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从二维图像中解读三维结构:基于网络的交互式外科肝脏解剖 3D 教学模型。

Interpreting three-dimensional structures from two-dimensional images: a web-based interactive 3D teaching model of surgical liver anatomy.

机构信息

Department of Anaesthesia, Perioperative Interactive Education, Toronto General Hospital, Toronto, ON, Canada.

出版信息

HPB (Oxford). 2009 Sep;11(6):523-8. doi: 10.1111/j.1477-2574.2009.00097.x.

Abstract

BACKGROUND

Given the increasing number of indications for liver surgery and the growing complexity of operations, many trainees in surgical, imaging and related subspecialties require a good working knowledge of the complex intrahepatic anatomy. Computed tomography (CT), the most commonly used liver imaging modality, enhances our understanding of liver anatomy, but comprises a two-dimensional (2D) representation of a complex 3D organ. It is challenging for trainees to acquire the necessary skills for converting these 2D images into 3D mental reconstructions because learning opportunities are limited and internal hepatic anatomy is complicated, asymmetrical and variable. We have created a website that uses interactive 3D models of the liver to assist trainees in understanding the complex spatial anatomy of the liver and to help them create a 3D mental interpretation of this anatomy when viewing CT scans.

METHODS

Computed tomography scans were imported into DICOM imaging software (OsiriX) to obtain 3D surface renderings of the liver and its internal structures. Using these 3D renderings as a reference, 3D models of the liver surface and the intrahepatic structures, portal veins, hepatic veins, hepatic arteries and the biliary system were created using 3D modelling software (Cinema 4D).

RESULTS

Using current best practices for creating multimedia tools, a unique, freely available, online learning resource has been developed, entitled Visual Interactive Resource for Teaching, Understanding And Learning Liver Anatomy (VIRTUAL Liver) (http://pie.med.utoronto.ca/VLiver). This website uses interactive 3D models to provide trainees with a constructive resource for learning common liver anatomy and liver segmentation, and facilitates the development of the skills required to mentally reconstruct a 3D version of this anatomy from 2D CT scans.

DISCUSSION

Although the intended audience for VIRTUAL Liver consists of residents in various medical and surgical specialties, the website will also be useful for other health care professionals (i.e. radiologists, nurses, hepatologists, radiation oncologists, family doctors) and educators because it provides a comprehensive resource for teaching liver anatomy.

摘要

背景

鉴于肝外科适应证的不断增加和手术难度的不断提高,许多外科、影像及相关专业的学员都需要深入了解肝脏的复杂解剖结构。CT 是最常用的肝脏影像学检查方法,它可以增强我们对肝脏解剖结构的理解,但它只是对复杂的 3D 器官的二维(2D)呈现。对于学员来说,将这些 2D 图像转换为 3D 思维重建是具有挑战性的,因为学习机会有限,而内部肝脏解剖结构复杂、不对称且多变。我们创建了一个网站,该网站使用肝脏的交互式 3D 模型来帮助学员理解肝脏的复杂空间解剖结构,并帮助他们在查看 CT 扫描时对该解剖结构进行 3D 心理解读。

方法

将 CT 扫描导入 DICOM 成像软件(OsiriX),以获得肝脏及其内部结构的 3D 表面渲染。使用这些 3D 渲染作为参考,使用 3D 建模软件(Cinema 4D)创建肝脏表面和肝内结构、门静脉、肝静脉、肝动脉和胆道系统的 3D 模型。

结果

使用当前创建多媒体工具的最佳实践,开发了一个独特的、免费的在线学习资源,名为用于教授、理解和学习肝脏解剖结构的可视化交互式资源(VIRTUAL Liver)(http://pie.med.utoronto.ca/VLiver)。该网站使用交互式 3D 模型为学员提供了一个学习常见肝脏解剖结构和肝脏分段的建设性资源,并促进了从 2D CT 扫描中对该解剖结构的 3D 心理重建所需技能的发展。

讨论

尽管 VIRTUAL Liver 的目标受众是各个医学和外科专业的住院医师,但该网站也将对其他医疗保健专业人员(即放射科医生、护士、肝病专家、放射肿瘤学家、家庭医生)和教育工作者有用,因为它为教授肝脏解剖结构提供了一个全面的资源。

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