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1)  base plate
基托
1.
Elastic resin retainer used with PMMA base plate to improve the esthetics of traditional removable partial denture;
弹性树脂固位体与PMMA基托联合应用改善传统活动义齿的美观
2.
METHODS: According to proporation of 0%、 1%、3%、5%,of antibacterial agent powder to the base plate were mixed.
目的:将纳米二氧化钛抗菌剂添加到义齿基托后具有一定的抗菌性,为进一步观察纳米二氧化钛抗菌剂对树脂基托机械性能的影响,本实验将检测弯曲强度、弹性模量、吸水率、溶解率,探讨其最佳添加比例。
3.
According to the clinical experience and the international achievements in this field,We conclude some aesthetic rules and skills in selection and arrangement of tooth,the making method of retainer and base plate.
作者根据自身的临床工作经验,并结合国内外学者在此领域的研究成果,从人工牙的选择、排列及固位体和基托制作等方面,对义齿在制作过程中所应用到的美学原则和操作方法加以总结和归纳,便于更好的指导临床工作。
2)  base [英][beɪs]  [美][bes]
基托
1.
Study on Mechanical Properties of the Nanometer(PMMA/Montmorillonite)Composite Denture Base;
纳米(PMMA/蒙托土)义齿基托复合材料力学性能的研究
2.
A Comparative Study of Clinical Application Between One Piece Casting Metal Base Complete Denture and Resin Base Complete Denture;
铸造金属基托与纯塑料基托全口义齿的临床应用比较
3.
The appliance of the glass fiber reinforced composite in complete denture base;
玻璃纤维增强复合树脂在总义齿基托中的应用
3)  denture base
基托
1.
Stress analysis of the base of mandibular complete overdenture based on post-core abutment and its supporting tissues;
下颌桩核基牙式全口覆盖义齿基托及支持组织的应力分析
2.
The influence of anterior teeth arrangement on the stress distribution of maxillary complete denture base
上前牙排列位置对全口义齿基托应力分布的影响
4)  Torquay
托基
5)  denture bearing area
基托承托区
1.
Methods: We analysed the mucosal flora of the denture bearing and non denture bearing areas in 17 metalic denture bases on cultivating the microorgan.
方法:对 17例戴用金属基托的可摘局部义齿进行基托承托区与非承托区粘膜菌丛的培养、分类和计数 ,并进行统计学分析。
6)  denture base
义齿基托
1.
Comparing two methods of heat treatment on the surface of denture base with gypsum;
义齿基托沾石膏二种热处理方法情况的比较
2.
Effect of LZB-GC Antibacterial Agent on Mechanical Properties of Denture Base;
LZB-GC抗菌剂对口腔义齿基托材料的机械性能影响
3.
The lastest advancement of denture base cleansing and antimicrobial activities;
义齿基托材料清洁抗菌研究新进展
补充资料:6-乙酰氧基托品
分子式:C10H17NO3
分子量:199.25
CAS号:85644-59-3

性质:浅黄色结晶。

制备方法:用呋喃与甲醇在溴化铵、甲醇钠参与下醚化并电解还原,生成2,5-二甲氧基-2,5-二氢呋喃,然后以盐酸水解得2-羟基-1,4-丁二醛,后者与甲胺、丙酮二羧酸在加热下环合,得6-羟基托品酮,进而以乙酰氯酰化,并在活性镍催化下氢化得该品。

用途:山莨菪碱氢溴酸盐的中间体。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条