Utilizing Additive Manufacturing to Produce Organ Mimics and Imaging Phantoms

Surgeries Pub Date : 2023-02-02 DOI:10.3390/surgeries4010008
Dmitri Karaman, S. Willerth
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引用次数: 0

Abstract

The complex geometries and material properties necessary for generating accurate organ mimics require new procedures and methods to fully utilize current technologies. The increased accessibility of 3D printers, along with more specialized bioprinters, allow the creation of highly tunable models of various body parts. Three-dimensional printing can reduce lead-time on custom parts, produce structures based on imaging data in patients, and generate a test bench for novel surgical methods. This technical note will cover three unique case studes and offer insights for how 3D printing can be used for lab research. Each case follows a unique design process in comparison to traditional manufacturing workflows as they required significantly more iterative design. The strengths of different printing technologies, design choices, and structural/chemical requirements all influence the design process. Utilization of in-house manufacturing allows for greater flexibility and lower lead-times for novel research applications. Detailed discussions of these design processes will help reduce some of the major barriers to entry for these technologies and provide options for researchers working in the field.
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利用增材制造制造器官模拟和成像幻影
复杂的几何形状和材料特性需要产生精确的器官模拟需要新的程序和方法来充分利用现有的技术。随着3D打印机的普及,以及更专业的生物打印机,可以创建各种身体部位的高度可调模型。三维打印可以缩短定制零件的交货时间,根据患者的成像数据生产结构,并为新手术方法生成试验台。本技术说明将涵盖三个独特的案例研究,并提供如何将3D打印用于实验室研究的见解。与传统的制造工作流程相比,每个案例都遵循独特的设计过程,因为它们需要更多的迭代设计。不同印刷技术的优势、设计选择和结构/化学要求都会影响设计过程。利用内部制造可以为新颖的研究应用提供更大的灵活性和更短的交货时间。对这些设计过程的详细讨论将有助于减少进入这些技术的一些主要障碍,并为在该领域工作的研究人员提供选择。
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CiteScore
0.80
自引率
0.00%
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0
审稿时长
11 weeks
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