Understanding neural injury in hydrocephalus and how the brain changes during the course of the disease in-vivo remain unclear. This study describes brain deformation, microstructural and mechanical properties changes during obstructive hydrocephalus development in a rat model using multimodal magnetic resonance (MR) imaging. Hydrocephalus was induced in eight Sprague-Dawley rats (4 weeks old) by injecting a kaolin suspension into the cisterna magna. Six sham-injected rats were used as controls. MR imaging (9.4T, Bruker) was performed 1 day before, and at 3, 7 and 16 days post injection. T2-weighted MR images were collected to quantify brain deformation. MR elastography was used to measure brain stiffness, and diffusion tensor imaging (DTI)...
Brain tissue damages and vascular changes were studied using light and electron microscopes in conge...
The severity and progression of ventricular enlargement, the occurrence of cerebral edema, and the l...
<p>Relationships between the normalised brain tissue area and (a) normalised ventricular system cros...
Understanding neural injury in hydrocephalus and how the brain changes during the course of the dise...
<div><p>Understanding neural injury in hydrocephalus and how the brain changes during the course of ...
Understanding neural injury in hydrocephalus and how the brain changes during the course of the dise...
Regional changes in brain stiffness were previously demonstrated in an experimental obstructive hydr...
<div><p>Introduction</p><p>Regional changes in brain stiffness were previously demonstrated in an ex...
The research described in this thesis encompassed three studies related to the biomechanical and vas...
<p>Three days post hydrocephalus induction, the hydrocephalic rats had significantly (a) larger vent...
Abstract Background Hydrocephalus is associated with enlargement of cerebral ventricles. We hypothes...
<p>Mechanical properties of the (a) cortical gray matter in hydrocephalic rats () showed a non-signi...
Morphological changes in the ependymal lining of the hydrocephalic brain included stretching and tea...
The severity and progression of ventricular enlargement, the occurrence of cerebral edema, and the l...
Objective: A better understanding of the pathophysiology and underlying mechanisms of brain damage i...
Brain tissue damages and vascular changes were studied using light and electron microscopes in conge...
The severity and progression of ventricular enlargement, the occurrence of cerebral edema, and the l...
<p>Relationships between the normalised brain tissue area and (a) normalised ventricular system cros...
Understanding neural injury in hydrocephalus and how the brain changes during the course of the dise...
<div><p>Understanding neural injury in hydrocephalus and how the brain changes during the course of ...
Understanding neural injury in hydrocephalus and how the brain changes during the course of the dise...
Regional changes in brain stiffness were previously demonstrated in an experimental obstructive hydr...
<div><p>Introduction</p><p>Regional changes in brain stiffness were previously demonstrated in an ex...
The research described in this thesis encompassed three studies related to the biomechanical and vas...
<p>Three days post hydrocephalus induction, the hydrocephalic rats had significantly (a) larger vent...
Abstract Background Hydrocephalus is associated with enlargement of cerebral ventricles. We hypothes...
<p>Mechanical properties of the (a) cortical gray matter in hydrocephalic rats () showed a non-signi...
Morphological changes in the ependymal lining of the hydrocephalic brain included stretching and tea...
The severity and progression of ventricular enlargement, the occurrence of cerebral edema, and the l...
Objective: A better understanding of the pathophysiology and underlying mechanisms of brain damage i...
Brain tissue damages and vascular changes were studied using light and electron microscopes in conge...
The severity and progression of ventricular enlargement, the occurrence of cerebral edema, and the l...
<p>Relationships between the normalised brain tissue area and (a) normalised ventricular system cros...