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Validation of computed tomography protocols for simulated mandibular lesions: a comparison study.模拟下颌骨病变的计算机断层扫描协议验证:一项比较研究。
Braz Oral Res. 2007 Apr-Jun;21(2):165-9. doi: 10.1590/s1806-83242007000200012.
3
Automated volumetry of solid pulmonary nodules in a phantom: accuracy across different CT scanner technologies.体模中实性肺结节的自动容积测量:不同CT扫描技术的准确性
Invest Radiol. 2007 May;42(5):297-302. doi: 10.1097/01.rli.0000258683.20123.c4.
4
Use of a thin-section archive and enterprise 3D software for long-term storage of thin-slice CT data sets.使用薄层存档和企业级3D软件对薄层CT数据集进行长期存储。
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5
The accuracy of 1- and 3-mm slices in coronary calcium scoring using multi-slice CT in vitro and in vivo.在体外和体内使用多层CT进行冠状动脉钙化评分时1毫米和3毫米切片的准确性。
Eur Radiol. 2007 Feb;17(2):321-9. doi: 10.1007/s00330-006-0332-0. Epub 2006 Jul 4.
6
Medical archiving: solutions for medical image management.医学存档:医学影像管理解决方案
Radiol Manage. 2006 Jan-Feb;28(1):38-44.
7
Managing the CT data explosion: initial experiences of archiving volumetric datasets in a mini-PACS.应对CT数据爆炸:在小型PACS中存档容积数据集的初步经验
J Digit Imaging. 2005 Sep;18(3):188-95. doi: 10.1007/s10278-005-5163-z.
8
CT in your clinical practice.计算机断层扫描在你的临床实践中。 (不过这段英文表述似乎不太完整,更完整准确的翻译可能要结合上下文,比如“CT的应用在你的临床实践中” 之类 )
AJR Am J Roentgenol. 2004 Sep;183(3 Suppl):1-12.
9
Accuracy of CT-based thickness measurement of thin structures: modeling of limited spatial resolution in all three dimensions.基于CT的薄结构厚度测量的准确性:三维空间分辨率受限的建模
Med Phys. 2003 Jan;30(1):1-8. doi: 10.1118/1.1521940.
10
Pancreatic carcinoma: the role of high-resolution multislice spiral CT in the diagnosis and assessment of resectability.胰腺癌:高分辨率多层螺旋CT在诊断及可切除性评估中的作用
Eur Radiol. 2003 Jan;13(1):149-56. doi: 10.1007/s00330-002-1473-4. Epub 2002 Jul 18.

在现有的影像归档和通信系统(PACS)中用于大容量计算机断层扫描的数据管理解决方案。

Data management solution for large-volume computed tomography in an existing picture archiving and communication system (PACS).

机构信息

Department of Radiology, Nihon University School of Medicine, 30-1 Oyaguchi kami-cho, Itabashi-ku, Tokyo, 173-8610, Japan.

出版信息

J Digit Imaging. 2011 Feb;24(1):107-13. doi: 10.1007/s10278-009-9251-3.

DOI:10.1007/s10278-009-9251-3
PMID:19908094
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3046785/
Abstract

Multidetector row computed tomography (MDCT) creates massive amounts of data, which can overload a picture archiving and communication system (PACS). To solve this problem, we designed a new data storage and image interpretation system in an existing PACS. Two MDCT image datasets, a thick- and a thin-section dataset, and a single-detector CT thick-section dataset were reconstructed. The thin-section dataset was archived in existing PACS disk space reserved for temporary storage, and the system overwrote the source data to preserve available disk space. The thick-section datasets were archived permanently. Multiplanar reformation (MPR) images were reconstructed from the stored thin-section datasets on the PACS workstation. In regular interpretations by eight radiologists during the same week, the volume of images and the times taken for interpretation of thick-section images with (246 CT examinations) or without (170 CT examinations) thin-section images were recorded, and the diagnostic usefulness of the thin-section images was evaluated. Thin-section datasets and MPR images were used in 79% and 18% of cases, respectively. The radiologists' assessments of this system were useful, though the volume of images and times taken to archive, retrieve, and interpret thick-section images together with thin-section images were significantly greater than the times taken without thin-section images. The limitations were compensated for by the usefulness of thin-section images. This data storage and image interpretation system improves the storage and availability of the thin-section datasets of MDCT and can prevent overloading problems in an existing PACS for the moment.

摘要

多排螺旋 CT(MDCT)产生大量的数据,可能会使影像归档与通讯系统(PACS)过载。为了解决这个问题,我们在现有的 PACS 中设计了一个新的数据存储和图像解读系统。对 2 组 MDCT 图像数据集(厚层和薄层数据集,以及单层 CT 厚层数据集)进行了重建。将薄层数据集存储在现有的 PACS 磁盘空间中,用于临时存储,系统会覆盖源数据以保留可用的磁盘空间。厚层数据集则永久存储。在 PACS 工作站上,从存储的薄层数据集重建多平面重建(MPR)图像。在同 1 周内由 8 名放射科医生进行常规解读时,记录了厚层图像的解读所需的图像数量和时间(有 246 次 CT 检查)或没有(有 170 次 CT 检查)薄层图像的解读所需的图像数量和时间,并评估了薄层图像的诊断有用性。薄层数据集和 MPR 图像分别在 79%和 18%的病例中使用。尽管与没有薄层图像相比,存储、检索和解读厚层图像与薄层图像的时间显著增加,但放射科医生对该系统的评估是有用的。该系统的局限性通过薄层图像的有用性得到了弥补。这种数据存储和图像解读系统提高了 MDCT 薄层数据集的存储和可用性,并能暂时防止现有 PACS 出现过载问题。