1)Aluminum oxide grit-blasted implantAl2O3喷砂种植体
2)Amomum villosum cultivation砂仁种植
1.A comparative study on Amomum villosum cultivation under tropical wet seasonal rainforest and secondary forest at Xishuangbanna;西双版纳热带湿性季节雨林和次生林林下砂仁种植的比较研究
3)Sandy soil plant砂土种植
4)implant[英][?m'pl?nt][美][?m'pl?nt]种植体
1.Research Progress of Implant Ti and Its Alloy in Oral and the Management of Its Surface;口腔用钛及钛合金种植体及其表面处理的研究进展
2.Progress in the research into the relationshipbetween osteoporosis and jaw implant;骨质疏松症与颌骨种植体关系研究进展
3.Factors Associated with the Biocompatible of the Orthodontic Implant Anchorage;影响支抗种植体与骨组织相容性的相关因素
英文短句/例句
1.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
2.Application of Segmental Osteometomy in Dental Implant Reposition:Two Case Reports带种植体的自体骨块移植纠正种植体植入位置不良初探
3.Clinical Observation of Immediate Implantation with ITI conventional ITI implantsITI常规种植体即刻种植的临床观察
4.endosteal blade vent implant骨内叶状开口种植体
5.endosteal blade-close implant骨内叶状闭口种植体
6.Implanting operation and normal implanting position of mini-implant微小种植体的植入方法及一般植入部位
7.The Immediate-implantation Simulation Research for Restoration of Bone Defects Around Implants;模拟即刻种植种植体周骨缺损修复的研究
8.Evaluation of Variation Stability of Endosseous Dental Implant in Immediate-immediate Procedure:An Animal Experiment;关于即刻种植即刻修复种植体稳定性的评价
9.Experiment Study of Using Non-submerged HBIC Implants in Animal;HBIC非埋置式牙种植体即刻种植的动物实验研究
10.Experiment Study on Effects of Strorage Time in Vitro to the Healing of NVBG with Implants;离体时间对非血管化骨移植同期种植体植入愈合影响的实验研究
11.Study of Repairing Bone Defects with Autogenous Nonvascular Iliac Bone Graft and Simultaneous Implantation;自体骼骨游离移植同期种植体植人修复骨量不足区牙缺失的研究
12.Clinical application to maxillary sinus lifting of combinated autogenous bone witb bone block and implanted simultaneously上颌窦内自体骨块与颗粒骨联合移植同期种植体植入的临床探讨
13.Effects of Different Implant Surface on the Bone Reconstruction in Peri-implantitis;不同种植体表面对种植体周围炎骨缺损重建的影响
14.Comparison of the Stress Distribution at Cervical Bone of Perfect Implant and Replace Implant;Perfect种植体与Replace种植体颈周骨组织应力的比较分析
15.The interarch-distance adjustment and the crown-implant ratio in posterior dental implant后牙种植的颌间距离调整及修复体的冠-种植体比例
16.Study on correlation between surface morphology of implant and lesion degree of experimental peri-implantitis种植体表面形态与实验性种植体周围炎病变程度的相关研究
17.Influence of different implant length on stress distribution of implant-bone interface with immediate loading种植体长度对即刻负载种植体骨界面生物力学分布的影响
18.The relationship between the IL-1 in gingival crevicular fluid around implants early after the implantation during the soft tissue healing and the amount of marginal bone resorption非埋入式种植体术后早期IL-1与种植体周软硬组织的关系
相关短句/例句
Amomum villosum cultivation砂仁种植
1.A comparative study on Amomum villosum cultivation under tropical wet seasonal rainforest and secondary forest at Xishuangbanna;西双版纳热带湿性季节雨林和次生林林下砂仁种植的比较研究
3)Sandy soil plant砂土种植
4)implant[英][?m'pl?nt][美][?m'pl?nt]种植体
1.Research Progress of Implant Ti and Its Alloy in Oral and the Management of Its Surface;口腔用钛及钛合金种植体及其表面处理的研究进展
2.Progress in the research into the relationshipbetween osteoporosis and jaw implant;骨质疏松症与颌骨种植体关系研究进展
3.Factors Associated with the Biocompatible of the Orthodontic Implant Anchorage;影响支抗种植体与骨组织相容性的相关因素
5)dental implant牙种植体
1.Study on the stress distribution of bone around cylinder dental implant on different teeth of mandible by 3D finite element analysis;下颌骨典型牙位圆柱状牙种植体周围骨应力分布的三维有限元分析
2.Clinical Effects of Three Systems of Dental Implants;3种类型牙种植体的临床应用
3.Clinical application of two-stage titanium dental implants;二段式纯钛人工牙种植体的临床应用
6)titanium implant钛种植体
1.Comparative study of osseointegration of titanium implants with non-vascularized iliac and mandibular bone grafts;非血管化髂骨和下颌骨与钛种植体结合的比较研究
2.Study on surface bio-modification of titanium implant using microarc oxidation technology;钛种植体表面微弧氧化生物改性的研究
3.Surface microstructure is a research focus in the area of titanium implant surface modification.钛种植体表面形貌是钛种植体表面改性的研究热点之一。
延伸阅读
Al元素符号: al 英文名: aluminum 中文名: 铝相对原子质量: 26.9815 常见化合价: +3 电负性: 1.61外围电子排布: 3s2 3p1 核外电子排布: 2,8,3同位素及放射线: al-26[730000y] *al-27 al-28[2.3m]电子亲合和能: 48 kj·mol-1第一电离能: 577.6 kj·mol-1 第二电离能: 1817 kj·mol-1 第三电离能: 2745 kj·mol-1单质密度: 2.702 g/cm3 单质熔点: 660.37 ℃ 单质沸点: 2467 ℃原子半径: 1.82 埃 离子半径: 0.51(+3) 埃 共价半径: 1.18 埃常见化合物: al2o3 alcl3 al2s3 naalo2 al2(so4)3 al(oh)3发现人: 厄斯泰德、维勒 时间: 1825 地点: 丹麦名称由来:拉丁文:alumen, aluminis(铝)。元素描述:柔软轻质的银白色金属,在地壳中含量第三。元素来源:自然界完全没有铝单质存在。可以电解铝土(al2o3)制取铝。元素用途:上自飞机下到易拉罐应用广泛。因为纯铝太柔软,所以要加入不到1%的硅或铁以加大其硬度和强度。