BIODEGRADABLE

作品数:589被引量:1460H指数:18
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相关领域:医药卫生更多>>
相关作者:郑玉峰袁非陈秀萍贾鑫倪石磊更多>>
相关机构:天津大学复旦大学清华大学北京大学更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划国家教育部博士点基金北京市自然科学基金更多>>
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Implantable and biodegradable closed‐loop devices for autonomous electrotherapy
《SmartMat》2023年第3期5-8,共4页Xiaoying Zhang Darakhshan Mehvish Hui Yang 
Ministry of Science and Technology of China,Grant/Award Number:2018YFA0703200;National Natural Science Foundation of China,Grant/Award Number:51973154;National Innovation Group“Organic Integrated Circuit Core Material Foundation”,Grant/Award Number:52121002;Natural Science Foundation of Tianjin,Grant/Award Number:20JCZDJC00680;Haihe Laboratory of Sustainable Chemical Transformations。
Implantable electronic devices as a valuable biomedical tool are used to treat chronic diseases.However,traditional pacemakers exist a serious risk of complications.A biodegradable,closed‐loop sensor‐actuator system...
关键词:autonomous electrotherapy biodegradable devices implantable devices 
Biodegradable magnesium alloy with eddy thermal effect for effective and accurate magnetic hyperthermia ablation of tumors被引量:5
《National Science Review》2021年第1期94-104,共11页Nailin Yang Fei Gong Liang Cheng Huali Lei Wei Li Zongbin Sun Caifang Ni Zhanhui Wang Zhuang Liu 
partially supported by the National Basic Research Programs of China(2016YFA0201200);the National Natural Science Foundation of China(51525203,51761145041and 51572180);the Collaborative Innovation Center of Suzhou Nano Science and Technology;the Jiangsu Natural Science Fund for Distinguished Young Scholars(BK20170063);Funded by the Priority Academic Program Development(PAPD)of Jiangsu Higher Education Institutions;supported by the Tang Scholarship of Soochow University。
Magnetic hyperthermia therapy(MHT)is able to ablate tumors using an alternating magnetic field(AMF)to heat up magnetocaloric agents(e.g.magnetic nanoparticles)administered into the tumors.For clinical applications,the...
关键词:magnesium alloy eddy thermal effect alternating magnetic field hyperthermia tumor ablation BIODEGRADATION 
Effect of heat treatment on mechanical and biodegradable properties of an extruded ZK60 alloy被引量:10
《Bioactive Materials》2017年第1期19-26,共8页Junxiu Chen Lili Tan Ke Yang 
This work was supported by the National Basic Research Program of China(973 Program)(No.2012CB619101);National Natural Science Foundation of China(No.81401773);National High Technology Research and Development Program of China(863 Program,No.2015AA033701).
ZK60 magnesium alloy possess good mechanical properties and is a potential biodegradable material.But its high degradation rate is not desirable.In this study the effect of heat treatment on the biodegradable property...
关键词:ZK60 alloy Heat treatment Second phase CORROSION 
Accelerating degradation rate of pure iron by zinc ion implantation被引量:6
《Regenerative Biomaterials》2016年第4期205-215,共11页Tao Huang Yufeng Zheng Yong Han 
This work was supported by the National Basic Research Program of China(973 Program)(Grant No.2012CB619102);National Science Fund for Distinguished Young Scholars(Grant No.51225101);National Natural Science Foundation of China(Grant No.51431002);the NSFC/RGC Joint Research Scheme under(Grant No.51361165101)in China's Mainland and N_CUHK449/13 in Hong Kong,and Beijing Municipal Science and Technology Project(Z141100002814008).
Pure iron has been considered as a promising candidate for biodegradable implant applications.However,a faster degradation rate of pure iron is needed to meet the clinical requirement.In this work,metal vapor vacuum a...
关键词:biodegradable metals IRON zinc ion implantation BIOCOMPATIBILITY 
In Vitro Evaluation of the Feasibility of Commercial Zn Alloys as Biodegradable Metals被引量:30
《Journal of Materials Science & Technology》2016年第9期909-918,共10页C.Wang H.T.Yang X.Li Y.F.Zheng 
supported by the National Basic Research Program of China (973 Program) (Grant Nos. 2012CB619102 and 012CB619100);National Science Fund for Distinguished Young Scholars (Grant No. 51225101);National Natural Science Foundation of China (Grant Nos. 51431002 and 31170909);the NSFC/RGC Joint Research Scheme (Grant No. 51361165101);State Key Laboratory for Mechanical Behavior of Materials (Grant No. 20141615);Beijing Municipal Science and Technology Project (No. Z141100002814008)
In this work, three widely used commercial Zn alloys (ZA4-1, ZA4-3, ZA6-1 ) were purchased and pre- pared by hot extrusion at 200℃. The microstructure, mechanical properties, corrosion behaviors, biocompatibility a...
