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Ann Hellstrom

Publications and source records attributed to Ann Hellstrom.

4 recordsLinked to original sources

Abnormal retinal optic nerve morphology in young adults after intrauterine growth restriction.

Intrauterine growth restriction (IUGR) is a recognized risk factor for neurologic deficits later in life. Abnormal fetal blood flow in the presence of fetal growth retardation helps to distinguish true fetal growth impairment from small but normally grown infants. The present study aimed to investigate the influence of IUGR with abnormal fetal blood flow on retinal optic nerve morphology at 18 y of age. A prospective study was performed in 19 subjects with IUGR [abnormal fetal aortic blood flow velocity; median birth weight deviation of -31% (-22 to -42%; median (range)] and in 23 subjects with a normal birth weight for gestational age [normal fetal aortic blood flow velocity; median birth weight deviation of -2% (-10 to 22%)]. All subjects were previously examined concerning minor neurologic dysfunction (MND) at 7 y of age. The ocular fundus was examined by ophthalmoscopy, and the optic nerve morphology was evaluated by digital image analysis. Decrease in neuroretinal rim area at 18 y of age was associated with increasing negative birth weight deviation (r = 0.71, p < 0.0001). The subjects with severe MND at 7 y had a reduced neuroretinal rim area [median (range), 1.57 mm(2) (1.37-1.78 mm(2))] compared with those with less severe MND [1.94 mm(2) (1.33-2.71 mm(2))] and with those with normal neurologic function [2.18 mm(2) (1.75-2.70 mm(2)); p < 0.05 and p < 0.0001, respectively]. A decrease in neuroretinal rim area reflects either a reduction in axonal volume or a decrease in the number of axons in the optic nerve. It is yet unclear whether this finding represents neuronal changes within other cerebral regions in subjects with IUGR.

Adolescent↗

Growth in very preterm children: a longitudinal study.

The knowledge about the long-term growth of very preterm children in relation to gestational age at birth is incomplete. Therefore, a retrospective study of longitudinal growth from birth to 7 y of age in 52 of 56 surviving children who were born at a gestational age of <29 wk between 1988 and 1991 to mothers resident in the city of Göteborg, Sweden, was performed. A majority of the children had an initial decrease in weight during the first months of life, followed by an increase, with a maximum weight gain occurring at 36-40 wk postmenstrual age. After a period of decreased weight and length velocity, a second increase in weight velocity was demonstrated from 6 mo to 2 y of corrected age. A corresponding increase in length velocity was found from 2 to 12 mo of corrected age. A later catch-up growth period was found at 4-5 y of age. At 7 y of age, all but two had reached the normal height range of the population. This long-term catch-up in height was established later in those who were born at an earlier gestational age. We conclude that all preterm infants had an initial period of poor growth, which rendered them growth retarded during the first years of life. It took approximately 4-7 y to overcome what the very preterm child lost in growth during the first months of life. However, as a group, they did reach normal height, weight, and weight for height before puberty.

Adult↗

Low gestational age associated with abnormal retinal vascularization and increased blood pressure in adult women.

The objective was to investigate any possible relationship between functional and structural vascular changes in women with low gestational age and/or low birth weight by analyzing the retinal vascular pattern in women with thoroughly documented blood pressure. Retinal vessel morphology was evaluated by digital image analysis of ocular fundus photographs in 47 subjects, aged 23-30 y. The women were allocated into three groups: 1) those born preterm and appropriate for gestational age (AGA), with a median gestational age at birth of 30 wk and a median birth weight of 1250 g (n = 14); 2) those born small for gestational age (SGA) but full term (median 40 wk), with a median birth weight of 2130 g (n = 17), and 3) those born full term, AGA, and with a median birth weight of 3640 g (n = 16). Women born preterm had significantly higher length index for arterioles compared with the other two groups (median 1.11 and 1.08, respectively, p = 0.005). In addition, the preterm-born women had significantly fewer number of vascular branching points compared with the controls (median 27 and 30, respectively, p = 0.03). The abnormal retinal vascularization observed in ex-preterm women together with an increased casual blood pressure observed in these subjects suggests that being born preterm does have effects on the vascular system that persist into adult life. In addition, it demonstrates that preterm birth seems to affect the vascular system both functionally and structurally, which, in adulthood, could result in a lower threshold for the development of vascular disease.

Adult↗

RP-forme fruste.

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Gestational Age↗