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Development of a three-dimensional printed heart from computed tomography images of a plastinated specimen for learning anatomy

机译:从塑化标本的计算机断层扫描图像开发三维印刷心脏以学习解剖学

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摘要

Learning anatomy is commonly facilitated by use of cadavers, plastic models and more recently three-dimensional printed (3DP) anatomical models as they allow students to physically touch and hold the body segments. However, most existing models are limited to surface features of the specimen, with little opportunity to manipulate the structures. There is much interest in developing better 3DP models suitable for anatomy education. This study aims to determine the feasibility of developing a multi-material 3DP heart model, and to evaluate students' perceptions of the model. Semi-automated segmentation was performed on computed tomgoraphy plastinated heart images to develop its 3D digital heart model. Material jetting was used as part of the 3D printing process so that various colors and textures could be assigned to the individual segments of the model. Morphometric analysis was conducted to quantify the differences between the printed model and the plastinated heart. Medical students' opinions were sought using a 5-point Likert scale. The 3DP full heart was anatomically accurate, pliable and compressible to touch. The major vessels of the heart were color-coded for easy recognition. Morphometric analysis of the printed model was comparable with the plastinated heart. Students were positive about the quality of the model and the majority of them reported that the model was useful for their learning and that they would recommend their use for anatomical education. The successful feasibility study and students' positive views suggest that the development of multi-material 3DP models is promising for medical education.
机译:通常,通过使用尸体,塑料模型以及最近的三维打印(3DP)解剖模型来促进学习解剖,因为它们允许学生身体接触并保持身体的各个部分。但是,大多数现有模型仅限于样本的表面特征,几乎没有机会操纵结构。开发适合解剖学教育的更好的3DP模型引起了很多兴趣。这项研究旨在确定开发多材料3DP心脏模型的可行性,并评估学生对该模型的看法。在计算机断层扫描塑化的心脏图像上执行半自动分割,以开发其3D数字心脏模型。材料喷射被用作3D打印过程的一部分,因此可以将各种颜色和纹理分配给模型的各个部分。进行形态计量分析以量化打印的模型和塑化的心脏之间的差异。使用5点Likert量表来寻求医学生的意见。 3DP全心在解剖学上是准确的,柔软且可压缩的。心脏的主要血管采用颜色编码,以便于识别。印刷模型的形态分析与可塑心脏相当。学生对该模型的质量持肯定态度,大多数人报告该模型对他们的学习很有用,并建议将其用于解剖学教育。成功的可行性研究和学生的积极看法表明,多材料3DP模型的开发对于医学教育很有前途。

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