Nutrition and brain development in early life
Питание и развитие мозга в раннем возрасте
2014-03-28
SCID: 54.1/dr95vcf5
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brain developmentcognitive deficitsearly-life nutritionmicronutrient supplementationnutrient deficiency
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Abstract (AI)
Presented here is an overview of the pathway from early nutrient deficiency to long-term brain function, cognition, and productivity, focusing on research from low- and middle-income countries. Animal models have demonstrated the importance of adequate nutrition for the neurodevelopmental processes that occur rapidly during pregnancy and infancy, such as neuron proliferation and myelination. However, several factors influence whether nutrient deficiencies during this period cause permanent cognitive deficits in human populations, including the child's interaction with the environment, the timing and degree of nutrient deficiency, and the possibility of recovery. These factors should be taken into account in the design and interpretation of future research. Certain types of nutritional deficiency clearly impair brain development, including severe acute malnutrition, chronic undernutrition, iron deficiency, and iodine deficiency. While strategies such as salt iodization and micronutrient powders have been shown to improve these conditions, direct evidence of their impact on brain development is scarce. Other strategies also require further research, including supplementation with iron and other micronutrients, essential fatty acids, and fortified food supplements during pregnancy and infancy.
Key Findings
1
Adequate nutrition is critical during pregnancy and infancy because rapid neurodevelopment includes neuron proliferation and myelination.
2
Long-term cognitive effects of early nutrient deficiency in humans depend on environmental interaction, deficiency timing and severity, and potential recovery.
3
Salt iodization and micronutrient powders improve nutritional deficiencies, but direct evidence that they improve brain development remains scarce.
4
Severe acute malnutrition, chronic undernutrition, iron deficiency, and iodine deficiency clearly impair brain development.
5
The effects of iron and other micronutrient supplementation, essential fatty acids, and fortified foods during pregnancy and infancy require further research.
Research Object
Brain development during pregnancy and infancy under conditions of nutrient deficiency
Research Subject
Effects of the type, timing, severity, and possible recovery from early-life nutritional deficiencies on neurodevelopment, cognition, and long-term brain function
Publication Details
Publication Date
2014-03-28
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