首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >CONTROL OF WALL THICKNESS OF BLOOD VESSEL BIOMODEL MADE OF POLY (VINYL ALCOHOL) HYDROGEL BY A THREE-DIMENSIONAL-ROTATING SPIN DIP-COATING METHOD
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CONTROL OF WALL THICKNESS OF BLOOD VESSEL BIOMODEL MADE OF POLY (VINYL ALCOHOL) HYDROGEL BY A THREE-DIMENSIONAL-ROTATING SPIN DIP-COATING METHOD

机译:通过三维旋转旋转涂布法控制由聚(乙烯醇)水凝胶制成的血管生物偶像的壁厚

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To control the thickness of a PVA-H biomodel of human arteries and veins (150 to 800 μm in thickness), a three-dimensional-rotating spin dip-coating apparatus was fabricated. A straight aluminum cylinder (Ra = 0.16 μm) was employed as substrate. Spin dip-coating was carried out in a cooling chamber at 10°C for 1 hour, and then the substrate was quenched at -30°C for gelation of PVA. The thickness of the deposited PVA-H was measured by using a confocal laser displacement meter. Under the experimental conditions employed, PVA-H with a thickness over 30 μm was obtained. The thickness linearly increased with repeated dippings. The thickness of PVA-H depends on the dipping withdrawal speed, the viscosity of the PVA solution, and the diameter of the substrate. Furthermore, the thickness of PVA-H was found to be almost the same when the viscosity of the PVA solution was constant, regardless of the concentrations of PVA. These results indicate that a tube-shaped PVA-H biomodel with desired thickness and physical properties can be obtained by using a spin dip-coating technique and that PVA-H can mimic the wall thickness of various arteries and veins.
机译:为了控制人动脉和静脉(厚度为150至800μm)的PVA-H生物偶像的厚度,制造了三维旋转的自旋浸涂装置。直铝圆筒(RA =0.16μm)用作底物。在10℃下在冷却室中在冷却室中进行旋涂涂层1小时,然后在-30℃下淬灭基材以凝胶化PVA。通过使用共聚焦激光位移计测量沉积的PVA-H的厚度。在所用的实验条件下,获得厚度超过30μm的PVA-H。用重复的浸渍线性地增加厚度。 PVA-H的厚度取决于浸渍抽取速度,PVA溶液的粘度和基材的直径。此外,当PVA溶液的粘度恒定时,发现PVA-H的厚度几乎相同,无论PVA的浓度如何。这些结果表明,通过使用旋浸涂覆技术可以获得具有所需厚度和物理性质的管状PVA-H生物偶据,并且PVA-H可以模拟各个动脉和静脉的壁厚。

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