| Literature DB >> 8950647 |
G S Schajer1, S I Green, A P Davis, Y N Hsiang.
Abstract
This study illustrates how the highly nonlinear elastic behavior of artery wall material can cause unusual structural characteristics that do not occur with a linear-elastic material. An example mathematical model of an end-to-end anastomosis successfully predicts the experimentally observed area of elevated elastic compliance, called the "Para-anastomotic Hypercompliant Zone" (PHZ). The elastic hypercompliance is shown to occur because the anastomosis locally restricts the arterial diameter, thus forcing the adjacent material to remain in a lower strain, and correspondingly a lower stiffness, part of its non-linear stress-strain curve. Elevated elastic compliance can be avoided by locally matching both the arterial diameter and the elastic compliance within the physiological pressure range.Mesh:
Substances:
Year: 1996 PMID: 8950647 DOI: 10.1115/1.2796030
Source DB: PubMed Journal: J Biomech Eng ISSN: 0148-0731 Impact factor: 2.097