期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
GuttaFlow Bioseal封闭剂对椭圆形根管抗垂直折裂能力的影响
1
作者 迪丽娜尔·库热西 杨娅 何宏 《上海口腔医学》 CAS 2024年第3期250-254,共5页
目的:探讨GuttaFlow Bioseal根管封闭剂对椭圆形根管抗垂直折裂能力的影响。方法:CBCT扫描60颗正畸减数拔除的下颌单根前磨牙,当距离根尖5 mm处颊舌管径大于等于近远中管径2倍时,为符合筛选条件的椭圆形根管。使用Protaper系统将30颗椭... 目的:探讨GuttaFlow Bioseal根管封闭剂对椭圆形根管抗垂直折裂能力的影响。方法:CBCT扫描60颗正畸减数拔除的下颌单根前磨牙,当距离根尖5 mm处颊舌管径大于等于近远中管径2倍时,为符合筛选条件的椭圆形根管。使用Protaper系统将30颗椭圆形根管的离体牙预备至F2,随机分为GuttaFlow Bioseal充填组和iRoot SP充填组,每组分别用热垂直加压法、冷牙胶侧压法及单尖法充填根管。选取5颗离体牙作为阴性对照组。将充填完好的牙根在37℃、100%湿度的恒温箱中保存14天后,垂直放入自聚合丙烯酸树脂圆柱模型中,随后将样本固定于万能试验机的下板,用直径4 mm的球以1 mm/min的速度垂直向下加压,直至出现折裂,用N记载负载值。采用SPSS 29.0软件包对数据进行t检验与单因素方差分析,组间进行LSD分析,显微镜下分析断裂模式。结果:GuttaFlow Bioseal充填组及iRoot SP充填组相比无显著差异(P=0.321),不同组间抗垂直折裂能力存在显著差异(P<0.05)。使用热垂直加压充填法与单尖法时,GuttaFlow Bioseal充填后的样本牙抗垂直折裂能力显著高于iRoot SP,而使用冷侧压充填法时的抗垂直折裂能力显著低于iRoot SP。结论:使用热垂直加压充填法和单尖法充填根管时,GuttaFlow Bioseal有提高牙根抗垂直折裂能力的潜力,但仍需更多临床试验予以验证。 展开更多
关键词 GuttaFlow Bioseal 垂直折裂 根管封闭剂 椭圆形根管
下载PDF
硅基根管封闭剂GuttaFlow Bioseal充填椭圆形根管的根尖封闭效果 被引量:5
2
作者 史景华 康文岩 +4 位作者 满都拉 梁中华 王晓光 殷茵 张蕾 《中国组织工程研究》 CAS 北大核心 2022年第21期3389-3393,共5页
背景:椭圆形根管的严密充填成为困扰临床医生的一大难题,生物活性封闭剂GuttaFlow Bioseal具有良好的理化特性和生物学性能,其充填椭圆形根管的相关研究尚未见报道。目的:评估生物活性封闭剂GuttaFlow Bioseal充填椭圆形根管的根尖封闭... 背景:椭圆形根管的严密充填成为困扰临床医生的一大难题,生物活性封闭剂GuttaFlow Bioseal具有良好的理化特性和生物学性能,其充填椭圆形根管的相关研究尚未见报道。目的:评估生物活性封闭剂GuttaFlow Bioseal充填椭圆形根管的根尖封闭效果。方法:90颗离体椭圆形单根管下颌前磨牙于牙颈部截冠保留牙根14 mm,采用机用镍钛锉预备根管至F3,随机数字表法分为4组:A组(n=20)以AH-plus+热牙胶技术充填,B组(n=20)以iRootSP+单尖技术充填,C组(n=20)以GuttaFlow2+单尖技术充填,D组(n=20)以GuttaFlow Bioseal+单尖技术充填,E组(n=5)为阳性对照组,F组(n=5)为阴性对照组。采用染料渗透法及透明牙技术观察各组根尖微渗漏情况及侧副管充填情况。结果与结论:(1)A-D组样本显示出不同程度的染料渗漏,阳性对照组可见染料渗入根管全长,阴性对照组未见染料渗入根管内,B组染料渗入长度大于A、C、D组(P<0.05),A、C、D组间染料渗入长度比较差异无显著性意义(P>0.05);(2)A-D组侧副根管的充填率分别是60%,30%,40%,50%,4组比较差异无显著性意义(P>0.05);A组超充率显著低于B、C、D组(P<0.05),B、C、D组超充率比较差异无显著性意义(P>0.05);(3)结果表明,GuttaFlow Bioseal封闭剂在椭圆形根管中具有较好的根尖封闭性和侧副管充填效果,充填效率高,但易发生超充。 展开更多
关键词 根管充填 根管封闭剂 根尖封闭性 GuttaFlow Bioseal 椭圆形根管 组织工程
下载PDF
Si substituted hydroxyapatite nanorods on Ti for percutaneous implants 被引量:4
3
作者 Kai Li Yang Xue +2 位作者 Ting Yan Lan Zhang Yong Han 《Bioactive Materials》 SCIE 2020年第1期116-123,共8页
An ideal intraosseous transcutaneous implant should form a tight seal with soft tissue,besides a requirement of osseointegration at the bone-fixed position.Si substituted hydroxyapatite(Si-HA)nanorods releasing Si ion... An ideal intraosseous transcutaneous implant should form a tight seal with soft tissue,besides a requirement of osseointegration at the bone-fixed position.Si substituted hydroxyapatite(Si-HA)nanorods releasing Si ion and simulating nanotopography of natural tissue were designed on Ti to enhance fibroblast response in vitro and biosealing with soft tissue