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human knee

[网络] 人的膝盖

网络

双语例句

  • Optimization computation of 14 mechanism parameters of 4-bar knee joint is used to make it track human knee joint and damper cost minimum energy.
    通过对膝关节机构参数的多变量最优化设计,保证仿生腿各关节中心点跟踪给定轨迹,且阻尼器能耗小。
  • Objective: Analyze the X-ray manifestation of synovial osteochondromatosis in human knee in order to know more about the disease and find its early expressions through X-ray.
    目的分析膝关节滑膜骨软骨瘤病的X线表现,进一步提高对滑膜骨软骨瘤病的认识及其在膝关节的早期X线表现。
  • The results show that for human knee joints the failure torque is 69.9 ± 9.7 ( Nm), and the failure tension is 1412 ± 117 ( N).
    结果表明:人体膝关节的破坏扭矩为69.9±9.7Nm,破坏张力为1412±117N。
  • 4-bar closed-chain knee joint controlled by intelligent MR damper has polycentric characteristic of human knee joint.
    由智能阻尼器控制的4-bar封闭链仿生膝关节转动中心是变化的。
  • Objective To study the MR imaging and 3 D reconstruction of articular cartilage of normal human knee, and to provide clinicians with anatomical basis in diagnosing and treating the articular cartilage diseases.
    目的研究正常人膝关节软骨的MR成像和软骨三维重建方法,为临床诊治关节软骨病变提供科学依据。
  • 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。
  • In order to obtain biomechanical parameters of human knee joints and tolerance transfer relationships between human and rhesus monkey knee joints, torsional and tensional tests were conducted in 10 human and 10 rhesus monkey knee joints in vitro.
    为了获得人体膝关节生物力学特性参数及猕猴和人体膝关节间耐受性的传递关系,分别进行了10例离体的人体和猕猴膝关节扭转和张力实验。
  • Conclusion ① The model set up in this project belongs to three-dimensional human knee joint basic dissection models, which matches the virtual anatomy of human knees so that it can be reliably used to analyze the stress distribution condition of human knee joints.
    结论①本实验所建模型属三维人膝关节解剖基静力模型,与人膝关节解剖实际相符,能很好地用来分析膝关节的应力情况。
  • 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
  • Establish the model of human knee in order to study its biomechanics mechanism.
    正常国人急性意外死亡的膝关节模型制作,研究其生物力学机制;