首页> 外文会议>Distributed Simulation and Real Time Applications, 2009. DS-RT '09 >MediVol: A Practical Initial Evaluation of Refined, 3D, Interactive Volumetric Representations of Soft Tissue Pathologies in Virtual Environments
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MediVol: A Practical Initial Evaluation of Refined, 3D, Interactive Volumetric Representations of Soft Tissue Pathologies in Virtual Environments

机译:MediVol:虚拟环境中软组织病理学的精细化,3D,交互式体积表示的实用初步评估

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Effective processing of source data matched to appropriate visualisation can greatly enhance the userȁ9;s ability to explore and comprehend complex information. While this is a fundamental problem for many domains, in medical applications it is particularly important. None-invasive scanning technologies, such as MRI, have greatly enhanced our ability to ȁ8;imageȁ9; the internal body, however the resultant visualisation is often difficult to comprehend due to both inadequacies in the scanning process and sub-optimal approaches to visualisation and data representation. These factors impose significant cognitive load on the user, requiring skill and experience to accurately comprehend detail and intense concentration, and in less experienced users, to understand the structures present. Our broader research aims to identify whether 3D representations of MRI data sets offer a more intuitive means of viewing the data and thereby enable easier understanding and comprehension of the scanned body region. As part of this research we have constructed a 3D MRI viewing application, raaMediVol, which utilises recent developments in 3D computer graphics hardware, to present an interactive environment that enables the user to view both traditional 2D slice representations and an enhanced 3D volumetric form that is freely explorable and configurable both on traditional 2D computer desktop displays and within Immersive Projection Technologies (IPTs)[1]. Initial evaluation of the two representational paradigms been undertaken through the comparative assessment of experienced cliniciansȁ9; performance in diagnosing a range of soft tissue pathologies within the shoulder, displayed in both traditional 2D slice, and evolved 3D volumetric representational form. An overview of the application, its technical operation, and the results of the evaluation trials are presented.
机译:有效地处理与适当的可视化相匹配的源数据可以极大地提高用户的9;探索和理解复杂信息的能力。尽管这是许多领域的基本问题,但在医学应用中,这一点尤为重要。 MRI等非侵入性扫描技术极大地增强了我们的能力,使图像达到ȁ8;图像ȁ9;内部物体,但是由于扫描过程的不足以及用于视觉化和数据表示的次优方法,通常很难理解所产生的视觉化。这些因素会给用户带来巨大的认知负担,需要技能和经验才能准确理解细节和集中注意力,而对于经验不足的用户,则需要了解这些结构。我们更广泛的研究旨在确定MRI数据集的3D表示是否提供了一种更直观的查看数据的方式,从而使人们更容易理解和理解所扫描的身体部位。作为这项研究的一部分,我们构建了3D MRI查看应用程序raaMediVol,该应用程序利用3D计算机图形硬件的最新发展,提供了一个交互式环境,使用户可以查看传统2D切片表示形式和增强的3D体积形式,即在传统的2D计算机桌面显示器上以及在沉浸式投影技术(IPT)中均可自由探索和配置[1]。通过对经验丰富的临床医生进行比较评估,对这两种代表性范例进行了初步评估[9]。在传统的2D切片和演变的3D容积表示形式中显示的各种诊断肩部软组织病变的性能。介绍了该应用程序的概述,其技术操作以及评估试验的结果。

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