2) semi-solid emulsifying
半固体自微乳化
3) solid self-microemulsion
固体自微乳化给药系统
4) solid self-microemulsifying drug delivery system
固体自微乳化药物传递系统
1.
Methods The emulsifiers,oils and co-emulsifiers were screened,and the pseudo-ternary phase diagram of blank solid self-microemulsifying drug delivery system was used to optimize the formulation based on the melting point of the drug delivery system.
目的对格列本脲固体自微乳化药物传递系统进行处方优化,制备载药固体自微乳化胶囊并进行评价。
5) self-emulsifying microemulsion
自乳化微乳
1.
OBJECTIVE To prepare 9-nitrocamptothecin self-emulsifying microemulsion and investigate the protection effect of self-emulsifying microemulsion on 9-NC lactone form in vitro and in vivo.
目的制备9-硝基喜树碱(9-nitrocamptothecin,9-NC)自乳化微乳(自微乳),并考察其对9-NC内酯型的体内外保护效应。
6) self-microemulsion
自微乳
1.
Preparation of Puerarin Solid Self-microemulsion;
葛根素固体自微乳的研制
2.
Studies on the Oral Bioavailability of the Microemulsion and Self-microemulsion of Nimodipine in Rabbits;
尼莫地平微乳及自微乳的家兔口服生物利用度研究
3.
Preparation of hydroxycamptothecin self-microemulsion and its pharmacokinetics in rats;
羟基喜树碱自微乳的制备及大鼠体内药动学
补充资料:微极弹性固体
广义连续介质力学中一个典型的物质模型,是由可以平移和独立进行转动的微小刚性物质点组成的弹性固体。它是古典弹性固体模型的推广。为了大体上看出微极弹性固体和一般弹性固体这两种模型的差异,下面给出各向同性线性微极弹性固体的本构方程:
tij=λδijekk+(μ+κ)eij+μeji,
mij=αδijγkk+βγij+γγji,式中tij和 mij为应力张量和力偶应力张量;λ、μ、κ、α、β、γ为物性模量;δij为克罗内克符号;eij和γij为应变张量,可表示为:
eij=ui,j-εijk嗞k,
γij=嗞i,j,式中ui和嗞i为位移矢量u和微转动矢量嗞的分量,εijk为交错张量(见张量)。古典弹性力学中各向同性线性弹性固体的本构方程为:
tij=λδijekk+2μeij,式中λ和μ为拉梅常数。通过比较可见,在微极弹性固体中,由于考虑微极效应,总共需要6个物性模量,应力张量不再对称,并且出现力偶应力。
tij=λδijekk+(μ+κ)eij+μeji,
mij=αδijγkk+βγij+γγji,式中tij和 mij为应力张量和力偶应力张量;λ、μ、κ、α、β、γ为物性模量;δij为克罗内克符号;eij和γij为应变张量,可表示为:
eij=ui,j-εijk嗞k,
γij=嗞i,j,式中ui和嗞i为位移矢量u和微转动矢量嗞的分量,εijk为交错张量(见张量)。古典弹性力学中各向同性线性弹性固体的本构方程为:
tij=λδijekk+2μeij,式中λ和μ为拉梅常数。通过比较可见,在微极弹性固体中,由于考虑微极效应,总共需要6个物性模量,应力张量不再对称,并且出现力偶应力。
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