Research Position:Direction
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人体效能增强 Human Augmentation

面向智能外骨骼机器人/辅助运动训练设备/运动员竞技能力提升等的需要,开展新一代人机交互技术及效能维持与提升的原理方案研究和系统集成及应用研究,解决核心技术问题并实现行业应用

The main task of this position is to conduct theoretical and translational research of next generation technology of human-machine interaction and human augmentation in at least one of the following area: intelligent exoskeleton robot, sports training-support equipment, enhancement of athletic ability. The objective is to resolve key technical problems and realize industrial application

残疾人坐式越野滑雪技能测试及模拟训练平台
A skill testing and simulation training platform for cross-country sit skiers

我们课题组开发了一套残疾人坐式越野滑雪技能测试及模拟训练平台,可以使残疾人运动员的长距离越野滑雪训练及技能测试不再受季节和场地的限制,在室内就可以进行越野滑雪模拟训练、技能数据(撑杆三维力、肌电信号、能耗等)采集,为残疾人运动员的能力评价、个性化训练方案的制定提供科学的数据支撑,从而提升我国残疾人坐式越野滑雪运动员竞技水平、完善我国残疾人坐式越野滑雪科研理论体系。

Our team has developed a skill testing and simulation training platform for cross-country sit skiers. It can make long-distance cross-country skiing training and skill testing for disabled athletes independent of season and venue. And indoors, the disabled athlete can complete cross-country skiing simulation training and collect skill data (three dimensional force of poles, EMG, energy consumption, etc.),which can provide scientific evidence for the ability evaluation of disabled athletes and the formulation of personalized training plan.Therefore, our competitive level of disabled cross-country skiers can be improved, and our scientific theoretical system of disabled cross-country skiers in can be improved.

竞技状态下射击前的脑电活动
Pre-shooting electroencephalographic activity in a competitive state

我们课题组研究了10m气步枪专业射击运动员射击前竞争环境下的大脑神经活动,采集运动员在单人射击与竞争状态下射击的脑电、心电信号以及射击表现参数。通过分析两种状态下的脑电图特征,发现了射击运动员在单人射击与竞争射击的大脑功率差异性激活现象,为后续的神经调控研究奠定基础。

Our group investigated the competitive state on cerebral cortex activity of professional shooters with 10m air rifle before shooting, and collected the electroencephalogram(EEG), electrocardiogram (ECG) information and shooting performance parameters of the athletes under both individual and competitive shooting conditions. By analyzing the EEG characteristics under two conditions, we found that there were differences in brain power activation between individual and competitive shooting, and lay a foundation for the subsequent neuromodulation research.