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Assist Timing Decision Method for Wire Type Walking Assist Suit by Hip Joint Angular Acceleration.

, , , , , , , , and . GCCE, page 705-708. IEEE, (2020)

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A new approach for non-contact pulse transit time measurement using microwave and image sensors., and . ICCE, page 333-334. IEEE, (2016)External control of walking direction, using cross-wire mobile assist suit., , , and . IROS, page 1046-1051. IEEE, (2017)Tacit representation of muscle activities during coordination training: Muscle synergy analysis to visualize motor enhancement in virtual trajectory of multi-joint arm movement., , , , , , , , and . BioRob, page 270-275. IEEE, (2014)Pilot study on quantitative assessment of muscle imbalance: Differences of muscle synergies, equilibrium-point trajectories, and endpoint stiffness in normal and pathological upper-limb movements., , , , , , , , , and 2 other author(s). EMBC, page 5784-5787. IEEE, (2014)Cross-wire assist suit concept, for mobile and lightweight multiple degree of freedom hip assistance., , , and . ICORR, page 387-393. IEEE, (2017)Non-contact pulse transit time measurement using imaging camera, and its relation to blood pressure., , and . MVA, page 414-417. IEEE, (2015)Improved human pulse peak estimation using derivative features for noncontact pulse transit time measurements., , and . IJCNN, page 1-6. IEEE, (2015)Soft hip walking assist experimental system featuring variable compliance control., , , , and . ICCE, page 400-401. IEEE, (2017)Pulse Transit Time Variability on a Range of Heart Rates between Resting and Elevated States., and . SMC, page 1579-1582. IEEE, (2015)Kinematic Analysis of Effect on Walking Motion by Assistive Powered Wear with Wire-driven Assist., , , , , and . ARSO, page 51-56. IEEE, (2019)