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The effects of FPL andits three ingredients on growth of ovary,on micro-and ultra-structure andAlkaline phosphatase activity of endometrium,on structure andkeratinization rate of exfoliated cells in vaginal epithelium in mice,onmicrocirculation in rat and on uterine kinesis in rabbit were respectivelyobserved by the techniques of light and electron microscopes,histochemistry,microcirculation and organ cinetography.The results have confirmed themechanism of FPL for the sterility caused by ovary standstill and persistentcorpus luteum to be as follows:(1) a weak estrogen-like role which canprompt development of ovary,proliferation and secretion of endometrium andvaginal epithelium and cornification of exfoliated cells in vaginal epithelium;(2)enhancing AKP's activity of endometrium;(3)improving microcirculation;(4) exciting uterus.

分别采用光学显微镜和电子显微镜技术、组织化学技术、微循环技术和器官运动描记等现代医学实验技术,观察了促孕液对小白鼠的卵巢发育、子宫内膜的显微和超微结构和碱性磷酸酶活性、阴道上皮结构和脱落细胞的角化率、对大白鼠的微循环和对家兔的子宫运动的影响,结果证实了促孕液治疗卵巢静止、持久黄体的机理:(1)微弱的雌激素样作用,能刺激卵泡发育,促进子宫内膜和阴道上皮增生、分泌和阴道上皮脱落细胞角化;(2)提高子宫内膜碱性磷酸酶的活性;(3)改善微循环;(4)促进子宫运动。

The thermal properties, mechanical properties of PI-MWNTs nanocomposite were analyzed by Thermogravimetric analysis, Universal Test Machine and Hardness Pencil Test. The morphology of PI-MWNTs was observed by scanning electron microscopy. The dispersion of MWNTs in matrix were observed by transmission electron microscopy. The electrical property of composite were obtained by Super Megohmmeter.

研究中使用傅立叶转换红外光谱仪来鉴定其化学结构,热重损失分析仪探讨材料的热稳定性质,万能试验机及铅笔硬度计观察其机械性质,扫描式电子显微镜与穿透式电子显微镜来观察材料的表面型态及奈米碳管於基材中的分散性,超绝缘仪量测材料的电性。

The thermal properties and mechanical properties were analyzed by Thermogravimetric analysis and Hardness Pencil Test and Universal Test Machine, respectively. The structure of prepared PI-MWNTs was characterized by Fourier transform infrared spectrometry. The morphology of PI-MWNTs were observed by scanning electron microscopy and transmission electron microscopy. The electrical conductivity was analyzed by Super Megohmmeter.

本研究中使用能量分散光谱仪来鉴定多壁奈米碳管纯化效果,热重损失分析仪、铅笔硬度计、万能试验机分别测定材料的热稳定性质和机械性质,傅立叶转换红外光谱仪来鉴定其化学结构,扫描式电子显微镜与穿透式电子显微镜来观察材料的剖面型态与奈米碳管和基材之间的分散性,超绝缘量测仪量测材料的电性。

The microstructure and ultrastructure of aerial mycelium, substrate mycelium and sclerotium in each period from germination to maturation were observed by microscope, fluorescence microscope and transmission electron microscope.

采用普通光学显微镜、荧光显微镜和透射电子显微镜对各供试菌株的气生菌丝、基内菌丝以及菌核从发生到成熟各阶段菌核细胞的显微、超微结构进行了观察。

Methods: Optics and electron microscope were used to observe the microstructure and ultrastructure of human apocrine sweat glands in axillae from 20 osmidrosis patients, and then discuss the relations between different gender, age, seasons arid odor intensity.

用光学显微镜、透射电子显微镜观察20例腋臭患者腋窝顶泌汗腺显微、超微结构,并分析性别、年龄、季节等发病因素与气味强度之间的关系。

The results showed that the D50 of Astragalus membranaceus and Epimedium brevicornum ultra-fine powder were 6.82μm and 8.40μm separately. The broken cellular walls of two ultra-fine herbal powder were bigger than those of the commonly cribble, and intact cells were not visible under SEM, and it improved the mixed uniformity. On the contrary, organization blocks of the commonly cribble were clearly discernible, also the shape and granularity were irregular, and the organization cells were still complete. The bulk density and liquidity of Astragalus membranaceus and Epimedium brevicornum increased significantly after ultra-fine Smashing. The component icariin extraction content of the ultra-fine powder was enhanced by 18.31% compared with the cribble by the chromatograph analysis of icariin. At the same time, Astragalus membranaceus polysaccharide and Epimedium brevicornum polysaccharide content of the ultra-fine powder were enhanced by 117.13% and 315.15% compared with the cribble.

结果发现黄芪和淫羊藿经超微粉碎后,粉体的粒度分布中心D_(50)分别为6.82μm和8.40μm,经电镜观察均难以看到完整的细胞形态,只能看到细胞碎片,破壁率远远大于普通粗粉,其混合的均匀度显著提高,而普通粗粉在显微镜下,组织块清晰可见,且形状不规则,粒径分布不均匀,组织细胞仍然完整;超微粉碎后,黄芪和淫羊藿的堆密度和流动性显著增强;通过对淫羊藿有效成分淫羊藿苷的色谱分析,其中淫羊藿超微粉的淫羊藿苷体外溶出量较淫羊藿粗粉中提高了18.31%;同时黄芪、淫羊藿超微粉多糖的提取率分别较黄芪、淫羊藿粗粉提高了117.13%,315.15%。

The effects of high temperature tempering on the microstructure and mechanical property of an ultra-low carbon bainitic steel have been investigated by means of transmission electron microscopy, scanning electron microscopy, micro-hardness measurements and dilatometry.

本研究以穿透式电子显微镜、扫描式电子显微镜、微硬度量测及热膨胀仪分析超低碳变韧铁合金钢高温回火之显微结构及机械性质变化的特性。

The mice eyes were enueleated and plastic-embedded and the anterior chamber angle were sagittally sectioned in 3 μm thickness. The morphology and structure of the eye tissues was studied by light microscopy and transmission electron microscopy.

通过塑料包埋切片技术,用光学显微镜和透射电子显微镜观察两组小鼠眼前房角组织的形态和超微结构。

The ultrastructure of spermatozoa of Takifugu xanthopterus was observed by means of scanning electron microscopy and transmission electron microscopy.

在透射电子显微镜及环境扫描电子显微镜下观察黄鳍东方鲀精子的超微结构。

Surface relief caused by the formation of lower bainite in an Fe-C-Si-Mn alloy has been investigated by STM. It was discovered that the subunit which is the lowest structural unit observed by TEM is actually made up of sub-subunits. The surface relief due to the formation of sub-subunit is tent-shaped, and of a non-IPS type, which indicates that the sub-subunit cannot be formed by shear. The height of relief is 60-140nm, and the maximum shape deformation is ca.

用扫描隧道显微镜对Fe-C-Si-Mn合金中的下贝氏体浮突进行了观察研究发现用透射显微镜观察到的最小结构单元——亚单元是由更小的超亚单元组成的超亚单元的浮突为&帐篷&型,而非不变平面应变型,表明它不是切变形成;超亚单元的浮突高度为60-140nm,最大形状变型量约为0.23。

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The split between the two groups can hardly be papered over.

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