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hip joint相关的网络例句

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与 hip joint 相关的网络例句 [注:此内容来源于网络,仅供参考]

Artificial joint replacement for the hip and knee was revolutionary in the surgical treatment of arthritic joints.

人工髋关节和膝关节置换术是外科治疗关节炎的革命性变革。

With the improvement of joint surgery, the total hip arthroplasty has become a common method of treatment .

随着关节手术技术的提高,人工全髋关节置换术已成为一种常见的治疗方法。

Hip Dysplasia is a terrible genetic disease because of the various degrees of arthritis (also called degenerative joint disease, arthrosis, osteoarthrosis) it can eventually produce, leading to pain and debilitation.

髋关节发育不全是一种严重的遗传疾病,伴随着于不同程度的关节炎(也可以被称为退化性关节疾病),最终可能会引起犬只的疼痛与衰弱。

Hip Dysplasia is a terrible genetic disease because of the various degrees of arthritis (also called degenerative joint disease, arthrosis, osteoarthrosis) it can eventually produce, leading to pain and debilitation .

髋关节发育不全是一种严重的遗传疾病,伴随著于不同程度的关节炎(也可以被称为退化性关节疾病),最终可能会引起犬只的疼痛与衰弱。

The result showed that for joint angle, age effect existed in most of components in all planes except ankle joint and hip abduction during downslope walking.

结果显示,对於关节角度,年纪的影响存在於各关节的各平面上,除了踝关节外展及髋外展角度。

Pain can be reliably eliminated in most patients with hip or knee joint disease, and improvement in joint motion is generally achieved.

胶合剂所作的假体部位,用十多年后会松动,而全关节成形术对老年和活动较少的人,却有维持最长时间的效果。

Taking the moments of hip and knee joint as its controlled variables, the simulation of the motion equation shows that: After increasing the joint moment at the cushioning phase, the vertical velocity of the body center of mass distinctively speedup while horizontal velocity fall to some degree. Thus, the resultant velocity remains basically constant, but the result distance of long jump can be increased due to the enlargement of the angle of take-off.

以髋、膝关节肌力矩作为运动方程的控制变量,对其修改后的模拟结果表明:增大缓冲阶段的关节肌力矩后,人体重心的垂直速度得到明显提高,而水平速度则有所下降,在腾起合速度变化不大的情况下,由于腾起角的增大提高了跳远成绩。

Patients with degenerative arthritis of the X-ray, the right hip looks smooth Yuangun is in normal health of the joint; edge of the left hip is not formed, that cartilage hyperplasia, leading to the surface wear.

退化性关节炎病患的X光片,右侧髋关节看起来平滑圆滚,是健康正常的关节;左侧髋关节边缘不平整,可见软骨增生,导致表面磨损。

To investigate the the body shape strength and kinematics thateffects sprint expert performance 17 healthy male sprinters weremeasured using SongxiaM9000 high speed vidicon in the field; body shape of sprint athlete were tested by steel rule; Meanwhile shoulder were tested at 60, 240and360 deg/sec velocities ; lower limb were tested at 60, 240 deg/sec velocitues using Biodex-II tesing and rehabilitation system in the laboratory This research provide theoretical basement to scientifically make reasonable exercise prescription and perfect sprint theoryThe result show that (1) The results of correlation indicate that 100M performance related to the shoulder fast flexion torque and hip flexion/extension torque^ ankle fast dorsiflexion torque ;(2) The upper arm relaxing enclose and lower limbs length effect 100Mperformance;(3) The biggest shoulder extension joint, swing rage of shoulder and the biggest elbow joint extension effect 100M performance.

使用松下M9000高速摄像机对100米跑动过程中的运动员进行录像,同时测试短跑运动员100米成绩,利用爱捷录像分析系统获取运动学参数;用人体测量尺测试短跑运动员的肢体围度;同时采用Biodex-Ⅱ型等动测力及康复统,测试运动员上肢肩关节及下肢髋、膝、踝3个关节的等速屈伸肌力。在角速度60°/s、240°/s和360°s下测试肩关节等动向心收缩肌力;在角速度60°/s9慢速和240°/s及120°/s下测试下肢3关节等速向心及离心肌收缩肌力。分析肢体围度、各关节肌肉力量和运动学参数与100 影响河北省二级以上短跑运动员专项成绩的因素。一身体形态、力量素质和运动学参数米成绩的内在联系,为合理制订短跑力量训练和完善短跑理论提供理论依据。结果表明;肩带肌群肌力矩确实与100米成绩呈显著高度相关,同时髓关节屈伸力矩比、踝关节背屈力矩与100米跑成绩呈显著中度相关,可能《是影响100米的因素之一。(2)上臂紧张围、上臂放松围与100米跑成绩呈显。著中度相关;最大肩关节伸角、肩关节摆动幅度和最大肘关节伸角与 100 米成绩呈显著中高度相关。

Biomechanics of should joint at the empty out and transition moment: In the instant of leaving of the left foot, the angle between shoulder and hip was 27°, the angle of pull was 150°, the angle of axis between shoulder was -12°; In the instant of touchdown of the right foot, the angle between shoulder and hip was 72°, the angle of pull was 151°, the angle of axis between shoulder was -85°, the speed of left shoulder was 2.43 m/s, the speed of right shoulder was

腾空和过渡阶段肩关节的生物力学指标:左脚离地瞬间肩髋角度为27 ,拉引角度为150 ,肩轴角度为-12 ;右脚着地瞬间肩髋角度为72 ,拉引角度为151 ,肩轴角度为-85 ,左肩速度为2.43m/s、右肩速度为1.37m/s;左脚着地瞬间肩髋角度为58 ,拉引角度为136 ,肩轴角度为19 ,左肩速度为3.49m/s,右肩速度为1.89m/s。

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