关键词:Commercial Zn alloys Biodegradable metals Mechanical properties Corrosion behaviors Cytotoxicity Hemocompatibility 
Processing of a Novel Zn Alloy Micro-Tube for Biodegradable Vascular Stent Application被引量:8
《Journal of Materials Science & Technology》2016年第9期925-929,共5页Chang Wang Zhentao Yu Yajun Cui Yafeng Zhang Sen Yu Gongqi Qu Haibo Gong 
supported by the National Basic Research Program of China(973 Program)(Grant No.2012CB619102);the National Science Foundation of China(Grant No.31400821);the innovation fund of Western Metal Materials(Grant No.XBCL-3-14)
In recent years, zinc based alloys as a new biodegradable metal material aroused intensive interests. However, the processing of Zn alloys micro-tubes (named slender-diameter and thin-walled tubes) is very difficult...
关键词:Zn alloy Micro-tube Biodegradable stent Mechanical properties Dimensional accuracy In vitro corrosion performance 
Surface Modification on Biodegradable Magnesium Alloys as Orthopedic Implant Materials to Improve the Bio-adaptability:A Review被引量:24
《Journal of Materials Science & Technology》2016年第9期827-834,共8页Peng Wan Lili Tan Ke Yang 
supported by the National Basic Research Program of China (973 Program, No. 2012CB619101)
Magnesium (Mg) and its alloys as a novel kind of biodegradable material have attracted much funda- mental research and valuable exploration to develop its clinical application, Mg alloys degrade too fast at the earl...
关键词:Bio-adaptability Coating Biodegradable Magnesium alloys Orthopedic implants 
Opportunities and challenges for the biodegradable magnesium alloys as next-generation biomaterials被引量:39
《Regenerative Biomaterials》2016年第2期79-86,共8页Wenjiang Ding 
This work is financially supported by Science and Technology Commission of Shanghai Municipality(11DJ1400300,14DZ1940800);Ministry of Science and Technology of China(2012BAI18B01,2015AA033603).
In recent years,biodegradable magnesium alloys emerge as a new class of biomaterials for tissue engineering and medical devices.Deploying biodegradable magnesium-based materials not only avoids a second surgical inter...
关键词:biodegradable material magnesium alloys uniform corrosion orthopaedic implants cardiovascular stents 
Effect of Texture on Biodegradable Behavior of an As-Extruded Mg–3%Al–1%Zn Alloy in Phosphate Buffer Saline Medium被引量:3
《Journal of Materials Science & Technology》2016年第7期646-652,共7页Baojie Wang Daokui Xu Junhua Dong Wei Ke 
supported by the National Natural Science Foundation of China under Grant Nos.51271183 and 51301172;the National Basic Research Program of China(973 Program)under Grant No.2013CB632205;the Innovation Fund of Institute of Metal Research(IMR);Chinese Academy of Sciences(CAS)
In this work, the corrosion behavior of two differently oriented surfaces of an as-extruded Mg-3%Al- 1%Zn (AZ31) bar in a simulated body fluid of phosphate buffer saline (PBS) medium was investigated and compared,...
关键词:Mg alloyCorrosion resistanceTextureBiodegradationSurface film 
Surface modification of biodegradable magnesium and its alloys for biomedical applications被引量:24
《Regenerative Biomaterials》2015年第2期135-151,共17页Peng Tian Xuanyong Liu 
This work is jointly financially supported from the National Basic Research Program of China(973 Program,2012CB933600);National Natural Science Foundation of China(81271704);Shanghai Science and Technology R&D Fund under grant 11JC1413700 and 14XD1403900.
Magnesium and its alloys are being paid much attention recently as temporary implants,such as orthopedic implants and cardiovascular stents.However,the rapid degradation of them in physiological environment is a major...
关键词:magnesium alloys surface modification coatings ion implantation BIODEGRADABILITY BIOCOMPATIBILITY 
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