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沥青基球状活性炭的医用性能评价 被引量:28
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作者 吕春祥 李开喜 +5 位作者 吕永根 梁晓怿 宋燕 凌立成 王占仁 国建琴 《新型炭材料》 SCIE EI CAS CSCD 2002年第3期11-14,共4页
表征了沥青基球状活性炭的基本结构参数 (如比表面积、孔容量、球形度、强度、重金属含量等 ) ,测定了其对血液中典型中、小毒性分子的吸附性能 (肌酐和VB1 2 )和溶血反应率 ,分析了以沥青基球状活性炭为吸附剂的人工炭肾的微粒释放量... 表征了沥青基球状活性炭的基本结构参数 (如比表面积、孔容量、球形度、强度、重金属含量等 ) ,测定了其对血液中典型中、小毒性分子的吸附性能 (肌酐和VB1 2 )和溶血反应率 ,分析了以沥青基球状活性炭为吸附剂的人工炭肾的微粒释放量、热源和细菌含量 ,并进行临床试验。结果表明 :沥青基球状活性炭球形度好 ,强度高 ,具有良好的广谱吸附性能 ,对血液中典型的中、小毒性分子吸附能力强 ,重金属含量低 ,溶血率低 ,微粒释放量少 ,无热源、无菌 ,血液灌流临床试验效果满意 。 展开更多
关键词 沥青基球状活性炭 医用性能 评价 吸附 溶血反应 VB12 肌酐
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不同时效处理的Ti-29Nb-13Ta-4.6Zr合金的组织结构和医用性能 被引量:1
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作者 徐健丰 陶姗 《材料保护》 CAS CSCD 北大核心 2011年第12期74-76,2,共3页
Ti-Nb-Ta-Zr系合金有很好的生物材料应用前景,国内对其研究较少。真空熔炼制备了Ti-29Nb-13Ta-4.6Zr铸锭,对其固溶处理后在不同温度、时间下时效处理,研究了合金时效处理后的组织结构和医用性能。结果表明:830℃固溶1.5 h后的Ti-29Nb-13... Ti-Nb-Ta-Zr系合金有很好的生物材料应用前景,国内对其研究较少。真空熔炼制备了Ti-29Nb-13Ta-4.6Zr铸锭,对其固溶处理后在不同温度、时间下时效处理,研究了合金时效处理后的组织结构和医用性能。结果表明:830℃固溶1.5 h后的Ti-29Nb-13Ta-4.6Zr合金是单一的过冷亚稳β相,再经时效加热处理后变为α+β两相;在相同的时效时间内,时效温度升高时相的析出加快,析出相弥散度降低,合金强度下降;450℃时效处理1 680 min的合金抗拉强度为432 MPa,弹性模量为63 GPa,更接近人骨的实际情况,医用性能较好。 展开更多
关键词 时效处理 Ti-29Nb-13Ta-4.6Zr合金 组织结构 医用性能
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硝酸银溶液协同改性中心静脉导管覆涂材料的应用性能测试
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作者 王志军 孙玲玲 +3 位作者 栾旭辉 陈珊珊 张娜 孙圣 《粘接》 CAS 2024年第3期82-85,共4页
针对传统中心静脉导管材料抗菌性能和生物相容性较差的问题,提出一种新型医用载银中心静脉导管改性,并对其综合性能进行研究。结果表明,在聚多巴胺中心静脉导管表面的纳米银颗粒成功负载。硝酸银浓度为0.01 mol/L制备的载银中心静脉导... 针对传统中心静脉导管材料抗菌性能和生物相容性较差的问题,提出一种新型医用载银中心静脉导管改性,并对其综合性能进行研究。结果表明,在聚多巴胺中心静脉导管表面的纳米银颗粒成功负载。硝酸银浓度为0.01 mol/L制备的载银中心静脉导管材料(0.01 Ag-DH/CVC)在较低载银含量的条件下表现出良好的抑菌性能和生物相容性,不会对细胞活性和细胞的形态产生影响。制备的载银中心静脉导管用于临床护理应用,在穿刺成功率和并发症发生率方面均明显优于传统PICC导管,表现出良好的医用性能。 展开更多
关键词 中心静脉导管 抗菌性能 载银涂层 聚多巴胺 医用性能
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不同成核剂对医用聚丙烯性能的影响 被引量:2
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作者 刘永焯 龙木娣 +2 位作者 黄健 诸泉 蒋文真 《广州化工》 CAS 2022年第3期48-51,共4页
采用不同种类和比例的成核剂添加到医用聚丙烯,制备出样品,利用DSC测试材料熔点和结晶点;利用紫外分光光度计对样品在高温蒸馏水的提取液在220~380 nm进行扫描,测量紫外吸收度;利用pH计测试提取液的酸碱度;利用雾度计测试注塑的1 mm薄... 采用不同种类和比例的成核剂添加到医用聚丙烯,制备出样品,利用DSC测试材料熔点和结晶点;利用紫外分光光度计对样品在高温蒸馏水的提取液在220~380 nm进行扫描,测量紫外吸收度;利用pH计测试提取液的酸碱度;利用雾度计测试注塑的1 mm薄片的雾度。结果表明:提高结晶点方面,HPN-68L最明显,NA-11次之;紫外吸收度方面,NX8000吸收最小,其他两类都有较明显吸收;雾度下降方面,NX8000最明显;酸碱度方面,NA-11和HPN-68L略微提高样品的pH值。 展开更多
关键词 医用聚丙烯 成核剂 医用性能 结晶点 雾度
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医用移动诊断显示设备性能研究与国内外监管情况
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作者 孟昭阳 黄克磊 《电子技术与软件工程》 2022年第19期163-166,共4页
本文对医用移动诊断显示设备主要性能评价指标进行研究,通过医用显示设备国内外监管情况分析,提出我国医用显示其监管建议。从而降低因显示差异而造成的误诊风险,为精准高效医学诊断保驾护航。
关键词 医用移动显示器性能 医用显示器监管 图像显示系统
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医用防护服材料的发展及应用 被引量:24
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作者 陈康振 《产业用纺织品》 2004年第6期1-4,共4页
简述医用防护服的性能要求 ,分析了不同防护服材料的性能、特点和应用。
关键词 医用纺织品 防护服 性能要求 材料 发展 应用
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胶原的医学应用及其发展前景 被引量:28
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作者 但卫华 王坤余 +5 位作者 曾睿 廖隆理 陈敏 但年华 陈驰 林海 《生物医学工程与临床》 CAS 2004年第1期45-48,52,共5页
本文概括地阐明了胶原的主要结构特征 ,对胶原的主要性质 ,诸如理化性质、物理 -机械性能、医用性能等进行了讨论。在此基础上 ,较为系统地介绍了胶原在医学领域中的应用。胶原可以用于制造天然真皮替代物、人工皮肤、可注射胶原、可降... 本文概括地阐明了胶原的主要结构特征 ,对胶原的主要性质 ,诸如理化性质、物理 -机械性能、医用性能等进行了讨论。在此基础上 ,较为系统地介绍了胶原在医学领域中的应用。胶原可以用于制造天然真皮替代物、人工皮肤、可注射胶原、可降解胶原缝线、止血海绵、组织引导材料及用于骨组织工程中的“Ⅰ型胶原 -X”植入材料等。 展开更多
关键词 胶原 医学应用 发展前景 结构特征 机械性能 医用性能
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Direct extrusion of thin Mg wires for biomedical applications 被引量:4
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作者 K.TESAŘ K.BALÍK +1 位作者 Z.SUCHARDA A.JÄGER 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第2期373-381,共9页
