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Xuesong Luo
Xuesong Luo
Verified email at tsinghua.edu.cn
Title
Cited by
Cited by
Year
Permanent Magnet-Based Superficial Flow Velometer with Ultra Low Output Drift
Z Wang, S Wang, X Wang, X Luo
IEEE Transactions on Instrumentation and Measurement, 2023
202023
Underwater moving object detection using superficial electromagnetic flow velometer array based artificial lateral line system
Z Wang, S Wang, X Wang, X Luo
IEEE Sensors Journal, 2024
142024
Electrical characterization of basal cell carcinoma using a handheld electrical impedance dermography device
X Luo, Y Zhou, T Smart, D Grossman, B Sanchez
JID innovations 2 (1), 100075, 2022
102022
In vivo muscle conduction study of the tongue using a multi-electrode tongue depressor
X Luo, HVG Pulido, SB Rutkove, B Sanchez
Clinical Neurophysiology 132 (2), 683-687, 2021
92021
Modeling and analysis of mover gaps in tubular moving-magnet linear oscillating motors
LUO Xuesong, C Zhang, W Shaoping, ZIO Enrico, W Xingjian
Chinese Journal of Aeronautics 31 (5), 927-940, 2018
92018
A bioimpedance-based device to assess the volume conduction properties of the tongue in neurological disorders affecting bulbar function
X Luo, HVG Pulido, SB Rutkove, B Sanchez
IEEE Open Journal of Engineering in Medicine and Biology 2, 278-285, 2021
42021
A framework for modeling bioimpedance measurements of nonhomogeneous tissues: A theoretical and simulation study
X Luo, S Wang, B Sanchez
Physiological Measurement 42 (5), 055007, 2021
42021
In silico muscle volume conduction study validates in vivo measurement of tongue volume conduction properties using a user tongue array depressor
X Luo, B Sanchez
Physiological Measurement 42 (4), 045009, 2021
42021
Electrical impedance myography method of measuring anisotropic tongue tissue
X Luo, J Shi, AM Llobet, SB Rutkove, B Sanchez
Physiological Measurement 44 (5), 055007, 2023
32023
Nonhomogeneous volume conduction effects affecting needle electromyography: an analytical and simulation study
X Luo, S Wang, SB Rutkove, B Sanchez
Physiological measurement 42 (11), 115005, 2021
32021
Underwater surface flow velocity sensor based on single side stray field of permanent magnet
Z Wang, S Wang, X Luo
IEEE Transactions on Instrumentation and Measurement 72, 1-15, 2022
22022
Modeling and simulation of needle electrical impedance myography in nonhomogeneous isotropic skeletal muscle
X Luo, S Wang, B Sanchez
IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology …, 2022
22022
Modeling and Analysis of a Climbing Platform Based on Inter-digital Electrode Adhesion Film
C Liu, S Wang, S Xu, H Wang, X Luo
2018 IEEE International Conference on Mechatronics and Automation (ICMA …, 2018
22018
A highly-decoupling triangular tactile sensor structure for three-axial force measurement based on floating comb electrodes
C Liu, X Luo, S Wang
IET Digital Library, 2018
22018
Modeling and analysis of magnetic field considering gaps of permanent magnets in linear oscillating motor
X Luo, S Wang
2016 IEEE International Conference on Aircraft Utility Systems (AUS), 791-795, 2016
22016
Blood Coagulation Monitoring and Thrombus Formulation Assessment based on Bioimpedance Spectroscopy
X Luo, S Wang, J Shi
Proceedings of the 30th European Safety and Reliability Conference and the …, 2020
12020
Decouple Analysis of Triaxial Tactile Sensor Based on Triangular Comb Electrodes
C Liu, X Luo, S Wang
2018 IEEE SENSORS, 1-4, 2018
12018
Analytical study of magnetic field considering circumferential mover gaps in tubular linear oscillating motor
X Luo, S Wang, X Wang, M Tomovic
2017 12th IEEE Conference on Industrial Electronics and Applications (ICIEA …, 2017
12017
Translational Excitation Strategy for Scaled Transfer Function Measurement of Medical Implants
T Long, C Jiang, Q Yuan, W Sang, X Luo, L Li
IEEE Transactions on Instrumentation and Measurement, 2024
2024
Advancing Spinal Cord Stimulation-Exploring the Cellular Responses of Motor Neurons Through Patch-Clamp Electrophysiology (Video)| JoVE
Q Yao, X Luo, J Liu, L Li
JoVE (Journal of Visualized Experiments), e65385, 2023
2023
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