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Updated: Oct 21, 2025

Scanning Skeletal Remains for Bone Mineral Density in Forensic Contexts
Published on: January 29, 2018
Vitamin D and bone minerals in neonates
1Department of Pediatrics, Dell Medical School at the University of Texas, Austin, TX, USA.
Insights
Very low birth weight infants require calcium and phosphorus supplementation due to low mineral content in human milk. Vitamin D supplementation is recommended for preterm infants after achieving full feeds, but high doses lack proven benefits.
Area of Science:
- Neonatology
- Pediatric Nutrition
- Bone Metabolism
Background:
- Osteopenia and rickets are significant concerns for high-risk infants, particularly preterm infants with very low birth weight (<1500g).
- Human milk's low mineral content necessitates supplementation to meet the bone mineral demands of rapidly growing VLBW infants.
- Supplementation with calcium and phosphorus is common in neonatal care units for VLBW infants and small for gestational age term infants.
Purpose of the Study:
- To review the mineral and vitamin D requirements for bone health in VLBW and term infants.
- To evaluate the efficacy and safety of vitamin D supplementation in preterm neonates.
- To provide guidance on optimal bone mineral and vitamin D management for vulnerable infant populations.
Main Methods:
- Literature review of studies on infant nutrition, bone metabolism, and vitamin D.
- Analysis of current clinical practices in neonatal care units regarding mineral and vitamin D supplementation.
- Synthesis of evidence regarding calcium, phosphorus, and vitamin D absorption and requirements in preterm and term infants.
Main Results:
- Very low birth weight infants often require calcium and phosphorus fortification to prevent osteopenia.
- Vitamin D's role in calcium absorption is less critical in early life for both preterm and term infants.
- While vitamin D supplementation is prudent for preterm infants after full feeds, high doses lack proven benefits and carry inconclusive risks.
Conclusions:
- Optimizing calcium and phosphorus intake is crucial for preventing bone disease in VLBW infants.
- Vitamin D supplementation guidelines should be tailored, with caution regarding high doses in preterm neonates.
- Further research is needed to clarify the optimal vitamin D dosage and benefits in healthy preterm infants.
Abstract:
Osteopenia and rickets remain a problem for high-risk infants, especially preterm infants <1500 g birthweight (very low birth weight, VLBW). The primary cause of osteopenia in VLBW infants is a low intake of calcium and phosphorus compared to requirements for the rapidly growing skeleton. Human milk is a relatively low mineral containing substance and cannot meet the bone mineral needs of very low birth weight infants. As such, most VLBW infants need additional bone minerals and in many neonatal care units these are provided as part of human milk fortificants or specialized infant formulas. In some nurseries, these are given to all infants < 1800-2000 g birthweight. Management of full-term infants who are small for gestational age at birth is less clear, but in general bone mineral content is associated more with body size than gestational age and supplementation is often provided to these infants. Although all infants, including preterm ones need a source of vitamin D, the benefits of providing high doses of vitamin D to healthy preterm neonates is unproven. Some evidence indicates that most calcium absorption is non-vitamin D dependent in the first weeks of life in both preterm and term infants. However, after achieving full feeds in the preterm infant, it is prudent to provide vitamin D at amounts comparable to that used in full-term infants. Higher doses increase serum 25-hydroxyvitamin D levels more rapidly, but evidence is inconclusive as to the relative benefits vs possible risks of higher doses. In healthy full-term infants, although vitamin D provision via supplement drops to the breastfed infant, high dose maternal supplementation to the lactating mother or infant formula is generally recommended, the current evidence only strongly supports its use in identified at-risk infants.
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