García Páez José María, Carrera Antonio, Jorge Eduardo, Millán Isabel, Cordón Angeles, Maestro María A, Rocha Aurora, Morales S, Castillo-Olivares José Luis
Servicio de Cirugía Experimental, Clínica Puerta de Hierro, Madrid, Spain.
J Biomed Mater Res B Appl Biomater. 2006 Nov;79(2):229-35. doi: 10.1002/jbm.b.30533.
The durability of prosthetic heart valve leaflets made of biological materials is limited. A tear in the biomaterial accelerates their early failure, but microtearing of the collagen fibers may be responsible for their medium-term failure. We studied the force necessary to propagate tearing in two biomaterials: ostrich and calf pericardium. One hundred twenty samples of each tissue were tested in an Elmendorf pendulum capable of measuring the force required to tear a tissue in which a predefined slit had been made. The forces required to produce tears, ranging between 2.5 and 0.25 cm in length, were determined. For ostrich pericardium, this force ranged between 67.67 and 4.80 newton, while that required to tear the same lengths of calf pericardium ranged between 70.67 and 4.70 newton. The function that relates the tearing force to the length of the tear was expressed as follows: y = 20.62x + 1.77x(2) (R(2) = 0.923) for ostrich pericardium and y = 45.57x - 7.21x(2) (R(2) = 0.936) for calf pericardium, where y is the force in newton and x is the length in centimeter. Calf pericardium was found to have a greater resistance to tearing. However, these results should be interpreted with caution owing to the fact that the thickness of the majority of the samples of ostrich pericardium was significantly less than that of calf pericardium. A more careful selection and utilization of adult ostrich pericardium would probably improve these results.
由生物材料制成的人工心脏瓣膜小叶的耐久性是有限的。生物材料中的撕裂会加速其早期失效,但胶原纤维的微撕裂可能是导致其中期失效的原因。我们研究了在两种生物材料(鸵鸟心包和小牛心包)中引发撕裂所需的力。每种组织的120个样本在埃尔门多夫摆锤中进行测试,该摆锤能够测量撕裂带有预定义切口的组织所需的力。确定了产生长度在2.5至0.25厘米之间的撕裂所需的力。对于鸵鸟心包,该力在67.67至4.80牛顿之间,而撕裂相同长度的小牛心包所需的力在70.67至4.70牛顿之间。将撕裂力与撕裂长度相关联的函数表达式如下:对于鸵鸟心包,y = 20.62x + 1.77x²(R² = 0.923);对于小牛心包,y = 45.57x - 7.21x²(R² = 0.936),其中y是以牛顿为单位的力,x是以厘米为单位的长度。发现小牛心包对撕裂具有更大的抵抗力。然而,由于大多数鸵鸟心包样本的厚度明显小于小牛心包,这些结果应谨慎解释。对成年鸵鸟心包进行更仔细的选择和利用可能会改善这些结果。