A physical model to quantify error in determining hip joint angles using euler/cardan angles

This abstract has open access
Abstract Summary
A physical model simulating the right hip joint was placed in known combinations of 3D rotations. Euler/Cardan angles were used to calculate the 3D rotations from reflective marker data, and different rotation sequences were compared to the physical model. The ‘xyz’ (proximal segment as reference) and ‘zyx’ (distal segment as reference) sequences gave angles most similar to those of the physical model. Absolute deviation varied with the 3D rotation of the model and was large enough to affect interpretation of study results for some combinations of rotations.
Submission ID :
UCB745
Select an Abstract Type
Select a Topic

Abstracts With Same Type

Submission ID
Submission Title
Submission Topic
Submission Type
Primary Author
UCB1953
Modeling: General and simulation
Poster-Aug1
Paul Bolcos Paul Bolcos
UCB2077
Running: Biomechanics
Poster-Aug1
Kelsey Collins Kelsey Collins
UCB1585
Running: Biomechanics
Poster-Aug1
Daniel Davis Daniel Davis
UCB550
Locomotion: Clinical gait
Poster-Aug1
Mahboobeh Mehdikhani Mahboobeh Mehdikhani
UCB1987
Running: Biomechanics
Poster-Aug1
Christopher Galbreath Christopher Galbreath