Effects of Removing the Adventitia on the Mechanical Properties of Ovine Femoral Arteries In Vivo and In Vitro
スポンサーリンク
概要
- 論文の詳細を見る
Background: The aims were to characterize in muscular arteries (a) the passive and active effects of the adventitia on vessel biomechanical properties and conduit function (CF), and (b) potential differences between the adventitial role in elastic and muscular arteries. Methods and Results: Ovine femoral arteries were studied in vivo and in vitro (reduced smooth muscle-tone) in a circulation mock-up during hemodynamic conditions similar to those found in vivo. Pressure and diameter were assessed before and after removing the adventitia. The arterial compliance, distensibility, stiffness β-index and CF were quantified. Results were compared with those obtained in brachiocephalic trunks. In vivo, after removing the adventitia there was a nonsignificant diameter reduction and an increase in stiffness (P<0.05). The CF decreased in the early recordings (P<0.02). In vitro, there were no biomechanical changes but vascular dilatation after the adventitia removal. Biomechanical changes associated with the adventitia removal were higher in muscular arteries, whereas diameter changes were major in elastic vessels. Conclusions: After removing the adventitia, (a) the arterial stiffness and CF were modified in vivo only, suggesting the changes could be ascribed to variations in smooth muscle tone, and (b) changes in elastic and muscular arteries were quantitatively different.
著者
-
Fischer Edmundo
Favaloro University
-
Santana Daniel
Physiology Department, School of Medicine, Republic University
-
Zócalo Yanina
Physiology Department, School of Medicine, Republic University
-
Camus Juan
Favaloro University
-
Forteza Eduardo
Favaloro University
-
Armentano Ricardo
Favaloro University
-
DE FORTEZA
Favaloro University
関連論文
- Effects of Removing the Adventitia on the Mechanical Properties of Ovine Femoral Arteries In Vivo and In Vitro
- Effects of Removing the Adventitia on the Mechanical Properties of Ovine Femoral Arteries In Vivo and In Vitro