方法在扫描和透射电镜下观察。
MethodsBy transmission and scanning electron microscopic method.
方法应用扫描和透射电子显微镜观察。
MethodsObserving by transmission and scanning electron microscopic method.
用透射电镜测定了冻干前后粒度分布的变化;
The particle size and distribution were measured by transmission electron microscope.
透射电镜观察发现部分细胞发生凋亡早期改变。
Hela cells presented the characteristic morphological changes of apoptosis under inverted microscope and transmission electron microscope.
透射电镜观察:未见到胞壁内有毛刺状突起存在。
Unmasking to observed the inner wall by the transmission electron microscope.
用透射电子显微镜(TEM)分析了所制备的样品。
The samples have been analyzed with transmission electron microscope(TEM).
用透射电镜观察了第二阶段蠕变过程位错亚结构的变化。
The dislocation substructure during secondary stage of creep has been examined by TEM.
透射电子显微镜的观测表明在ELO范围内位错密度很低。
EM observations indicate that the dislocation density is very low in the ELO reg ion.
目的:探讨透射电镜检查在肾小球疾病病理诊断中的价值。
Objective: To study the value of transmission electron microscope in pathologic diagnosis of glomerular diseases.
用透射电子显微镜(TEM)测量了银纳米微粒的平均粒径。
The mean diameters of sliver nanoparticle are measured by transmission electron microscopy (TEM).
应用倒置相差显微镜、透射电镜观察人牙髓细胞的形态与结构。
Morphosis of dental pulp cells were observed under phase - contrast microscope and electron one.
透射电子显微镜发出电子束直接打向细胞样本,得到细胞的精细结构。
Transmission electron microscopes (TEM) fire beams of electrons straight through prepared samples of cells, picking up fine details of the tiny structures within.
透射电镜照片显示,在聚乙烯醇载体上,藻类的生长没有受到限制。
TEM photos show that the growth of algae does not be restrained on the PVA carrier.
用扫描电镜和透射电镜,观察了大蒜对三种细菌作用的形态学改变。
The effect of garlic on three kinds of pathogenic bacteria (S. aureus, S. flexneri and E. coli)was observed with SEM and TEM.
使用X射线衍射和透射电镜分析,表明异质结是c轴取向外延生长。
X-ray diffraction and transmission electron microscopy establish that LCCO grew epitaxially inc-axis orientation on LCMO.
用透射电镜和扫描电镜研究了莫来石陶瓷的亚结构特征和断裂过程。
The substructure and the fracture process of mullite ceramics were studied by TEM and SEM.
用光镜和透射电镜对山羊心室淋巴管的分布和微细结构进行了研究。
The distribution and fine structure of lymphatic vessels in goat cardiac ventricles were examined by light and electron microscopy.
用透射电镜观察了5例兔心中心纤维体(CFB)中央部的超微结构。
The ultrastructure of central fibrous body (CFB) was observed in the 5 rabbits with electron microscope.
用透射电镜观察胸腺组织树突状细胞的超微结构和凋亡细胞变化趋势。
The ultrastructure of DCs and the tendency of apoptotic cells in thymus were observed.
用透射电子显微镜观察分析了增强体与基体合金界面的微观组织结构。
Also the microstructures at the interface of fiber and matrix were observed and analyzed through TEM.
方法采用光镜、透射电镜和扫描电镜的方法观察大鼠血淋巴结的构造。
Methods We observed the structure of the rat hemolymph node by light microscopy, transmission electron microscopy and scanning electron microscopy.
变形合金的透射电镜照片表明位错的攀移和交滑移为合金变形的主要机制。
The TEM photo shows that dislocation climb and cross-slip are the important deformation modes of the alloy.
透射电镜观察:成肌细胞组和细胞外基质凝胶组均见再生的有髓神经纤维。
Observation with transmission electron microscope: There were regeneration medullated nerve fibers in myoblast group and extracellular matrix gel group.
用扫描电镜、透射电镜、X射线衍射、接触角测量等技术对表面进行了表征。
The resultant surfaces were characterized by means of SEM, transmission electron microscopy (TEM), X-ray diffraction (XRD), and water contact Angle measurements.
本文介绍使用了改良的固定方法,在透射电镜下第一次观察到了该活性层的存在。
Using an improved method of fixation, the stagnant layer on the peritoneal surface could be observed under TEM.
目的观察圆锥角膜在光镜及透射电镜下的超微结构,试图了解圆锥角膜的发病机制。
Objective to discover the mechanisms of keratoconus by observing the ultrastructure of keratoconus with light microscopy and transmission electron microscopy.
透射电子显微镜呈像的方法是对物体发射万亿电子,测量它们的吸收,偏斜和能量损失。
Transmission electron microscopy creates images by shooting trillions of electrons through an object and measuring their absorption, deflection and energy loss.
用透射电子显微镜(TEM)和扫描电子显微镜(SEM)观察了硅酸溶胶的聚合过程。
The process of polymerization of silicic acid was observed by transmission electron microscope (TEM) and scanning electron microscope (SEM).
用透射电子显微镜(TEM)和扫描电子显微镜(SEM)观察了硅酸溶胶的聚合过程。
The process of polymerization of silicic acid was observed by transmission electron microscope (TEM) and scanning electron microscope (SEM).
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