Contributions of biarticular myogenic components to the limitation of the range of motion after immobilization of rat knee joint

Muscle atrophy caused by immobilization in the shortened position is characterized by a decrease in the size or cross-sectional area (CSA) of myofibers and decreased muscle length. Few studies have addressed the relationship between limitation of the range of motion (ROM) and the changes in CSA spec...

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Veröffentlicht in:BMC musculoskeletal disorders 2014-07, Vol.15 (1), p.224-224, Article 224
Hauptverfasser: Nagai, Momoko, Aoyama, Tomoki, Ito, Akira, Iijima, Hirotaka, Yamaguchi, Shoki, Tajino, Junichi, Zhang, Xiangkai, Akiyama, Haruhiko, Kuroki, Hiroshi
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Sprache:eng
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Zusammenfassung:Muscle atrophy caused by immobilization in the shortened position is characterized by a decrease in the size or cross-sectional area (CSA) of myofibers and decreased muscle length. Few studies have addressed the relationship between limitation of the range of motion (ROM) and the changes in CSA specifically in biarticular muscles after atrophy because of immobilization. We aimed to determine the contribution of 2 distinct muscle groups, the biarticular muscles of the post thigh (PT) and those of the post leg (PL), to the limitation of ROM as well as changes in the myofiber CSAs after joint immobilization surgery. Male Wistar rats (n = 40) were randomly divided into experimental and control groups. In the experimental group, the left knee was surgically immobilized by external fixation for 1, 2, 4, 8, or 16 weeks (n = 5 each) and sham surgery was performed on the right knee. The rats in the control groups (n = 3 per time point) did not undergo surgery. After the indicated immobilization periods, myotomy of the PT or PL biarticular muscles was performed and the ROM was measured. The hamstrings and gastrocnemius muscles from the animals operated for 1 or 16 weeks were subjected to morphological analysis. In immobilized knees, the relative contribution of the PT biarticular myogenic components to the total restriction reached 80% throughout the first 4 weeks and decreased thereafter. The relative contribution of the PL biarticular myogenic components remained
ISSN:1471-2474
1471-2474
DOI:10.1186/1471-2474-15-224