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Biomimicking Gait Analysis Platform

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dc.contributor.author Project Supervisor Dr. Mohsin Islam Tiwana Co-Supervisor: Ma’am Ayesha Zeb, Manahil Arshad Saeed Kazmi Syed Munawar Mohammad Haris Ehtsham Ul Haq
dc.date.accessioned 2025-03-04T11:03:25Z
dc.date.available 2025-03-04T11:03:25Z
dc.date.issued 2022
dc.identifier.other DE-MTS-40
dc.identifier.uri http://10.250.8.41:8080/xmlui/handle/123456789/50512
dc.description Project Supervisor Dr. Mohsin Islam Tiwana Co-Supervisor: Ma’am Ayesha Zeb en_US
dc.description.abstract Gait Analysis, achieved by either basic perception or three-layered investigation with an estimation of joint points can be done by the human gate replication as per the requirements of the patients. The steps can be recorded on the measurements of the joint powers, movement, and foot pressure. This information can be used in the field of lower limb prosthetics. Walk examination utilizing wearable sensors is a cheap, helpful, and proficient way of giving valuable data to various wellbeing-related applications. This paper is about wearable sensors and walking step examination techniques in view of the different wearable sensors. The step examination techniques in light of wearable sensors are isolated into walk kinematics, stride energy, and electromyography. Computational frameworks to recognize objects addressed in picture groupings and following their movement in a completely programmed way, empowering a nitty-gritty examination of the elaborate movement and its reproduction are very significant in a few fields of our general public. Specifically, the examination and reenactment of the human movement have a wide range of significant applications with a manifest social and financial effect. As a matter of fact, utilization of human movement information is major in a wide number of spaces (e.g.: sports, restoration, mechanical technology, observation, signal-based UIs, and so on.). Thus, numerous pertinent designing programming applications have been created determined to break down as well as reproduce the human movement. This study has deliverables in the field of orthosis and prosthetics with actual and accurate mimicking revolutionizes the human walk for people who have health disabilities or amputation so they can enjoy the colors of life like any other human beings. en_US
dc.language.iso en en_US
dc.publisher College of Electrical & Mechanical Engineering (CEME), NUST en_US
dc.title Biomimicking Gait Analysis Platform en_US
dc.type Project Report en_US


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