Biodegradable wires,able to provide load-bearing support for various biomedical applications,are the novel trends in current biomaterial research.A thin 99.92%Mg wire with a diameter of 250μm was prepared via direct ... Biodegradable wires,able to provide load-bearing support for various biomedical applications,are the novel trends in current biomaterial research.A thin 99.92%Mg wire with a diameter of 250μm was prepared via direct extrusion with an extreme reduction ratio of 1:576.The total imposed strain in a single processing step was 6.36.Extrusion was carried out at elevated temperatures in the range from 230 to 310℃and with various ram speeds ranging from^0.2 to^0.5 mm/s.The resulting wires show very good mechanical properties which vary with extrusion parameters.Maximum true tensile stress at room temperature reaches^228 MPa and ductility reaches^13%.The proposed single-step direct extrusion can be an effective method for the production of Mg wires in sufficient quantities for bioapplications.The fractographic analysis revealed that failure of the wires may be closely connected with inclusions(e.g.,Mg O particles).The results are essential for determining the optimal processing conditions of hot extrusion for thin Mg wire.The smaller grain size,as the outcome of the lower extrusion temperature,is identified as the main parameter affecting the tensile properties of the wires. 展开更多
关键词 biomedical materials mechanical properties FRACTURE nonferrous metals MAGNESIUM
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Microstructure and mechanical properties of Ti−Nb−Fe−Zr alloys with high strength and low elastic modulus 被引量:4
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作者 Qiang LI Qi HUANG +7 位作者 Jun-jie LI Qian-feng HE Masaaki NAKAI Ke ZHANG Mitsuo NIINOMI Kenta YAMANAKA Akihiko CHIBA Takayoshi NAKANO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第2期503-512,共10页
Zr was added to Ti−Nb−Fe alloys to develop low elastic modulus and high strengthβ-Ti alloys for biomedical applications.Ingots of Ti−12Nb−2Fe−(2,4,6,8,10)Zr(at.%)were prepared by arc melting and then subjected to hom... Zr was added to Ti−Nb−Fe alloys to develop low elastic modulus and high strengthβ-Ti alloys for biomedical applications.Ingots of Ti−12Nb−2Fe−(2,4,6,8,10)Zr(at.%)were prepared by arc melting and then subjected to homogenization,cold rolling,and solution treatments.The phases and microstructures of the alloys were analyzed by optical microscopy,X-ray diffraction,and transmission electron microscopy.The mechanical properties were measured by tensile tests.The results indicate that Zr and Fe cause a remarkable solid-solution strengthening effect on the alloys;thus,all the alloys show yield and ultimate tensile strengths higher than 510 MPa and 730 MPa,respectively.Zr plays a weak role in the deformation mechanism.Further,twinning occurs in all the deformed alloys and is beneficial to both strength and plasticity.Ti−12Nb−2Fe−(8,10)Zr alloys with metastableβphases show low elastic modulus,high tensile strength,and good plasticity and are suitable candidate materials for biomedical implants. 展开更多
关键词 biomedical Ti alloy mechanical properties solid-solution strengthening work hardening twinninginduced plasticity
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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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Effects of cold deformation on microstructure and mechanical properties of Ti-35Nb-2Zr-0.3O alloy for biomedical applications 被引量:3
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作者 Chun-bo LAN Guo LI +2 位作者 Yu WU Li-li GUO Feng CHEN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第7期1537-1542,共6页
