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Nutritional Deficiencies and Children's Behaviour and Mental Development

Published online by Cambridge University Press:  14 December 2007

Donald T. Simeon
Affiliation:
Tropical Metabolism Research Unit, University of the West Indies, Mona, St Andrew, Jamaica
Sally M. Grantham-McGregor
Affiliation:
Tropical Metabolism Research Unit, University of the West Indies, Mona, St Andrew, Jamaica
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Abstract

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Type
Research Article
Copyright
Copyright © The Nutrition Society 1990

References

REFERENCES

Agarwal, D. K., Upadhyay, S. K., Tripathi, A. M. & Agarwal, K. N. (1987). Nutritional status, physical work capacity and mental function in school children. Nutrition Foundation of India Scientific Report no. 6. New Delhi: Nutrition Foundation of India.Google Scholar
Aukett, M., Parks, Y., Scott, P. & Wharton, B. (1986). Treatment with iron increases weight gain and psychomotor development. Archives of Disease in Childhood 61, 849857.CrossRefGoogle ScholarPubMed
Barnes, R. H., Neely, C. S., Kwong, E., Labadan, B. A. & Frañkova, S. (1968). Post-natal nutritional deprivations as determinants of adult rat behavior toward food, its consumption and utilization. Journal of Nutrition 96, 467476.CrossRefGoogle Scholar
Bartel, P., Griesel, R., Burnett, L., Freiman, I., Rosen, E. & Geefhuysen, J. (1978). Long-term effects of kwashiorkor on psychomotor development. South African Medical Journal 53, 360362.Google ScholarPubMed
Bautista, A., Barker, P. A., Dunn, J. T., Sanchez, M. & Kaiser, D. L. (1982). The effects of oral iodized oil on intelligence, thyroid status, and somatic growth in school-age children from an area of endemic goiter. American Journal of Clinical Nutrition 35, 127134.CrossRefGoogle ScholarPubMed
Bedi, K. (1987). Lasting neuroanatomical changes following undernutrition. In Early Nutrition and Later Achievement, pp. 149 [Dobbing, J., editor]. London: Academic Press.Google Scholar
Benton, D., Brett, V. & Brain, P. (1987). Glucose improves attention and reaction to frustration in children. Biological Psychology 24, 95100.CrossRefGoogle ScholarPubMed
Berglund, G. & Rabo, E. (1973). A long-term follow-up investigation of patients with hypertrophic pyloric stenosis – with special reference to the physical and mental development. Acta Paediatrica Scandinavica 62, 125129.CrossRefGoogle Scholar
Birch, H. G., Pineiro, C., Alcalde, E., Toca, T. & Cravioto, J. (1971). Relation of kwashiorkor in early childhood and intelligence at school age. Pediatric Research 5, 579585.CrossRefGoogle Scholar
Bleichrodt, N., Garcia, I., Rubio, C., de Escobar, Morreale G. & del Rey, Ecobar F. (1987). Developmental disorders associated with severe iodine deficiency. In The Prevention and Control of Iodine Deficiency Disorders, pp. 6584 [Hetzel, B., Dunn, J. and Stanbury, J., editors]. Amsterdam: Elsevier.Google Scholar
Champakam, S., Srikantia, S. G. & Gopalan, C. (1968). Kwashiorkor and mental development. American Journal of Clinical Nutrition 21, 844852.CrossRefGoogle ScholarPubMed
Chavez, A. & Martinez, C. (1981). School performance of supplemented and unsupplemented children from a poor rural area. Nutrition in Health and Disease and International Development, pp. 393402. [Harper, A. E. and Davis, G. K., editors.] New York: Alan Liss.Google Scholar
Chavez, A. & Martinez, C. (1982). Growing Up In a Developing Community. Guatemala City: Institute of Nutrition in Central America and Panama.Google Scholar
Christiansen, N., Vuori, L., Clement, J., Herrera, M. G., Mora, J. O. & Ortiz, N. (1977). Malnutrition, social environment and cognitive development of Colombian infants and preschoolers. Nutrition Reports International 16, 93102.Google Scholar
Chun, F. (1971). Nutrition and education – a study. Journal of the Singapore Pediatric Society 13, 9196.Google Scholar
