The lower limb joints might be affected by different shoe types and gait speeds. Monitoring joint angles might require skill and proper technique to obtain accurate data for analysis. We aimed to estimate the knee joint angle using a textile capacitive sensor and artificial neural network (ANN) implementing with three shoe types at two gait speeds. We developed a textile capacitive sensor with a simple structure design and less costly placing in insole shoes to measure the foot plantar pressure for building the deep learning models. The smartphone was used to video during walking at each condition, and Kinovea was applied to calibrate the knee joint angle. Six ANN models were created; three shoe-based ANN models, two speed-based ANN models,...
The joint angle during gait is an important indicator, such as injury risk index, rehabilitation sta...
Gait recognition systems have gained tremendous attention due to its potential applications in healt...
This study evaluates the capability of a single inertial sensor based joint angles estimation during...
Joint angles are one of the fundamental parameters to control the exoskeleton robotic leg. This rese...
Wearable sensors were leveraged to develop two methods for computing hip joint angles and moments du...
Previous clinical studies have reported that gait retraining is an effective non-invasive interventi...
Continuous lower body monitoring is an important step for real-time feedback training of runners and...
Extreme angles in lower body joints may adversely increase the risk of injury to joints. These injur...
This paper proposes a novel artificial neural network based method for real-time gait analysis with ...
Reliability and user compliance of the applied sensor system are two key issues of digital healthcar...
Walking has been demonstrated to improve health in people with diabetes and peripheral arterial dise...
The application of artificial intelligence techniques to wearable sensor data may facilitate accurat...
Wearable human movement measurement systemsare increasingly popular as a means of capturing human mo...
Estimating ankle joint power can be used to identify gait abnormalities, which is usually achieved b...
In this study neural networks were applied to perform automated diagnosis of gait patterns. The thre...
The joint angle during gait is an important indicator, such as injury risk index, rehabilitation sta...
Gait recognition systems have gained tremendous attention due to its potential applications in healt...
This study evaluates the capability of a single inertial sensor based joint angles estimation during...
Joint angles are one of the fundamental parameters to control the exoskeleton robotic leg. This rese...
Wearable sensors were leveraged to develop two methods for computing hip joint angles and moments du...
Previous clinical studies have reported that gait retraining is an effective non-invasive interventi...
Continuous lower body monitoring is an important step for real-time feedback training of runners and...
Extreme angles in lower body joints may adversely increase the risk of injury to joints. These injur...
This paper proposes a novel artificial neural network based method for real-time gait analysis with ...
Reliability and user compliance of the applied sensor system are two key issues of digital healthcar...
Walking has been demonstrated to improve health in people with diabetes and peripheral arterial dise...
The application of artificial intelligence techniques to wearable sensor data may facilitate accurat...
Wearable human movement measurement systemsare increasingly popular as a means of capturing human mo...
Estimating ankle joint power can be used to identify gait abnormalities, which is usually achieved b...
In this study neural networks were applied to perform automated diagnosis of gait patterns. The thre...
The joint angle during gait is an important indicator, such as injury risk index, rehabilitation sta...
Gait recognition systems have gained tremendous attention due to its potential applications in healt...
This study evaluates the capability of a single inertial sensor based joint angles estimation during...