The Influence of Weaving Technologies on the Integral Characteristics of Synthetic Vascular Prostheses.

IF 1.1 Q4 MEDICINE, RESEARCH & EXPERIMENTAL
А А Shadanov, Т P Timchenko, S V Vladimirov, P E Lushchyk, А V Zablotsky, S О Kiselyov, I Yu Zhuravleva, D А Sirota, А M Chernyavskiy
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Abstract

The aim of the study is to determine physical and structural properties of woven synthetic prostheses depending on the type of the weave. Materials and Methods Ten vascular prostheses manufactured at the Science and Technology Park of the BNTU “Polytechnic” (Minsk, Republic of Belarus) have been analyzed. The prostheses differed in the type of weaving, duration and temperature of thermal fixation during crimping. Three samples had a single-layer structure and 7 samples had a double-layer structure. Tests for water permeability, resistance to radial bending, and porosity of the prostheses have been performed. Results The single-layer woven prostheses have demonstrated a low level of water permeability: the best result was shown by sample No.1: 80 [77.1; 80.5] ml/min/cm2. A strong direct correlation was revealed for these prostheses: the larger the pore diameter, the greater permeability (r=0.778; p=0.05). The single-layer woven prostheses appeared to be most resistant to radial bending, samples No.1 and 3 had no deformations at the minimum radius of the cylinder (r<4 mm), sample No.2 showed deformation on the cylinder with r=5 mm. For the single-layer prostheses, a strong negative correlation was noted (r=‒0.97; p=0.04) between the density of the warp threads and the kinking radius. All double-layer prostheses have demonstrated higher water permeability and weak resistance to deformation during radial bending. Samples No.4 and 8 were found to have minimum and maximum water permeability of 276.5 [258.3; 288.4] and 538.8 [533.3; 564.3] ml/min/cm2, respectively. The minimum kinking radius (7 mm) was shown by samples No.9 and 10. The worst results were demonstrated by sample No.6, which was deformed with minimal bending. Conclusion Samples with ordinary plain weave have a low level of water permeability and high resistance to radial deformation, which makes them look most promising for the application in vascular surgery.

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编织工艺对合成血管假体整体特性的影响。
该研究的目的是根据编织类型确定编织合成假体的物理和结构特性。材料和方法:对在白俄罗斯共和国明斯克北师大理工大学科技园制造的10个血管假体进行了分析。两种假体在编织类型、热固定时间和卷曲温度上存在差异。3个样品为单层结构,7个样品为双层结构。对假体的透水性、抗径向弯曲和孔隙率进行了测试。结果:单层编织假体具有较低的透水性,样品1:80 [77.1;80.5毫升/分钟/ cm2。这两种假体具有很强的直接相关性:孔径越大,渗透性越大(r=0.778;p = 0.05)。单层编织假体对径向弯曲的抵抗能力最强,试件1和试件3在最小圆柱体半径r2处均无变形。9号和10号样品显示了最小扭结半径(7mm)。6号试样的弯曲变形最小,结果最差。结论:普通平纹织物具有透水性低、抗径向变形能力强的特点,在血管外科手术中应用前景广阔。
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来源期刊
Sovremennye Tehnologii v Medicine
Sovremennye Tehnologii v Medicine MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
1.80
自引率
0.00%
发文量
38
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