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Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review

Cilt: 2 Sayı: 1 23 Haziran 2021
Hamid Asadı Dereshgı , Kasım Serbest *, Sema Nur Şahin , Büşra Balık
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Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review

Öz

The first studies on muscle mechanics widely accepted in the literature have been known the macroscopic mechanical behavior of skeletal muscle since 1920’s. A. V. Hill and his associates used modern experimental equipment to understand muscle contraction. On the other hand, A. F. Huxley presented cross-bridge models to understand the mechanisms of molecular contraction level, thermodynamics and biochemical experiments on skeletal muscles in the 1950’s. By the 1990’s, computer applications have been used for analysis of muscle mechanics. In this way, somesoftware such as OpenSim, LifeModeler and AnyBody have been developed for only mechanical analysis of musculoskeletal system. In addition, some software developed for general analysis of dynamic systems such as MATLAB, ADAMS, COMSOL and ANSYS can be used for analysis of muscle mechanics. In this study, Hill-type muscle model and Huxley-type cross-bridge model have been explained and computer applications of muscle mechanics have been mentioned.

Anahtar Kelimeler

Muscle contraction, muscle force, joint moment, simulation model, finite element model

Kaynakça

  1. [1]Serbest, K., & Eldoğan, O. (2014). Structure and biomechanics of skeletal muscle. Academic Platform Journal of Engineering and Science, 2(3), 41-51.
  2. [2]Hill, A. V. (1938). The heat of shortening and the dynamic constants of muscle.Proceedings of the Royal Society of London. Series B-Biological Sciences,126(843), 136-195.
  3. [3]Hill, A. V. (1964). The effect of load on the heat of shortening of muscle.Proceedings of the Royal Society of London. Series B. Biological Sciences,159(975), 297-318.
  4. [4]Huxley, A. F. (1957). Muscle structure and theories of contraction.Prog. Biophys. Biophys. Chem,7, 255-318.
  5. [5]Huxley, A. F., & Simmons, R. M. (1971). Proposed mechanism of force generation in striated muscle.Nature,233(5321), 533-538.
  6. [6]Feldman, A. G., Adamovich, S. V., Ostry, D. J., Flanagan, J. R., Winters, J., & Woo, S. L. Y. (1990). Multiple muscle systems: Biomechanics and movement organization.
  7. [7]Chao, E. Y. S., Lynch, J. D., & Vanderploeg, M. J. (1993). Simulation and animation of musculoskeletal joint system.
  8. [8]Johansson, T., Meier, P., & Blickhan, R. (2000). A finite-element model for the mechanical analysis of skeletal muscles.Journal of Theoretical Biology,206(1), 131-149.
  9. [9]Zhao, J., & Narwani, G. (2005, June). Development of a human body finite element model for restraint system R&D applications. InThe19th International Technical Conference on the Enhanced Safety of Vehicles (ESV), Paper(No. 05-0399).
  10. [10]Martinek, J., Stickler, Y., Reichel, M., Mayr, W., & Rattay, F. (2008). A Novel Approach to Simulate Hodgkin–Huxley‐like Excitation With COMSOL Multiphysics. Artificial Organs, 32(8), 614-619.

Kaynak Göster

APA
Asadı Dereshgı, H., Serbest, K., Şahin, S. N., & Balık, B. (2021). Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review. Journal of Smart Systems Research, 2(1), 27-39. https://izlik.org/JA58PA77DP
AMA
1.Asadı Dereshgı H, Serbest K, Şahin SN, Balık B. Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review. JoinSSR. 2021;2(1):27-39. https://izlik.org/JA58PA77DP
Chicago
Asadı Dereshgı, Hamid, Kasım Serbest, Sema Nur Şahin, ve Büşra Balık. 2021. “Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review”. Journal of Smart Systems Research 2 (1): 27-39. https://izlik.org/JA58PA77DP.
EndNote
Asadı Dereshgı H, Serbest K, Şahin SN, Balık B (01 Haziran 2021) Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review. Journal of Smart Systems Research 2 1 27–39.
IEEE
[1]H. Asadı Dereshgı, K. Serbest, S. N. Şahin, ve B. Balık, “Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review”, JoinSSR, c. 2, sy 1, ss. 27–39, Haz. 2021, [çevrimiçi]. Erişim adresi: https://izlik.org/JA58PA77DP
ISNAD
Asadı Dereshgı, Hamid - Serbest, Kasım - Şahin, Sema Nur - Balık, Büşra. “Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review”. Journal of Smart Systems Research 2/1 (01 Haziran 2021): 27-39. https://izlik.org/JA58PA77DP.
JAMA
1.Asadı Dereshgı H, Serbest K, Şahin SN, Balık B. Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review. JoinSSR. 2021;2:27–39.
MLA
Asadı Dereshgı, Hamid, vd. “Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review”. Journal of Smart Systems Research, c. 2, sy 1, Haziran 2021, ss. 27-39, https://izlik.org/JA58PA77DP.
Vancouver
1.Hamid Asadı Dereshgı, Kasım Serbest, Sema Nur Şahin, Büşra Balık. Skeletal Muscle Mechanics from Hill-Based Muscle Model to Computer Applications: State of the Art Review. JoinSSR [Internet]. 01 Haziran 2021;2(1):27-39. Erişim adresi: https://izlik.org/JA58PA77DP