Inverse dynamics analysis has been widely used to evaluate the joint kinetics during various human movements. Several investigators have reported that the joint kinetic computations could be considerably affected by diverse biomechanical errors. Kim et al (2007) clarified the influence of measurement errors of Center of Pressure (CoP) location of force platform on calculated three-dimensional (3D) lower limb joint moment during walking. However, it is not yet clear how biomechanical errors, such as errors in CoP, Body Segment Parameters (BSP) and Joint Center Location (JCL) data, affect the calculated joint kinetics values. The purpose of this study was to clarify the influences of the alterations of anthropometric, kinematic, and kinetic v...
O objetivo deste estudo foi investigar o efeito do erro na localização do centro de pressão (5 e 10 ...
INTRODUCTION Rigid link models of human limb segments and inverse dynamics have been used extensivel...
The reliability of internal joint moment calculation in gait analysis during daily living activities...
The purpose of this study was to jnvestigate the effect of the errors in the center of pressure (CoP...
International audienceThe purpose of the present study was to examine the influence of anthropometric...
Quantitative gait analysis can provide a description of joint kinematics and dynamics, and it is rec...
Abstract Quantitative gait analysis can provide a description of joint kinematics and dynamics, and ...
Inverse dynamic techniques are used in gait analysis to calculate the net joint moments that the mus...
Two-dimensional analyses of sprint kinetics are commonly undertaken but often ignore the metatarsalp...
This study examined the effect of body segment parameter (BSP) perturbations on joint moments calcul...
Inverse dynamics analyses are commonly used to understand movement patterns in all forms of gait. Th...
Abstract—Variations in joint parameter (JP) values (axis posi-tions and orientations in body segment...
Although accurate body segment parameters (BSPs) do not appear to be important for peak joint moment...
Inverse dynamics analyses are commonly used to obtain resultant joint moment data during sprinting. ...
BACKGROUND: Rigid foot modelling approaches are still widely used to assess ankle joint kinetics in ...
O objetivo deste estudo foi investigar o efeito do erro na localização do centro de pressão (5 e 10 ...
INTRODUCTION Rigid link models of human limb segments and inverse dynamics have been used extensivel...
The reliability of internal joint moment calculation in gait analysis during daily living activities...
The purpose of this study was to jnvestigate the effect of the errors in the center of pressure (CoP...
International audienceThe purpose of the present study was to examine the influence of anthropometric...
Quantitative gait analysis can provide a description of joint kinematics and dynamics, and it is rec...
Abstract Quantitative gait analysis can provide a description of joint kinematics and dynamics, and ...
Inverse dynamic techniques are used in gait analysis to calculate the net joint moments that the mus...
Two-dimensional analyses of sprint kinetics are commonly undertaken but often ignore the metatarsalp...
This study examined the effect of body segment parameter (BSP) perturbations on joint moments calcul...
Inverse dynamics analyses are commonly used to understand movement patterns in all forms of gait. Th...
Abstract—Variations in joint parameter (JP) values (axis posi-tions and orientations in body segment...
Although accurate body segment parameters (BSPs) do not appear to be important for peak joint moment...
Inverse dynamics analyses are commonly used to obtain resultant joint moment data during sprinting. ...
BACKGROUND: Rigid foot modelling approaches are still widely used to assess ankle joint kinetics in ...
O objetivo deste estudo foi investigar o efeito do erro na localização do centro de pressão (5 e 10 ...
INTRODUCTION Rigid link models of human limb segments and inverse dynamics have been used extensivel...
The reliability of internal joint moment calculation in gait analysis during daily living activities...