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定量计算机断层扫描肺方案的制定。

Development of quantitative computed tomography lung protocols.

机构信息

Advanced Pulmonary Physiomics Imaging Laboratory, Department of Radiology, University of Iowa, Iowa City, IA 52242, USA.

出版信息

J Thorac Imaging. 2013 Sep;28(5):266-71. doi: 10.1097/RTI.0b013e31829f6796.

Abstract

The purpose of this review article is to review the process of developing optimal computed tomography (CT) protocols for quantitative lung CT (QCT). In this review, we discuss the following important topics: QCT-derived metrics of lung disease; QCT scanning protocols; quality control; and QCT image processing software. We will briefly discuss several QCT-derived metrics of lung disease that have been developed for the assessment of emphysema, small airway disease, and large airway disease. The CT scanning protocol is one of the most important elements in a successful QCT. We will provide a detailed description of the current move toward optimizing the QCT protocol for the assessment of chronic obstructive pulmonary disorder and asthma. Quality control of CT images is also a very important part of the QCT process. We will discuss why it is necessary to use CT scanner test objects (phantoms) to provide frequent periodic checks on the CT scanner calibration to ensure precise and accurate CT numbers. We will discuss the use of QCT image processing software to segment the lung and extract the desired QCT metrics of lung disease. We will discuss the practical issues of using this software. The data obtained from the image processing software are then combined with those from other clinical examinations, health status questionnaires, pulmonary physiology, and genomics to increase our understanding of obstructive lung disease and improve our ability to design new therapies for these diseases.

摘要

这篇综述文章的目的是回顾制定定量 CT(QCT)肺部 CT 最佳扫描方案的过程。在这篇综述中,我们将讨论以下几个重要主题:肺部疾病的 QCT 衍生指标;QCT 扫描方案;质量控制;以及 QCT 图像处理软件。我们将简要讨论几种为评估肺气肿、小气道疾病和大气道疾病而开发的 QCT 衍生肺部疾病指标。CT 扫描方案是成功进行 QCT 的最重要因素之一。我们将详细介绍当前为评估慢性阻塞性肺疾病和哮喘而优化 QCT 方案的进展。CT 图像的质量控制也是 QCT 过程的一个非常重要的部分。我们将讨论为什么有必要使用 CT 扫描仪测试物体(体模)来对 CT 扫描仪校准进行频繁的定期检查,以确保精确和准确的 CT 值。我们将讨论使用 QCT 图像处理软件对肺部进行分割并提取所需的肺部疾病 QCT 指标。我们将讨论使用该软件的实际问题。然后,将图像处理软件获得的数据与来自其他临床检查、健康状况调查问卷、肺生理学和基因组学的数据相结合,以提高我们对阻塞性肺部疾病的认识,并提高我们为这些疾病设计新疗法的能力。

相似文献

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Development of quantitative computed tomography lung protocols.定量计算机断层扫描肺方案的制定。
J Thorac Imaging. 2013 Sep;28(5):266-71. doi: 10.1097/RTI.0b013e31829f6796.

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