三维超声心动图可视化:基于 "焦点+语境 "的新方法

Samuelle St-Onge, Silvani Amin, Alana Cianciulli, Matthew A Jolley, Simon Drouin
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引用次数: 0

摘要

三维超声心动图(3DE)是观察心脏瓣膜及其周围解剖结构的标准模式。商用心血管超声系统通常提供一组参数,允许临床用户实时修改超声心动图所含信息的可视化方面。据我们所知,目前还没有研究表明商业平台目前使用的方法是否最佳。此外,目前的平台在调整解剖结构的可见度方面也有局限性,比如在不删除基本临床信息的情况下,减少了阻碍解剖结构的信息。为了克服这一问题,本研究提出了一种基于 "焦点+背景"(F+C)的 3DE 可视化新方法。新方法的目的是让临床用户在某个感兴趣区域内以不同方式修改参数值,而不受上下文信息调整的影响。为了验证这一新方法,在临床专家中开展了一项用户研究。作为用户研究的一部分,临床专家使用商业平台常规使用的方法和基于 F+C 的建议方法调整了五例完全性房室管缺损(CAVC)患者超声心动图的参数。结果表明,基于 F+C 的方法与 CAVC 患者的 3DE 可视化具有相关性,用户选择的参数值与基于 F+C 的方法有显著差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D Echocardiogram Visualization: A New Method Based on "Focus + Context".

3D echocardiography (3DE) is the standard modality for visualizing heart valves and their surrounding anatomical structures. Commercial cardiovascular ultrasound systems commonly offer a set of parameters that allow clinical users to modify, in real time, visual aspects of the information contained in the echocardiogram. To our knowledge, there is currently no work that demonstrates if the methods currently used by commercial platforms are optimal. In addition, current platforms have limitations in adjusting the visibility of anatomical structures, such as reducing information that obstructs anatomical structures without removing essential clinical information. To overcome this, the present work proposes a new method for 3DE visualization based on "focus + context" (F+C), a concept which aims to present a detailed region of interest while preserving a less detailed overview of the surrounding context. The new method is intended to allow clinical users to modify parameter values differently within a certain region of interest, independently from the adjustment of contextual information. To validate this new method, a user study was conducted amongst clinical experts. As part of the user study, clinical experts adjusted parameters for five echocardiograms of patients with complete atrioventricular canal defect (CAVC) using both the method conventionally used by commercial platforms and the proposed method based on F+C. The results showed relevance for the F+C-based method to visualize 3DE of CAVC patients, where users chose significantly different parameter values with the F+C-based method.

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