Universiti Teknologi Malaysia Institutional Repository

Pneumatic muscles actuated lower-limb orthosis model verification with actual human muscle activation patterns

Dzahir, M. A. M and Nor, N. S. M. and Azaman, A. and Hussein, M. and Mat Dzahir, M. A. (2017) Pneumatic muscles actuated lower-limb orthosis model verification with actual human muscle activation patterns. In: 8th International Conference on Mechanical and Manufacturing Engineering, ICME 2017, 22 - 23 July 2017, Langkawi, Kedah.

[img]
Preview
PDF
645kB

Official URL: http://dx.doi.org/10.1051/matecconf/201713500061

Abstract

A review study was conducted on existing lower-limb orthosis systems for rehabilitation which implemented pneumatic muscle type of actuators with the aim to clarify the current and on-going research in this field. The implementation of pneumatic artificial muscle will play an important role for the development of the advanced robotic system. In this research a derivation model for the antagonistic mono- and bi-articular muscles using pneumatic artificial muscles of a lower limb orthosis will be verified with actual human's muscle activities models. A healthy and young male 29 years old subject with height 174cm and weight 68kg was used as a test subject. Two mono-articular muscles Vastus Medialis (VM) and Vastus Lateralis (VL) were selected to verify the mono-articular muscle models and muscle synergy between anterior muscles. Two biarticular muscles Rectus Femoris (RF) and Bicep Femoris (BF) were selected to verify the bi-articular muscle models and muscle co-contraction between anterior-posterior muscles. The test was carried out on a treadmill with a speed of 4.0 km/h, which approximately around 1.25 m/s for completing one cycle of walking motion. The data was collected for about one minute on a treadmill and 20 complete cycles of walking motion were successfully recorded. For the evaluations, the mathematical model obtained from the derivation and the actual human muscle activation patterns obtained using the surface electromyography (sEMG) system were compared and analysed. The results shown that, high correlation values ranging from 0.83 up to 0.93 were obtained in between the derivation model and the actual human muscle's model for both mono- and biarticular muscles. As a conclusion, based on the verification with the sEMG muscle activities data and its correlation values, the proposed derivation models of the antagonistic mono- and bi-articular muscles were suitable to simulate and controls the pneumatic muscles actuated lower limb orthosis.

Item Type:Conference or Workshop Item (Paper)
Uncontrolled Keywords:lower-limb orthosis, surface electromyography (sEMG) system, Vastus Medialis (VM)
Subjects:T Technology > TJ Mechanical engineering and machinery
Divisions:Mechanical Engineering
ID Code:97283
Deposited By: Narimah Nawil
Deposited On:26 Sep 2022 03:31
Last Modified:26 Sep 2022 03:31

Repository Staff Only: item control page