Clarke, N., Grantham-McGregor, S. & Powell, C. (1990). Health and nutrition predictors of school failure in Kingston, Jamaica. Ecology of Food and Nutrition (In the Press.)Google Scholar
Colombo, M., de Andraca, I. & Lopez, I. (1988). Mental development and stunting. In Linear Growth Retardation in Less Developed Countries, pp. 201214 [Waterlow, J., editor]. New York: Raven Press.Google Scholar
Conners, C. & Blouin, A. (1983). Nutritional effects on behavior of children. Journal of Psychiatric Research 17, 193201.Google Scholar
Connolly, K. J., Pharaoh, P. O. D. & Hetzel, B. S. (1979). Fetal iodine deficiency and motor performance during childhood. Lancet ii, 11491151.CrossRefGoogle Scholar
Cravioto, J. & Arrieta, R. (1979). Stimulation and mental development of malnourished infants. Lancet ii, 899.CrossRefGoogle Scholar
Cravioto, J. & DeLicardie, E. (1972). Environmental correlates of severe clinical malnutrition and language development in survivors from kwashiorkor or marasmus. In Nutrition, the Nervous System and Behavior, Scientific Publication no. 251, pp. 7394. Washington, DC: Pan American Health Organization.Google Scholar
Cravioto, J., DeLicardie, E. & Birch, H. (1966). Nutrition, growth and neuro-integrative development: an experimental and ecologic study. Pediatrics 38, 319372.CrossRefGoogle Scholar
Cravioto, J. & Robles, B. (1965). Evolution of adaptive and motor behavior during rehabilitation from kwashiorkor. American Journal of Ortho-Psychiatry 35, 449464.CrossRefGoogle ScholarPubMed
Deinard, A. S., List, A., Lindgren, B., Hunt, J. V. & Chang, P. N. (1986). Cognitive deficits in iron-deficient and iron-deficient anemic children. Journal of Pediatrics 108, 681689.CrossRefGoogle ScholarPubMed
DeMaeyer, E. & Adiels-Tegman, M. (1985). The prevalence of anaemia in the world. World Health Statistics Quarterly 38, 302316.Google ScholarPubMed
Dickerson, J., Merat, A. & Yusuf, H. (1982). Effects of malnutrition on brain growth and development. In Brain and Behavioural Development, pp. 73108 [Dickerson, J. and McGurk, H., editors]. London: Surrey University Press.Google Scholar
Dickie, N. & Bender, A. (1982). Breakfast and performance. Human Nutrition: Applied Nutrition 36A, 4656.Google Scholar
Dwyer, J. T., Elias, M. F., Warram, J. & Stare, F. J. (1972). Effects of a school snack program on certain aspects of school performance Federation Proceedings 31, 718.Google Scholar
Ellis, C. E. & Hill, D. E. (1975). Growth, intelligence and school performance in children with cystic fibrosis who have had an episode of malnutrition during infancy. Journal of Pediatrics 87, 565568.CrossRefGoogle ScholarPubMed
Evans, D., Moodie, A. & Hansen, J. (1971). Kwashiorkor and intellectual development. South African Medical Journal 45, 14131426.Google ScholarPubMed
Eysenck, M. (1976). Arousal, learning and memory. Psychological Bulletin 83, 389404.CrossRefGoogle ScholarPubMed
Fairchild, M. W., Haas, J. & Habicht, J.-P. (1989). Iron deficiency and behavior: criteria for testing causality. American Journal of Clinical Nutrition 50, 566574.CrossRefGoogle ScholarPubMed
Fierro-Benitez, R., Casar, R., Stanbury, J., Rodriguez,, P., Garces, F., Fierro-Renoy, F. & Estrella, E. (1986). Long-term effects of correction of iodine deficiency on psychomotor development and intellectual development. In Towards the Eradication of Endemic Goiter, Cretinism and Iodine Deficiency, pp. 182200 [Dunn, J., Pretell, E., Daza, C. and Viteri, F., editors]. Washington, DC: Pan American Health Organization.Google Scholar
Florencio, C. (1988). Nutrition, Health and Other Determinants of Academic Achievement and School-related Behavior of Grades One to Six Pupils. Quezan City, Phillipines: University of the Phillipines.Google Scholar
Freeman, H., Klein, R., Townsend, J. & Lechtig, A. (1980). Nutrition and cognitive development among rural Guatemalan children. American Journal of Public Health 70, 12771285.Google Scholar
Galler, J. R., Ramsey, F., Forde, V., Salt, P. & Archer, E. (1987 a). Long-term effects of early kwashiorkor compared with marasmus. II. Intellectual performance. Journal of Pediatrics, Gastroenterology and Nutrition 6, 847854.Google ScholarPubMed