The Ti-35Nb-2Zr-0.3O(mass fraction,%)alloy was melted under a high-purity argon atmosphere in a high vacuumnon-consumable arc melting furnace,followed by cold deformation.The effects of cold deformation process on mic... The Ti-35Nb-2Zr-0.3O(mass fraction,%)alloy was melted under a high-purity argon atmosphere in a high vacuumnon-consumable arc melting furnace,followed by cold deformation.The effects of cold deformation process on microstructure andmechanical properties were investigated using the OM,XRD,TEM,Vicker hardness tester and universal material testing machine.Results indicated that the alloy showed multiple plastic deformation mechanisms,including stress-inducedα'martensite(SIMα')transformation,dislocation slipping and deformation twins.With the increase of cold deformation reduction,the tensile strength andhardness increased owing to the increase of dislocation density and grain refinement,and the elastic modulus slightly increasedowing to the increase of SIMα'phase.The90%cold deformed alloy exhibited a great potential to become a new candidate forbiomedical applications since it possessed low elastic modulus(56.2GPa),high tensile strength(1260MPa)and highstrength-to-modulus ratio(22.4×10-3),which are superior than those of Ti-6Al-4V alloy. 展开更多
关键词 Ti-35Nb-2Zr-0.3O alloy cold deformation MICROSTRUCTURE mechanical properties biomedical material
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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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新型高熵非晶合金的功能性能研究进展 被引量:4
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作者 张舒研 高洋洋 +3 位作者 张志彬 顾涛 梁秀兵 王立忠 《稀有金属》 EI CAS CSCD 北大核心 2021年第6期717-727,共11页
高熵非晶合金是近年来发展起来的一种新型先进合金材料,它兼具了高熵合金和非晶合金良好的力学性能、磁学性能以及电化学性能等多方面综合特性,故而备受各领域众多学者的广泛关注。因为非晶合金不存在晶体结构缺陷与磁晶各向异性,所以... 高熵非晶合金是近年来发展起来的一种新型先进合金材料,它兼具了高熵合金和非晶合金良好的力学性能、磁学性能以及电化学性能等多方面综合特性,故而备受各领域众多学者的广泛关注。因为非晶合金不存在晶体结构缺陷与磁晶各向异性,所以具有更加优异的软磁性能。进一步地,将“高熵效应”的概念引入到非晶合金的研究中,使高熵非晶合金在很宽的温度区间内具有良好的制冷能力,因此常被视为一种潜在的磁制冷工质材料。金属材料作为生物医学材料使用时,普遍存在易腐蚀与使用寿命短等弊端。而高熵块体非晶合金具有生物相容性与耐腐蚀性能兼备的特点,在医用临床方面具有更广阔的应用前景。核能作为一种清洁能源,积极开发满足高温和强辐照条件下的高性能核结构材料势在必行。主要阐述高熵非晶合金的磁学性能、生物医用性能以及抗辐照性能等方面的最新研究成果。简要介绍高熵非晶合金的低温电输运特性、对偶氮染料废水的脱色降解以及提升污水处理效率等方面的作用。同时指出开发具有更多综合性能优异的高熵非晶合金将会成为新材料领域重要的发展趋势。 展开更多
关键词 高熵非晶合金 磁学性能 生物医用性能 抗辐照性能
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Designing the mechanical properties of peptide-based supramolecular hydrogels for biomedical applications 被引量:2
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作者 LI Ying QIN Meng +1 位作者 CAO Yi WANG Wei 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第5期849-858,共10页
Hydrogels are a class of special materials that contain a large amount of water and behave like rubber.These materials have found broad applications in tissue engineering,cell culturing,regenerative medicine etc.Recen... Hydrogels are a class of special materials that contain a large amount of water and behave like rubber.These materials have found broad applications in tissue engineering,cell culturing,regenerative medicine etc.Recently,the exploration of peptide-based supramolecular hydrogels has greatly expanded the repertoire of hydrogels suitable for biomedical applications.However,the mechanical properties of peptide-based hydrogels are intrinsically weak.Therefore,it is crucial to develop methods that can improve the mechanical stability of such peptide-based hydrogels.In this review,we explore the factors that determine or influence the mechanical stability of peptide-based hydrogels and summarize several key elements that may guide scientists to achieve mechanically improved hydrogels.In addition,we exemplified several methods that have been successfully developed to prepare hydrogels with enhanced mechanical stability.These mechanically strong peptide-based hydrogels may find broad applications as novel biomaterials.It is still challenging to engineer hydrogels in order to mimic the mechanical properties of biological tissues.More hydrogel materials with optimal mechanical properties suitable for various types of biological applications will be available in the near future. 展开更多
