Spacek Miroslav, Chlup Hynek, Mitas Petr, Vesely Jan, Lambert Lukas, Mlcek Mikulas, Krajicek Milan, Lindner Jaroslav, Grus Tomas
Charles University and General University Hospital in Prague, First Faculty of Medicine, 2nd Department of Surgery - Department of Cardiovascular Surgery, Prague, Czech Republic.
Czech Technical University in Prague, Faculty of Mechanical Engineering, Department of Mechanics, Biomechanics and Mechatronics, Prague, Czech Republic.
J Appl Biomed. 2019 Mar;17(1):52. doi: 10.32725/jab.2019.002. Epub 2019 Jan 24.
The aim of this study was to develop a prototype of an artificial blood vessel which has similar mechanical properties to a human saphenous vein graft and to experimentally verify the function of the prosthesis via ovine carotid bypass implantation.
The prototype of an artificial graft prosthesis for low flow was developed and manufactured from a collagenous matrix and reinforcing polyester mesh. We compared the results of both the pressurisation and the mechanical stress evaluation tests of VSM with four types of hybrid vascular graft. The most similar graft (type II) was chosen for the first ovine model implantation.
Dominant behavior e.g. mechanical response of VSM graft in plots of circumferential and axial stress during loading is observed in circumferential direction. Average results of used VSM showed area of ideal mechanical response and the properties of artificial blood vessels were fitted into this area. Developed graft remained patent after 161 days of follow up in ovine model.
The mechanical properties of the graft were designed and adjusted to be similar to the behaviour of human saphenous veins. This approach showed promising results and enhanced the final performance of the prosthesis.
本研究的目的是开发一种人工血管原型,使其具有与人体大隐静脉移植物相似的机械性能,并通过羊颈动脉搭桥植入实验验证该假体的功能。
开发并制造了一种用于低流量的人工移植假体原型,其由胶原基质和增强聚酯网制成。我们将VSM的加压和机械应力评估测试结果与四种类型的混合血管移植物进行了比较。选择最相似的移植物(II型)用于首次羊模型植入。
在加载过程中,在圆周方向观察到VSM移植物在圆周和轴向应力图中的主要行为,例如机械响应。所用VSM的平均结果显示出理想机械响应区域,人工血管的性能被拟合到该区域。在羊模型中随访161天后,所开发的移植物仍保持通畅。
移植物的机械性能被设计和调整为与人体大隐静脉的行为相似。这种方法显示出有希望的结果,并提高了假体的最终性能。