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Published on: July 5, 2017
Assisted exercise and bone strength in preterm infants
I Litmanovitz1, T Dolfin, S Arnon
1Department of Neonatology, Pediatrics, Meir Medical Center, Kfar-Saba, Sackler School of Medicine, Tel-Aviv University, 59 Tchernichovsky Street, Kfar-Saba 44281, Israel.
Insights
Eight weeks of passive range-of-motion exercise helps maintain bone strength in very low birth weight (VLBW) preterm infants. This intervention may reduce the risk of osteopenia, with benefits observed early in the treatment period.
Area of Science:
- Neonatal Medicine
- Pediatric Bone Health
- Developmental Pediatrics
Background:
- Very low birth weight (VLBW) preterm infants are at high risk for osteopenia due to limited physical activity and altered bone metabolism.
- Previous studies suggest short-term (4 weeks) passive range-of-motion (PROM) exercise benefits bone development in VLBW infants.
- The optimal duration of exercise for improving bone health in this vulnerable population remains undetermined.
Purpose of the Study:
- To investigate the effect of 8 weeks of daily assisted passive range-of-motion exercise on bone strength and metabolism in VLBW preterm infants.
- To determine if prolonged exercise intervention can attenuate the typical postnatal decline in bone mineral status.
- To assess changes in biochemical markers of bone turnover alongside quantitative ultrasound measurements.
Main Methods:
- A randomized controlled trial involving 16 VLBW preterm infants (birth weight 1,009 ± 55 g, gestational age 27.3 ± 0.3 weeks).
- Infants were assigned to either an 8-week daily assisted PROM exercise group or a control group.
- Bone strength was assessed weekly using tibial bone speed of sound (SOS) via quantitative ultrasound; bone turnover markers were measured at baseline and 8 weeks.
Main Results:
- The control group exhibited a significant postnatal decrease in bone SOS (-108.1 m/s, P < 0.0001).
- In contrast, bone SOS remained stable in the exercise group (11.3 m/s), indicating preserved bone strength.
- The primary beneficial effects of exercise on bone strength were evident within the first 4 weeks of the intervention; no significant differences in bone turnover markers were observed between groups.
Conclusions:
- A significant postnatal decline in bone strength (measured by SOS) occurs in VLBW preterm infants.
- Eight weeks of assisted PROM exercise effectively attenuates this decline, preserving bone strength.
- This exercise intervention shows potential in reducing the risk of osteopenia in premature infants, with early benefits observed.
Abstract:
Studies have previously demonstrated that brief (4 weeks) passive range-of-motion exercise is beneficial for bone development in very low birth weight (VLBW) preterm infants. However, the optimal duration of exercise for bone development in preterm infants is yet unknown. The aim of the present study was to examine the effect of 8 weeks of assisted exercise on bone strength and metabolism in VLBW premature infants. Sixteen infants (mean +/- standard error of the mean birth weight 1,009 +/- 55 g and gestational age 27.3 +/- 0.3 weeks) were randomly assigned into exercise (n = 8) and control (n = 8) groups. The intervention started at the first week of life and involved 8 weeks of daily passive extension and flexion range-of-motion exercise of the upper and lower extremities. Biochemical markers of bone turnover were measured at enrollment and after 8 weeks. Bone strength was measured weekly by quantitative ultrasound measurement of tibial bone speed of sound (SOS). Bone SOS decreased significantly in the control group (-108.1 +/- 33.7 m/second, P < 0.0001) during the study period, while remaining stable in the exercise group (11.3 +/- 22.8 m/second). The main beneficial effect of exercise occurred in the first 4 weeks of the intervention. There were no significant differences in the bone turnover marker changes between the groups. There is a significant postnatal decrease in bone SOS in VLBW preterm infants. Eight weeks of assisted range-of-motion exercise attenuates the decrease in bone strength and may decrease the risk of osteopenia in premature infants.
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