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Updated: Jul 15, 2026

Automated Midline Shift and Intracranial Pressure Estimation based on Brain CT Images
Published on: April 13, 2013
Midline-shift corresponds to the amount of brain edema early after hemispheric stroke--an MRI study in rats
Maureen Walberer1, Franz Blaes, Erwin Stolz
1Department of Neurology, University Giessen, Giessen, Germany.
Abstract:
Vasogenic brain edema formation is a serious complication in hemispheric stroke. Its space-occupying effect can lead to midline-shift (MLS), cerebral herniation, and death. Clinical studies indicate that quantification of MLS can predict cerebral herniation and subsequent death at early time-points, even before clinical deterioration becomes apparent. The present experimental study was designed to determine the relation between MLS, absolute edema volume, lesion size, and clinical findings in a rat stroke model. Middle cerebral artery-occlusion was performed in 24 rats using the suture technique. Clinical evaluation and magnetic resonance imaging (MRI) (Bruker PharmaScan 7.0T) was performed 24 hours later. Lesion volume, the volume-increase within the affected hemisphere (%HEV), and MLS were quantified on T2-weighted images. The absolute increase of hemispheric water content (DeltaH2O) was determined in a subgroup using the wet-dry method (n=12). MLS correlated significantly with the total amount of brain edema (magnetic resonance imaging study: r=0.82; P<0.01; wet-dry analysis r=0.80; P<0.01). MLS correlated only moderately with T2-lesion volume (r=0.55; P<0.01). No significant correlation could be detected between MLS and clinical scores (r=0.26; P>0.05). MLS thus quantitatively reflects the amount of vasogenic brain edema within the affected hemisphere at early time-points. MLS quantification can be regarded as an easily assessable and valid global quantitative parameter for brain edema and thus might facilitate the surgical and nonsurgical management of edema in acute stroke patients.
Insights
Midline-shift (MLS) accurately quantifies vasogenic brain edema in stroke patients. This early, measurable parameter aids in managing brain swelling and predicting herniation, improving patient outcomes.
Area of Science:
- Neuroscience
- Medical Imaging
- Stroke Research
Background:
- Vasogenic brain edema is a critical complication of hemispheric stroke.
- Space-occupying edema can cause midline-shift (MLS), cerebral herniation, and mortality.
- Early MLS quantification may predict herniation before clinical signs emerge.
Purpose of the Study:
- To establish the relationship between MLS, edema volume, lesion size, and clinical findings in a rat stroke model.
- To validate MLS as a quantitative marker for brain edema in acute stroke.
Main Methods:
- Middle cerebral artery occlusion (MCAO) in 24 rats.
- Clinical evaluation and 7.0T MRI at 24 hours post-MCAO.
- Quantification of lesion volume, hemispheric edema volume (%HEV), and MLS.
- Absolute hemispheric water content (DeltaH2O) measured via wet-dry method in a subgroup.
Main Results:
- MLS showed a significant correlation with total brain edema volume (MRI: r=0.82; wet-dry: r=0.80).
- MLS correlated moderately with T2-lesion volume (r=0.55).
- No significant correlation was found between MLS and clinical scores (r=0.26).
Conclusions:
- MLS quantitatively reflects vasogenic brain edema volume in the affected hemisphere early after stroke.
- MLS is a valid and easily assessable global parameter for brain edema.
- MLS quantification may assist in managing edema in acute stroke patients.

