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Children With Vitamin D Deficiency: Is A Wrist X-Ray Necessary?
Mohammadreza Esmaeili Dooki1, Leila Moslemi1, Ali Akbar Moghadamnia2
1Non-Communicable Pediatric Diseases Research Center, Health Research Institute, Babol University of Medical Sciences, Babol, IR Iran.
Insights
This study found no radiographic evidence of rickets in vitamin D deficient children. Wrist X-rays are not necessary for diagnosing rickets within the studied vitamin D levels.
Area of Science:
- Pediatrics
- Endocrinology
- Radiology
Background:
- Rickets is a bone mineralization failure caused by severe vitamin D deficiency (VDD).
- Identifying rickets in VDD children and correlating clinical and paraclinical findings is crucial.
Purpose of the Study:
- To identify rickets in vitamin D deficient children.
- To determine the relationship between clinical findings and paraclinical evidence of rickets.
Main Methods:
- 406 children (30-72 months) had 25(OH)D levels measured.
- 108 children with <20 ng/dL 25(OH)D underwent physical evaluation and biochemical analysis.
- Radiography of the left wrist and hand was performed for children with VDD.
Main Results:
- No correlation was found between serum 25(OH)D levels and calcium, alkaline phosphatase, phosphorus, or parathyroid hormone.
- No significant difference in signs and symptoms scores was observed between children with and without VDD.
- None of the vitamin D deficient children showed radiographic evidence of rickets; however, bone age was delayed in 69.2% of cases.
Conclusions:
- Abnormal radiological findings indicative of rickets were not detected on wrist X-rays.
- Wrist X-ray investigations may not be necessary for children with vitamin D levels within the range studied.
Background:
Rickets is failure in mineralization of growing bone and cartilage due to extreme vitamin D deficiency (VDD). The study aimed to identify rickets among vitamin D deficient children and determine any relationship between clinical findings and paraclinical evidence.
Methods:
This study was conducted in two stages. In the first stage, blood was drawn from 406 children aged 30-72 months for measurement of 25(OH)D level. Of these children, 108 had 25(OH)D levels of <20 ng/dL and were evaluated physically for signs and symptoms scores (0-1) of VDD and rickets. Biochemical analysis and radiography of the child's left wrist and hand was performed.
Results:
Of the 119 children (29.67%) with 25(OH)D levels of <20 ng/dL, 42 (10.3%) had vitamin D levels of ≤15 ng/dL. There was no correlation between serum 25(OH)D level and levels of calcium (Ca) (r = -0.16), alkaline phosphatase (ALP) (r = -0.12), P (r = 0.13), and parathyroid hormone (PTH) (r = -0.15,) in children with VDD. The mean of signs and symptoms scores had no significant difference between children with (1.59 ± 0.8) and without (1.73 ± 1.01) VDD (P = 0.3). None of the children with VDD had radiographic evidence of rickets. Radiographic data showed that 69.2% (72), 10.6% (11), and 20.2% (21) of the children had delayed, normal, and advanced bone age, respectively.
Conclusion:
Abnormal radiological findings of rickets were not found on wrist X-rays. Thus, this investigation is not necessary within the range of vitamin D levels described in the current study.
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