关键词 low molecular weight gelators (LMWG) peptide-based hydrogel hydrogelation mechanical properties (stability) MODULUS rheology
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Advancements in three-dimensional titanium alloy mesh scaffolds fabricated by electron beam melting for biomedical devices: mechanical and biological aspects 被引量:13
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作者 Krishna Chaitanya Nune Shujun Li R. Devesh Kumar Misra 《Science China Materials》 SCIE EI CSCD 2018年第4期455-474,共20页
We elucidate here the process-structure-property relationships in three-dimensional(3 D) implantable titanium alloy biomaterials processed by electron beam melting(EBM) that is based on the principle of additive m... We elucidate here the process-structure-property relationships in three-dimensional(3 D) implantable titanium alloy biomaterials processed by electron beam melting(EBM) that is based on the principle of additive manufacturing. The conventional methods for processing of biomedical devices including freeze casting and sintering are limited because of the difficulties in adaptation at the host site and difference in the micro/macrostructure, mechanical, and physical properties with the host tissue. In this regard, EBM has a unique advantage of processing patient-specific complex designs, which can be either obtained from the computed tomography(CT) scan of the defect site or through a computeraided design(CAD) program. This review introduces and summarizes the evolution and underlying reasons that have motivated 3 D printing of scaffolds for tissue regeneration.The overview comprises of two parts for obtaining ultimate functionalities. The first part focuses on obtaining the ultimate functionalities in terms of mechanical properties of 3 D titanium alloy scaffolds fabricated by EBM with different characteristics based on design, unit cell, processing parameters, scan speed, porosity, and heat treatment. The second part focuses on the advancement of enhancing biological responses of these 3 D scaffolds and the influence of surface modification on cell-material interactions. The overview concludes with a discussion on the clinical trials of these 3 D porous scaffolds illustrating their potential in meeting the current needs of the biomedical industry. 展开更多
关键词 Electron beam melting 3D printing tissue engineering mechanical properties BIOCOMPATIBILITY
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Derivation and application of pluripotent stem cells for regenerative medicine
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作者 Jiaqiang Wang Qi Zhou 《Science China(Life Sciences)》 SCIE CAS CSCD 2016年第6期576-583,共8页
Pluripotent stem cells(PSCs) are cells that can differentiate into any type of cells in the body, therefore have valuable promise in regenerative medicine of cell replacement therapies and tissue/organ engineering. PS... Pluripotent stem cells(PSCs) are cells that can differentiate into any type of cells in the body, therefore have valuable promise in regenerative medicine of cell replacement therapies and tissue/organ engineering. PSCs can be derived either from early embryos or directly from somatic cells by epigenetic reprogramming that result in customized cells from patients. Here we summarize the methods of deriving PSCs, the various types of PSCs generated with different status, and their versatile applications in both clinical and embryonic development studies. We also discuss an intriguing potential application of PSCs in constructing tissues/organs in large animals by interspecies chimerism. All these emerging findings are likely to contribute to the breakthroughs in biological research and the prosperous prospects of regenerative medicine. 展开更多
关键词 pluripotent stem cells regenerative medicine reprogramming interspecies chimerism
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