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医用显微图像处理系统的研制和软件开发 被引量:1
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作者 鲍依稀 刘清林 +1 位作者 康格非 罗春丽 《重庆医科大学学报》 CAS CSCD 2000年第3期293-295,共3页
目的 建立医用显微图像处理系统。方法 用普通光学显微镜、工业用摄像机、视频卡和计算机等构成硬件系统,用VC++5.0和微软基础类库(Microsoft Function Class,MFC)开发了显微图像处理的专用类CD... 目的 建立医用显微图像处理系统。方法 用普通光学显微镜、工业用摄像机、视频卡和计算机等构成硬件系统,用VC++5.0和微软基础类库(Microsoft Function Class,MFC)开发了显微图像处理的专用类CDIB,并结合数据库系统,完成了外周血白细胞分类诊断系统。结果 应用该系统对130例病人进行白细胞分类与人工镜检对比,两者结果相符合。结论该系统具有很好的实用价值和推广价值,可广泛应用于骨髓细胞、尿液、胸腹腔及阴道脱落细胞等各种显微图像的处理。 展开更多
关键词 医用显微 图像处理 白细胞分类 图像处理系统
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医用显微图像的数字化处理及形态量化分析
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作者 林桂粉 刘文绮 《南京师大学报(自然科学版)》 CAS CSCD 2000年第2期97-101,共5页
介绍了自行研制开发出的一套以测量分析医用显微图像的形态参数为主要特征的图像处理软件系统 .文中以新生大鼠缺氧缺血脑切片中线粒体衰竭以及大鼠颈动脉损伤后内膜增生抑制作用的形态参数的测量为例 ,证实本软件可广泛应用于临床诊断... 介绍了自行研制开发出的一套以测量分析医用显微图像的形态参数为主要特征的图像处理软件系统 .文中以新生大鼠缺氧缺血脑切片中线粒体衰竭以及大鼠颈动脉损伤后内膜增生抑制作用的形态参数的测量为例 ,证实本软件可广泛应用于临床诊断、治疗等研究中 . 展开更多
关键词 形态量化分析 医用显微图像 数字化处理 计算机
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医疗仪器 第三讲:医用显微技术及其演进
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作者 王保华 刘印锋 葛华勇 《常规医疗装备》 2005年第3期53-57,共5页
20世纪科学技术的进步在很大程度上是围绕着“人类如何挑战极限”展开的。从挑战视觉极限出发,人们在“远望”与“显微”两个方面,在探索外层空间及微观世界的过程中已经取得了划时代的进步。医学诊断学的革命亦已进入了细胞与分子生... 20世纪科学技术的进步在很大程度上是围绕着“人类如何挑战极限”展开的。从挑战视觉极限出发,人们在“远望”与“显微”两个方面,在探索外层空间及微观世界的过程中已经取得了划时代的进步。医学诊断学的革命亦已进入了细胞与分子生物学时代,人类已经从肉眼观察器官,快速进入了采用分辨率超过0.01nm的高分辨显微镜观察生命体的分子、原子及亚原子结构。 展开更多
关键词 医疗仪器 医用显微技术 分子生物学 原子结构 光学
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医用显微图像处理的研究现状及展望
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作者 鲍依稀 康格非 《医学检验教育》 1998年第4期26-28,共3页
介绍了医学显微图像的发展现状,对建立医用显微图像的基本方法和技术进行了概述,并对今后的发展与应用进行了展望。
关键词 医用显微图像 研究现状 图像处理 计算机辅助图像处理 医学检测
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Microstructure and properties of Ti64.51Fe26.40Zr5.86Sn2.93Y0.30 biomedical alloy fabricated by laser additive manufacturing 被引量:11
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作者 Li-ying HAN Cun-shan WANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第12期3274-3286,共13页
From the perspective of biomechanics and forming technology,Ti−Fe−Zr−Sn−Y eutectic alloy was designed using a“cluster-plus-glue-atom”model,and then the alloy was prepared by laser additive manufacturing(LAM)on pure ... From the perspective of biomechanics and forming technology,Ti−Fe−Zr−Sn−Y eutectic alloy was designed using a“cluster-plus-glue-atom”model,and then the alloy was prepared by laser additive manufacturing(LAM)on pure titanium substrate.The mechanical properties of the alloy were evaluated using micro-hardness and compression tester,and the elastic modulus was measured by nanoindenter.The results show that the alloy exhibits a high hardness of HV(788±10),a high strength of 2229 MPa,a failure strain of 14%,and a low elastic modulus of 87.5 GPa.The alloy also has good tribological,chemical,forming,and biological properties.The comprehensive performances of the Ti64.51Fe26.40Zr5.86Sn2.93Y0.30 alloy are superior to those of the Ti70.5Fe29.5 eutectic alloy and commercial Ti−6Al−4V alloy.All the above-mentioned qualities make the alloy a promising candidate as LAM biomaterial. 展开更多
关键词 laser additive manufacturing composition design biomedical titanium alloy microstructure PROPERTY
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Effect of thermo-mechanical processing on microstructure and electrochemical behavior of Ti-Nb-Zr-V new metastable β titanium biomedical alloy 被引量:3
