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教师拼音名称:
xiahaisheng
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副研究员
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hsxia@ustc.edu.cn
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控制科学与工程
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[11]11. Tan T, Strout Z, Xia H, Orban M, Shull PB*, “Magnetometer-Free, IMU-Based Foot Progression Angle Estimation for Real-Life Walking Conditions,” IEEE Transactions on Neural Systems and Rehabilitation Engineering, 29: 282-289, 2021..
[12]12. Shull PB, Xia H*, “Modeling and Prediction of Wearable Energy Harvesting Sliding Shoes for Metabolic Cost and Energy Rate Outside of the Lab,” Sensors, 20: 6915, 2020..
[13]13. Xia H, Kwon J, Pathak P, Ahn J, Shull PB, Park YL*, “Design of A Multi-Functional Soft Ankle Exoskeleton for Foot-Drop Prevention, Propulsion Assistance, and Inversion/Eversion Stabilization,” IEEE RAS/EMBS International Conference on Biomedical Robotics and Biomechatronics, 2020. .
[14]14. Xia H, Charlton JM, Shull PB, Hunt MA*, “Portable, Automated Foot Progression Angle Gait Modification via a Proof-of-Concept Haptic Feedback-Sensorized Shoe,” Journal of Biomechanics, 107:109789,2020. .
[15]15. Xia H, Chen DKY, Zhu X, Shull PB*, “ ‘Controlled Slip’ Energy Harvesting while Walking,” IEEE Transactions on Neural Systems and Rehabilitation Engineering, 28: 437-443, 2020. .
[16]16. Charlton JM, Xia H, Shull PB, Hunt MA*, “Validity and Reliability of A Shoe-embedded Sensor Module for Measuring Foot Progression Angle During Over-ground Walk,” Journal of Biomechanics, 89: 123-127, 2019..
[17]17. Huang Y, Xia H, Chen G, Cheng S, Cheung RT, Shull PB*, “Foot Strike Pattern, Step Rate, and Trunk Posture Combined Gait Modifications to Reduce Impact Loading during Running,” Journal of Biomechanics, 86: 102-109, 2019. .
[18]18. Xia H, Charlton JM, Hunt MA, Shull PB*, “Preliminary Test of a Smart Shoe for Training Foot Progression Angle during Walking,” Osteoarthritis and Cartilage, 27: S64-S65, 2019. .
[19]19. Shull PB*, Xia H, Huang Y, Chen G, Cheng S, Cheung RT, “Combined Gait Modifications for Runners to Reduce Impact Loading,” International Society of Biomechanics Conference, 2019..
[20]20. Charlton JM, Xia H, Shull PB, Hunt MA*, “The Validity and Day-to-day Reliability of A Shoe-embedded Sensor Module for Estimating Foot Progression Angle During Over-ground Walking,” International Society of Biomechanics Conference, 2019..
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