Galler, J. R., Ramsey, F., Salt, P. & Archer, E. (1987 b). Long-term effects of early kwashiorkor compared with marasmus. III. Fine motor skills. Journal of Pediatrics, Gastroenterology and Nutrition 6, 855859.Google ScholarPubMed
Galler, J. R., Ramsey, F. & Solimano, G. (1984 a). The influence of early malnutrition on subsequent behavioral development. III. Learning disabilities as a sequel to malnutrition. Pediatric Research 18, 309313.CrossRefGoogle ScholarPubMed
Galler, J. R., Ramsey, F., Solimano, G., Kucharski, L. T. & Harrison, R. (1984 b). The influence of early malnutrition on subsequent behavioral development. IV. Soft neurologic signs. Pediatric Research 18, 826832.CrossRefGoogle ScholarPubMed
Galler, J. R., Ramsey, F., Solimano, G. & Lowell, W. (1983 a). The influence of early malnutrition on subsequent behavioral development. II. Classroom behavior. Journal of the American Academy of Child Psychiatry 22, 1622.CrossRefGoogle ScholarPubMed
Galler, J. R., Ramsey, F., Solimano, G., Lowell, W. & Mason, E. (1983 b). The influence of early malnutrition on subsequent behavioral development. I. Degree of impairment of intellectual performance. Journal of the American Academy of Child Psychiatry 22, 815.CrossRefGoogle ScholarPubMed
Gandour, M. J. (1990). Activity level as a dimension of temperament in toddlers: its relevance for the organismic specificity hypothesis. Child Development. (In the Press.)Google Scholar
Golden, M. H. N. (1988). The role of individual nutrient deficiencies in growth retardation of children as exemplified by zinc and protein. In Linear Growth Retardation in Less Developed Countries, pp. 143164 [Waterlow, J. C., editor]. New York: Raven Press.Google Scholar
Gomez, F., Galvan, R., Cravioto, J. & Frenk, S. (1955). Malnutrition in infancy and childhood with special reference to kwashiorkor. Advances in Pediatrics 7, 131169.CrossRefGoogle ScholarPubMed
Graham, G. & Adrianzen, B. (1979). Status at school of Peruvian children severely malnourished in infancy. In Behavioral Effects of Energy and Protein Deficits, pp. 185194. [Brozek, J., editor]. Washington, DC: US Department of Health, Education and Welfare.Google Scholar
Grant, J. (1990). The State of the World's Children. New York: Oxford University Press.Google Scholar
Grantham-McGregor, S. (1982). The relationship between developmental level and different types of malnutrition in children. Human Nutrition: Clinical Nutrition 36C, 319320.Google Scholar
Grantham-McGregor, S. (1984). Chronic undernutrition and cognitive abilities. Human Nutrition: Clinical Nutrition 38C, 8394.Google Scholar
Grantham-McGregor, S. (1987). Field studies in early nutrition and later achievement. In Early Nutrition and Later Achievements, pp. 128174 [Dobbing, J., editor]. London: Academic Press.Google Scholar
Grantham-McGregor, S., Meeks Gardner, J., Walker, S. & Powell, C. (1990). The relationship between undernutrition, activity levels and development in young children. In Activity, Energy Expenditure and Energy Requirements of Infants and Children. [Schurch, B. and Scrimshaw, N., editors]. Switzerland: Nestlé Foundation. (In the Press.)Google Scholar
Grantham-McGregor, S., Powell, C. & Fletcher, P. (1989 a). Stunting, an episode of severe malnutrition and mental development in young children. European Journal of Clinical Nutrition 43, 403409.Google ScholarPubMed
Grantham-McGregor, S., Powell, C. & Walker, S. (1989 b). Nutritional supplements, stunting and child development. Lancet ii, 809810.CrossRefGoogle Scholar
Grantham-McGregor, S., Schofield, W. & Powell, C. (1987). Development of severely malnourished children who received psychosocial stimulation: six year follow-up. Pediatrics 79, 247254.Google Scholar
Hebb, D. O. (1972). Textbook of Psychology, 3rd ed. Philadelphia, PA: Saunders.Google Scholar
