首页> 外文OA文献 >Fixture-abutment connection surface and micro-gap measurements by 3D micro-tomographic technique analysis
【2h】

Fixture-abutment connection surface and micro-gap measurements by 3D micro-tomographic technique analysis

机译:通过3D显微断层扫描技术分析测量夹具-基台的连接表面和微间隙

摘要

X-ray micro-tomography (micro-CT) is a miniaturized form of conventional computed axial tomography (CAT) able to investigate small radio-opaque objects at a-few-microns high resolution, in a non-destructive, non-invasive, and tri-dimensional way. Compared to traditional optical and electron microscopy techniques, which provide two-dimensional images, this innovative investigation technology enables a sample tri-dimensional analysis without cutting, coating or exposing the object to any particular chemical treatment. X-ray micro-tomography matches ideal 3D microscopy features: the possibility of investigating an object in natural conditions and without any preparation or alteration; non-invasive, non-destructive, and sufficiently magnified 3D reconstruction; reliable measurement of numeric data of the internal structure (morphology, structure and ultra-structure). Hence, this technique has multi-fold applications in a wide range of fields, not only in medical and odontostomatologic areas, but also in biomedical engineering, materials science, biology, electronics, geology, archaeology, oil industry, and semi-conductors industry. This study shows possible applications of micro-CT in dental implantology to analyze 3D micro-features of dental implant to abutment interface. Indeed, implant-abutment misfit is known to increase mechanical stress on connection structures and surrounding bone tissue. This condition may cause not only screw preload loss or screw fracture, but also biological issues in peri-implant tissues.
机译:X射线断层扫描(micro-CT)是常规计算机轴向断层扫描(CAT)的小型化形式,能够以无损,无创,无损,无损,高分辨率的方式研究小型的不透射线的物体。和三维方式。与提供二维图像的传统光学和电子显微镜技术相比,这种创新的调查技术可以对样品进行三维分析,而无需将对象切割,涂覆或暴露于任何特殊的化学处理中。 X射线显微断层摄影术符合理想的3D显微术特征:在自然条件下无需任何准备或改动即可研究物体的可能性;无创,无损和足够放大的3D重建;可靠地测量内部结构(形态,结构和超结构)的数值数据。因此,该技术不仅在医学和口腔医学领域,而且在生物医学工程,材料科学,生物学,电子学,地质学,考古学,石油工业和半导体工业中都有广泛的应用。这项研究显示了微型CT在牙种植体中分析牙种植体到基台界面的3D微观特征的可能应用。实际上,已知植入物-基台失配会增加连接结构和周围骨组织上的机械应力。这种情况不仅可能导致螺钉预紧力损失或螺钉断裂,还可能导致种植体周围组织的生物学问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号