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Updated: Apr 3, 2026

Transcutaneous Microcirculatory Imaging in Preterm Neonates
Published on: December 31, 2015
Comprehensive multi-modality assessment of regional and global arterial structure and function in adults born preterm
Henry Boardman1, Katherine Birse1, Esther F Davis1
1Radcliffe Department of Medicine, Division of Cardiovascular Medicine, University of Oxford, Oxford, UK.
Insights
Adults born preterm have smaller aortas and increased pulse wave velocity, indicating arterial stiffness. These structural changes may contribute to higher blood pressure, despite similar global arterial stiffness measurements.
Area of Science:
- Cardiovascular Science
- Developmental Biology
- Vascular Physiology
Background:
- Preterm birth is linked to elevated blood pressure in adulthood.
- Altered development of aortic elastin and collagen in preterm infants may lead to increased arterial stiffness.
- Understanding macrovascular changes is crucial for managing long-term cardiovascular health in preterm-born individuals.
Purpose of the Study:
- To investigate the extent and severity of macrovascular changes in young adults born preterm.
- To compare central and conduit artery size and arterial stiffness indices between preterm-born individuals and term-born controls.
- To determine if structural aortic differences in preterm-born adults correlate with arterial stiffness.
Main Methods:
- Cardiovascular magnetic resonance (CMR) was used to measure aortic cross-sectional area in 102 preterm-born adults and 102 controls.
- Ultrasound imaging assessed carotid and brachial artery diameters and distensibility.
- Pulse wave velocity (PWV) was measured using SphygmoCor, Vicorder, and CMR; cardio-ankle vascular index (CAVI) assessed global stiffness.
Main Results:
- Adults born preterm exhibited significantly smaller thoracic and abdominal aortic lumens (20% reduction) compared to term-born controls.
- Increased pulse wave velocity (aortic, carotid-femoral, and brachial-femoral) was observed in the preterm group.
- Carotid artery distensibility was reduced in preterm-born adults, but global arterial stiffness (CAVI) and peripheral stiffness did not differ significantly.
Conclusions:
- Adults born preterm demonstrate significant structural differences in their aortas compared to term-born adults.
- Despite aortic structural changes and increased PWV, central arterial stiffness differences were relatively small.
- Blood pressure variations may partially explain the observed differences in arterial stiffness between the groups.
Abstract:
Preterm birth is associated with higher blood pressure, which could be because preterm birth alters early aortic elastin and collagen development to cause increased arterial stiffness. We measured central and conduit artery size and multiple indices of arterial stiffness to define the extent and severity of macrovascular changes in individuals born preterm. A total of 102 young adults born preterm and 102 controls who were born after an uncomplicated pregnancy underwent cardiovascular magnetic resonance on a Siemens 1.5 T scanner to measure the aortic cross-sectional area in multiple locations. Ultrasound imaging with a Philips CX50 and linear array probe was used to measure carotid and brachial artery diameters. Carotid-femoral pulse wave velocity and the augmentation index were measured by SphygmoCor, brachial-femoral pulse wave velocity by Vicorder and aortic pulse wave velocity by cardiovascular magnetic resonance. The cardio-ankle vascular index (CAVI) was used as a measurement of global stiffness, and ultrasound was used to assess peripheral vessel distensibility. Adults born preterm had 20% smaller thoracic and abdominal aortic lumens (2.19 ± 0.44 vs. 2.69 ± 0.60 cm(2), P<0.001; 1.25 ± 0.36 vs. 1.94 ± 0.45 cm(2), P<0.001, respectively) but similar carotid and brachial diameters to adults born at term. Pulse wave velocity was increased (5.82 ± 0.80 vs. 5.47 ± 0.59 m s(-1), P<0.01, 9.06 ± 1.25 vs. 8.33 ± 1.28 m s(-1), P=0.01, 5.23 ± 1.19 vs. 4.75 ± 0.91 m s(-1), P<0.01) and carotid distensibility was decreased (4.75 ± 1.31 vs. 5.60 ± 1.48 mm Hg(-1)10(3), P<0.001) in this group compared with the group born at term. However, the global and peripheral arterial stiffness measured by CAVI and brachial ultrasound did not differ (5.95 ± 0.72 vs. 5.98 ± 0.60, P=0.80 and 1.07 ± 0.48 vs. 1.19 ± 0.54 mm Hg(-1)10(3), P=0.12, respectively). Adults who are born preterm have significant differences in their aortic structure from adults born at term, but they have relatively small differences in central arterial stiffness that may be partially explained by blood pressure variations.
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