The aim of this study was to introduce a Newton–Euler inverse dynamics model that included reaction force and moment estimation at the lumbo-sacral (L5-S1) and thoraco-lumbar (T12-L1) joints. Data were collected while participants ran over ground at 3.8 m s71 at three different stride lengths: preferred stride length, 20% greater than preferred, and 20% less than preferred. Inputs to the model were ground reaction forces, bilateral lower extremity and pelvis kinematics and inertial parameters, kinematics of the lumbar spine and thorax and inertial parameters of the lumbar segment. Repeated measures ANOVA were performed on the lower extremity sagittal kinematics and kinetics, including L5-S1 and T12-L1 three dimensional joint angles, reacti...
When investigating the joint kinetics of human locomotion, ground reaction forces are typically meas...
In human running, the ankle, knee, and hip moments are known to play different roles to influence th...
Previous studies on joint kinetics during track and field block starts have been limited to lower-li...
The purpose of this dissertation was to investigate, in vivo, the effect of low back pain status on ...
Musculoskeletal modeling provides an alternative to in-vivo characteristics that are difficult to di...
Sagittal bending moments acting on the lower leg during running may play a role in tibial stress fra...
Background: Trunk accelerations during running provide useful information about movement economy and...
This project was directed at investigating the possible relationship between dorso-lumbar spinal mob...
The purpose of the present study was to investigate the effects of fatigue on lower back loading and...
Investigating the impact of incremental load magnitude on running joint power and kinematics is impo...
Running is typically performed at faster speeds than walking, and requires more muscular efforts. Be...
Foot structure and kinematics have long been considered as risk factors for foot and lower-limb runn...
PURPOSE: Knowledge regarding the biomechanical function of the lower limb muscle groups across a ran...
Mathematical models of human movement have the potential to provide information about how and why hu...
In running the leg's complex system of muscle, tendon and ligament has a spring like behaviour, whic...
When investigating the joint kinetics of human locomotion, ground reaction forces are typically meas...
In human running, the ankle, knee, and hip moments are known to play different roles to influence th...
Previous studies on joint kinetics during track and field block starts have been limited to lower-li...
The purpose of this dissertation was to investigate, in vivo, the effect of low back pain status on ...
Musculoskeletal modeling provides an alternative to in-vivo characteristics that are difficult to di...
Sagittal bending moments acting on the lower leg during running may play a role in tibial stress fra...
Background: Trunk accelerations during running provide useful information about movement economy and...
This project was directed at investigating the possible relationship between dorso-lumbar spinal mob...
The purpose of the present study was to investigate the effects of fatigue on lower back loading and...
Investigating the impact of incremental load magnitude on running joint power and kinematics is impo...
Running is typically performed at faster speeds than walking, and requires more muscular efforts. Be...
Foot structure and kinematics have long been considered as risk factors for foot and lower-limb runn...
PURPOSE: Knowledge regarding the biomechanical function of the lower limb muscle groups across a ran...
Mathematical models of human movement have the potential to provide information about how and why hu...
In running the leg's complex system of muscle, tendon and ligament has a spring like behaviour, whic...
When investigating the joint kinetics of human locomotion, ground reaction forces are typically meas...
In human running, the ankle, knee, and hip moments are known to play different roles to influence th...
Previous studies on joint kinetics during track and field block starts have been limited to lower-li...