This study presents novel predictive equations for von Mises stresses and deflection of bones in the frontal and lateral regions of the skull. The equations were developed based on results of a finite element model developed here. The model was validated for frontal and lateral loading conditions with input values mimetic to fall scenarios. Using neural network processing of the information derived from the model achieved R2 values of 0.9990 for both the stress and deflection. Based on the outcome of the fall victims, a threshold von Mises stress of 40.9 to 46.6 MPa was found to indicate skull fracture given a maximum input force of 26 kN and a load rate of 40 kN/ms
Copyright © 2014 Bin Yang et al.This is an open access article distributed under the Creative Common...
In the real world crashes, brain injury is one of the leading causes of deaths. Using isolated human...
Traumatic brain injuries are life-threatening injuries that can lead to long-term incapacitation and...
This study presents novel predictive equations for von Mises stresses and deflection of bones in the...
This study presents novel predictive equations for von Mises stress values of bones in the frontal a...
The main aim of this project was to develop a model for predicting skull fractures of a 50th percent...
In a forensic investigation, there is considerable difficulty in distinguishing between different me...
This study proposes a detailed biomechanical model of the human head to study the effect of non-pene...
Background and Objective: To simulate infant skull trauma after low height falls when variable degre...
In a forensic investigation, there is considerable difficulty in distinguishing between different me...
Background: Severe facial trauma is often associated with intracerebral injuries. So it seemed to be...
This study is aimed at developing a high quality, validated finite element (FE) human head model for...
The finite element (FE) modeling is a powerful tool for investigating the physical process producing...
Due to the frequent occurrence of skull fractures from unintended head impacts from kinetic energy w...
AbstractIn this study, the finite element (FE) method is implemented in order to examine the reactio...
Copyright © 2014 Bin Yang et al.This is an open access article distributed under the Creative Common...
In the real world crashes, brain injury is one of the leading causes of deaths. Using isolated human...
Traumatic brain injuries are life-threatening injuries that can lead to long-term incapacitation and...
This study presents novel predictive equations for von Mises stresses and deflection of bones in the...
This study presents novel predictive equations for von Mises stress values of bones in the frontal a...
The main aim of this project was to develop a model for predicting skull fractures of a 50th percent...
In a forensic investigation, there is considerable difficulty in distinguishing between different me...
This study proposes a detailed biomechanical model of the human head to study the effect of non-pene...
Background and Objective: To simulate infant skull trauma after low height falls when variable degre...
In a forensic investigation, there is considerable difficulty in distinguishing between different me...
Background: Severe facial trauma is often associated with intracerebral injuries. So it seemed to be...
This study is aimed at developing a high quality, validated finite element (FE) human head model for...
The finite element (FE) modeling is a powerful tool for investigating the physical process producing...
Due to the frequent occurrence of skull fractures from unintended head impacts from kinetic energy w...
AbstractIn this study, the finite element (FE) method is implemented in order to examine the reactio...
Copyright © 2014 Bin Yang et al.This is an open access article distributed under the Creative Common...
In the real world crashes, brain injury is one of the leading causes of deaths. Using isolated human...
Traumatic brain injuries are life-threatening injuries that can lead to long-term incapacitation and...