Quantitative analysis of approximate shapes in a myofiber cross-section and their relationship with myofiber cross-sectional area
Author:
Affiliation:
1. Department of Physical Therapy, Faculty of Health Sciences, Japan University of Health Sciences: 2-555 Hirasuka, Satte city, Saitama 340-0145, Japan
Publisher
Society of Physical Therapy Science
Subject
Physical Therapy, Sports Therapy and Rehabilitation
Link
https://www.jstage.jst.go.jp/article/jpts/33/12/33_2021-135/_pdf
Reference14 articles.
1. 1) Dall Pai V, Thomaz E, Curi PR: Postnatal growth of skeletal muscle fibres of the rat. Gegenbaurs Morphol Jahrb, 1984, 130: 827–834.
2. 2) Torrejais MM, Soares JC, Matheus SM, et al.: Histochemical study of the extensor digitorum longus and soleus muscles in alcoholic rats. Anat Histol Embryol, 1999, 28: 367–373.
3. 3) Carnes ME, Pins GD: Skeletal muscle tissue engineering: biomaterials-based strategies for the treatment of volumetric muscle loss. Bioengineering (Basel), 2020, 7: 85.
4. 4) Bruyère C, Versaevel M, Mohammed D, et al.: Actomyosin contractility scales with myoblast elongation and enhances differentiation through YAP nuclear export. Sci Rep, 2019, 9: 15565.
5. 5) Methenitis S, Karandreas N, Spengos K, et al.: Muscle fiber conduction velocity, muscle fiber composition, and power performance. Med Sci Sports Exerc, 2016, 48: 1761–1771.
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