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首页> 外文期刊>Okajimas folia anatomica japonica >Acrylic resin injection method for blood vessel investigations
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Acrylic resin injection method for blood vessel investigations

机译:用于血管检查的丙烯酸树脂注射方法

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The injection of acrylic resin into vessels is an excellent method for macroscopically and microscopically observing their three-dimensional features. Conventional methods can be enhanced by removal of the polymerization inhibitor (hydroquinone) without requiring distillation, a consistent viscosity of polymerized resin, and a constant injection pressure and speed. As microvascular corrosion cast specimens are influenced by viscosity, pressure, and speed changes, injection into different specimens yields varying results. We devised a method to reduce those problems. Sodium hydroxide was used to remove hydroquinone from commercial methylmethacrylate. The solid polymer and the liquid monomer were mixed using a 1 : 9 ratio (low-viscosity acrylic resin, 9.07 ± 0.52 mPa?s) or a 3:7 ratio (high-viscosity resin, 1036.33 ± 144.02 mPa?s). To polymerize the acrylic resin for injection, a polymerization promoter (1.0% benzoyl peroxide) was mixed with a polymerization initiator (0.5%, N, N-dimethylaniline). The acrylic resins were injected using a precise syringe pump, with a 5-mL/min injection speed and 11.17 ± 1.60 mPa injection pressure (low-viscosity resin) and a 1-mL/min injection speed and 58.50 ± 5.75 mPa injection pressure (high-viscosity resin). Using the aforementioned conditions, scanning electron microscopy indicated that sufficient resin could be injected into the capillaries of the microvascular corrosion cast specimens.
机译:将丙烯酸树脂注入容器中是从宏观和微观上观察其三维特征的绝佳方法。通过去除聚合抑制剂(氢醌)而不需要蒸馏,恒定聚合树脂粘度以及恒定注射压力和速度,可以增强常规方法。由于微血管腐蚀铸件受到粘度,压力和速度变化的影响,因此注入不同的试样会产生不同的结果。我们设计了一种方法来减少这些问题。使用氢氧化钠从市售的甲基丙烯酸甲酯中除去对苯二酚。固体聚合物和液体单体以1∶9的比例(低粘度丙烯酸树脂,9.07±0.52mPa·s)或3∶7的比例(高粘度树脂,1036.33±144.02mPa·s)混合。为了聚合用于注射的丙烯酸树脂,将聚合促进剂(1.0%过氧化苯甲酰)与聚合引发剂(0.5%,N,N-二甲基苯胺)混合。使用精密注射泵以5 mL / min的注射速度和11.17±1.60 mPa的注射压力(低粘度树脂)和1mL / min的注射速度和58.50±5.75 mPa的注射压力(丙烯酸)注射丙烯酸树脂。高粘度树脂)。在上述条件下,扫描电子显微镜表明可以将足够的树脂注入微血管腐蚀铸件的毛细管中。

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