Differences in the strain applied to Achilles tendon fibers when the subtalar joint is overpronated: a simulation study

Purpose The purpose of this study was to investigate the strain applied to each of the tendon fiber bundles of the medial head of the gastrocnemius (MG), the lateral head of the gastrocnemius (LG), and the soleus muscle (Sol) that compose the Achilles tendon (AT) when the subtalar joint is pronated...

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Published inSurgical and radiologic anatomy (English ed.) Vol. 41; no. 5; pp. 595 - 599
Main Authors Edama, Mutsuaki, Takabayashi, Tomoya, Inai, Takuma, Kikumoto, Takanori, Ito, Wataru, Nakamura, Emi, Hirabayashi, Ryo, Ikezu, Masahiro, Kaneko, Fumiya, Kageyama, Ikuo
Format Journal Article
LanguageEnglish
Published Paris Springer Paris 01.05.2019
Springer Nature B.V
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Abstract Purpose The purpose of this study was to investigate the strain applied to each of the tendon fiber bundles of the medial head of the gastrocnemius (MG), the lateral head of the gastrocnemius (LG), and the soleus muscle (Sol) that compose the Achilles tendon (AT) when the subtalar joint is pronated and supinated. Methods Three AT twist types (least, moderate, extreme) were investigated. Using the MicroScribe system, the AT and the talocrural and subtalar joints were digitized to reconstruct three-dimensional models. Using this system, subtalar joint rotations in the pronation (20°) and supination (20°) directions were simulated, and the degrees of strain (%) on each tendon were calculated. Results For all twist types, when the subtalar joint was pronated, MG, LG, and Sol stretched, and when supinated, MG, LG, and Sol shortened. In particular, the least and severe twist types had large degrees of strain of Sol when the subtalar joint was pronated, and furthermore, each tendon fiber composing Sol had different degrees of strain. Conclusions The study results suggest that the degree of strain applied within the AT with subtalar joint pronation is not constant, and that, especially in least and extreme twist types, the risk of developing AT disorders may increase.
AbstractList PURPOSEThe purpose of this study was to investigate the strain applied to each of the tendon fiber bundles of the medial head of the gastrocnemius (MG), the lateral head of the gastrocnemius (LG), and the soleus muscle (Sol) that compose the Achilles tendon (AT) when the subtalar joint is pronated and supinated.METHODSThree AT twist types (least, moderate, extreme) were investigated. Using the MicroScribe system, the AT and the talocrural and subtalar joints were digitized to reconstruct three-dimensional models. Using this system, subtalar joint rotations in the pronation (20°) and supination (20°) directions were simulated, and the degrees of strain (%) on each tendon were calculated.RESULTSFor all twist types, when the subtalar joint was pronated, MG, LG, and Sol stretched, and when supinated, MG, LG, and Sol shortened. In particular, the least and severe twist types had large degrees of strain of Sol when the subtalar joint was pronated, and furthermore, each tendon fiber composing Sol had different degrees of strain.CONCLUSIONSThe study results suggest that the degree of strain applied within the AT with subtalar joint pronation is not constant, and that, especially in least and extreme twist types, the risk of developing AT disorders may increase.
The purpose of this study was to investigate the strain applied to each of the tendon fiber bundles of the medial head of the gastrocnemius (MG), the lateral head of the gastrocnemius (LG), and the soleus muscle (Sol) that compose the Achilles tendon (AT) when the subtalar joint is pronated and supinated. Three AT twist types (least, moderate, extreme) were investigated. Using the MicroScribe system, the AT and the talocrural and subtalar joints were digitized to reconstruct three-dimensional models. Using this system, subtalar joint rotations in the pronation (20°) and supination (20°) directions were simulated, and the degrees of strain (%) on each tendon were calculated. For all twist types, when the subtalar joint was pronated, MG, LG, and Sol stretched, and when supinated, MG, LG, and Sol shortened. In particular, the least and severe twist types had large degrees of strain of Sol when the subtalar joint was pronated, and furthermore, each tendon fiber composing Sol had different degrees of strain. The study results suggest that the degree of strain applied within the AT with subtalar joint pronation is not constant, and that, especially in least and extreme twist types, the risk of developing AT disorders may increase.
Purpose The purpose of this study was to investigate the strain applied to each of the tendon fiber bundles of the medial head of the gastrocnemius (MG), the lateral head of the gastrocnemius (LG), and the soleus muscle (Sol) that compose the Achilles tendon (AT) when the subtalar joint is pronated and supinated. Methods Three AT twist types (least, moderate, extreme) were investigated. Using the MicroScribe system, the AT and the talocrural and subtalar joints were digitized to reconstruct three-dimensional models. Using this system, subtalar joint rotations in the pronation (20°) and supination (20°) directions were simulated, and the degrees of strain (%) on each tendon were calculated. Results For all twist types, when the subtalar joint was pronated, MG, LG, and Sol stretched, and when supinated, MG, LG, and Sol shortened. In particular, the least and severe twist types had large degrees of strain of Sol when the subtalar joint was pronated, and furthermore, each tendon fiber composing Sol had different degrees of strain. Conclusions The study results suggest that the degree of strain applied within the AT with subtalar joint pronation is not constant, and that, especially in least and extreme twist types, the risk of developing AT disorders may increase.
Author Inai, Takuma
Hirabayashi, Ryo
Nakamura, Emi
Kaneko, Fumiya
Kikumoto, Takanori
Ito, Wataru
Takabayashi, Tomoya
Edama, Mutsuaki
Ikezu, Masahiro
Kageyama, Ikuo
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CitedBy_id crossref_primary_10_1016_j_asmart_2024_04_001
crossref_primary_10_1177_2325967120952415
crossref_primary_10_3390_sports12060165
crossref_primary_10_1007_s00276_020_02618_0
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Keywords Achilles tendon disorder
Twisted structure
Three-dimensional model
Achilles tendon
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Springer Nature B.V
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Snippet Purpose The purpose of this study was to investigate the strain applied to each of the tendon fiber bundles of the medial head of the gastrocnemius (MG), the...
The purpose of this study was to investigate the strain applied to each of the tendon fiber bundles of the medial head of the gastrocnemius (MG), the lateral...
PurposeThe purpose of this study was to investigate the strain applied to each of the tendon fiber bundles of the medial head of the gastrocnemius (MG), the...
PURPOSEThe purpose of this study was to investigate the strain applied to each of the tendon fiber bundles of the medial head of the gastrocnemius (MG), the...
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pubmed
springer
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StartPage 595
SubjectTerms Achilles tendon
Achilles Tendon - physiology
Aged
Anatomic Variations
Anatomy
Biomechanical Phenomena - physiology
Cadaver
Humans
Imaging
Male
Medicine
Medicine & Public Health
Models, Anatomic
Muscle, Skeletal - physiology
Orthopedics
Pronation
Radiology
Soleus muscle
Stress, Mechanical
Surgery
Tendons
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Title Differences in the strain applied to Achilles tendon fibers when the subtalar joint is overpronated: a simulation study
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https://www.ncbi.nlm.nih.gov/pubmed/30617509
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