The purpose of this study was to validate a new geometric solids model, developed to address the lack of female-specific models for body segment inertial parameter estimation. A second aim was to determine the effect of reducing the number of geometric solids used to model the limb segments on model accuracy. The full model comprised 56 geometric solids, the reduced model comprised 31, and the basic model comprised 16. Predicted whole-body inertial parameters were compared with direct measurements (reaction board, scales), and predicted segmental parameters with those estimated from whole-body dual x-ray absorptiometry scans for 28 females. The percentage root mean square error (%RMSE) for whole-body volume was <2.5% for all models and 1...
This study had two purposes: to evaluate a new method for measuring segmental dimensions for determi...
Recently, significant progress has been made in the development of Finite Element Human Body Models,...
The purpose of this study was to examine the reliability with which trunk segment inertial parameter...
The purpose of this study was to validate a new geometric solids model, developed to address the lac...
Body segment parameters such as segment mass, centre of mass and moment of inertia, serve as importa...
A mathematical model is presented which is capable of determining subject-specific inertia parameter...
In the field of sports biomechanics, a human body is often treated as a linkage model to investigate...
Geometric models can provide individual- specific body segment inertial parameter (BSIP) estimates...
Body segment parameters such as segment mass, center of mass, and radius of gyration are used as inp...
The aim of this study was to evaluate the accuracy between the measured and predicted body mass, usi...
The estimation of segment inertial parameters (SIPs) is an important source of error in inverse dyna...
42ième congrès de la Sociéte de Biomécanique francophone, REIMS, FRANCE, 02-/11/2017 - 03/11/2017Bod...
Three approaches to estimate body segment parameters (BSP) are compared, a volume-scanning photograp...
Many biomechanical analyses rely on the availability of reliable body segment inertia parameter (BSI...
Many studies have examined human segmental inertial parameters, but these studies have focused more ...
This study had two purposes: to evaluate a new method for measuring segmental dimensions for determi...
Recently, significant progress has been made in the development of Finite Element Human Body Models,...
The purpose of this study was to examine the reliability with which trunk segment inertial parameter...
The purpose of this study was to validate a new geometric solids model, developed to address the lac...
Body segment parameters such as segment mass, centre of mass and moment of inertia, serve as importa...
A mathematical model is presented which is capable of determining subject-specific inertia parameter...
In the field of sports biomechanics, a human body is often treated as a linkage model to investigate...
Geometric models can provide individual- specific body segment inertial parameter (BSIP) estimates...
Body segment parameters such as segment mass, center of mass, and radius of gyration are used as inp...
The aim of this study was to evaluate the accuracy between the measured and predicted body mass, usi...
The estimation of segment inertial parameters (SIPs) is an important source of error in inverse dyna...
42ième congrès de la Sociéte de Biomécanique francophone, REIMS, FRANCE, 02-/11/2017 - 03/11/2017Bod...
Three approaches to estimate body segment parameters (BSP) are compared, a volume-scanning photograp...
Many biomechanical analyses rely on the availability of reliable body segment inertia parameter (BSI...
Many studies have examined human segmental inertial parameters, but these studies have focused more ...
This study had two purposes: to evaluate a new method for measuring segmental dimensions for determi...
Recently, significant progress has been made in the development of Finite Element Human Body Models,...
The purpose of this study was to examine the reliability with which trunk segment inertial parameter...