buccolingual

buccolingual

1. buccolingual movement

[医] 颊舌[向]移动

2. buccolingual relationship

[医] 颊舌关系

3. buccolingual width

[医] 颊舌宽度

4. buccolingual plane

[医] 颊舌平面

5. buccolingual arch contour

[医] 颊舌弓形

6. buccolingual diameter

[医] 颊舌径

7. Keywords 3-dementional laser scanning Fixed partial denture Buccolingual diameter 3-dementional finite element;

三维激光扫描;固定义齿;颊舌径;三维有限元;

8. Investigation of Root Canal Curvature of Human Maxillary First Premolar in Buccolingual Directions

上颌第一前磨牙根管颊舌向弯曲情况的研究

9. Influence of buccolingual width of artificial posterior teeth on abutment displacements in unilateral distal-extension telescope crown denture

人工牙颊舌径对单侧游离端套筒冠义齿基牙位移的影响

10. second molar; first and second molars: cortical bone thickness; buccolingual inclination of tooth and bone .

分别测量下颌4个区域(中切牙,第二前磨牙,第一、二磨牙区)的颊舌侧皮质骨厚度,牙齿倾斜度及骨倾斜度。

11. Methods Ninety-five lower first molars with buccolingual vertical fracture were separated and cut vertically along the fracture line to exposure the proximal and distal residual roots.

方法选取95例颊舌方向纵折之下颌第一磨牙病例,完全纵剖牙冠及髓室底,获得独立的近远中残根,完整的根管治疗后,行桩核和烤瓷熔附金属全冠修复,3年后进行临床评价。

12. According to the plane coordinate in each image, buccolingual direction was presented as X axis, mesial-distal direction as Y axis and occlusogingival direction as Z axis.

根据各层图上建立的平面坐标,设颊舌向为X轴,近远中向为Y轴,牙合龈向为Z轴。

13. element way was used to study the stress of the different the three implants in different length when givenan axial force and a buccolingual force.

法 :采用三维有限元的方法对三种不同长度的种植体 ,在受到垂直力和侧向力时对骨界面上的应力分布进行分析。

14. teeth buccolingual plane

牙齿的颊舌平面

15. buccolingual diameter grinding of tooth

牙齿颊舌径的调磨

16. grinding of buccolingual diameter

磨改牙的颊舌径

17. Root canal curvature of human maxillary first premolars in buccolingual directions

离体上颌第一前磨牙根管颊舌向弯曲的研究

18. Root canal curvature of human maxillary second premolars in buccolingual directions

离体上颌第二前磨牙根管颊舌向弯曲的发生情况

19. Root canal curvature of human mandibular premolars in buccolingual directions

离体下颌前磨牙根管的颊舌向弯曲

20. After the 3-D implant-bon e complex was meshed by ABAQUS software, effects of bicortical anchorage on the buccolingual and axial first-order natural frequencies of the implant were comp uted.

结果:在模拟的3种不同骨质类型中,双皮层骨种植均可提高种植体颊舌向、轴向振动的固有频率值,但颊舌向频率的增加有限,最高增加了13.77%,而轴向频率值最大增加了一倍以上。

21. Methods: Three-dimensional finite element way was used to study the stress of the different the six implants of different diameter when given an axial force and a buccolingual force.

结果:种植体受垂直和水平加载时,随着种植体直径的增加,种植体骨界面的应力值和应力集中值下降,应力趋向均布。

22. buccolingual relation

颊舌关系

23. buccolingual stress

颊舌向应力

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