Impact of Shoe Parameters on Gait Using Wearables

Fuente: arXiv
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Autori principali: Meghapathirana, Nadeera, Rathnayake, Oshada, Rathnayake, Thisali S, Godaliyadda, Roshan, Ekanayake, Parakrama, Herath, Vijitha
Natura: Preprint
Pubblicazione: 2024
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author Meghapathirana, Nadeera
Rathnayake, Oshada
Rathnayake, Thisali S
Godaliyadda, Roshan
Ekanayake, Parakrama
Herath, Vijitha
author_facet Meghapathirana, Nadeera
Rathnayake, Oshada
Rathnayake, Thisali S
Godaliyadda, Roshan
Ekanayake, Parakrama
Herath, Vijitha
contents The study of biomechanics during locomotion provides valuable insights into the effects of varying conditions on specific movement patterns. This research focuses on examining the influence of different shoe parameters on walking biomechanics, aiming to understand their impact on gait patterns. To achieve this, various methodologies are explored to estimate human body biomechanics, including computer vision techniques and wearable devices equipped with advanced sensors. Given privacy considerations and the need for robust, accurate measurements, this study employs wearable devices with Inertial Measurement Unit (IMU) sensors. These devices offer a non-invasive, precise, and high-resolution approach to capturing biomechanical data during locomotion. Raw sensor data collected from wearable devices is processed using an Extended Kalman Filter to reduce noise and extract meaningful information. This includes calculating joint angles throughout the gait cycle, enabling a detailed analysis of movement dynamics. The analysis identifies correlations between shoe parameters and key gait characteristics, such as stability, mobility, step time, and propulsion forces. The findings provide deeper insights into how footwear design influences walking efficiency and biomechanics. This study paves the way for advancements in footwear technology and contributes to the development of personalized solutions for enhancing gait performance and mobility.
format Preprint
id arxiv_https___arxiv_org_abs_2412_10555
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Impact of Shoe Parameters on Gait Using Wearables
Meghapathirana, Nadeera
Rathnayake, Oshada
Rathnayake, Thisali S
Godaliyadda, Roshan
Ekanayake, Parakrama
Herath, Vijitha
Computers and Society
The study of biomechanics during locomotion provides valuable insights into the effects of varying conditions on specific movement patterns. This research focuses on examining the influence of different shoe parameters on walking biomechanics, aiming to understand their impact on gait patterns. To achieve this, various methodologies are explored to estimate human body biomechanics, including computer vision techniques and wearable devices equipped with advanced sensors. Given privacy considerations and the need for robust, accurate measurements, this study employs wearable devices with Inertial Measurement Unit (IMU) sensors. These devices offer a non-invasive, precise, and high-resolution approach to capturing biomechanical data during locomotion. Raw sensor data collected from wearable devices is processed using an Extended Kalman Filter to reduce noise and extract meaningful information. This includes calculating joint angles throughout the gait cycle, enabling a detailed analysis of movement dynamics. The analysis identifies correlations between shoe parameters and key gait characteristics, such as stability, mobility, step time, and propulsion forces. The findings provide deeper insights into how footwear design influences walking efficiency and biomechanics. This study paves the way for advancements in footwear technology and contributes to the development of personalized solutions for enhancing gait performance and mobility.
title Impact of Shoe Parameters on Gait Using Wearables
topic Computers and Society
url https://arxiv.org/abs/2412.10555