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Making MR Imaging Child's Play - Pediatric Neuroimaging Protocol, Guidelines and Procedure
Published on: July 30, 2009
MR Imaging Differences in the Circle of Willis between Healthy Children and Adults
K P Guilliams1,2,3, N Gupta3, S Srinivasan3
1From the Department of Neurology (K.P.G., M.M.B., J.-M.L., M.S.G.).
Insights
The circle of Willis, a brain artery network, is larger and more symmetric in children than adults. These anatomical differences correlate with cerebral perfusion, suggesting developmental changes impact brain vasculature.
Area of Science:
- Neuroimaging
- Vascular Anatomy
- Pediatric Neurology
Background:
- Circle of Willis asymmetries are linked to neurological conditions like stroke and migraines.
- Age-dependent variations in Circle of Willis anatomy and cerebral perfusion are not fully understood.
Purpose of the Study:
- To investigate age-related differences in Circle of Willis anatomy.
- To examine the influence of age-dependent changes in cerebral perfusion on this vascular structure.
Main Methods:
- Observational, cross-sectional study using Time-of-Flight Magnetic Resonance Angiography (TOF-MRA) and T2 sampling perfection with application-optimized contrasts by using different flip angle evolution (T2-SPACE) imaging.
- Comparison of arterial diameters and cerebral perfusion (via pseudocontinuous arterial spin-labeling) between healthy children and adults.
Main Results:
- The Circle of Willis has a larger summed cross-sectional area in children compared to adults.
- The Circle of Willis is more symmetric in children, with fewer nonvisualized segments than in adults.
- Circle of Willis size and symmetry correlate with cerebral perfusion.
Conclusions:
- Healthy children exhibit distinct Circle of Willis size and symmetry compared to adults, likely due to developmental changes in cerebral perfusion.
- Further research is required to elucidate the reasons behind the development of vascular asymmetry in some adults.
Background And Purpose:
Asymmetries in the circle of Willis have been associated with several conditions, including migraines and stroke, but they may also be age-dependent. This study examined the impact of age and age-dependent changes in cerebral perfusion on circle of Willis anatomy in healthy children and adults.
Materials And Methods:
We performed an observational, cross-sectional study of bright and black-blood imaging of the proximal cerebral vasculature using TOF-MRA and T2 sampling perfection with application-optimized contrasts by using different flip angle evolution (T2-SPACE) imaging at the level of the circle of Willis in 23 healthy children and 43 healthy adults (4-74 years of age). We compared arterial diameters measured manually and cerebral perfusion via pseudocontinuous arterial spin-labeling between children and adults.
Results:
We found that the summed cross-sectional area of the circle of Willis is larger in children than in adults, though the effect size was smaller with T2-SPACE-based measurements than with TOF-MRA. The circle of Willis is also more symmetric in children, and nonvisualized segments occur more frequently in adults than in children. Moreover, the size and symmetry of the circle of Willis correlate with cerebral perfusion.
Conclusions:
Our results demonstrate that the circle of Willis is different in size and symmetry in healthy children compared with adults, likely associated with developmental changes in cerebral perfusion. Further work is needed to understand why asymmetric vasculature develops in some but not all adults.
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