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1.
Effect of Zhuangjin Film Coating Liquid on Serum Hyaluronate Content in Osteoarthritis Rabbits
壮筋涂膜液”对兔膝骨关节炎血清中透明质酸含量的影响
2.
Advanced Development of LiaoJin Plastic-A Kind of Chinese Materia Medica Praeparatum Percutem Administration
中药经皮给药制剂疗筋涂膜剂的研制
3.
Clinical observation of reparil gel in the treatment of lumbar muscles fascitis
利百素凝胶外涂治疗腰肌筋膜炎的疗效观察
4.
Simultaneous Determination 5 Contents of the Rhubarb in the Liaojin Film by HPLC
HPLC同时测定疗筋涂膜剂中5种大黄成分的含量
5.
Effect of Penetration Enhancers on the Transdermal Penetration of Peoniflorin in the Liaojin Membrares
促渗剂对疗筋涂膜剂中芍药苷经皮渗透的影响
6.
Mechanism of Film Formation of Acrylic Core-Shell Latex
丙烯酸酯核壳乳液成膜机理及涂膜性能的研究
7.
The deep layer of the deep cervical fascia was subdivided into alar fascia and prevertebral fascia.
颈深筋膜深层分为翼筋膜和椎前筋膜 ;
8.
The Clinical Research of Acute Damage of Parenchyma by Shang Su-kang Inunction;
伤速康涂膜液治疗急性软组织损伤临床研究
9.
Synthesis of core-shell polyacrylate emulsion containing fluorine and silicon and surface properties of latex films
含氟硅丙烯酸酯核壳乳液及涂膜表面性能
10.
Preservation effect of eggs by coating with plant antibacterial oil emulsion
植物精油抗菌乳状液涂膜对鸡蛋的保鲜效果
11.
Factors Influencing Latex Particle Size and Water Absorption of Styrene-Acrylic Emulsion
苯丙乳液胶粒粒径和涂膜吸水率的影响因素
12.
Chinese Wushu helps to strengthen the muscles and Bones.
中国武术,强壮筋骨。
13.
Preparation of the Membrane Suspensions for Porous Zirconia Ceramic Membranes and Related Fundamental Research;
多孔氧化锆陶瓷膜涂膜液的制备及相关基础研究
14.
Evaluation and screening of water-soluble pellicular materials for pellicles
几种水溶液型涂膜剂成膜材料的性质研究及筛选
15.
Study of Application of Blood Supply of Pedicled Iliac Bone Flaps with Sartorius, with Tensor Fasciae Latae and with Both of Them;
缝匠肌、阔筋膜张肌肌蒂骼骨瓣血液供应的应用研究
16.
The deep layer of the deep cervical fasciae is subdivided into alar fasciae and prevertebral fasciae, and the alar fasciae was very thin.
颈深筋膜深层也应分为翼筋膜、椎前筋膜,但翼筋膜非常薄弱;
17.
foil coating, film coating
箔片涂层,薄膜涂层
18.
When oxygen in the gas or liquid sample diffuses into the thin-film coating, it quenches the fluorescence.
当气态或液态中的氧分散进入薄膜涂层时,就淬灭了荧光。