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作者 Mohsin Talib MOHAMMED Zahid A.KHAN M.GEETHA 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第3期759-769,共11页
The influence of thermo-mechanical processing (TMP) on the microstructure and the electrochemical behavior of new metastableβ alloy Ti?20.6Nb?13.6Zr?0.5V (TNZV) was investigated. The TMP included hot working in below... The influence of thermo-mechanical processing (TMP) on the microstructure and the electrochemical behavior of new metastableβ alloy Ti?20.6Nb?13.6Zr?0.5V (TNZV) was investigated. The TMP included hot working in belowβ transus, solution heat treatments at the same temperature and different cooling rates in addition to aging. Depending upon the TMP conditions, a wide range of microstructures with varying spatial distributions and morphologies of equiaxed/elongatedα andβ phases were attained, allowing for a wide range of electrochemical properties to be achieved. The corrosion behavior of the studied alloy was evaluated in a Ringer’s solution at 37 °C via open circuit potential?time and potentiodynamic polarization measurements. 展开更多
关键词 titanium alloy thermo-mechanical processing biomedical application MICROSTRUCTURE electrochemical behavior corrosion
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Parameter optimization of microwave sintering porous Ti-23%Nb shape memory alloys for biomedical applications 被引量:6
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作者 Mustafa K.IBRAHIM E.HAMZAH +2 位作者 Safaa N.SAUD E.M.NAZIM A.BAHADOR 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第4期700-710,共11页
Porous Ti-23%Nb(mole fraction)shape memory alloys(SMAs)were prepared successfully by microwave sintering with excellent outer finishing(without space holder).The effects of microwave-sintering on the microstructure,ph... Porous Ti-23%Nb(mole fraction)shape memory alloys(SMAs)were prepared successfully by microwave sintering with excellent outer finishing(without space holder).The effects of microwave-sintering on the microstructure,phase composition,phase-transformation temperature,mechanical properties and shape-memory effect were investigated.The results show that the density and size of porosity vary based on the sintering time and temperature,in which the smallest size and the most uniform pore shape are exhibited with Ti-23%Nb SMA after being sintered at 900°C for 30 min.The microstructure of porous Ti-Nb SMA consists of predominantα',α,andβphases in needle-like and plate-like morphologies,and their volume fractions vary based on the sintering time and temperature.Theβphase represents the largest phase due to the higher content ofβstabilizer element with little intensities ofαandα'phases.The highest ultimate strength and its strain are indicated for the sample sintered at 900°C for 30 min,while the best superelasticity is for the sample sintered at 1200°C for 30 min.The low-elastic modulus enables these alloys to avoid the problem of“stress shielding”.Therefore,microwave heating can be employed to sinter Ti-alloys for biomedical applications and improve the mechanical properties of these alloys. 展开更多
关键词 biomedical Ti-23%Nb alloy microwave sintering microstructure transformation temperature mechanical properties
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