Background: The aim of the present study is to propose a subject-specific biomechanical control model for the estimation of active cervical spine muscle forces. Methods: The proprioception-based regulation model developed by Pomero et al. (2004) for the lumbar spine was adapted to the cervical spine. The model assumption is that the control strategy drives muscular activation to maintain the spinal joint load below the physiological threshold, thus avoiding excessive intervertebral displacements. Model evaluation was based on the comparison with the results of two reference studies. The effect of the uncertainty on the main model input parameters on the predicted force pattern was assessed. The feasibility of building this subject-specific ...
Cervical spinal loads are predominately influenced by activities of cervical muscles. However, the c...
Knowledge of neck muscle activation strategies prior to sporting impacts is crucial for investigatin...
AbstractThere are different approaches to Predict the nonlinear moment–rotation relationship and eva...
Background: The aim of the present study is to propose a subject-specific biomechanical control mode...
To gain a better understanding of the forces working on the cervical spine, a spatial biomechanical ...
EMG-driven musculoskeletal modeling is a method in which loading on the active and passive structure...
The purpose for this study is threefold. All involve single handed lifting tasks where the height of...
Numerous mathematical models have been developed to investigate the high incidence of low back pain ...
The purpose of this study was to develop an optimization model of the spine that, incorporating a me...
Background: Musculoskeletal models served to analyze head–neck motion and injury during automotive i...
<p>Numerical human models are widely used in the design process and evaluation of passive and active...
Manipulation has a long history as a remedy for spinal disorders. The controversial opinions over it...
A comprehensive assessment of the spinal loads throughout the spine can advance our understanding of...
The purpose for this study is threefold. All involve single handed lifting tasks where the height of...
Modeling muscle activity in the neck muscles of a finite element (FE) human body model can be based ...
Cervical spinal loads are predominately influenced by activities of cervical muscles. However, the c...
Knowledge of neck muscle activation strategies prior to sporting impacts is crucial for investigatin...
AbstractThere are different approaches to Predict the nonlinear moment–rotation relationship and eva...
Background: The aim of the present study is to propose a subject-specific biomechanical control mode...
To gain a better understanding of the forces working on the cervical spine, a spatial biomechanical ...
EMG-driven musculoskeletal modeling is a method in which loading on the active and passive structure...
The purpose for this study is threefold. All involve single handed lifting tasks where the height of...
Numerous mathematical models have been developed to investigate the high incidence of low back pain ...
The purpose of this study was to develop an optimization model of the spine that, incorporating a me...
Background: Musculoskeletal models served to analyze head–neck motion and injury during automotive i...
<p>Numerical human models are widely used in the design process and evaluation of passive and active...
Manipulation has a long history as a remedy for spinal disorders. The controversial opinions over it...
A comprehensive assessment of the spinal loads throughout the spine can advance our understanding of...
The purpose for this study is threefold. All involve single handed lifting tasks where the height of...
Modeling muscle activity in the neck muscles of a finite element (FE) human body model can be based ...
Cervical spinal loads are predominately influenced by activities of cervical muscles. However, the c...
Knowledge of neck muscle activation strategies prior to sporting impacts is crucial for investigatin...
AbstractThere are different approaches to Predict the nonlinear moment–rotation relationship and eva...