李可
个人信息Personal Information
教授 博士生导师 硕士生导师
主要任职:世界华人生物医学工程学会理事兼财务委员会主席、中国生物医学工程学会康复工程分会委员、中国自动化学会机器人智能专委会委员、中华康复医学会康复评定委员会委员、中华康复医学会神经调控委员会委员、山东大学第二医院双聘教授
性别:男
毕业院校:University of Technology of Troyes, France
学历:博士研究生毕业
学位:哲学博士学位
在职信息:在职
所在单位:控制科学与工程学院
入职时间:2010-06-30
学科:生物医学工程
联系方式:kli@sdu.edu.cn
扫描关注
-
生物医学工程;智能医学工程;智能急救技术;智能康复技术;康复及医疗机器人;生物医学信息处理;人机交互系统;智能医学仪器开发;生机电一体化装备研发
- . Electrical-mechanical dynamical coupling between electrocardiographic and photoplethysmographic signals during cardiopulmonary resuscitation. Computer Methods and Programs in Biomedicine, 242, 1, 2024.
- Amir Khan. Effects of transcutaneous electrical nerve stimulation on evoked tactile sensation for fingertip force control. Biomedical Signal Processing and Control, 87, 1, 2024.
- Amir Khan. Effects of transcutaneous electrical nerve stimulation on evoked tactile sensation for fingertip force control. Biomedical Signal Processing and Control, 87, 2024.
- . Electrical-mechanical dynamical coupling between electrocardiographic and photoplethysmographic signals during cardiopulmonary resuscitation. Computer Methods and Programs in Biomedicine, 242, 2024.
- 丁博智. Design and evaluation of portable emergency ventilator prototype with novel titration methods. Biomedical Signal Processing and Control, 83, 2023.
- . Reach-to-grasp kinematics and kinetics with and without visual feedback in early-stage Alzheimer's disease. JOURNAL OF NEUROENGINEERING AND REHABILITATION, 19, 2023.
- Sensorimotor Control for Dexterous Grasping – Inspiration from Human Hand
- 人机交互与智能康复
- 《面向对象程序设计与C++语言基础》
- Sensorimotor Control for Dexterous Grasping — Inspiration from human hand
- Ke Li, Sensorimotor control for dexterous grasping – inspiration from human hand, Chapter in Tactile Sensing, Skill Learning, and Robotic Dexterous Manipulation
- 背负式多参数实时动态监护与全自动生命支持一体机研究(2021年奖励), 2021/09/26-2024/06/30
- 背负式多参数实时动态监护与全自动生命支持一体机研究(2021年补助), 2021/09/26-2024/06/30
- TRPV4参与新精准型经颅磁刺激治疗神经病理性疼痛的中枢痛觉传导通路机制研究, 2022/01/01-2024/12/31
- 基于运动模式和多模态信息的前馈控制和反馈控制, 2020/12/01-2023/11/30
- 基于双向神经通路的上肢假肢闭环交互控制, 2020/04/01-2023/04/01
- 外骨骼康复及助行机器人人机交互控制技术研究, 2019/09/11-2021/12/31