For her to live without a front leg, Molly needed an artificial leg. 对于它来说,没有前腿将如何生存,所以玛丽需要一条假腿。
A man lies handcuffed with his artificial leg after US Marines caught him and other looters robbing from a bank. 一个人是他的假肢戴上手铐后,美国海军陆战队抓住他,从银行抢劫者抢劫。
Fitted with the artificial leg, he walked unsteadily at first, but with practice his steos became steady. 装了假肢,他起初走路走不稳,但经过锻炼他的步子稳了。
The captain had an artificial leg, made of wood. 船长安了一条假腿,是木头做的。
It was the first time for me to hear and see an artificial leg. 运动员的义肢还是第一次听说第一次看到。
Du Toit hobbled along stiffly on her artificial leg, No.23 written on her back and both arms. 杜托伊特戴着一条假腿,蹒跚起来,姿态有些僵硬。背上和胳膊上写着她的号码,23号。
When I went to shops playing beautiful music, I was afraid of the noise of my artificial leg, which made many customers look at me. I was embarrassed. 商场里很安静,播放着悠扬的背景音乐,我害怕听到义肢咯吱吱地响声,因为大家都看向我,很难堪!
Michigan prosthetic center to make artificial leg for puppy born without ankle joint, right paw. 密执安州假肢中心为一条刚出生的,右腿踝关节缺失的小狗装假腿。
This artificial leg consists of a knee joint, a shank, and a foot. 设计的聪明人造的腿是膝的最重要的成份。
Above all, to be able to afford, sooner or later, the best artificial leg available. 首先是有一天能够买得起最好的义肢。
In this paper, a new method for walking speed measurement of artificial legs is proposed, in which we measure the movement duration of an artificial leg in swinging phase and express its walking speed indirectly in terms of this duration. 作者提出一种新的步速测量方法,即测量人工腿在摆动相的持续时间,用该时间的长短来间接反映步速的快慢。
The Implementation of Artificial Leg with Finite-State Automata 仿真腿的有限态自动机实现
Intelligent artificial leg is a complicated nonlinear control system. 智能人工腿是一个复杂的非线性控制系统。
An intelligent artificial leg is a precise electromechanical device, one of whose key components is the walking speed measuring circuit. 智能人工腿是一个精密的机电一体化装置,其关键部件之一是步速测量电路。
Finite Element Analysis and Preliminary Animal Experiment of Osseointegrated Percutaneous Device for Artificial Leg 植入性大腿假肢经皮器件的有限元分析及初步动物实验
Study and Design of Handhold Controller System of CIP-I Intelligent Bionic Artificial Leg CIP-I智能仿生人工腿手持控制系统研究与设计
Design and Simulation of Linear Motor Position Servo System in Artificial Leg 人工腿中直线电机位置伺服系统仿真与设计
Its crucial part is intelligent controller, which controls bend and stretch of the knee joint of artificial leg as well as shank swing and often adopts fuzzy control strategy. 它的关键部件是控制人工腿膝关节屈伸运动及小腿摆动的智能控制器,其常常采用模糊控制策略。
The controller has been used to control the motor of the intelligent artificial leg designed by the authors. 该控制器已用于控制由作者设计的智能人工腿中的执行电机。
Study and Design of Walking Speed Measurement System of CIP-ⅰ Intelligent Bionic Artificial Leg CIP-Ⅰ智能仿生人工腿步速测量系统研究与设计
Design of ant algorithm-based optimal PID controller and its application to intelligent artificial leg 基于蚁群算法的智能人工腿最优PID控制器设计
Artificial leg ( prosthesis) has been a leading-edge research object in the fields of robotics and biomedical engineering. 人工腿(假肢)一直是机器人学和生物医学工程领域的一个前沿性研究课题。
Experimentation shows that this module circuit can effectively respond to the walking speed of healthy side leg and immediately offer intelligent controller given value through the interface circuit with controller of artificial leg. 实验表明,该模块电路能有效地感应健侧肢行走速度,满足实时测量的要求,并通过与人工腿控制器接口电路直接提供智能人工腿控制器的给定跟踪值。
Simulation and Evaluation of Intelligent Bionic Artificial Leg CIP-I Leg 智能仿生人工腿CIP-ILeg性能仿真评估研究
The swing of an intelligent artificial leg is produced by the movement of the piston of the pneumatics cylinder, which is mounted in the leg. 智能人工腿的摆动靠安放在其内部的空压气缸的活塞伸缩来实现。
Using division modeling method, the kinematics and Lagrangian dynamics models of artificial leg in stance phase and swing phase are built. 采用分割建模方法,分别建立人工腿的运动学模型和动力学模型。并将四连杆膝关节引入了人工腿,设计了异构双腿的人工腿整体结构并对原有试验平台装置进行了改善。
The high-level intelligentized bionic artificial legs have appeared in foreign countries, but research status in this field is not optimistic in China, there is no mature intellective artificial leg product. 目前国外已经出现智能化及其仿生度较高的智能下肢假肢,而国内在这一领域的研究状况则不容乐观,还没有成熟的智能下肢假肢产品出现。
To improve the living quality and welfare benefits of amputees, research has been made on the intellective artificial leg, which is also an attentive research project in the fields of robotics and biomedical engineering in these years. 研制智能下肢假肢目的是为了改善残疾人生活质量及促进医疗福利事业的发展,同时智能下肢假肢也是近年来机器人学与生物医学工程领域广受关注的研究方向。
The method take advantage of the algorithm of Hough line detection efficiency and realize the artificial leg flag line feature detection. 该方法利用Hough算法对直线检测的高效性,实现对腿部人工标志直线特征的检测。
Base on a person walking gait characteristics, iterative learning control is utilized to follow the artificial leg, and this control algorithm is verified by the simulation in virtual prototyping platform. 针对人行走步态的特征,采用迭代学习控制跟随人工腿,并在虚拟样机的仿真平台上对此控制算法进行了验证。