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Manual Muscle Testing: A Method of Measuring Extremity Muscle Strength Applied to Critically Ill Patients
Published on: April 12, 2011
Low muscle mass and strength in pediatrics patients: Why should we care?
Camila E Orsso1, Jenneffer R B Tibaes2, Camila L P Oliveira1
1Department of Agricultural, Food and Nutritional Science, University of Alberta, Edmonton, AB, Canada.
Insights
Tracking childhood muscle mass and strength is vital for lifelong health. Early identification of low muscle mass can prevent adverse metabolic and bone health outcomes later in life.
Area of Science:
- Pediatric Health
- Metabolic Health
- Developmental Biology
Background:
- Skeletal muscle is crucial for metabolism and health throughout life.
- Prenatal and postnatal factors significantly impact early muscle development.
- Low muscle mass and strength in childhood are linked to adverse health outcomes.
Purpose of the Study:
- To highlight the importance of monitoring muscle mass and strength development from childhood to adolescence.
- To discuss the implications of low muscle mass and strength on metabolic health, bone parameters, and neurodevelopment.
- To review current methods for assessing muscle mass and strength in children.
Main Methods:
- Review of emerging evidence on factors influencing muscle mass acquisition.
- Analysis of associations between muscle mass/strength and metabolic risk factors.
- Evaluation of body composition techniques (e.g., ultrasound) and strength tests (e.g., handgrip strength).
Main Results:
- Low muscle mass and strength correlate with increased metabolic risk factors.
- Reduced muscle mass is associated with poorer bone health, increasing osteoporosis risk.
- Muscle mass gains are linked to improved neurodevelopment in early life.
Conclusions:
- Monitoring muscle mass and strength from childhood is crucial for preventing long-term health issues.
- Ultrasound shows promise for pediatric muscle mass assessment, with potential clinical applications.
- Standardized protocols and normative data are needed for accurate assessment and early intervention.
Abstract:
Skeletal muscle plays major roles in metabolism and overall health across the lifecycle. Emerging evidence indicates that prenatal (maternal diet during pregnancy and genetic defects) and postnatal factors (physical activity, hormones, dietary protein, and obesity) influence muscle mass acquisition and strength early in life. As a consequence, low muscle mass and strength contributes to several adverse health outcomes during childhood. Specifically, studies demonstrated inverse associations of muscle mass and strength to single and clustered metabolic risk factors. The literature also consistently reports that low muscle mass and strength are associated with reduced bone parameters during growth, increasing the risk of osteoporosis in old age. Furthermore, muscle mass gains are associated with improved neurodevelopment in the first years of life. Given these negative implications of low muscle mass and strength on health, it is crucial to track muscle mass and strength development from childhood to adolescence. Several body composition techniques are currently available for estimation of muscle mass, all with unique advantages and disadvantages. The value of ultrasound as a technique to measure muscle mass is emerging in pediatric research with potential for translating the research findings to clinical settings. For the assessment of muscle strength, the handgrip strength test has been widely employed but without a standardized protocol. Although further research is needed to define normative data and cut points for the low muscle mass and strength phenotype, the use of such non-invasive medical monitoring is a promising strategy to identify early abnormalities and prevent low muscle mass in adulthood.
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