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Influence of the hydrostatic pulpal pressure on droplets formation in current etch-and-rinse and self-etch adhesives: A video rate/TSM microscopy and fluid filtration study

机译:静水压力对当前蚀刻和冲洗和自蚀刻粘合剂中液滴形成的影响:视频速率/ TSM显微镜和流体过滤研究

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摘要

Objectives. The aim of this study was to investigate the droplet formation using a real-time/confocal microscopy technique, when different self-etching and etch-and-rinse adhesives were applied in the presence or absence of pulpal pressure. Resin-dentin permeability (%P) was also evaluated.rnMethods. Optibond FL, Silorane adhesive, Scotchbond 1XT, G-Bond and DC-Bond were bonded in the presence or in absence of simulated pulpal pressure. A fluid-transport model was used to measure the water permeability through resin-bonded dentin. Half of the specimens bonded in the presence of the hydrostatic pulpal pressure (20 cm H_2O) were light cured, whereas the remnant half received no light curing. The same was done with the half of the specimens bonded under no pulpal pressure. The specimens were investigated under a confocal TSM.rnResults. Optibond FL and G-Bond had the lowest dentin permeability. Optibond FL adhesive showed few water droplets on the polymerized external surface and within the resin-dentin interface. G-Bond showed static interfacial globular-like droplet formation. DC-Bond and Scotchbond 1XT were the most water permeable adhesives both in the presence and in absence of pulpal pressure. A dynamic interfacial non-globular-like droplet formation was observed. Severe droplet formation was observed on the polymerized external surface. Significance. The presence of the pulpal pressure may cause increasing in fluid filtration and droplet formation in simplified adhesives containing HEMA. The adhesives containing 4-META (G-Bond) may be affected by static phase separation but by very low osmotic droplets formation and water permeability. The three-step adhesives are less affected by these problems.
机译:目标。这项研究的目的是在存在或不存在纸浆压力的情况下使用不同的自蚀刻和蚀刻漂洗粘合剂时,使用实时/共聚焦显微镜技术研究液滴的形成。还评估了树脂-牙本质渗透率(%P)。在有或没有模拟纸浆压力的情况下,将Optibond FL,Silorane粘合剂,Scotchbond 1XT,G-Bond和DC-Bond粘合。使用流体传输模型来测量通过树脂结合的牙本质的透水性。在静水压力(20 cm H_2O)存在的情况下,粘合的一半样品被轻度固化,而其余的一半则没有光固化。在没有纸浆压力的情况下,将一半的样品粘合在一起进行相同的操作。在共聚焦TSM下对标本进行了研究。 Optibond FL和G-Bond的牙本质渗透率最低。 Optibond FL粘合剂在聚合的外表面和树脂-牙本质界面内几乎没有水滴。 G-Bond显示出静态的界面球状液滴形成。无论有无纸浆压力,DC-Bond和Scotchbond 1XT都是最透水的胶粘剂。观察到动态界面非球状液滴形成。在聚合的外表面上观察到严重的液滴形成。意义。纸浆压力的存在可能会导致包含HEMA的简化胶粘剂的流体过滤和液滴形成增加。包含4-META(G-Bond)的胶粘剂可能会受到静态相分离的影响,但渗透液滴的形成和渗透率极低。三步式粘合剂受这些问题的影响较小。

著录项

  • 来源
    《Dental materials》 |2009年第11期|1392-1402|共11页
  • 作者单位

    Dental Biomaterials Science, Biomimetics & Biophotonics, King's College London Dental Institute Guy's, King's College and St. Thomas' Hospitals, Floor 17 Guy's Tower, London SE1 9RT, England, UK;

    Biomaterials, Biomimetics & Biophotonics, King's College London Dental Institute at Guy's,King's College and St. Thomas' Hospitals, Floor 17 Guy's Hospital, London, UK;

    Department of Dental Materials, School of Dentistry, University of Granada,Colegio Maximo, Campus de Cartuja, Granada, Spain;

    Department of Dental Materials, School of Dentistry, University of Granada,Colegio Maximo, Campus de Cartuja, Granada, Spain;

    Biomaterials, Biomimetics & Biophotonics, King's College London Dental Institute at Guy's,King's College and St. Thomas' Hospitals, Floor 17 Guy's Hospital, London, UK;

    Biomaterials, Biomimetics & Biophotonics, King's College London Dental Institute at Guy's,King's College and St. Thomas' Hospitals, Floor 17 Guy's Hospital, London, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    confocal microscopy; hydrostatic pulpal pressure; resin-bonded dentin; self-etch and etch-and-rinse adhesives; osmotic droplets; phase separation; video rate/real-time; water permeability;

    机译:共聚焦显微镜静水压树脂粘结牙本质自蚀刻和蚀刻冲洗粘合剂;渗透液滴相分离;视频速率/实时;透水性;

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