Herrera, M. & Super, C. (1983). School Performance and Physical Growth of Underprivileged Children: Results of the Bogota Project at Seven Years. Report to World Bank. Cambridge, MA: Harvard School of Public Health.Google Scholar
Hertzig, M., Birch, H., Richardson, S. & Tizard, J. (1972). Intellectual levels of school children severely malnourished during the first two years of life. Pediatrics 49, 814824.CrossRefGoogle ScholarPubMed
Hetzel, B. (1983). Iodine deficiency disorders (IDD) and their eradication. Lancet ii, 11261129.CrossRefGoogle Scholar
Hetzel, B. (1987). An overview of the prevention and control of iodine deficiency disorders. In The Prevention and Control of Iodine Deficiency Disorders, pp. 731 [Hetzel, B., Dunn, J. and Stanbury, J., editors]. Amsterdam: Elsevier.Google ScholarPubMed
Heywood, A., Oppenheimer, S., Heywood, P. & Jolley, D. (1989). Behavioral effects of iron supplementation in infants in Madang, Papua New Guinea. American Journal of Clinical Nutrition 50, 630640.CrossRefGoogle ScholarPubMed
Hicks, L., Langham, R. & Takenaka, J. (1982). Cognitive and health measures following early nutritional supplementation. American Journal of Public Health 72, 11101118.CrossRefGoogle ScholarPubMed
Hoorweg, J. & Stanfield, J. (1976). The effects of protein-energy malnutrition in early childhood on intellectual and motor abilities in later childhood and adolescence. Developmental Medicine and Child Neurology 18, 330350.CrossRefGoogle ScholarPubMed
Horowitz, F. D. (1989). Using developmental theory to guide the search for the effects of biological risk factors on the development of children. American Journal of Clinical Nutrition 50, 589597.CrossRefGoogle ScholarPubMed
Hurwitz, I. (1984). Psychometric methods. In Malnutrition and Behavior: Critical Assessment of Key Issues pp. 164176. [Brozek, J. and Schurch, B., editors]. Lausanne, Switzerland: Nestlé Foundation.Google Scholar
Jamison, D. (1986). Child malnutrition and school performance in China. Journal of Development Economics 20, 299309.Google Scholar
Johnston, F., Low, S., de Baessa, Y. & McVean, R. (1987). Interaction of nutrition and socio-economic status as determinants of cognitive development in disadvantaged urban Guatemalan children. American Journal of Physical Anthropology 73, 501506.CrossRefGoogle Scholar
Joos, S., Pollitt, E., Mueller, W. & Albright, D. (1983). The Bacon Chow Study: maternal nutritional supplementation and infant behavioral development. Child Development 54, 669676.Google Scholar
Keister, M. E. (1950). Relation of mid-morning feeding to behavior of nursery school children. Journal of the American Dietetic Association 26, 2529.CrossRefGoogle ScholarPubMed
Klein, P., Forbes, G. & Nader, P. (1975). Effects of starvation in infancy (pyloric plenosis) on subsequent learning abilities. Journal of Pediatrics 87, 815.CrossRefGoogle ScholarPubMed
Kruesi, M. J. R. & Rapoport, J. L. (1986). Diet and human behavior: how much do they affect each other? Annual Review of Nutrition 6, 113130.CrossRefGoogle ScholarPubMed
Laird, D., Levitan, M. & Wilson, V. (1931). Nervousness in school children as related to hunger and diet. Medical Journal Records 134, 494499.Google Scholar
Lasky, R., Klein, R., Yarbrough, C., Engle, P., Lechtig, A. & Martorell, R. (1981). The relationship between physical growth and infant behavioral development in rural Guatemala. Child Development 52, 219226.CrossRefGoogle ScholarPubMed
Levinger, B. (1986). Schoolfeeding programs in developing countries: an analysis of actual and potential impact. AID Evaluation Special Study no. 30. Washington, DC: USAID.Google Scholar
Levitsky, D. (1979). Malnutrition and the hunger to learn. In Malnutrition, Environment and Behavior, pp. 161179. [Levitsky, D., editor.] Ithaca, NY: Cornell University Press.Google Scholar
Levitsky, D. A. & Barnes, R. H. (1970). Effect of early malnutrition on the reaction of adult rats to aversive stimuli. Nature 225, 468469.CrossRefGoogle ScholarPubMed
Lloyd-Still, J., Hurtwitz, I., Wolf, P. & Shwachman, H. (1974). Intellectual development after severe malnutrition in infancy. Pediatrics 54, 306311.Google Scholar
