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Hemispheric asymmetry and its influence on cranioplasty complications after decompressive craniectomy
Francesco M C Lioi1, Alessandro Frati2, Jon Ramm-Pettersen3
1Department of Neurosurgery, Policlinico Umberto I, Sapienza University of Rome, Rome, Italy. lioifrancesco@gmail.com.
Insights
Decompressive craniectomy for stroke or brain injury can cause hemispheric asymmetry. Increased asymmetry before cranioplasty surgery elevates complication risks, suggesting a need to wait for brain rebalancing.
Area of Science:
- Neurosurgery
- Neurology
- Radiology
Background:
- Decompressive craniectomy is used for malignant ischemic stroke and severe traumatic brain injury.
- Cerebral herniation through the calvarial defect is a known complication.
- Hemispheric asymmetry can occur after decompressive craniectomy.
Purpose of the Study:
- To explore temporal dynamics of cerebral herniation.
- To investigate hemispheric asymmetry patterns in stroke and TBI patients post-decompressive craniectomy.
- To assess clinical implications of hemispheric asymmetry for minimizing cranioplasty complications.
Main Methods:
- CT semiautomatic segmentation system used to measure hemispheric areas.
- Patients undergoing decompressive craniectomy for stroke or TBI were analyzed.
- Hemispheric asymmetry was evaluated during acute, subacute, and chronic phases.
Main Results:
- Significant increase in hemispheric asymmetry observed in stroke patients during acute and subacute phases.
- Increased hemispheric asymmetry at cranioplasty correlated with higher complication rates.
- Stroke patients exhibited greater hemispheric asymmetry than TBI patients, peaking in the subacute phase.
Conclusions:
- Ischemic stroke and traumatic brain injury show distinct patterns of brain herniation and asymmetry after decompressive craniectomy.
- Hemispheric asymmetry is a critical factor influencing cranioplasty outcomes.
- Waiting for rebalancing of hemispheric asymmetry may minimize cranioplasty complications.
Abstract:
To explore temporal dynamics of cerebral herniation through the calvarial defect after decompressive craniectomy. To investigate patterns of hemispheric asymmetry in ischemic stroke and traumatic brain injury after decompressive craniectomy.To assess clinical implications of hemispheric asymmetry evaluation in order to minimize cranioplasty complications. Using a CT semiautomatic segmentation system, the ipsilateral and contralateral hemispheric areas of patients who underwent decompressive craniectomy for malignant ischemic stroke and traumatic brain injury were measured during the acute (1-7 days), subacute (8-21 days) and chronic (over 21 days) periods. Difference between the two hemispheric areas, called hemispheric asymmetry, has been investigated. Of the 53 patients, 38 (71.7%) had a malignant ischemic stroke, and 15 (28.3%) had a severe head brain injury. In stroke, a significant increase in hemispheric asymmetry was found during acute and subacute phases (+ 6.7 ± 5.1 cm2 and + 7.5 ± 7.2 cm2, respectively; p = 0.002, p = 0.01). An increased hemispheric asymmetry at the time of cranioplasty was associated with a greater risk of complications (p = 0.01). Ischemic stroke and traumatic brain injury exhibit different patterns of brain herniation through the calvarial defect after decompressive craniectomy. There is a greater amount of hemispheric asymmetry in stroke than in trauma, with a peak that is reached during the subacute phases. To minimize cranioplasty complications, it is advisable to wait for the rebalancing of the hemispheric asymmetry.
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