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The following section describes in vivo corrosion behavior of absorbable metals during implantation in animals.
These studies confirm the influence of the in vivo condition, i.e., fluid flow, on corrosion behavior of absorbable metals.
The effect of dynamical exposure on corrosion behavior of absorbable metals was studied in two recent works.
Over the past 5 years, several reports on the continuous assessment of corrosion behavior of absorbable metals have been published.
Thus, studies leading to a better understanding of in vivo corrosion behavior of absorbable metals should become a focus of the future works.
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Among the top remaining challenges in absorbable metals research is correlating the in vivo corrosion of absorbable metals with the in vitro corrosion and with the structure and processing of materials.
It provides guidance to appropriately characterize and evaluate the chemical, physical, microstructural, and mechanical properties of absorbable metals, including inspection guidelines for wrought and cast metals.
Open image in new window Fig. 1 Illustration of the ideal compromise between mechanics and corrosion of absorbable metals for coronary stent application.
Once all these standards become active, they will certainly facilitate a rapid translation of absorbable metals technology toward both their clinical use and commercialization.
In recent years, there have been many media highlights on the emerging new medical technology based on the use of absorbable metals.
The available in vitro corrosion data of absorbable metals could not be directly compared, as the test condition varies from one report to another.
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