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- Results: The research of ureureteric stent developed in the absorbable and biodegradable stent. 结果:尿道支架的研究进展向着可吸收生物降解式支架的方向发展。
- Drug coating stent and drug elating stent have the ability to reduce the in-stent restenosis, and the biodegradable stent attract more and more attentions. 药物涂层支架、药物洗脱支架的研究降低了支架置入后血管内再狭窄率,具备优良特性的生物可降解支架也日益受到重视。
- In this article, recent progress in stent materi als is reviewed.Particular emphasis is given to the stents design, stents coati ng and biodegradable stents. 本文综述支架材料领域的最新进展,重点涉及支架设计、支架涂层及可降解支架。
- These issues may be aerted by biodegradable stents, the authors maintain. 作者认为生物降解支架可以防止这些问题。
- Objective To investigate and evaluate the histocompatibility and absorbability of polyhydroxybutyrate/hydroxyvalerate(PH-BV) and polyhydroxybutyrate(PHB) , as biodegradable stents for tissue engineering heart valve. 目的 评价作为组织工程心脏瓣膜支架材料的聚羟基丁酸/聚羟基戊酸共聚物(Poly-hydroxybutyrate/hydroxy-valerate,PHBV)、聚羟基丁酸(Polyhydroxybutyrate,PHB)两种生物可吸收材料的组织相容性和皮下吸收情况。
- Biodegradable stent 生物可降解支架
- By the stent, such as corbel parts and accessories. 并由支架、托臂和附件等部分组成。
- Use a biodegradable dog poo bag. 三, 用可降解的专用包。
- Conclusion The tissue reaction induced by PLGA stent is retrievable.PLGA is regarded highly compatible and can serve as an ideal material for biodegradable ureteral stent. 结论:PLGA材料支架植入犬输尿管后发生的输尿管炎症反应是可恢复的,PLGA材料具有很好的组织相容性,是加工可生物降解输尿管支架的理想材料。
- New Generation of Stent Technology: The Polymer-free DES. 新一代支架技术:无多聚物药物洗脱支架。
- ABI increased from 0.34 to 0.81 after stent implantation. 踝 /肱指数从术前平均 0 .;3 4上升至 0
- A term that refers to products that are biodegradable. 可生物降解的产品的特点。
- A stent maker, Cordis, helped pay for one of the studies. 一个“药物管状物”制造商Cordis,支付了一项试验的费用。
- Biodegradable: People prefer using biodegradable packages nowadays. 如今人们更喜欢使用以生物降解的包装。
- DES in the future. Nanometer Stent? Statin-eluting Stent? 药物涂层支架的未来,纳米支架?他汀涂层支架?
- Performances of Biodegradable Biomaterials for Tissue Engineering. 组织工程用生物降解材料特性。
- In this article, recent progress in stent materials is reviewed. 文中回顾了最近在支架材料领域的进展。
- Polycaprolactone is an FDA-approved biodegradable polymer. 聚己内酯是一种被FDA批准的可生物降解的聚酯材料。
- The polymers are biodegradable biocompatible and bioabsorbable. 可生物降解的聚合物,生物相容性和生物可吸收。
- Waste can be segregated as biodegradable and nonbiodegradable. 垃圾可分为可生物降解的和不可生物降解的两类。