...
首页> 外文期刊>Journal of digital imaging: the official journal of the Society for Computer Applications in Radiology >Imaging Properties of Additive Manufactured (3D Printed) Materials for Potential Use for Phantom Models
【24h】

Imaging Properties of Additive Manufactured (3D Printed) Materials for Potential Use for Phantom Models

机译:用于潜在使用的幻影模型的添加剂(3D印刷)材料的成像性能

获取原文
获取原文并翻译 | 示例
           

摘要

Over the last few decades, there has been growing interest in the application of additive manufacturing (AM) or 3D printing for medical research and clinical application. Imaging phantoms offer clear benefits in the way of training, planning, and quality assurance, but the model's availability per catalog tend to be suited for general testing purposes only. AM, on the contrary, offers flexibility to clinicians by enabling custom-built phantoms based on specific interests or even individual patient needs. This study aims to quantify the radiographic properties (ultrasound, magnetic resonance imaging, and computed tomography) of common additive manufacturing technologies and to discuss potential opportunities to fabricate imaging phantoms. Test phantoms were composed of samples from the three most common AM styles, namely PolyJet, fused deposition modeling (FDM), and stereolithography (SLA). Test imaging of the phantoms was performed on ultrasound, MRI, and CT and reviewed and evaluated with radiology software. The ultrasound images showed clearly defined upper and lower edges of the material but did not demonstrate distinct differences in internal echogenicity between materials. The MR scans revealed a distinct signal intensity difference between the model (17 grayscale value) and the printer support (778 grayscale value). Finally, the CT images showed a slight variation between the plastic (82 HU) and rubber (145 HU) materials. The radiographic properties of AM offer a clear opportunity to create basic two- or three-material phantoms. These would be high-accuracy and cost-effective models. Although the materials currently available are not suitable for complex multi-material applications as realistic as true human anatomy, one can easily foresee the development of new materials with broader density in the near future.
机译:在过去的几十年中,对医学研究和临床应用的应用制造(AM)或3D印刷的应用越来越感兴趣。成像幻像在培训,规划和质量保证方面提供了明显的好处,但该模型的可用性往往适用于一般测试目的。相反,AM通过基于特定兴趣或甚至个别患者需求来实现定制的幽灵,为临床医生提供灵活性。本研究旨在量化普通添加剂制造技术的射线照相特性(超声波,磁共振成像和计算机断层扫描),并讨论潜在的制造成像映像的机会。测试幽灵由来自三种最常见的AM风格的样品,即多角形,融合沉积建模(FDM)和立体光刻(SLA)组成。在超声,MRI和CT上进行幽灵的测试成像,并用放射学软件进行评估和评估。超声图像显示出明确限定的材料上下边缘,但没有表现出材料之间的内部回声的不同差异。 MR扫描显示模型(17灰度值)和打印机支持(778灰度值)之间的不同信号强度差异。最后,CT图像显示塑料(82UU)和橡胶(145UU)材料之间的微小变化。 AM的射线照相特性提供了一种明确的机会,可以创建基本的两种或三种物质幻影。这些将是高精度和成本效益的模型。虽然目前可用的材料不适合复杂的多材料应用作为真正的人类解剖结构,但是可以轻松预见在不久的将来具有更广泛密度的新材料的开发。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号