Lozoff, B., Brittenham, G. M., Viteri, F. E., Wolf, A. W. & Urrutia, J. J. (1982). The effects of short-term oral iron therapy on developmental deficits in iron-deficient anemic infants. Journal of Pediatrics 100, 351357.Google Scholar
Lozoff, B., Brittenham, G., Wolf, A., McClish, D., Kuhnert, P., Jiminez, E., Jiminez, R., Mora, L., Gomez, I. & Kruashkoph, D. (1987). Iron deficiency anemia and iron therapy effects on infant developmental test performance. Pediatrics 79, 981995.Google Scholar
McKay, A. & McKay, H. (1983). Primary school progress after preschool experience: troublesome issues in the conduct of follow-up research and findings from Cali, Colombia Study. In Preventing School Failure: The Relationship Between Preschool and Primary Education, pp. 3242 [King, K. and Meyers, R., editors]. Ottawa: International Development Research Center.Google Scholar
McKay, H., Sinisterra, L., McKay, A., Gomez, H. & Lloreda, P. (1978). Improving cognitive ability in chronically deprived children. Science 200, 270278.Google Scholar
McLaren, D., Yatkin, U., Kanawati, A., Sabbagh, S. & Kadi, Z. (1973). The subsequent mental and physical development of rehabilitated marasmic infants. Journal of Mental Deficiency Research 17, 273281.Google ScholarPubMed
Meyers, A., Sampson, A., Weitzman, M., Rogers, B. & Kayne, H. (1989). School breakfast program and school performance. American Journal of Diseases of Children 143, 12341239.Google ScholarPubMed
Monckeberg, F. (1972). Malnutrition and mental capacity. Nutrition, the Nervous System and Behavior. PAHO Scientific Publication no 251, pp. 4854. Washington, DC: Pan American Health Organization.Google Scholar
Monckeberg, F. (1979). Recovery of severely malnourished infants: effect of early sensory-affective stimulation. In Behavioral Effects of Energy and Protein Deficits, DHEW Publication no. 79–1906, pp. 121230. [Brozek, J. and Schurch, B., editors]. Washington, DC: US Department of Health, Education and Welfare.Google Scholar
Moock, P. & Leslie, J. (1986). Childhood malnutrition and schooling in the Terai region of Nepal. Journal of Development Economics 20, 3352.CrossRefGoogle Scholar
Moodie, A., Bowie, M., Mann, M. & Hansen, J. (1980). A prospective 15-year follow-up study of kwashiorkor patients. Part II. Social circumstances, educational attainment and social adjustment. South African Medical Journal 58, 677681.Google ScholarPubMed
Mora, J. A., Amezquita, A., Castro, L., Christiansen, N., Clement-Murphy, J., Cobos, L. F., Cremer, H. D., Dragastin, S., Elias, M. F., Franklin, D., Herrera, M. G., Ortiz, N., Pardo, F., de Paredes, B., Ramos, C., Riley, R., Rodriguez, H., Vuori-Christiansen, L., Wagner, M. & Stare, F. J. (1974). Nutrition, health and social factors related to intellectual performance. World Review of Nutrition and Dietetics 19, 205236.Google Scholar
Mora, J., Clement, J., Christiansen, N., Ortiz, N., Vuori, L. & Wagner, M. (1979). Nutritional supplementation, early stimulation and child development. In: Behavioral Effects of Energy and Protein Deficits, DHEW Publication no. 79–1906, pp. 225269: [Brozek, J. and Schurch, B., editors]. Washington, DC: US Department of Health, Education and Welfare.Google Scholar
Nwuga, V. C. B. (1977). Effect of severe kwashiorkor on intellectual development among Nigerian children. American Journal of Clinical Nutrition 30, 14231430.CrossRefGoogle ScholarPubMed
Oski, F. A. & Honig, A. S. (1978). The effects of therapy on the developmental scores of iron-deficient infants. Journal of Pediatrics 92, 2125.CrossRefGoogle Scholar
Osofsky, H. (1975). Relationships between pre-natal medical and nutritional measures, pregnancy outcome, and early infant development in an urban poverty setting. I. The role of nutritional intake. American Journal of Obstetrics and Gynecology 123, 632690.CrossRefGoogle Scholar
Pencharz, P., Heller, A., Higgins, A., Strawbridge, J., Rush, D. & Pless, B. (1983). Effects of nutritional services to pregnant mothers on the school performance of treated and untreated children. Nutrition Research 3, 795803.Google Scholar
