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基于Micro-CT的渣油加氢保护剂3D重构研究
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作者 安谧 程涛 +4 位作者 宋俊男 张若霖 何京 杨晓彦 徐华 《石油炼制与化工》 CAS CSCD 北大核心 2024年第6期107-114,共8页
显微计算机断层扫描技术(Micro-CT)是一种无损检测方法,可以快速准确地建立分析对象的3D结构和组成。以工业运转后的渣油加氢保护剂为研究对象,创造性地引入Micro-CT对渣油加氢保护剂的微观结构进行了3D重构研究。通过比对Micro-CT切片... 显微计算机断层扫描技术(Micro-CT)是一种无损检测方法,可以快速准确地建立分析对象的3D结构和组成。以工业运转后的渣油加氢保护剂为研究对象,创造性地引入Micro-CT对渣油加氢保护剂的微观结构进行了3D重构研究。通过比对Micro-CT切片数据离散图与扫描电镜元素离散图分布,对保护剂中孔隙、金属沉积物进行了识别与确认,并采用3D重构技术重建了孔隙及沉积物的三维分布模型。结果表明,利用Micro-CT可以从微米到纳米尺度构建保护剂的3D结构模型;发现工业运转后的渣油加氢保护剂内部还有大量未被使用的封闭孔,增加孔道的连通性是提高保护剂效率的关键。这种全新的渣油加氢保护剂微观结构分析方法能为渣油加氢保护剂的开发提供指导。 展开更多
关键词 渣油加氢保护剂 计算机断层扫描技术 沉积物
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去卵巢小鼠绝经后骨质疏松模型的建立和综合评定 被引量:12
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作者 李兰 杨一秋 解继胜 《右江民族医学院学报》 2021年第1期6-10,共5页
目的建立和评定去卵巢小鼠骨质疏松模型,以期为后期进行不同的药物干预治疗提供准确的时机和模型。方法选取10~12周龄的C57BL/6雌性小鼠10只,随机分为假手术对照(Sham)组和卵巢摘除骨质疏松模型(OVX)组,每组5只。术后8周,将小鼠取血后处... 目的建立和评定去卵巢小鼠骨质疏松模型,以期为后期进行不同的药物干预治疗提供准确的时机和模型。方法选取10~12周龄的C57BL/6雌性小鼠10只,随机分为假手术对照(Sham)组和卵巢摘除骨质疏松模型(OVX)组,每组5只。术后8周,将小鼠取血后处死,取一侧的股骨,剔除软组织,然后进行冰冻切片,另一侧进行显微断层扫描技术(Micro CT)检查。分别检测血钙、磷、镁水平,行组织病理学以及免疫荧光观察。结果血清学检测,OVX组与Sham组的钙、磷、镁含量变化不大,OVX组碱性磷酸酶含量比Sham组的含量低(P<0.01);Micro CT检查,OVX组小鼠骨小梁数量减少,间隔大,分离度也增加,排列稀疏,组织病理学HE染色发现OVX组破骨细胞数目增加(P<0.01);OVX组以及Sham组的碱性磷酸酶染色(ALP)的变化差异不大,抗酒石酸酸性磷酸酶(TRAP酶)表达的面积增加,颜色加深。结论C57BL/6雌性小鼠行双侧卵巢摘除法可以建立骨质疏松症模型,通过多种方法可以客观准确验证骨质疏松模型,以期为相关研究提供重要的参考依据。 展开更多
关键词 骨质疏松 模型 动物 双侧卵巢摘除法 显微断层扫描技术 组织病理学 免疫荧光
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Assessment of cortical bone microdamage following insertion of microimplants using optical coherence tomography: a preliminary study 被引量:2
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作者 Hemanth Tumkur LAKSHMIKANTHA Naresh Kumar RAVICHANDRAN +2 位作者 Mansik JEON Jeehyun KIM Hyo-sang PARK 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2018年第11期818-828,共11页
Objectives: The study was done to evaluate the efficacy of optical coherence tomography (OCT), to detect and analyze the microdamage occurring around the microimplant immediately following its placement, and to com... Objectives: The study was done to evaluate the efficacy of optical coherence tomography (OCT), to detect and analyze the microdamage occurring around the microimplant immediately following its placement, and to compare the findings with micro-computed tomography (IJCT) images of the samples to validate the result of the present study. Methods: Microimplants were inserted into bovine bone samples. Images of the samples were obtained using OCT and μCT. Visual comparisons of the images were made to evaluate whether anatomical details and microdamage induced by microimplant insertion were accurately revealed by OCT. Results: The surface of the cortical bone with its anatomical variations is visualized on the OCT images. Microdamage occurring on the surface of the cortical bone around the microimplant can be appreciated in OCT images. The resulting OCT images were compared with the μCT images. A high correlation regarding the visualization of individual microcracks was observed. The depth penetration of OCT is limited when compared to μCT. Conclusions: OCT in the present study was able to generate high-resolution images of the microdamage occurring around the microimplant. Image quality at the surface of the cortical bone is above par when compared with μCT imaging, because of the inherent high contrast and high-resolution quality of OCT systems. Improvements in the imaging depth and development of intraoral sensors are vital for developing a real-time imaging system and integrating the system into orthodontic practice. 展开更多
关键词 Optical coherence tomography Microimplant Cortical bone Micro-computed tomography
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