in vivo.Si-HA nanorods were fabricated by alkali-heat treatment followed with hydrothermal treatment.The hydrothermal formation mechanism of Si-HA nanorods was explored.The surface characteristic of Si-HA nanorods was compared with pure HA nanorods.Fibroblast behaviors in vitro and skin response in vivo on different surfaces were also evaluated.The obtained results show that the substitution of Si did not significantly alter the phase component,morphology,roughness and wettability of HA,but additional Si and more Ca were released from Si-HA into medium.Comparing to pure HA nanrods and Ti substrate,Si-HA nanrods enhanced cell behaviors including proliferation,fibrotic phenotype and collagen secretion in vitro,and reduced epithelial down growth in vivo.The enhanced cell response and biosealing should be due to the releasing of Ca,Si and nanotopography of Si-HA nanorods.Si-HA nanorods can be a potential coating to accelerate skin integration for percutaneous implants in clinic. 展开更多
关键词 Si substituted hydroxyapatite Nanorod biosealing Percutaneous implant
原文传递
Microbial calcite,a bio-based smart nanomaterial in concrete remediation 被引量:12
4
作者 S.S.Bang J.J.Lippert +2 位作者 U.Yerra S.Mulukutla V.Ramakrishnan 《International Journal of Smart and Nano Materials》 SCIE EI 2010年第1期28-39,共12页
The concept of developing a biosealant in concrete remediation is based on unique microbial metabolic processes.A common soil microorganism,Sporosarcina pasteurii,can induce CaCO_(3) precipitation in the surroundings ... The concept of developing a biosealant in concrete remediation is based on unique microbial metabolic processes.A common soil microorganism,Sporosarcina pasteurii,can induce CaCO_(3) precipitation in the surroundings in response to environmental cues such as high pH and available nutrients and minerals.A new biomolecule,microbial calcite is introduced as a smart nanomaterial for self-healing concrete-its effects on concrete performance were evaluated with regard to surface crack remediation and durability enhancement.For crack remediation,S.pasteurii cells immobilized on porous glass beads,Siran^(TM),were applied to cracks and tested for stiffness and compressive strengths.For durability tests,cement mortar beams prepared with bacteria were subjected to freeze-thaw cycles and examined for mean expansions and weight changes.Overall performance of the concrete was significantly enhanced by treatment with microbial calcite in simulated concrete cracks and cement mortar beams. 展开更多
关键词 biosealant microbial calcite smart nanomaterial Sporosarcina pasteurii immobilization concrete remediation
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部