COMPARISON OF THE MECHANICAL PROPERTIES OF POLYGLYCOLIDE-TRIMETHYLENE CARBONATE (MAXON) AND POLYDIOXANONE SUTURES (PDS2) USED FOR FLEXOR TENDON REPAIR AND ACTIVE MOBILIZATION

Thirty-six canine flexor digitorum profundus tendons were repaired using 5-0 polyglycolide-trimethylene carbonate monofilament (Maxon) or polydioxanone monofilament (PDS2). All the tendons healed without rupture or formation of gaps of more than 2 mm. Mechanically, all tendon repairs had sufficient...

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Veröffentlicht in:Journal of hand surgery, British volume British volume, 2002-08, Vol.27 (4), p.329-332
Hauptverfasser: WADA, A, KUBOTA, H, TAKETA, M, MIURA, H, IWAMOTO, Y
Format: Artikel
Sprache:eng
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Zusammenfassung:Thirty-six canine flexor digitorum profundus tendons were repaired using 5-0 polyglycolide-trimethylene carbonate monofilament (Maxon) or polydioxanone monofilament (PDS2). All the tendons healed without rupture or formation of gaps of more than 2 mm. Mechanically, all tendon repairs had sufficient tensile strength to enable active mobilization. Polyglycolide-trimethylene carbonate (Maxon) repairs were initially superior in gap and ultimate strength to polydioxanone (PDS2) repairs. However, the gap and ultimate tensile strength of polyglycolide-trimethylene carbonate (Maxon) repairs had decreased significantly at day 14, whereas polydioxanone (PDS2) repairs maintained their strength throughout the 28-day observation period.
ISSN:0266-7681
1532-2211
DOI:10.1054/jhsb.2002.0767