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三维运动分析系统动态校准新方法 被引量:2
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作者 薛文东 Oskar Schmid 戴尅戎 《医用生物力学》 CAS CSCD 2001年第2期120-122,共3页
本文用格子平板校准法在 albavison ACAM50 3D运动动态分析系统下进行校准,并对照了其他的三维分析系统和校准方法。结果显示本方法和系统的精度远高于目前使用的系统和方法,具有很高的实验和应用价值。
关键词 3D运动分析 校准 人体 格子平板法
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足三维运动的热塑标志测量法 被引量:1
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作者 薛文东 Oskar Schmid 戴尅戎 《医用生物力学》 EI CAS CSCD 2003年第1期39-41,共3页
目的 探讨足在三维空间中的角度变化规律。方法 应用热塑材料作3D标志的支架,紧贴足背、足跟。通过ALBAVISION ACAM50 3D运动分析系统定位标志在3D坐标系的位置,计算了足在3D空间中的角度。结果 正确描绘了足的三维运动规律。结论 此测... 目的 探讨足在三维空间中的角度变化规律。方法 应用热塑材料作3D标志的支架,紧贴足背、足跟。通过ALBAVISION ACAM50 3D运动分析系统定位标志在3D坐标系的位置,计算了足在3D空间中的角度。结果 正确描绘了足的三维运动规律。结论 此测量方法提供一个3D足运动的临床和科研分析方法。 展开更多
关键词 3D运动分析 标志 三维运动 热塑材料
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Design and Implementation of a Rehabilitation Upper-limb Exoskeleton Robot Controlled by Cognitive and Physical Interfaces
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作者 Arturo Gonzalez‑Mendoza Ivett Quinones‑Uriostegui +3 位作者 Sergio Salazar‑Cruz Alberto‑Isaac Perez‑Sanpablo Ricardo Lopez‑Gutierrez Rogelio Lozano 《Journal of Bionic Engineering》 SCIE EI CSCD 2022年第5期1374-1391,共18页
This paper presents an upper limb exoskeleton that allows cognitive(through electromyography signals)and physical user interaction(through load cells sensors)for passive and active exercises that can activate neuropla... This paper presents an upper limb exoskeleton that allows cognitive(through electromyography signals)and physical user interaction(through load cells sensors)for passive and active exercises that can activate neuroplasticity in the rehabilitation process of people who suffer from a neurological injury.For the exoskeleton to be easily accepted by patients who suffer from a neurological injury,we used the ISO9241-210:2010 as a methodology design process.As the first steps of the design process,design requirements were collected from previous usability tests and literature.Then,as a second step,a technological solution is proposed,and as a third step,the system was evaluated through performance and user testing.As part of the technological solution and to allow patient participation during the rehabilitation process,we have proposed a hybrid admittance control whose input is load cell or electromyography signals.The hybrid admittance control is intended for active therapy exercises,is easily implemented,and does not need musculoskeletal modeling to work.Furthermore,electromyography signals classification models and features were evaluated to identify the best settings for the cognitive human–robot interaction. 展开更多
关键词 Human Robot interaction Hybrid admittance control Surface electromyography Upper-limb exoskeletal robot
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