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Maziar A. Sharbafi

5 accepted papers

2022

Vastus and Gastrocnemius improve hopping efficiency and joints synchronicity at different frequencies: a robotic study

IROS 2022poster

The lower limb morphology of biological locomotors is abundant in muscle-tendon units. Yet, not much is known about how these actuation units contribute to the output performance and energy economy of movements. In this work, we investigate the functionality of four of the important lower limb muscl…

Cited by 3SourceScholar
2020

How far are Pneumatic Artificial Muscles from biological muscles?

ICRA 2020poster

There is a long history demonstrating humans' tendency to create artificial copies of living creatures. For moving machines called robots, actuators play a key role in developing human-like movements. Among different types of actuation, PAMs (pneumatic artificial muscles) are known as the most simil…

Cited by 17SourceScholar
2019

TIP Model: A Combination of Unstable Subsystems for Lateral Balance in Walking

IROS 2019poster

Balancing or postural stability is one of important locomotor subfunctions in bipedal gaits. The inverted pendulum and virtual pivot point (VPP) are common modeling approaches to analyze balance control in human and robot walking. In this paper, we employ the VPP concept to investigate posture contr…

Cited by 10SourceScholar
2018

A 3D Template Model for Healthy and Impaired Walking

IROS 2018poster

Several modeling studies, which address neuromuscular control in impaired unperturbed gaits, were performed to predict human strategies to cope with lateral asymmetries in the body. Experimental studies show different step length and stance time relations between limbs in walking of stroke patients.…

Cited by 6SourceScholar