Pereira, S. M., Sundararaj, R. & Begum, A. (1979). Physical growth and neuro-integrative performance of survivors of protein-energy malnutrition. British Journal of Nutrition 42, 165171.Google Scholar
Pollitt, E. (1987). A critical view of three decades of research on the effects of chronic energy malnutrition on behavioral development. In Chronic Energy Deficiency: Consequences and Related Issues, pp. 7793 [Schurch, B. and Scrimshaw, N., editors]. Switzerland: Nestlé Foundation.Google Scholar
Pollitt, E. (1989). Infancy. Mental and motor development. Comments. American Journal of Clinical Nutrition 50, 662664.Google Scholar
Pollitt, E., Hathirat, P., Kotchabhakdi, N. J., Missell, L. & Valyasevi, A. (1989 b). Iron deficiency and educational achievement in Thailand. American Journal of Clinical Nutrition 50, 687697.Google Scholar
Pollitt, E., Leibel, R. L. & Greenfield, D. (1981). Brief fasting, stress, and cognition in children. American Journal of Clinical Nutrition 34, 15261533.CrossRefGoogle ScholarPubMed
Pollitt, E., Leibel, R. L. & Greenfield, D. (1983 a). Iron deficiency and cognitive test performance in preschool children Nutrition and Behavior 1, 137146.Google Scholar
Pollitt, E., Lewis, N., Garcia, C. & Shulman, R. (1983 b). Fasting and cognitive function. Journal of Psychiatric Research 17, 169174.CrossRefGoogle Scholar
Pollitt, E., Saco-Pollitt, C., Leibel, R. L. & Viteri, F. E. (1986). Iron deficiency and behavioral development in infants and preschool children. American Journal of Clinical Nutrition 43, 555565.Google Scholar
Pollitt, E., Soemantri, A. G., Yunis, F. & Scrimshaw, N. S. (1985). Cognitive effects of iron-deficiency anaemia. Lancet i, 158.CrossRefGoogle Scholar
Pollitt, E. & Thomson, C. (1977). Protein-calorie malnutrition and behavior. A view from psychology. In Nutrition and the Brain, vol. 2, pp. 261306 [Wurtman, R. and Wurtman, J., editors]. New York: Raven Press.Google Scholar
Pollitt, E., Haas, J. & Levitsky, D. (editors) (1989 a). International conference on iron deficiency and behavioral development. American Journal of Clinical Nutrition 50, 565705.CrossRefGoogle Scholar
Popkin, B. & Lim-Ybanez, M. (1982). Nutrition and school achievement. Social Science and Medicine 16, 5361.Google Scholar
Powell, C. & Grantham-McGregor, S. (1980). The associations between nutritional status, school achievement and school attendance in 12-year-old children at a Jamaican school. West Indian Medical Journal 29, 247253.Google Scholar
Powell, C. A. & Grantham-McGregor, S. (1985). The ecology of nutritional status and development in young children in Kingston, Jamaica. American Journal of Clinical Nutrition 41, 13221331.CrossRefGoogle ScholarPubMed
Powell, C. A., Grantham-McGregor, S. & Elston, M. (1983). An evaluation of giving the Jamaican government schoolmeal to a class of children. Human Nutrition: Clinical Nutrition 37C, 381388.Google Scholar
Richardson, S. (1974). The background histories of schoolchildren severely malnourished in infancy. Advances in Pediatrics 21, 167195.CrossRefGoogle ScholarPubMed
Richardson, S., Birch, H. & Hertzig, M. (1973). School performance of children who were severely malnourished in infancy. American Journal of Mental Deficiency 77, 623632.Google Scholar
Rush, D. (1984). The behavioral consequence of protein-energy deprivation and supplementation in early life: an epidemiological perspective. In Human Nutrition: A Comprehensive Treatise, pp. 119154 [Galler, J., editor]. New York: Plenum Press.Google Scholar
Rush, D., Stein, Z. & Susser, M. (1980). A randomized controlled trial of pre-natal nutritional supplementation in New York City. Pediatrics 65, 683697.CrossRefGoogle Scholar
Scrimshaw, N. S. (1984). Functional consequences of iron deficiency in human populations. Journal of Nutritional Science and Vitaminology 30, 4763.CrossRefGoogle ScholarPubMed
