Seasonal growth patterns in rural Nepali children

C Panter-Brick1

  • 1Durham University, UK.

Annals of Human Biology
|January 1, 1997
PubMed

Insights

Seasonal factors and recurrent illnesses significantly impair child growth in rural Nepal, leading to stunting. Poor nutrition and frequent sickness cause slow, uneven development, impacting long-term stature.

Area of Science:

  • Pediatrics
  • Human Nutrition
  • Global Health

Background:

  • Child growth is influenced by environmental and health factors, particularly in subsistence populations.
  • Seasonal variations and morbidity are critical determinants of nutritional status and development in young children.
  • Understanding these factors is crucial for developing effective interventions in resource-limited settings.

Purpose of the Study:

  • To investigate the prevalence of growth retardation in young children in rural Nepal.
  • To assess the impact of seasonality on height and weight gains.
  • To examine the relationship between growth velocity, nutritional status, and morbidity.

Main Methods:

  • Monthly growth patterns of 71 children (0-49 months) were analyzed.
  • Height-for-age and weight-for-height z-scores were calculated using NCHS reference values.
  • Relationships between growth, nutritional status, and reported morbidity were statistically examined.

Main Results:

  • 71% of children exhibited moderate stunting during the monsoon season, with stunting worsening after one year of age.
  • Seasonal changes led to significant weight loss and reduced weight-for-height z-scores, especially in younger children (0-35 months).
  • Growth velocity was linked to prior growth status and illness frequency; recurrent illnesses significantly reduced weight and height increments.

Conclusions:

  • Poor diet and recurrent illnesses are primary drivers of slow and uneven growth in this population.
  • Seasonal environmental changes significantly impact child growth, particularly during the monsoon.
  • The observed growth patterns contribute to small stature in later childhood and adulthood.

Related Concept Videos

Nature and Nurture01:10

Nature and Nurture

Many human characteristics, like height, are shaped by both nature—in other words, by our genes—and by nurture, or our environment. For example, chronic stress during childhood inhibits the production of growth hormones and consequently reduces bone growth and height. Scientists estimate that 70-90% of variation in height is due to genetic differences among individuals, and 10-30% of variation in height is due to differences in the environments that individuals experience, such as differences...
Population Growth00:57

Population Growth

Population size is dynamic, increasing with birth rates and immigration, and decreasing with death rates and emigration. In ideal conditions with unlimited resources, populations can increase exponentially, which plots as a J-shaped growth rate curve of population size against time. This type of curve is characteristic of newly-introduced invasive species, or populations that have suffered catastrophic declines and are rebounding.However, realistic environmental conditions limit the number of...
Signs of Puberty01:27

Signs of Puberty

Puberty is a critical phase, typically beginning between the ages of 8 and 13 in girls and 9 and 14 in boys, though timing can vary based on genetics, environmental factors, and overall health. This period is characterized by the development of secondary sexual characteristics and the attainment of reproductive potential. Endocrine changes underpin puberty, with hormonal surges of Luteinizing Hormone (LH) and Follicle-Stimulating Hormone (FSH) instigated by Gonadotropin-Releasing Hormone (GnRH)...
Oxygen Requirements and Growth Patterns01:29

Oxygen Requirements and Growth Patterns

Microorganisms exhibit diverse oxygen requirements and growth patterns driven by their metabolic strategies and environmental adaptations. Oxygen, while essential for many organisms, can also be toxic under certain conditions, shaping how microorganisms grow and survive.Oxygen Requirements of MicroorganismsMicroorganisms are classified based on their ability to use or tolerate oxygen:● Obligate aerobes like Mycobacterium tuberculosis need oxygen for energy production, as it serves as the...
Exponential Equations for Modeling Growth01:26

Exponential Equations for Modeling Growth

Exponential models are essential for describing rapid, multiplicative changes in natural systems, such as population growth. When a population doubles at regular intervals, the process can be modeled using a suitable base. For instance, a bacterial culture that doubles every three hours follows the model n(t)=n0⋅2t/3, where n(t) is the population at the time t.A more general model uses the natural base e, especially for continuous growth. This takes the form n(t)=n0⋅ert, where r is the relative...
Derivatives: Problem Solving01:26

Derivatives: Problem Solving

Temperature-Dependent Growth of Brook TroutThe growth of brook trout is closely influenced by water temperature. Experimental data demonstrate how trout weight changes over a 24-day period in response to varying water temperatures. At lower temperatures, such as 15.5 degrees Celsius, brook trout show significant weight gain. However, as the temperature increases, the amount of weight gained steadily decreases. At the highest temperature measured, 24.4 degrees Celsius, trout experience a net...