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Updated: May 28, 2026

Transcutaneous Microcirculatory Imaging in Preterm Neonates
Published on: December 31, 2015
Low birth weight infants do not have capillary rarefaction at birth: implications for early life influence on
Rohan D'Souza1, Rajendra P Raghuraman, Preetha Nathan
1Department of Clinical Sciences, St George's, University of London, Cranmer Terrace, London SW17 0RE, UK.
Insights
Low birth weight infants do not show capillary rarefaction at birth. Microcirculatory abnormalities linked to low birth weight appear to develop after birth, not during fetal development.
Area of Science:
- Cardiovascular Science
- Neonatal Research
- Microcirculation Studies
Background:
- Low birth weight (LBW) is a predictor of adult essential hypertension and cardiovascular mortality.
- Capillary rarefaction (reduced capillary density) is a hallmark of hypertension and may precede blood pressure elevation.
- Existing theories suggest microcirculatory abnormalities originate in utero.
Purpose of the Study:
- To investigate whether low birth weight infants exhibit capillary rarefaction at birth.
- To test the hypothesis that intrauterine factors lead to microcirculatory changes in LBW individuals.
Main Methods:
- Orthogonal polarized spectroscopy was used to measure skin capillary density in infants.
- Functional and structural capillary densities were assessed in 44 LBW infants (preterm and term) and 71 normal weight, term infants.
Main Results:
- LBW infants, regardless of gestational age, demonstrated significantly higher functional capillary density compared to normal weight infants.
- LBW infants also exhibited significantly higher structural capillary density than their normal weight counterparts.
- These findings indicate no capillary rarefaction in LBW infants at birth.
Conclusions:
- Low birth weight infants born to normotensive mothers do not present with capillary rarefaction at birth.
- The study challenges the concept of intrauterine origins for microcirculatory abnormalities in LBW.
- Evidence suggests that microcirculatory alterations associated with LBW manifest postnatally.
Abstract:
Low birth weight predicts adult essential hypertension and is linked to increased cardiovascular mortality in adult life. A reduction in capillary density (ie, rarefaction) is a hallmark of essential hypertension, and evidence suggests that rarefaction precedes the onset of the rise in blood pressure, because it is found in normotensive individuals at high risk of developing hypertension, suggesting that rarefaction is likely to be a primary structural abnormality. We hypothesized that low birth weight infants would have significant capillary rarefaction at birth. We studied 44 low birth weight infants born to normotensive mothers (33 were born preterm, birth weight: 1823±446 g; and 11 were born at term, birth weight: 2339±177 g) and compared them with 71 infants born at term with normal weight (birth weight: 3333±519 g). We used orthogonal polarized spectroscopy to measure basal (ie, functional) and maximal (ie, structural) skin capillary densities. Low birth weight infants, whether born preterm or at term, had significantly higher functional capillary density (mean difference of 10.5 capillaries per millimeter squared; 95% CI: 6.6-14.4 capillaries per millimeter squared; P<0.0001) and higher structural capillary density (mean difference of 11.1 capillaries per millimeter squared; 95% CI: 7.6-14.5 capillaries per millimeter squared; P<0.0001) when compared with normal weight term infants. We conclude that low birth weight infants born to normotensive mothers do not have capillary rarefaction at birth. These results contradict what might have been predicted from the concept of the intrauterine origins of adult disease and suggest that microcirculatory abnormalities observed in individuals of low birth weight occur in postnatal life rather than during their intrauterine existence.
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