the interface stresses between trans-tibial residual limb and prost...
Mechanical coupling at the interface between lower limb residua and prosthetic sockets plays an impo...
Background. To predict the interface pressure between residual limb and prosthetic socket for trans-...
Study Design: Computational modellingBackground: Finite element (FE) modelling has long been propose...
Background. To predict the interface pressure between residual limb and prosthetic socket for trans-...