Literature DB >> 17368372

Two-dimensional and 3-dimensional analysis of bone/dental implant interfaces with the use of focused ion beam and electron microscopy.

Lucille A Giannuzzi1, Daniel Phifer, Nicholas J Giannuzzi, Mario J Capuano.   

Abstract

PURPOSE: To assess the usefulness of a dual-beam focused ion beam (FIB) and scanning electron microscope (SEM) instrument and FIB-based transmission electron microscopy (TEM) specimen preparation techniques to characterize bone/dental implant interfaces.
MATERIALS AND METHODS: The FIB was used to site specifically polished cross-sections for direct FIB, SEM, and TEM imaging of bone osseointegration into a Nobel Biocare TiUnite failed dental implant (Nobel Biocare, Yorba Linda, CA).
RESULTS: Bone was observed to grow into the porous structure of the coating, yielding direct evidence of a mechanical locking mechanism of the bone/implant interface. Multiple SEM images obtained from sequential FIB cross-sections were reconstructed into 3-dimensional tomograms that showed partial and full bone growth into the porous structure of the TiUnite coating. Sections thinned by FIB techniques were observed by transmission electron microscope (TEM) and related methods. Conventional bright field TEM showed that the coating, which was more than 2 microm thick, consisted of a nanocrystalline and porous structure. High-resolution TEM (HRTEM) showed the presence within the bone of hydroxyapatite crystallites that measured approximately 7 nm. TEM images showed that the bone does not form an intimate and homogenous interface with the implant coating in all regions. X-ray energy dispersive spectrometer (XEDS) line scans that used scanning TEM (STEM) methods showed interdiffusion of Ti, P, and Ca between the bone and the coating where intimate bone/coating contact was observed, suggesting that chemical bonding also exists within this interface.
CONCLUSIONS: FIB methods for SEM and TEM were used to characterize bone/implant surfaces.

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Year:  2007        PMID: 17368372     DOI: 10.1016/j.joms.2006.10.025

Source DB:  PubMed          Journal:  J Oral Maxillofac Surg        ISSN: 0278-2391            Impact factor:   1.895


  9 in total

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Review 2.  Resolving the CaP-bone interface: a review of discoveries with light and electron microscopy.

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3.  Making the Most of your Electrons: Challenges and Opportunities in Characterizing Hybrid Interfaces with STEM.

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4.  The Three-Dimensional Microenvironment of the Mitral Valve: Insights into the Effects of Physiological Loads.

Authors:  Salma Ayoub; Karen C Tsai; Amir H Khalighi; Michael S Sacks
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5.  Visualizing the 3D architecture of multiple erythrocytes infected with Plasmodium at nanoscale by focused ion beam-scanning electron microscopy.

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6.  Anchoring structure of the calvarial periosteum revealed by focused ion beam/scanning electron microscope tomography.

Authors:  Shingo Hirashima; Keisuke Ohta; Tomonoshin Kanazawa; Kei-ichiro Uemura; Akinobu Togo; Munetake Yoshitomi; Satoko Okayama; Jingo Kusukawa; Kei-ichiro Nakamura
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Review 7.  A multiscale analytical approach to evaluate osseointegration.

Authors:  Anders Palmquist
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8.  50 years of scanning electron microscopy of bone-a comprehensive overview of the important discoveries made and insights gained into bone material properties in health, disease, and taphonomy.

Authors:  Furqan A Shah; Krisztina Ruscsák; Anders Palmquist
Journal:  Bone Res       Date:  2019-05-22       Impact factor: 13.567

9.  Accentuated osseointegration in osteogenic nanofibrous coated titanium implants.

Authors:  Siddhartha Das; Kanchan Dholam; Sandeep Gurav; Kiran Bendale; Arvind Ingle; Bhabani Mohanty; Pradip Chaudhari; Jayesh R Bellare
Journal:  Sci Rep       Date:  2019-12-09       Impact factor: 4.379

  9 in total

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