4.7 Article

Microvessel ultrasound of neonatal brain parenchyma: feasibility, reproducibility, and normal imaging features by superb microvascular imaging (SMI)

期刊

EUROPEAN RADIOLOGY
卷 29, 期 4, 页码 2127-2136

出版社

SPRINGER
DOI: 10.1007/s00330-018-5743-1

关键词

Ultrasound imaging; Microvasculature; Neonate; Brain

资金

  1. Medical University of Vienna

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ObjectivesTo evaluate the feasibility and reproducibility of superb microvascular imaging (SMI) of the neonatal brain and to describe normal imaging features.MethodsWe performed transcranial ultrasound with SMI in 19 healthy term-born neonates. SMI was done according to a structured examination protocol, using two linear 18MHz and 14MHz transducers. Superficial and deep scans were acquired in the coronal and sagittal planes, using the left and right superior frontal gyri as anatomical landmarks. All SMI views were imaged by monochrome and colour SMI and evaluated with respect to visibility of extrastriatal (i.e. cortical and medullary) and striatal microvessels.ResultsWe have described normal morphologic features of intraparenchymal brain microvasculature as short parallel cortical vessels, smoothly curved medullary vessels, and deep striatal vessels. In general, SMI performance was better on coronal views than on sagittal views. On superficial coronal scans, cortical microvessels were identifiable in 90-100%, medullary microvessels in 95-100%. On deep scans, cortical and medullary microvessels were visible in all cases, while striatal microvessels were identifiable in 71% of cases.ConclusionsCerebral SMI ultrasound is feasible and well-reproducible and provides a novel non-invasive imaging tool for the assessment of intraparenchymal brain microvasculature (extrastriatal and striatal microvessels) in neonates without the use of contrast.Key Points center dot Superb microvascular imaging (SMI) of the neonatal brain is feasible and reproducible.center dot SMI depicts extrastriatal and striatal microvessels.center dot SMI detects two types of extrastriatal microvessels: cortical and medullary.

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