首页> 外文会议>ASME international mechanical engineering congress and exposition >DEVELOPMENT OF 3-D PRINTED OPTICALLY CLEAR RIGID ANATOMICAL VESSELS FOR PARTICLE IMAGE VELOCIMETRY ANALYSIS IN CARDIOVASCULAR FLOW
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DEVELOPMENT OF 3-D PRINTED OPTICALLY CLEAR RIGID ANATOMICAL VESSELS FOR PARTICLE IMAGE VELOCIMETRY ANALYSIS IN CARDIOVASCULAR FLOW

机译:3D印刷光学透明刚性解剖血管在心血管流中的颗粒图像测速分析中的应用

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In recent years, blood flow analysis of diseased arterial mock vessels using particle image velocimetry (PIV) has been hampered by the inability to fabricate optically clear anatomical vessel models that realistically replicate the complex morphology of arterial vessels and provide highly resolved flow images of flow tracer particles. The aim of the present work is to introduce an approach for producing optically clear rigid anatomical models that are suitable for PIV analysis using a common 3-D SLA inkjet printing process (using a Formlabs Form 2 3-D printer) and stock clear resin (RS-F2-GPCL-04). By matching the index of refraction (IOR) of the working fluid to the stock clear resin material, and by printing the part in a 45-degree print orientation, a clear anatomical model that allows clear visualization of flow tracer particles can be produced which yields highly resolved flow images for PIV analyses. However, a 45-degree print orientation increases the need for post processing due to an increased amount of printed support material. During post processing, the part must be wet sanded in several steps and surface finished with Novus Plastic Polish 3 Step System to achieve the final surface finish needed to yield high quality flow images. The fabrication methodology of the clear anatomical models is described in detail.
机译:近年来,使用粒子图像测速仪(PIV)对病变的模拟血管的血流进行了分析,原因是无法制作光学上清晰的解剖模型,无法真实地复制复杂的动脉形态并提供高分辨率的血流示踪剂流动图像粒子。本工作的目的是介绍一种使用普通的3-D SLA喷墨打印工艺(使用Formlabs Form 2 3-D打印机)和库存透明树脂(适用于PIV分析)生成光学透明的刚性解剖模型的方法。 RS-F2-GPCL-04)。通过使工作流体的折射率(IOR)与原料透明树脂材料匹配,并以45度的印刷方向进行印刷,可以生产出清晰的解剖模型,从而可以清晰地看到流动示踪剂颗粒,从而产生用于PIV分析的高度解析的流量图像。然而,由于增加了印刷支撑材料的量,所以45度的印刷取向增加了对后处理的需求。在后期处理过程中,零件必须分几步进行湿式打磨,并使用Novus Plastic Polish 3步骤系统进行表面处理,以达到产生高质量流动图像所需的最终表面处理。详细描述了清晰的解剖模型的制造方法。

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