Why the study?
Cerebral strokes and adult vessels are systematically left-dominant, but it was unknown whether this asymmetric vascular ground plan is present in healthy term neonates.
Are cerebral arterial structures and hemodynamics laterally asymmetric in healthy term neonates?
Are cerebral arterial structures and hemodynamics laterally asymmetric in healthy term neonates?
Healthy term neonates exhibit systematic leftward arterial dominance in the middle cerebral artery, which may explain the higher incidence of left-hemispheric neonatal strokes.
Left MCA dominance in term neonates supports inherent vascular asymmetry from birth; leaves open causal links to stroke and need for prospective validation.
Neonatal and adult strokes are more common in the left than in the right cerebral hemisphere in the middle cerebral arterial territory, and adult extracranial and intracranial vessels are systematically left-dominant. The aim of the research reported here was to determine whether the asymmetric vascular ground plan found in adults was present in healthy term neonates (n = 97). A new transcranial Doppler ultrasonography dual-view scanning protocol, with concurrent B-flow and pulsed wave imaging, acquired multivariate data on the neonatal middle cerebral arterial structure and function. This study documents for the first-time systematic asymmetries in the middle cerebral artery origin and distal trunk of healthy term neonates and identifies commensurately asymmetric hemodynamic vulnerabilities. A systematic leftward arterial dominance was found in the arterial caliber and cortically directed blood flow. The endothelial wall shear stress was also asymmetric across the midline and varied according to vessels’ geometry. We conclude that the arterial structure and blood supply in the brain are laterally asymmetric in newborns. Unfavorable shearing forces, which are a by-product of the arterial asymmetries described here, might contribute to a greater risk of cerebrovascular pathology in the left hemisphere.
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Vuuren et al. (2022) studied this question.
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