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    Cloning and Expression and Functional Study of Human Dentin Sialoprotein
    人牙本质涎蛋白的基因克隆、表达和功能研究
    The Effects of Excessive Fluoride on Type Ⅰ Collagen, MMP-8 in Dentin and Calcium Transport in Dental Pulp Cells
    过量氟对牙本质Ⅰ型胶原、基质金属蛋白酶-8和牙髓细胞钙离子转运的影响
    Regulatory Role of Smad3 Signaling on Dentin Sialophosphoprotein Gene Expression
    Smad3对牙本质涎磷蛋白基因表达调控的研究
    The Study of the Transcriptional Function of Core Binding Factor α1 on Mouse Dentin Sialophosphoprotein
    核心结合因子α1对鼠牙本质涎磷蛋白基因转录调控的研究
    A Study on the Transcriptional Regulation Mechanisms of Human Dentin Matrix Protein 1 Gene
    人牙本质基质蛋白1基因转录调控机制的研究
    Interface and Strength Study of Dentin Bonding with Wet-bonging Technical
    牙本质湿粘接的界面和强度研究
    Differentiation of Adult Mesenchymal Stem Cells to Odontoblast-like Cells by Transfection of Mouse Dentin Sialophosphoprotein Gene
    小鼠牙本质涎磷蛋白基因转染诱导成体间充质干细胞牙向分化的实验研究
    EFFECTS OF TEST CONDITIONS ON TENSILE BOND STRENGTH TO DENTIN
    测试条件对牙本质粘接强度的影响
    A Study on GP Polymeric Dental Adhesive Material Part 1.Dentin Adhesive Material
    GP 口腔高分子粘接材料的研究——牙本质粘接材料
    Experimental study of dentin demineralized matrix as dental capping agent
    牙本质基质明胶盖髓的实验研究
    Experimental Investigation on the Mechanical Properties of Chinese Children Dentin
    中国儿童牙本质力学性能的实验研究
    YAG Dental Laser Treatment of Dentin Hypersensitivity on Dental Neck
    牙颈部牙本质过敏症的激光脱敏治疗
    Clinical and animal experimental observation with pulse YAG-laser to treat dentin hypersensitivity.
    脉冲YAG激光治疗牙本质过敏症的临床与动物实验观察
    Experimental study of rabbit reparative dentin formation induced by non-collagenous dentine matrir protein I . An animal experimental observation of reparative dentin formation
    牙本质非胶原蛋白诱导兔修复性牙本质形成的实验研究——Ⅱ.修复牙本质形成的动物实验观察
    Clinical application and observation about all——bond II dentin bonding system
    All—Bond Ⅱ牙本质粘合剂在牙体修复中的应用
    RESULTS:①The increase of height of gingival wall could decrease the stress of adamantine layer(0.1-0.27 MPa),which had no significant effect on dentin.
    结果:①龈壁高度的增加,使牙釉质应力减少(0.1~0.27MPa),对牙本质无明显影响。
    ②The increase of the breadth of gingival wall could increase the stresses of adamantine(0.1-0.27 MPa)and dentin(0.01-0.03 MPa).
    ②龈壁宽度的增加,使牙釉质应力增加(0.1~0.27MPa)、牙本质应力亦增加(0.01~0.03MPa)。
    After 24 hr storage in 37℃ water,the teeth were sectioned perpendicular to the adhesive interface to produce multiple beams of composite-bonded dentin,approximately 0.8 mm2 in cross-sectioned area.
    浸37℃水24 h后,顺牙齿长轴分别从近远中向及颊舌向切割牙齿,制备截面为0.8 mm2的条状树脂-牙本质黏结试样.
    RESULTS: The microtensile bond strengths between resins and dentin with Carisolv caries removal and round burs caries removal were as follows:Carisolv(TM) groups:Prime&Bond NT:(22.86±3.42)Mpa;
    结果:CarisolvTM去龋,用两种黏结剂黏结后牙本质的黏结强度为,Prime&Bond NT:(22.86±3.42)MPa;
    With the study of MMPs and TIMs in the dentin-pulp complex, it has been found that the physiological and pathological reaction of tooth had close connection with MMPs and TIMPs.
    随着近年来对MMPs与TIMPs在牙本质-牙髓复合体中研究的开展,发现它们与牙齿的多种生理、病理反应都有着密切的联系。
 

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