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三维打印模型制作及在先天性心脏病胎儿或正常心脏胎儿中的有效性评估。

Three-Dimensional Printed Model Fabrication and Effectiveness Evaluation in Fetuses With Congenital Heart Disease or With a Normal Heart.

机构信息

Ultrasonography Center of Obstetrics and Gynecology, Renmin Hospital of Wuhan University, Wuhan, China.

Department of Ultrasound Imaging, Renmin Hospital of Wuhan University, Wuhan, China.

出版信息

J Ultrasound Med. 2021 Jan;40(1):15-28. doi: 10.1002/jum.15366. Epub 2020 Jun 20.

Abstract

OBJECTIVES

The purpose of this study was to investigate the technical feasibility and accuracy of applying 3-dimensional (3D) printing of normal and abnormal fetal hearts based on spatiotemporal image correlation (STIC) volume-rendered data.

METHODS

Spatiotemporal image correlation volume images of 15 healthy fetuses and 15 fetuses with cardiac abnormalities were collected, and Mimics software (Materialise NV, Leuven, Belgium) was used to postprocess the volume data to obtain a 3D digital model of fetal heart and large blood vessel morphologic characteristics and to output the file to a 3D printer for printing the 3D model of the fetal heart and large blood vessels. The effect accuracy of the 3D printed model was qualitatively evaluated by showing the 3D anatomic structure of the model combined with echocardiographic or autopsy results, and the dimensional accuracy of the 3D printed model was quantitatively evaluated by comparing the measured data of the model and echocardiography.

RESULTS

In all 30 fetuses, STIC volume data of the fetal heart were successfully reprocessed and printed out, which could visually display the morphologic characteristics of the fetal heart chamber and passage of the great vessels under normal and abnormal pathologic conditions. No significant differences in all of the heart size parameters were found between the 3D digital model, 3D printed model, and routine echocardiographic images (all P > .05). Moreover, the size parameters were concordant well between the methods, and all of the data points fell within the limits of agreement.

CONCLUSIONS

It is feasible to 3D print the fetal heart using STIC volumetric images as the data source, and the 3D printed model can fully and accurately display abnormal anatomic structures of the heart.

摘要

目的

本研究旨在探讨基于时空关联成像(STIC)容积渲染数据的正常和异常胎儿心脏的 3 维(3D)打印技术的可行性和准确性。

方法

收集 15 例正常胎儿和 15 例心脏畸形胎儿的 STIC 容积图像,应用 Mimics 软件(比利时 Materialise NV 公司)对容积数据进行后处理,获得胎儿心脏及大血管形态特征的 3D 数字模型,并将文件输出到 3D 打印机以打印胎儿心脏及大血管的 3D 模型。通过结合心脏超声或尸检结果展示模型的 3D 解剖结构,定性评估 3D 打印模型的效果准确性;通过比较模型和心脏超声的测量数据,定量评估 3D 打印模型的尺寸准确性。

结果

在所有 30 例胎儿中,均成功地对胎儿心脏的 STIC 容积数据进行了重新处理和打印,能够直观地显示正常和异常病理条件下的胎儿心脏腔室和大血管通道的形态特征。3D 数字模型、3D 打印模型和常规心脏超声图像之间的所有心脏大小参数均无显著差异(均 P>.05)。此外,这些方法之间的大小参数具有很好的一致性,所有数据点均落在一致性界限内。

结论

使用 STIC 容积图像作为数据源进行胎儿心脏 3D 打印是可行的,3D 打印模型可以充分准确地显示心脏的异常解剖结构。

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