微型种植体,mini-implant
1)mini-implant微型种植体
1.Remodelling of the periodontal tissue in the application of mini-implant anchorage for posterior tooth intrusion in dogs;应用微型种植体支抗压低犬后牙过程中牙周组织改建的组织学研究
2.Objective:The experiments were carried out to study whether the loaded mini-implants had effects on growing and developing of the length of mandibular and height of dento-alveolar about young dogs or not.目的:探讨加载微型种植体支抗对幼犬下颌骨生长发育的影响,为儿童正畸支抗的选择及设计提供参考。
英文短句/例句

1.Clinical application on the reinforcement of orthodontic anchorage with micro implant system微型种植体增强后牙支抗的初步临床研究
2.Clinical study of stability of micro implant used as orthodontic anchorage正畸微型种植体支抗稳定性的临床研究
3.The Research of Mini-implants as Anchorage to Stress down Teeth on Young Dogs;微型种植体支抗压低幼犬牙齿的基础研究
4.The Study of Mini-Implant Anchorage Using in Orthodontic Treatment;微型种植体支抗在口腔正畸的临床应用研究
5.The Stability of Mini-Implant in Maxillary and Mandible-An Experimental Study in the Pig;上下颌微型种植体稳定性的动物实验研究
6.Animal Experimental Study of Mini-implant Anchorage for the Maxillary Anterior Teeth Intrusion微型种植体支抗压低犬上前牙的动物实验研究
7.Biomechanics Research on the Micro-Implant Embedded Loading and Enhance Anchorage by Micro-Implant in Distalizing Molar;微型种植体植入加载及增强支抗推上颌磨牙远移的生物力学研究
8.Establishment of experimental model of mini-implant anchorage for the maxillary incisors intrusion in dog微型种植体支抗压低犬上前牙实验动物模型的建立
9.The Effect of Mini-implants with Horizontal Force on the Normal Mandibular Growth in Growing Dogs;加载水平力的微型种植体对幼犬下颌骨生长发育的影响
10.The Effect of Mini-implants Without Force on the Dento-alveolar Development on Young Dogs;无负荷微型种植体对幼犬牙槽骨生长发育的影响
11.Remodeling of Periodontal Tissue in Application of Mini- Implant Anchorage for Teeth Intrusion in Dogs;应用微型种植体支抗压低犬牙过程中牙周组织改建的实验研究
12.The Influence of Different Ratios of Implant Length to Loding Position: A Finite Element Study微型种植体支抗骨内长度与载荷高点比值的三维有限元分析
13.Contrastive Investigation on the Treatment of Miniscrew Implants and multiutility arch in intrusion of anterior teeth微型种植体支抗和多用途弓压低上前牙的疗效对比
14.Experimental Study on Immediately Loaded Micro-implant;微型支抗种植体即刻负载的实验研究
15.The influence of micro-implant insertion angle on the stability of micro-implant微种植体植入角度对微种植体稳定性的影响
16.A Study on Stability of Micro-implant Anchorage微型支抗种植体稳定性的动物实验研究
17.A Clinical Study of Stability of Miniscrew Implant Used as Orthodontic Anchorage自攻型微螺钉种植体支抗稳定性的临床研究
18.Clinical application of miniscrew implants used as orthodontic anchorage自攻型微螺钉种植体支抗的临床应用研究
相关短句/例句

micro-implant微型种植体
1.Position changes of incisors and molars in the treatment of bimaxillary protrusion with micro-implantorthodontic anchorage;微型种植体支抗在正畸治疗双颌前突中切牙及磨牙位置变化的研究
2.Objective To study the peri-implant bone reaction to the immediately loaded micro-implant.结论微型种植体植入后即刻可承载200 g正畸力而不影响其骨性愈合过程。
3.Micro-implant was implanted into .目的:探讨微型种植体-牙联合支抗牵张成骨治疗牙槽突裂的可行性,以及微型种植体对支抗牙的影响。
3)micro implant微型种植体
1.Study on the treatment of Angle class I bimaxillary protrusion malocclusion with micro implant anchorage.;微型种植体支抗在安氏I类双颌前突矫治中的应用研究
2.Clinical study of stability of micro implant used as orthodontic anchorage;正畸微型种植体支抗稳定性的临床研究
3.Objective: To study the stability of micro implant anchorage under orthodontic force.微型种植体植入2周后加力。
4)microscrew implant微型种植体
1.Methods:A total of 32 titanium microscrew implants was used.方法:健康犬4只,微型种植体32枚,将其分别植入犬双侧上颌颊侧基骨处,一侧为实验组,另一侧为对照组。
2.Aim:To investigate the stability of microscrew implants for orthodontic anchorage after immediately loading.目的:观察微型种植体植入后即刻负载196mN力值8周时的稳定性及骨组织界面变化。
5)Microscrew implant微螺钉型种植体
1.Comparative study of microscrew implant for orthodontic anchorage and traditional anchorage in patients with maxillary protrusion;微螺钉型种植体支抗与传统强支抗在上颌前突正畸治疗中的对比研究
2.Microscrew implants were inserted into the bilateral buccal alveolar bone between maxillary second premolar and first molar before bording straight wire appliance.目的:研究应用微螺钉型种植体支抗正畸治疗中,上颌第一磨牙和切牙的位置变化,评价微螺钉型种植体支抗的疗效。
6)Miniscrew orthodontic anchorage微型支抗种植体
延伸阅读

人工牙种植体分子式:CAS号:性质:将牙科植入材料制成各种类型的牙科植入体,经手术植入口腔组织内,再在植入体伸出牙槽膜的支柱或基桩上制作义齿。牙科植入材料有金属及其合金植入材料如纯钛和钛合金;陶瓷植入材料如生物惰性陶瓷和表面活性生物陶瓷;高分子植入材料如聚甲基丙烯酸甲酯、超高分子量聚乙烯、聚四氟乙烯、聚砜、硅树脂等;复合植入材料如生物陶瓷与金属的复合材料等。