Related Experiment Video
Updated: Aug 28, 2025

Transcutaneous Microcirculatory Imaging in Preterm Neonates
Published on: December 31, 2015
Imaging of Premature Infants
Abigail Locke1, Sangam Kanekar1
1Radiology Research, Division of Neuroradiology, Penn State Health, Penn State College of Medicine, Mail Code H066 500 University Drive, Hershey, PA 17033, USA.
Insights
Preterm infants face high risks of neonatal brain injury, impacting neurodevelopment. Early diagnosis via neuroimaging like MRI and CUS is crucial for managing white matter abnormalities and improving outcomes.
Area of Science:
- Neonatology
- Neuroscience
- Medical Imaging
Background:
- Preterm birth (<37 weeks) affects 15 million infants annually, with significant neurodevelopmental risks.
- Neonatal brain injury is a primary cause of mortality and morbidity in premature infants.
- White matter abnormalities (WMA) are prevalent (50-80%) in extremely preterm neonates, leading to functional deficits.
Purpose of the Study:
- To highlight the critical role of neuroimaging in detecting and assessing neonatal brain injuries in preterm infants.
- To emphasize the importance of early diagnosis for managing complications like intraventricular hemorrhage (IVH) and periventricular leukomalacia (PVL).
- To evaluate the effectiveness of brain MRI and cranial ultrasound (CUS) in assessing WMA.
Main Methods:
- Review of existing literature on preterm infant neurodevelopment and brain injury.
- Analysis of neuroimaging techniques, specifically Brain MRI and cranial ultrasound (CUS).
- Discussion of the link between cerebrovascular autoregulation, hypoxic events, and WMA.
Main Results:
- Neonatal brain injury significantly predicts mortality and morbidity in premature infants.
- WMA are common and contribute to functional deficits in preterm neonates.
- Increasing survival rates necessitate optimized diagnostic and management strategies for neonatal brain injury.
Conclusions:
- Early and accurate neuroimaging is essential for timely intervention in preterm infants.
- Brain MRI and CUS are key tools for assessing WMA and guiding supportive care.
- Further determination of optimal imaging modalities is needed given rising survival rates and comorbidities.
Abstract:
According to the World Health Organization (WHO), 15 million babies are born preterm each year. Preterm infants are those born at less than 37 weeks, while extremely and very preterm neonates include those born at 22 to less than 32 weeks gestational age. Infants that fail to make it to term are missing a key part in neurodevelopment, as weeks 24 to 40 are a critical period of brain development. Neonatal brain injury is a crucial predictor for mortality and morbidity in premature and low birth weight (<1500 g) infants. Although the complications associated with preterm birth continue to be the number one cause of death in children under 5, the survival rates are increasing (Volpe, 2019). Despite this, the incidence of comorbidities, such as learning disabilities and visual and hearing problems, is still high. The functional deficits seen in these infants can be contributed to the white matter abnormalities (WMA) that have been found in 50% to 80% of extremely and very preterm neonates. While numerous, the etiology of the neonatal brain injury is essential for determining the mortality and morbidities of the infant, as there is an increased risk for both intraventricular hemorrhage (IVH) and periventricular leukomalacia (PVL), which can be attributed to their lack of cerebrovascular autoregulation and hypoxic events. Neuroimaging plays a key role in detecting and assessing these neurologic injuries that preterm infants are at risk for. It is essential to diagnose these events early on to assess neurologic damage, minimize disease progression, and provide supportive care. Brain MRI and cranial ultrasound (CUS) are both extensively used neuroimaging techniques to assess WMA, and it has become ever more important to determine the best imaging techniques and modalities with the increasing survival rates and high incidence of comorbidities among these infants.
Related Concept Videos
Imaging Studies VII: Vascular Imaging
Imaging Studies II: Ultrasonography
Imaging Studies for Cardiovascular System II:Types of Echocardiography
Types of Echocardiography
Transthoracic Echocardiography (TTE)
TTE is the most common type of echocardiogram which involves placing a transducer on the patient's chest, emitting sound waves to create heart images. TTE is invaluable for evaluating the heart's size, structure, and motion, making it particularly useful for...
Imaging Studies I: CT and MRI
Description of the Procedures
Computed Tomography (CT) scan:
Computed Tomography (CT) scans use X-ray technology to generate detailed images of bones, organs, and tissues. During the scan, the patient lies on a moving table...
Imaging Studies III: Computed Tomography
Imaging Studies II: Positron Emission Tomography and Scintigraphy
Fundamental Principles of PET

