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首页> 外文期刊>Journal of vascular and interventional radiology: JVIR >Creation of fibrinogen-enhanced experimental blood clots to evaluate mechanical thrombectomy devices for treatment of acute stroke: An in vitro study
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Creation of fibrinogen-enhanced experimental blood clots to evaluate mechanical thrombectomy devices for treatment of acute stroke: An in vitro study

机译:建立纤维蛋白原增强的实验性血凝块,以评估用于急性卒中的机械血栓切除术设备:一项体外研究

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Purpose: To explore if addition of fibrinogen to the most commonly used experimental blood clot (EBC) model would improve its mechanical properties and histologic structure. Materials and Methods: Fresh blood from three swine was used to create four EBC types. The Gralla model of thrombin-induced barium-opaque EBC served as the control. In three other EBC types, 50 mg, 100 mg, and 200 mg of bovine fibrinogen were added. Evaluation of EBCs was done with three tests: manual elongation, injection through an 8-F catheter, and an opacity test. Thirty EBCs of each type were evaluated with each test. Histologic evaluation followed. Results: The control EBCs had low tensile strength and broke at 165% elongation. However, they were elastic and returned to their original length after catheter injection. The EBCs with fibrinogen exhibited increased tensile strength with increasing fibrinogen doses and withstood elongation to 213% (P <.01). Their elasticity decreased with increased tensile strength, and they remained elongated after catheter injection (P <.01 for EBC with 100 mg and 200 mg fibrinogen). Histologic examination showed more thorough mixing of blood with barium and a significantly increased amount of fibrin after addition of fibrinogen. Conclusions: Addition of fibrinogen to a Gralla EBC model changes its mechanical properties proportionately to the fibrinogen dose. Fibrinogen increases EBC tensile strength but decreases its elasticity. Fibrinogen also significantly increases the binding of blood cells with fibrin on histologic slides.
机译:目的:探讨向最常用的实验性血凝块(EBC)模型中添加纤维蛋白原是否会改善其机械性能和组织学结构。材料和方法:使用来自三只猪的新鲜血液来创建四种EBC类型。凝血酶诱导的不透明钡EBC的Gralla模型作为对照。在其他三种EBC类型中,添加了50 mg,100 mg和200 mg牛纤维蛋白原。对EBC的评估通过三项测试完成:手动伸长,通过8-F导管注射以及不透明度测试。每种测试评估了每种类型的30种EBC。随后进行组织学评估。结果:对照EBC的抗张强度低,断裂伸长率为165%。然而,它们是有弹性的,并在导管注射后恢复到原始长度。随着纤维蛋白原剂量的增加,具有纤维蛋白原的EBC表现出更高的抗张强度,并且经得住伸长率达到213%(P <.01)。它们的弹性随拉伸强度的增加而降低,并且在导管注射后仍保持伸长状态(对于100 mg和200 mg纤维蛋白原的EBC,P <.01)。组织学检查显示,血液与钡的混合更彻底,添加纤维蛋白原后血纤蛋白的量显着增加。结论:将纤维蛋白原添加到Gralla EBC模型中,其机械性能与纤维蛋白原剂量成比例地变化。纤维蛋白原可增加EBC的抗张强度,但会降低其弹性。纤维蛋白原还显着增加组织学切片上血细胞与纤维蛋白的结合。

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