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Lower leg muscle structure and function are altered in long‐distance runners with medial tibial stress syndrome: a case control study
Background Medial tibial stress syndrome (MTSS) is a common lower leg injury experienced by runners. Although numerous risk factors are reported in the literature, many are non‐modifiable and management of the injury remains difficult. Lower leg muscle structure and function are modifiable character...
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Published in: | Journal of foot and ankle research 2021-07, Vol.14 (1), p.1-n/a |
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Main Authors: | , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | Background
Medial tibial stress syndrome (MTSS) is a common lower leg injury experienced by runners. Although numerous risk factors are reported in the literature, many are non‐modifiable and management of the injury remains difficult. Lower leg muscle structure and function are modifiable characteristics that influence tibial loading during foot‐ground contact. Therefore, this study aimed to determine whether long‐distance runners with MTSS displayed differences in in vivo lower leg muscle structure and function than matched asymptomatic runners.
Methods
Lower leg structure was assessed using ultrasound and a measure of lower leg circumference to quantify muscle cross‐sectional area, thickness and lean lower leg girth. Lower leg function was assessed using a hand‐held dynamometer to quantify maximal voluntary isometric contraction strength and a single leg heel raise protocol was used to measure ankle plantar flexor endurance. Outcome variables were compared between the limbs of long‐distance runners suffering MTSS (n = 20) and matched asymptomatic controls (n = 20). Means, standard deviations, 95 % confidence intervals, mean differences and Cohen's d values were calculated for each variable for the MTSS symptomatic and control limbs.
Results
MTSS symptomatic limbs displayed a significantly smaller flexor hallucis longus cross‐sectional area, a smaller soleus thickness but a larger lateral gastrocnemius thickness than the control limbs. However, there was no statistical difference in lean lower leg girth. Compared to the matched control limbs, MTSS symptomatic limbs displayed deficits in maximal voluntary isometric contraction strength of the flexor hallucis longus, soleus, tibialis anterior and peroneal muscles, and reduced ankle plantar flexor endurance capacity.
Conclusions
Differences in lower leg muscle structure and function likely render MTSS symptomatic individuals less able to withstand the negative tibial bending moment generated during midstance, potentially contributing to the development of MTSS. The clinical implications of these findings suggest that rehabilitation protocols for MTSS symptomatic individuals should aim to improve strength of the flexor hallucis longus, soleus, tibialis anterior and peroneal muscles along with ankle plantar flexor endurance. However, the cross‐sectional study design prevents us determining whether between group differences were a cause or effect of MTSS. Therefore, future prospective studies are required to s |
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ISSN: | 1757-1146 1757-1146 |
DOI: | 10.1186/s13047-021-00485-5 |