Non-uniformity of displacement and strain within the Achilles tendon is affected by joint angle configuration and differential muscle loading
Although the Achilles tendon (AT) has been studied for more than a century, a complete understanding of the mechanical and functional consequences of AT structural organization is currently lacking. The aim of this study was to assess how joint angle configuration affects subtendon displacement and...
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Published in | Journal of biomechanics Vol. 101; p. 109634 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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05.03.2020
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Abstract | Although the Achilles tendon (AT) has been studied for more than a century, a complete understanding of the mechanical and functional consequences of AT structural organization is currently lacking. The aim of this study was to assess how joint angle configuration affects subtendon displacement and strain of soleus (SOL) and lateral gastrocnemius (LG) muscles. Knots sutured onto SOL and LG subtendons of 12 Wistar rats, were videotaped to quantify displacements and the ankle torque was assessed for different isometric activation conditions (i.e., individual and simultaneous) of the triceps surae muscles. Changing ankle and knee joint angle affected the magnitude of displacement, relative displacement and strain of both SOL and LG subtendons. SOL subtendon behavior was not only affected by changes in ankle angle, but also by changes in knee angle. Displacement of SOL subtendon decreased (28–49%), but strain increased in response to knee extension. Independent of joint angle configuration, stimulation of any combination of the muscles typically resulted in displacements and strains of LG and SOL subtendons. Typically SOL displaced more but LG displaced more when stimulated at longer muscle lengths. Our results demonstrate that the distinct subtendons of the Achilles tendon can move and deform differently, but are not fully independent. Within the AT, there appears to be a precarious balance between sliding allowance and mechanical connectivity between subtendons. |
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AbstractList | Although the Achilles tendon (AT) has been studied for more than a century, a complete understanding of the mechanical and functional consequences of AT structural organization is currently lacking. The aim of this study was to assess how joint angle configuration affects subtendon displacement and strain of soleus (SOL) and lateral gastrocnemius (LG) muscles. Knots sutured onto SOL and LG subtendons of 12 Wistar rats, were videotaped to quantify displacements and the ankle torque was assessed for different isometric activation conditions (i.e., individual and simultaneous) of the triceps surae muscles. Changing ankle and knee joint angle affected the magnitude of displacement, relative displacement and strain of both SOL and LG subtendons. SOL subtendon behavior was not only affected by changes in ankle angle, but also by changes in knee angle. Displacement of SOL subtendon decreased (28–49%), but strain increased in response to knee extension. Independent of joint angle configuration, stimulation of any combination of the muscles typically resulted in displacements and strains of LG and SOL subtendons. Typically SOL displaced more but LG displaced more when stimulated at longer muscle lengths. Our results demonstrate that the distinct subtendons of the Achilles tendon can move and deform differently, but are not fully independent. Within the AT, there appears to be a precarious balance between sliding allowance and mechanical connectivity between subtendons. |
ArticleNumber | 109634 |
Author | Baan, Guus C. Maas, Huub Noort, Wendy Finni, Taija |
Author_xml | – sequence: 1 givenname: Huub orcidid: 0000-0002-2304-2735 surname: Maas fullname: Maas, Huub email: h.maas@vu.nl organization: Department of Human Movement Sciences, Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, the Netherlands – sequence: 2 givenname: Wendy surname: Noort fullname: Noort, Wendy organization: Department of Human Movement Sciences, Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, the Netherlands – sequence: 3 givenname: Guus C. surname: Baan fullname: Baan, Guus C. organization: Department of Human Movement Sciences, Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences, the Netherlands – sequence: 4 givenname: Taija orcidid: 0000-0002-7697-2813 surname: Finni fullname: Finni, Taija organization: Neuromuscular Research Center, Faculty of Sport and Health Sciences, University of Jyväskylä, Finland |
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CitedBy_id | crossref_primary_10_3389_fspor_2020_00070 crossref_primary_10_1016_j_fas_2021_01_007 crossref_primary_10_1016_j_matbio_2022_11_006 crossref_primary_10_1038_s41598_021_00451_y crossref_primary_10_1016_j_kine_2022_09_003 crossref_primary_10_1038_s41598_023_32370_5 crossref_primary_10_3389_fbioe_2020_00700 crossref_primary_10_1113_EP090764 crossref_primary_10_1016_j_gaitpost_2024_06_026 crossref_primary_10_3389_fphys_2020_607544 crossref_primary_10_1016_j_jbiomech_2022_111232 crossref_primary_10_1016_j_jelekin_2022_102698 crossref_primary_10_1111_sms_14444 crossref_primary_10_1242_jeb_242135 |
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Keywords | Ankle torque Soleus Shear Achilles tendon Gastrocnemius Displacement Strain |
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SubjectTerms | Achilles tendon Achilles Tendon - physiology Animals Ankle Ankle torque Biomechanical Phenomena Configurations Digitization Displacement Gastrocnemius Joints (anatomy) Joints - anatomy & histology Joints - physiology Knee Male Muscle contraction Muscle, Skeletal - physiology Muscles Nonuniformity Rats Rats, Wistar Shear Soleus Strain Tendons Torque Triceps surae muscle Weight-Bearing |
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Title | Non-uniformity of displacement and strain within the Achilles tendon is affected by joint angle configuration and differential muscle loading |
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