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Updated: Jul 24, 2025

Measurement of Spatial Stability in Precision Grip
Published on: June 4, 2020
Longitudinal changes of grip strength and forearm muscle thickness in young children
Takashi Abe1,2, Hayao Ozaki3, Akemi Abe2
11Graduate School of Health and Sports Science, Institute of Health and Sports Science & Medicine, Juntendo University, Inzai-shi, Chiba, 270-1695, Japan.
Insights
Grip strength in children increases with forearm muscle size. However, the greatest muscle growth doesn't always lead to the strongest grip strength, indicating a complex relationship.
Area of Science:
- Pediatric Physiology
- Musculoskeletal Health
- Biomedical Engineering
Background:
- Grip strength is a key indicator of future health.
- Extrinsic finger flexor muscles primarily generate grip strength.
- Understanding the link between muscle size and grip strength is crucial for childhood development strategies.
Purpose of the Study:
- To investigate the association between changes in grip strength and forearm muscle thickness in young children.
- To explore the relationship between muscle size and grip strength development during growth.
Main Methods:
- Two hundred eighteen children (104 boys, 114 girls) participated.
- Grip strength and forearm muscle thickness (MT-radius, MT-ulna) were measured using ultrasound.
- Measurements were taken at baseline and one year later.
Main Results:
- Significant within-subject correlations were found between muscle thickness (MT-ulna and MT-radius) and grip strength.
- A significant between-subject relationship existed between MT-radius and grip strength.
- No significant between-subject correlation was observed between MT-ulna and grip strength.
Conclusions:
- Increased muscle size within a child correlates with increased grip strength.
- The greatest changes in muscle size did not consistently result in the strongest grip strength.
- Findings suggest muscle size is important but not the sole determinant of grip strength development.
Background:
Grip strength is a marker of future health conditions and is mainly generated by the extrinsic flexor muscles of the fingers. Therefore, whether or not there is a relationship between grip strength and forearm muscle size is vital in considering strategies for grip strength development during growth. Thus, this study aimed to examine the association between changes in grip strength and forearm muscle thickness in young children.
Methods:
Two hundred eighteen young children (104 boys and 114 girls) performed maximum voluntary grip strength and ultrasound-measured muscle thickness measurements in the right hand. Two muscle thicknesses were measured as the perpendicular distance between the adipose tissue-muscle interface and muscle-bone interface of the radius (MT-radius) and ulna (MT-ulna). All participants completed the first measurement and underwent a second measurement one year after the first one.
Results:
There were significant (P < 0.001) within-subject correlations between MT-ulna and grip strength [r = 0.50 (0.40, 0.60)] and MT-radius and grip strength [r = 0.59 (0.49, 0.67)]. There was no significant between-subject correlation between MT-ulna and grip strength [r = 0.07 (-0.05, 0.20)], but there was a statistically significant (P < 0.001) between-subject relationship between MT-radius and grip strength [r = 0.27 (0.14, 0.39)].
Conclusion:
Although we cannot infer causation from the present study, our findings suggest that as muscle size increases within a child, so does muscle strength. Our between-subject analysis, however, suggests that those who observed the greatest change in muscle size did not necessarily get the strongest.
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