Seshadri, S. & Gopaldas, T. (1989). Impact of iron supplementation on cognitive functions in preschool and school-aged children: the Indian experience. American Journal of Clinical Nutrition 50, 675686.Google Scholar
Sigman, M., Neuman, C. & Jansen, A. (1990). Cognitive abilities of Kenyan children in relation to nutrition, family characteristics and education. Child Development (In the Press.)Google Scholar
Simeon, D. T. & Grantham-McGregor, S. (1989). Effects of missing breakfast on the cognitive functions of school children of differing nutritional status. American Journal of Clinical Nutrition 49, 646653.CrossRefGoogle ScholarPubMed
Smart, J. L. & Dobbing, J. (1977). Increased thirst and hunger in adult rats undernourished as infants: an alternative explanation. British Journal of Nutrition 37, 421430.Google Scholar
Soemantri, A. G. (1989). Preliminary findings on iron supplementation and learning achievement of rural Indonesian children. American Journal of Clinical Nutrition 50, 698702.Google Scholar
Soemantri, A. G., Pollitt, E. & Kim, I. (1985). Iron deficiency anemia and educational achievement. American Journal of Clinical Nutrition 42, 12211228.Google Scholar
Soewondo, S., Husaini, M. & Pollitt, E. (1989). Effects of iron deficiency on attention and learning processes in preschool children: Bandung, Indonesia. American Journal of Clinical Nutrition 50, 667674.Google Scholar
Stanbury, J. (1987). Iodine deficiency disorders: introduction and general aspects. In The Prevention and Control of Iodine Deficiency Disorders, pp. 3547 [Hetzel, B., Dunn, J. and Stanbury, J., editors]. Amsterdam: Elsevier.Google Scholar
Tuttle, W. W., Daum, K., Larsen, R., Salzano, J. & Roloff, L. (1954). Effect on school boys of omitting breakfast. Physiologic responses, attitudes, and scholastic attainments. Journal of the American Dietetic Association 30, 674677.CrossRefGoogle ScholarPubMed
Upadhyay, S., Agarwal, D., Agarwal, K., Srivastava, K. & Adhikari, G. (1988). Brief fasting and cognitive functions in rural school children. Indian Pediatrics 25, 288289.Google ScholarPubMed
Valman, H. (1974). Intelligence after malnutrition caused by neonatal resection of ileum. Lancet i, 425427.Google Scholar
Waber, D. P., Vuori-Christiansen, L., Ortiz, N., Clement, J. R., Christiansen, N. E., Mora, J. O., Reed, R. B. & Herrera, M. G. (1981). Nutritional supplementation, maternal education, and cognitive development of infants at risk of malnutrition. American Journal of Clinical Nutrition 34, 807813.CrossRefGoogle ScholarPubMed
Walter, T., de Andraca, I., Chadud, P. & Perales, C. (1989). Iron deficiency anaemia: adverse effects on infant psychomotor development. Pediatrics 84, 717.Google Scholar
Walter, T., Kovalskys, J. & Stekel, A. (1983). Effect of mild iron deficiency on infant mental development scores. Journal of Pediatrics 102, 519522.Google Scholar
Waterlow, J. (1976). Classification and definition of protein energy malnutrition. In Nutrition in Preventative Medicine, WHO Monograph Series no. 62, pp. 530555 [Beaton, G. and Bengoa, J., editors]. Geneva: World Health Organization.Google Scholar
Wellcome Trust Working Party (1970). Classification of infantile malnutrition. Lancet ii, 302.Google Scholar
Wilson, A. (1981). Longitudinal analysis of diet, physical growth, verbal development, and school performance. In Malnourished Children of the Rural Poor, pp. 3981 [Balderston, J., Wilson, A., Freire, M. and Simonen, M., editors]. Boston, MA: Auburn House Publishing Company.Google Scholar
Winick, M., Meyer, K. K. & Harris, R. C. (1975). Malnutrition and environmental enrichment by early adoption. Development of adopted Korean children differing greatly in early nutritional status is examined. Science 190, 11731175.Google Scholar
Wurtman, R. J. (1986). Ways that foods can affect the brain. Nutrition Reviews 44, Suppl.26.CrossRefGoogle ScholarPubMed
Yatkin, V. & McLaren, D. (1970). The behavioural development of infants recovering from severe malnutrition. Journal of Mental Deficiency Research 14, 2532.Google Scholar