Rotational inertial forces are thought to be the underlying mechanism for most severe brain injuries. However, little is known about the effect of head rotation direction on injury outcomes, particularly in the pediatric population. Neonatal piglets were subjected to a single non-impact head rotation in the horizontal, coronal, or sagittal direction, and physiological and histopathological responses were observed. Sagittal rotation produced the longest duration of unconsciousness, highest incidence of apnea, and largest intracranial pressure increase, while coronal rotation produced little change, and horizontal rotation produced intermediate and variable derangements. Significant cerebral blood flow reductions were observed following sagit...
Part I:Inflicted head injury by shaking trauma (IHI-ST) is often simulated to better understand the ...
BACKGROUND—Small animal models have been used in traumatic brain injury (TBI) research to investigat...
Object: Rotational loading conditions have been shown to produce subdural hemorrhage and diffuse axo...
Rotational inertial forces are thought to be the underlying mechanism for most severe brain injuries...
Traumatic brain injury is a leading cause of death and disability in infants worldwide. Injury mecha...
Traumatic brain injury (TBI) in children is a costly and alarmingly prevalent public health concern....
Traumatic brain injury (TBI) in children is a costly and alarmingly prevalent public health concern....
Biological and computational models of inertial loading of the brain were used to examine the incide...
A new in vivo animal model that produces diffuse brain injuries in sagittal plane rearward rotationa...
Head rotation as a mechanism for brain injury was proposed back in the 1940s. Since then a multitude...
Injury statistics have found the most common accident situation to be an oblique impact. An oblique ...
Computational models are valuable tools for studying tissue-level mechanisms of traumatic brain inju...
The development of head injury criteria and countermeasures for head protection requires understandi...
Clinicians are charged with the significant task of distinguishing between accidental and inflicted ...
Clinicians are charged with the significant task of distinguishing between accidental and inflicted ...
Part I:Inflicted head injury by shaking trauma (IHI-ST) is often simulated to better understand the ...
BACKGROUND—Small animal models have been used in traumatic brain injury (TBI) research to investigat...
Object: Rotational loading conditions have been shown to produce subdural hemorrhage and diffuse axo...
Rotational inertial forces are thought to be the underlying mechanism for most severe brain injuries...
Traumatic brain injury is a leading cause of death and disability in infants worldwide. Injury mecha...
Traumatic brain injury (TBI) in children is a costly and alarmingly prevalent public health concern....
Traumatic brain injury (TBI) in children is a costly and alarmingly prevalent public health concern....
Biological and computational models of inertial loading of the brain were used to examine the incide...
A new in vivo animal model that produces diffuse brain injuries in sagittal plane rearward rotationa...
Head rotation as a mechanism for brain injury was proposed back in the 1940s. Since then a multitude...
Injury statistics have found the most common accident situation to be an oblique impact. An oblique ...
Computational models are valuable tools for studying tissue-level mechanisms of traumatic brain inju...
The development of head injury criteria and countermeasures for head protection requires understandi...
Clinicians are charged with the significant task of distinguishing between accidental and inflicted ...
Clinicians are charged with the significant task of distinguishing between accidental and inflicted ...
Part I:Inflicted head injury by shaking trauma (IHI-ST) is often simulated to better understand the ...
BACKGROUND—Small animal models have been used in traumatic brain injury (TBI) research to investigat...
Object: Rotational loading conditions have been shown to produce subdural hemorrhage and diffuse axo...