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Full-Text Articles in Life Sciences
Bone Ingrowth Into Porous Coated Canine Total Hip Replacements. Quantification By Backscattered Scanning Electron Microscopy And Image Analysis, Murali Jasty, Charles R. Bragdon, Steven Schutzer, Harry Rubash, Teresa Haire, William H. Harris
Bone Ingrowth Into Porous Coated Canine Total Hip Replacements. Quantification By Backscattered Scanning Electron Microscopy And Image Analysis, Murali Jasty, Charles R. Bragdon, Steven Schutzer, Harry Rubash, Teresa Haire, William H. Harris
Scanning Microscopy
Bone ingrowth into titanium fiber mesh porous-surfaced canine total hip replacement prostheses was evaluated and quantified using a computer assisted image analysis system attached to a scanning electron microscope equipped with a back scattered electron detector. Excellent contrast between the bone, the porous metal and the soft tissues resulted in the backscatter mode, allowing easy differentiation of these components in real time by the image analysis based on gray scales. By three weeks the mean (± standard deviation) amount of bone ingrowth expressed as a percentage of porous layer measured 7.2% (± 1.5%) for the acetabular components, and 3.9% (± …
Backscattered Electron Imaging Using Single Crystal Scintillator Detectors, R. Autrata
Backscattered Electron Imaging Using Single Crystal Scintillator Detectors, R. Autrata
Scanning Microscopy
The image obtained by the detection of backscattered electrons (BSE) becomes an indispensable complement to the correct interpretation and more precise reconstruction of the surface of the specimen and its material composition. The BSE are carriers of information which is dependent on their angular and energy distribution. The choice of a certain type of BSE and their efficient detection make it possible to record the desired information with a different grade of quality. The knowledge of the angular and energy distribution of BSE is necessary for the adjustment of the correct position of the BSE detector with regard to the …