SETTING: Prosthetics and orthotic department in a provincial artificial limb center. 单位:一所省级假肢中心假肢矫形部。
Doctors re-routed nerves from her brain into the artificial limb via electrodes, and it is now said to operate as a normal human arm-and could even restore her sense of touch. 医生将她大脑中的神经运动通过电极传送到假肢里。目前,米切尔的假肢据说可以像正常人的手臂那样活动,甚至还可以恢复她的触觉。
Artificial limb development and the mental rehabilitation of patients undergoing amputation and artificial limb installation 假肢发展技术以及截肢患者假肢安装过程中的心理康复
Installation of artificial limb orthopedic devices and comprehensive rehabilitation therapies for earthquake-stricken patients 地震伤员假肢矫形具的安装及综合康复治疗
The control on the artificial limb based on brain-computer interface 基于脑-机接口的康复辅助机械手控制
Realization of kinematics simulation software for four-bar artificial limb knees 四连杆膝关节运动学性能仿真软件的实现
They said their set-up could someday be adapted to help disabled people operate a motorized wheelchair or artificial limb. 他们说,试验中的这种装置日后将会投入应用,以帮助残疾人驾驶机动轮椅和操纵假肢。
The system can output various CAD interfaces, and provide data for individually matching artificial limb design and manufacture. 该系统提供了多种CAD接口,为个体适配化假体设计与制造提供了必要数据。
The utility model is a new product of artificial limb connecting fittings. 是目前假肢连接件中的一种新的产品。
Design and Study of Lower Artificial Limb Exoskeleton Based on the Control of EMG for Rehabilitation Physic 基于肌电信号控制的康复医疗下肢外骨骼设计及研究
The team will hook up a series of micro-arrays implanted in the brain to record and transmit signals to the artificial limb. 该研究小组将连接植入大脑的一系列微阵列,记录并向人造肢体传输信号。
Fitting an appropriate artificial limb is an effective method to help the wounded walking out of the shadow, body and soul recovering better, going back to society as soon as possible. 帮助这些伤员尽快走出阴影,使他们在灾后能够最大程度的身心康复,重新回归社会,假肢的装配和使用是目前最有效的方法。
Modern module technology and control technology of knee joint for artificial limb are also reviewed. 着重阐述了现代假肢技术的构成及假肢膝关节的控制技术。
Appliance on the Design of Six-bar Mechanism in Artificial Limb Knee 六杆机构在假肢膝关节设计中的应用
The shoulder mechanism of whole-arm artificial limb accords with the appearance of human limb and the bionic machine is taken into account in terms of design structure. 全臂假肢肩关节结构,不但要符合健康人手臂的外形特征,而且在结构设计的布局上还要考虑仿生性和造型的美观逼真。
[ Conclusion] The more earlier to give artificial limb installation, training and mental therapy, the more curative effect the patients gain. [结论]对截肢术后要尽可能早的安装假肢及康复训练,针对不同情况同时给予病人必要的心理疏导,可取得满意的疗效。
This design accomplishes the task of installing touch and slide sensor on an artificial limb, which can realize the acquisition and conversion of both tactile and sliding signals. Besides it can also realize the sensory output. 该设计完成安装于人体假肢的触滑觉传感器,完成触觉、滑觉信号的采集、转换和感觉信息输出。
A multifingered anthropomorphic hand is a versatile dexterous end effector for robot, which is also one of the important subjects in the area of research on artificial limb. 多指多关节拟人手是一种机器人的通用型灵巧终端执行器,同时它也是当前假肢领域中的一项重要研究课题。
VB and Access database, ADO Control and Excel was applied in management system of client information for artificial limb factory. 基于VB的假肢厂客户信息管理系统用VB和Access数据库、ADO控件和Excel实现。
According to the characteristics of modern artificial intelligence techniques and the modern artificial limb, this thesis makes active above-knee artificial limb for research object based on the PID control and iterative learning control. 本论文根据现代假肢的特点以及现代人工智能技术,以主动式膝上假肢为研究对象,分别采用了常规PID控制和迭代学习控制进行了研究。
The calculation of the online gait phase identification and centre of pressure ( COP) is one of the key technologies of biped robot, artificial limb, and rehabilitation robot. 在线的步态相位识别和压力中心COP检测是两足类人机器人、人工假肢,以及腿部康复训练机器人的关键技术之一。
Far-infrared from nanophase ceramics can ameliorate microcirculation, intenerate scar and improve the artificial limb compensatory function. 纳米相陶瓷远红外线具有改善微循环,提高残端皮肤弹性的作用。
Conclusion By properly choosing 8-9 among 28 freedoms of arm, an artificial limb can mainly restore the function of arm. 结论上肢中28个自由度中,当合理地选择其中8~9个自由度时,即可恢复上肢的大部分功能。
The compensatory function of artificial limb ( patients with crus amputated). 假肢代偿功能(小腿假肢病人)。
As the main movement pattern of modem robots, artificial limb and rehabilitation robots, Biped walking style has an important influence on industrial production, scientific research, rehabilitation of medical and other fields. 双足步行作为现代机器人、人工假肢和康复训练机器人的主要运动方式,对工业生产、科学研究及康复医疗等领域的发展具有重要影响。
Based on EMG signal generation mechanism and collection, signal pre-progressing and feature extraction, linear discriminant analysis based movement prediction, and action execution of prosthesis, a myoelectric pattern recognition based prosthesis control method framework is developed to realize the artificial limb system. 在详细探讨肌电信号的产生机理与采集、信号预处理与特征提取的基础上,将线性判别分析法应当肌电信号动作判别中,建立了基于模式识别的肌电假肢控制方案框架。
In recent years, gait analysis system has used in so many fields widely, such as clinical diagnoses, rehabilitation, physical science and intelligent artificial limb design. 近年来,步态分析系统已在临床医学、康复治疗、体育科学、智能人工腿设计等领域得到了广泛应用。
SEMG became a hotspot in these research field, because it provides a safe and non-implant control way such as controlling movement of artificial limb. 因为sEMG为控制假肢运动的研究提供一个安全、非侵入的控制方式,所以使得其迅速成为研究领域的热点问题。
As to the war and traffic accident, the number of sufferers which have lost their arms and hands is increasing all over the world, so the requirement to the artificial limb and artificial hand is enlarging incessantly. 由于战争、交通事故等原因,全世界的断臂、断手患者的数量日益增加,因此对假肢、假手的需求也不断的扩大。