Viscoelastic memory and self-expansion of self-reinforced bioabsorbable stents

The possibility to decide the speed and rate of expansion of stents is of great clinical importance by reason of the varying requirements for different indications to use stents. Self-reinforced bioabsorbable stents can be made self-expanding owing to the viscoelastic memory of the material. Stents...

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Veröffentlicht in:Biomaterials 2002-09, Vol.23 (17), p.3575-3582
Hauptverfasser: Välimaa, T, Laaksovirta, S, Tammela, T.L.J, Laippala, P, Talja, M, Isotalo, T, Pétas, A, Taari, K, Törmälä, P
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Sprache:eng
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Zusammenfassung:The possibility to decide the speed and rate of expansion of stents is of great clinical importance by reason of the varying requirements for different indications to use stents. Self-reinforced bioabsorbable stents can be made self-expanding owing to the viscoelastic memory of the material. Stents are stable at room temperature and expansion occurs at body temperature. The level at which the expansion stops depends on the material, crystallinity, initial diameter of spiral and annealing temperature. The expansion rate can be estimated by logarithmic equation, if material, draw ratio and diameter of stent wire are constant. This is, however, possible only if processing parameters are constant. Based on the present results annealing temperature and expansion time were seen to be directly proportional to the expansion rate of the stent.
ISSN:0142-9612
1878-5905
DOI:10.1016/S0142-9612(02)00076-5