功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2014年
20期
20090-20094
,共5页
周丰%崔园园%武亮亮%刘丽%黄楠
週豐%崔園園%武亮亮%劉麗%黃楠
주봉%최완완%무량량%류려%황남
脉动流测试%曲面%双叶机械瓣膜
脈動流測試%麯麵%雙葉機械瓣膜
맥동류측시%곡면%쌍협궤계판막
pulsatile flow test%curved surface%bileaflet mechanical valve
自体心脏瓣膜为无神经元控制,在多物理场因素引导下,血液流动场、瓣膜和腱索之间相互作用运动,保持血流单向流动。经临床研究表明,患者植入瓣膜后的瓣膜并发症及患者生存率,与瓣膜结构、血流流场密切相关,对此评价瓣膜的血流动力学性能对改进瓣膜结构具有重要作用。自制新型曲面双叶型机械瓣膜,通过理论解析和瞬态流固耦合模拟分析讨论瓣膜最大开启时瓣膜的血流动力学性能;并在体外动态仿真环境下,对曲面型双叶瓣膜进行血流动力学测试,采用Vivitest脉动流实验平台测量,通过测试瓣膜压力、开口面积、返流量等物理量来衡量瓣膜在主动脉位置的使用性能。最后研究同 St.Jude 双叶瓣和国内 GK瓣等同类机械瓣的动力学性能作对照,根据评价结果前瞻性地研究双叶曲面机械瓣结构性能。结果表明,研制的新型曲面瓣膜具有优良的血流动力学特性。
自體心髒瓣膜為無神經元控製,在多物理場因素引導下,血液流動場、瓣膜和腱索之間相互作用運動,保持血流單嚮流動。經臨床研究錶明,患者植入瓣膜後的瓣膜併髮癥及患者生存率,與瓣膜結構、血流流場密切相關,對此評價瓣膜的血流動力學性能對改進瓣膜結構具有重要作用。自製新型麯麵雙葉型機械瓣膜,通過理論解析和瞬態流固耦閤模擬分析討論瓣膜最大開啟時瓣膜的血流動力學性能;併在體外動態倣真環境下,對麯麵型雙葉瓣膜進行血流動力學測試,採用Vivitest脈動流實驗平檯測量,通過測試瓣膜壓力、開口麵積、返流量等物理量來衡量瓣膜在主動脈位置的使用性能。最後研究同 St.Jude 雙葉瓣和國內 GK瓣等同類機械瓣的動力學性能作對照,根據評價結果前瞻性地研究雙葉麯麵機械瓣結構性能。結果錶明,研製的新型麯麵瓣膜具有優良的血流動力學特性。
자체심장판막위무신경원공제,재다물리장인소인도하,혈액류동장、판막화건색지간상호작용운동,보지혈류단향류동。경림상연구표명,환자식입판막후적판막병발증급환자생존솔,여판막결구、혈류류장밀절상관,대차평개판막적혈류동역학성능대개진판막결구구유중요작용。자제신형곡면쌍협형궤계판막,통과이론해석화순태류고우합모의분석토론판막최대개계시판막적혈류동역학성능;병재체외동태방진배경하,대곡면형쌍협판막진행혈류동역학측시,채용Vivitest맥동류실험평태측량,통과측시판막압력、개구면적、반류량등물리량래형량판막재주동맥위치적사용성능。최후연구동 St.Jude 쌍협판화국내 GK판등동류궤계판적동역학성능작대조,근거평개결과전첨성지연구쌍협곡면궤계판결구성능。결과표명,연제적신형곡면판막구유우량적혈류동역학특성。
Heart valves which could provide unidirectional function of the blood are autologous valves without nerve control.Under the multi physics factors,the basic movements of the heat valves are directed by blood flow fields and the interaction of valve and tendons.In the clinical study,the patients'survival rate and the inci-dence of valvular complications all closely depend on the blood flow fields of the heart valve,thus the evaluation of the hemodynamics of the heart valves was critical important.In this paper,thought the theoretical analysis and transient fluid-structure interaction simulation hemodynamic performance of the valve;then tested the self-design curved bileaflet mechanical heart valves under the simulation of dynamic human body environment to measure the hemodynamic of the curved bileaflet heart valve.The utility of pulsating flow experiment makes the evaluation of the performance of artificial mechanical heart valve more effective.The valves'functions,such as valve pressure,opening area and regurgitation volume are all considered and studied under the Vivitest dy-namic simulation condition in vitro.Moreover,the clinical hemodynamic of curved bileaflet mechanical aortic valves were proactively investigated,and the dynamic properties were also studied comparing with St.Jude bileaflet valve and GK domestic valve.The results show that the developed new curved heart valve was of excel-lent hemodynamic.