Hybrid Deep-Learning Framework Based on Gaussian Fusion of Multiple Spatiotemporal Networks for Walking Gait Phase Recognition
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Lei Yan | Jian-Lei Kong | Tao Zhen | Jianlei Kong | Lei Yan | Tao Zhen
[1] Weixing Qian,et al. Pedestrian Navigation Method Based on Machine Learning and Gait Feature Assistance , 2020, Sensors.
[2] Baihai Zhang,et al. Adaptive filtering for MEMS gyroscope with dynamic noise model. , 2020, ISA transactions.
[3] Wolfgang I. Schöllhorn,et al. Increased gait variability during robot-assisted walking is accompanied by increased sensorimotor brain activity in healthy people , 2019, Journal of NeuroEngineering and Rehabilitation.
[4] Shouqian Sun,et al. A Low-Cost End-to-End sEMG-Based Gait Sub-Phase Recognition System , 2020, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[5] Jie Jia,et al. Gait identification using fractal analysis and support vector machine , 2019, Soft Comput..
[6] Tingli Su,et al. Deep Hybrid Model Based on EMD with Classification by Frequency Characteristics for Long-Term Air Quality Prediction , 2020, Mathematics.
[7] Carlotta Mummolo,et al. Quantifying dynamic characteristics of human walking for comprehensive gait cycle. , 2013, Journal of biomechanical engineering.
[8] T. Karthikeyan,et al. A novel hidden Markov model-based adaptive dynamic time warping (HMDTW) gait analysis for identifying physically challenged persons , 2019, Soft Comput..
[9] B. Hu,et al. Machine learning algorithms based on signals from a single wearable inertial sensor can detect surface- and age-related differences in walking. , 2018, Journal of biomechanics.
[10] Sen Qiu,et al. Towards Wearable-Inertial-Sensor-Based Gait Posture Evaluation for Subjects with Unbalanced Gaits , 2020, Sensors.
[11] Tingli Su,et al. Probability Fusion Decision Framework of Multiple Deep Neural Networks for Fine-Grained Visual Classification , 2019, IEEE Access.
[12] Baihai Zhang,et al. A Neuron-Based Kalman Filter with Nonlinear Autoregressive Model , 2020, Sensors.
[13] Lei Yan,et al. An Acceleration Based Fusion of Multiple Spatiotemporal Networks for Gait Phase Detection , 2020, International journal of environmental research and public health.
[14] Tingli Su,et al. Deep Learning Predictor for Sustainable Precision Agriculture Based on Internet of Things System , 2020, Sustainability.
[15] Hanghang Tong,et al. Activity recognition with smartphone sensors , 2014 .
[16] Omid Dehzangi,et al. IMU-Based Gait Recognition Using Convolutional Neural Networks and Multi-Sensor Fusion , 2017, Sensors.
[17] Liu Ming,et al. Identification of Individual Walking Patterns Using Gait Acceleration , 2007, 2007 1st International Conference on Bioinformatics and Biomedical Engineering.
[18] Nicola Smania,et al. Robot-Assisted Gait Training in Patients With Parkinson Disease , 2012, Neurorehabilitation and neural repair.
[19] Hong Wei,et al. Advances in Multi-Sensor Information Fusion: Theory and Applications 2017 , 2018, Sensors.
[20] Bijan Najafi,et al. Does the Presence of Cognitive Impairment Exacerbate the Risk of Falls in People with Peripheral Neuropathy? An Application of Body-Worn Inertial Sensors to Measure Gait Variability , 2020, Sensors.
[21] A A Brewis,et al. Hydatidiform mole pregnancy in Micronesian women. , 1996, The New Zealand medical journal.
[22] Tingli Su,et al. State-of-the-Art Mobile Intelligence: Enabling Robots to Move Like Humans by Estimating Mobility with Artificial Intelligence , 2018 .
[23] Gabriella Balestra,et al. Muscle activation patterns during gait: A hierarchical clustering analysis , 2017, Biomed. Signal Process. Control..
[24] Sang Seok Yeo,et al. Accuracy Verification of Spatio-Temporal and Kinematic Parameters for Gait Using Inertial Measurement Unit System , 2020, Sensors.
[25] Qaiser Riaz,et al. Person Re-Identification Using Deep Modeling of Temporally Correlated Inertial Motion Patterns , 2020, Sensors.
[26] Lei Yan,et al. Walking Gait Phase Detection Based on Acceleration Signals Using Voting-Weighted Integrated Neural Network , 2020, Complex..
[27] Alan Godfrey,et al. Gait Asymmetry Post-Stroke: Determining Valid and Reliable Methods Using a Single Accelerometer Located on the Trunk , 2019, Sensors.
[28] Min Zuo,et al. CropDeep: The Crop Vision Dataset for Deep-Learning-Based Classification and Detection in Precision Agriculture , 2019, Sensors.
[29] Xiao-yi Wang,et al. Dynamic Correlation Analysis Method of Air Pollutants in Spatio-Temporal Analysis , 2020, International journal of environmental research and public health.
[30] Bram Vanderborght,et al. ED-FNN: A New Deep Learning Algorithm to Detect Percentage of the Gait Cycle for Powered Prostheses , 2018, Sensors.
[31] Alex Fridman,et al. Learning Human Identity from Motion Patterns , 2015, IEEE Access.