3D Printed Organ Models for Surgical Applications.

3D Printed Organ Models for Surgical Applications.
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DOI:
10.1146/annurev-anchem-061417-125935
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发表时间:
2018-06-12
期刊:
Annual review of analytical chemistry (Palo Alto, Calif.)
影响因子:
--
通讯作者:
McAlpine MC
McAlpine MC
中科院分区:
其他
文献类型:
--
作者:
Qiu K;Haghiashtiani G;McAlpine MC

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医疗差错是临床实践中的一个主要问题,这表明需要先进的手术辅助设备进行术前计划和排练。传统上,CT和MRI扫描以及3D可视化技术已被用作手术规划的主要工具。虽然有效,但如果可以开发额外的辅助设备并将其用于涉及不寻常的解剖异常的特别复杂的手术中,则将是有用的,所述不寻常的解剖异常可以受益于提供空间感、解剖准确性和触觉反馈的有形物体。3D打印技术的最新进展促进了患者特定器官模型的创建,目的是为术前规划,排练和时空映射提供有效的解决方案。在这里,我们回顾了3D打印的最新技术,患者特定的器官模型,重点是3D打印材料系统,集成功能及其相应的外科应用和影响。之前的限制,目前的进展,并在这一重要领域的未来前景也进行了广泛的讨论。
Medical errors are a major concern in clinical practice, suggesting the need for advanced surgical aids for preoperative planning and rehearsal. Conventionally, CT and MRI scans, as well as 3D visualization techniques, have been utilized as the primary tools for surgical planning. While effective, it would be useful if additional aids could be developed and utilized in particularly complex procedures involving unusual anatomical abnormalities that could benefit from tangible objects providing spatial sense, anatomical accuracy, and tactile feedback. Recent advancements in 3D printing technologies have facilitated the creation of patient-specific organ models with the purpose of providing an effective solution for preoperative planning, rehearsal, and spatiotemporal mapping. Here, we review the state-of-the-art in 3D printed, patient-specific organ models with an emphasis on 3D printing material systems, integrated functionalities, and their corresponding surgical applications and implications. Prior limitations, current progress, and future perspectives in this important area are also broadly discussed.
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