Refinement of the rat crush-avulsion femoral artery injury model

A model for studying arterial crush‐avulsion injuries in the rat is described. The model uses a standardized crush of ∼0.3 joules and a standardized avulsion. The crush is accomplished by gravity acceleration of a 400 g weight over a distance of 7.5 cm. The weight impacts an anvil over the artery di...

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Veröffentlicht in:Microsurgery 1993, Vol.14 (2), p.130-134
Hauptverfasser: Rooks, Michael D., Rodriquez, Jorge, McNaughton, Mark, Turnidge, Kip, Zusmanis, Kathy, Hutton, William
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Sprache:eng
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Zusammenfassung:A model for studying arterial crush‐avulsion injuries in the rat is described. The model uses a standardized crush of ∼0.3 joules and a standardized avulsion. The crush is accomplished by gravity acceleration of a 400 g weight over a distance of 7.5 cm. The weight impacts an anvil over the artery distributing the force of the impact over a 10 mm length of the vessel. The avulsion is accomplished by a hemostat attached to a second, 120g weight. Vascular stasis for 90 sec after vessel repair in a 175–225 g rat will consistently result in an 80% anastomotic failure. The model allows evaluation of anticoagulant effects singly or in combination. Agents may be given either systemically by intravenous route or locally by intraarterial route. © 1993 Wiley‐Liss Inc.
ISSN:0738-1085
1098-2752
DOI:10.1002/micr.1920140209