In this study, we show non-invasive morphological surface analysis techniques matching well-assessed biochemical methods to clearly distinguish physiological from pathological cells.
Medical Devices
The aim of this research was to investigate the impact of the insertion procedure on the surface topography of dental implants. To achieve this, it is necessary to evaluate if the surgical procedure degrades the enhanced surface roughness by measuring and comparing the surface topography both before and after insertion exactly at the same locations.
The 3D optical profilometer S neox allowed machining specialists to identify the tool responsible for the defect and to follow its wear during serial production, thus controlling the manufacturing process and improving its outcome.
We will perform the characterization of microchannels in this study.
This project’s main objective was getting detailed information regarding skin’s microgeometry over a large enough area to be able to draw general conclusions for use in further investigations.