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human knee

[网络] 人的膝盖

网络

双语例句

  • On the basis of human 3D knee models, we measure the parameters and then do some statistics and analysis. Ultimately, a standard model database of human knee joint is established. 4.
    基于人体膝关节三维模型的基础,测量膝关节各部分参数,并对所测得的参数进行统计与分析,最终建立标准人体膝关节模型数据库。
  • The arterial supply of the human knee joint
    膝关节动脉的血液供应
  • Human knee joint is the most important body part and the multiple lesions part.
    人体膝关节是人体最重要的部位,也是多发病变部位,一般严重受损的膝关节都采用全膝置换术来治疗。
  • A method of vivo human knee joint 3D model reconstruction based on MR images
    基于磁共振图像的人体膝关节三维模型的建立
  • Based on modern computer technology, medical images of human knee joint were processed with image segmentation algorithms, and a three-dimensional solid model of the knee was established.
    鉴于此,本文开展了个性化人工膝关节设计工作的研究,主要内容如下:1.利用现代计算机技术,应用图像分割算法对人体膝关节医学图像进行处理,建立膝关节三维实体模型。
  • On articular surface equations of the human knee joint in sagittal plane
    矢状面内人膝关节啮合曲面的刻划
  • Objective: Collect the normal image of CT and MRI scans of the knee, take advantage of the three-dimensional reconstruction and ANSYS three-dimensional finite element softwares to the establishment of dimensional finite element model of the normal human knee.
    目的:收集正常人膝关节CT及MRI扫描图像,利用三维重建及ANSYS等三维有限元软件,建立正常人膝关节三维有限元模型。
  • The contact location, contact area and stress distribution of the patellofemoral joint were tested with the Fuji pressure sensitive film and the dyeing method in eight fresh human cadaver knee joints under the states of variety Q-angles and knee flexion angles.
    本研究应用染色法和压敏片法,对8例新鲜尸体膝关节在不同Q角和屈膝角度时的髌股接触部位、面积和应力分布进行测试。
  • From our experiments, we found that the human knee joint and the human cubit joint are not usual moving pairs, but are special bio-hinge.
    根据我们的实验,人体肘关节和膝关节都不是通常的运动付,而是特殊的生物铰。
  • The research finding of biomechanics of the human knee in vivo is not only as a reference to deeply understand the behavior of joints, protect joints consciously against injury, but also as a tool to identify the treatment of knee pathologies.
    同时膝关节生物力学特性的研究对人类深入认识关节行为,有意识的保护关节,减少关节损伤以及确定关节伤病后的康复方案提供参考。