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Updated: Jan 23, 2026

Dual-mode Imaging of Cutaneous Tissue Oxygenation and Vascular Function
Published on: December 8, 2010
Effects of Prematurity on the Cutaneous Microcirculatory Network in the First Weeks of Life
Alexandra Puchwein-Schwepcke1, Ann-Kristin Grzybowski1, Orsolya Genzel-Boroviczény1
1Divsion of Neonatology, Dr. von Hauner Children's Hospital, Ludwig-Maximilians-University, Munich, Germany.
Insights
Preterm infants show altered skin microcirculation compared to term infants, with these differences persisting even near term. This may explain their higher risk for future hypertension.
Area of Science:
- Neonatal physiology
- Cardiovascular research
- Microcirculation studies
Background:
- Preterm infants face increased hypertension risk in adolescence.
- Microcirculatory dysfunction is a key factor in cardiovascular disease development.
- Understanding early microcirculation in preterm infants is crucial for long-term health.
Purpose of the Study:
- To document the development of cutaneous microcirculation in preterm infants.
- To compare microcirculation in preterm infants with term infants at birth.
- To identify associations between gestational age and microvascular parameters.
Main Methods:
- Sidestream Dark Field (SDF) Imaging used weekly in 20 preterm infants.
- Microcirculatory parameters measured in 30 term infants within 3 days of birth.
- Blinded video analysis using AVA software for quantitative assessment.
Main Results:
- Preterm infants exhibited lower vessel surface (VS) and different vessel diameter distribution.
- Higher Functional Vessel Density (FVD) and Microcirculatory Flow Index (MFI) observed in preterm infants.
- Gestational age significantly associated with microcirculatory variables; FVD decreased longitudinally in preterm infants.
Conclusions:
- Preterm birth leads to distinct microcirculatory alterations, linked to gestational age at birth.
- These vascular changes persist near corrected term age, indicating a lasting phenotype.
- Findings suggest a potential link between early microcirculation and later cardiovascular risk in former preterm infants.
Abstract:
Background: Preterm infants are at increased risk for hypertension in adolescence. Microcirculatory dysfunction has been identified as an underlying cause for cardiovascular disease. Our goal was to document the development of the cutaneous microcirculation in preterm infants during the first weeks of life and to compare it to the situation in term infants at birth. Methods: In 20 preterm infants, microcirculatory parameters were obtained prospectively by Sidestream Dark Field (SDF) Imaging at the upper inner arm once a week until discharge or 37 weeks of gestational age. A single microcirculatory measurement was obtained in 30 term infants during the first 3 days of life. Videos were blinded and analyzed with the AVA software. Results: Microcirculatory parameters in preterm infants differ significantly from term infants with a lower vessel surface (VS), a lower percentage of large and medium but higher percentage of small vessels, a higher Functional Vessel Density (FVD), and a higher Microcirculatory Flow Index (MFI). In multivariable linear regression models we could demonstrate a statistically significant association between the dependent microcirculatory variables (VS, diameter distribution, MFI) and gestational age as independent predictor variable while adjusting for postnatal days of life. Looking at the longitudinal follow-up data of preterm infants by means of a multivariable mixed-effects linear regression model adjusting for clinical variables, there is a significant decrease in FVD with increasing postnatal age, however no other significant changes in microcirculatory parameters over time. Accordingly, comparing the microcirculatory parameters of near term former preterm infants with term born neonates, we could still find significant differences with a higher FVD, lower VS and differences in vessel diameters in the former premature group. Conclusion: Infants born prematurely exhibit distinct microcirculatory alterations compared to term neonates with gestational age at birth being associated with microvascular parameters. Interestingly, this premature vascular phenotype persists even close to corrected term age. In view of the known increased cardiovascular risk of former preterm infants, our observations might have important clinical impact. The factors governing the development of the microvascular network in preterm infants and the contribution of microcirculatory changes observed here to vascular pathology in later life need to be further investigated.
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