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Assessment of Cerebral Lateralization in Children using Functional Transcranial Doppler Ultrasound (fTCD)
Published on: September 27, 2010
Structural and functional alterations in the contralateral hemisphere following pediatric intracranial surgery: a
Na Yan1, Bohan Hu2,3,4, Huina Zhai5
1Department of Neurology, Peking University Shougang Hospital, Beijing, China.
Insights
Pediatric neurosurgery patients showed cognitive improvements over time. Brain structure changes in the contralateral hemisphere, from subcortical to cortical regions, correlated with cognitive recovery, suggesting neuroplasticity.
Area of Science:
- Pediatric neurosurgery
- Neuroscience
- Cognitive rehabilitation
Background:
- Intracranial space-occupying lesions (ISOLs) are common in children.
- Improved survival rates necessitate focus on post-operative cognitive outcomes.
- Previous studies concentrated on short-term post-operative changes.
Purpose of the Study:
- Investigate longitudinal cognitive changes after pediatric neurosurgery.
- Examine structural and functional brain alterations in the contralateral hemisphere.
- Correlate brain changes with cognitive recovery.
Main Methods:
- Paired design study with 19 pediatric patients.
- Cognitive, structural, and functional imaging data collected pre-operation and at two follow-ups (mean 75 and 316 days).
- Analysis of cognitive domains, gray matter density, and brain activity.
Main Results:
- Cognitive flexibility, executive function, and social accuracy significantly improved by the second follow-up.
- Contralateral hemisphere showed gray matter density reduction (subcortical to cortical) and increased functional activity.
- Structural brain changes correlated with cognitive function recovery (r=-0.53, p=0.019).
Conclusions:
- Post-craniotomy brain changes in children follow a subcortical-to-cortical trajectory.
- Structural alterations precede functional activation, showing progressive characteristics.
- These neuroplastic changes may underlie spontaneous cognitive rehabilitation in pediatric patients.
Background:
Intracranial space-occupying lesions (ISOLs) are common pediatric conditions. Recent therapeutic advances have significantly improved survival rates, necessitating increased attention to post-operative cognitive outcomes, which are crucial determinants of patients' quality of life.
Objective:
While previous studies have predominantly focused on short-term post-operative changes, this study aimed to investigate longitudinal changes in cognition, brain structure, and function of the contralateral hemisphere following pediatric neurosurgery.
Methods:
Nineteen pediatric patients with ISOLs were enrolled in a paired design study. Cognitive assessments, structural imaging, and functional imaging data were collected at three time points: pre-operation, first post-operative follow-up (mean 75 days pre-operation), and second post-operative follow-up (mean 316 days pre-operation). Relevant metrics were computed and compared across time points.
Results:
The majority of cognitive domains exhibited a gradual longitudinal improvement trajectory, with three domains showing significant enhancement at the second follow-up compared to preoperative baseline: cognitive flexibility (t = 4.201, p = 0.001), executive function (t = 3.478, p = 0.003), and social accuracy (t = 3.248, p = 0.004). The contralesional hemisphere demonstrated alterations primarily characterized by gray matter density reduction, progressing from subcortical structures (first follow-up: thalamus, peak intensity = -7.54, cluster p < 0.016) to cortical regions (second follow-up compared to previous follow-up: superior frontal gyrus, peak intensity = -7.80, cluster p < 0.016), followed by a subsequent increase in brain activity power of smaller magnitude (second follow-up: medial superior frontal gyrus, amplitude of low frequency fluctuation, peak intensity = 5.96, cluster p < 0.016). Correlation analysis suggests that there is an association between changes in brain structure and alterations in cognitive function (r = -0.53, p = 0.019).
Conclusion:
Our findings suggest that post-craniotomy structural and functional brain changes in children follow a subcortical-to-cortical trajectory, with structural alterations (decreased gray matter density) preceding functional activation. This process demonstrates progressive and cumulative characteristics. These modifications appear to correlate with cognitive function recovery and may represent potential mechanisms underlying spontaneous cognitive rehabilitation in pediatric patients post-surgery. Cautiously interpreted, the deeper neuroplastic mechanisms underlying these changes might involve synaptic pruning-like processes induced by external perturbation.
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