改进单色CT数造影剂自动提取系统。

Q3 Biochemistry, Genetics and Molecular Biology Australasian Physical & Engineering Sciences in Medicine Pub Date : 2019-09-01 Epub Date: 2019-05-20 DOI:10.1007/s13246-019-00762-5
Daisuke Kawahara, Shuichi Ozawa, Kazushi Yokomachi, Toru Higaki, Chikako Fujioka, Masayoshi Mori, Yasushi Nagata
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引用次数: 1

摘要

在之前的一项研究中,描述了一种基于计算机断层扫描(CT)数和原始数据的电子密度(ED)的造影剂提取系统的模拟研究。目前的研究用单色CT (mCT)数字改进了这个系统,并评估了一个拟人化的幻像来描绘对比度增强区域。双能CT图像扫描组织等效幻像和拟人化幻像,碘化造影剂(1-130 mg/mL)。用80、135 kV CT图像重建40、70、130 kV mCT图像。利用mCT数梯度(GmCT)和阈值mCT数将造影剂与其他材料分离。使用内部软件Python对系统进行分析。通过测量体积比(ROV)来评价造影剂提取的准确性。造影剂与骨材料、肝脏、肌肉在组织等效幻象中的mCT数明显大于- 78 HU。组织等效模体骨材料与造影剂的mCT值偏差大于8 HU。GmCT在组织等效幻象中在4.0以内,在造影剂中在6.0以上。造影剂大于1 mg/mL时,ROV为0.97 ~ 1.00。改进的对比剂提取系统可用于患者的CT图像。它能自动提取碘化肿瘤或病变。通过mCT数对造影剂提取体系进行了改进。期望只自动提取对比度增强的区域。
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Improving automatic contrast agent extraction system using monochromatic CT number.

In a previous study, a phantom study of a contrast agent extraction system with computed tomography (CT) number and raw-data-based electron density (ED) was described. The current study improved this system with monochromatic CT (mCT) number and evaluated an anthropomorphic phantom for delineation of the contrast-enhanced region. Dual-energy CT images were scanned with a tissue-equivalent phantom and an anthropomorphic phantom with an iodinated contrast agent (1-130 mg/mL). The 40, 70, and 130 keV mCT images were reconstructed with 80 and 135 kV CT images. The contrast agent was separated from other materials using the gradient of the mCT number (GmCT) and the threshold mCT numbers. The system was analyzed using in-house software with Python. The evaluation of the accuracy for the contrast agent extraction was performed by measuring the ratio of the volume (ROV). The mCT number of the contrast agent and bone materials, liver, and muscle in the tissue-equivalent phantom was obviously greater than - 78 HU. The deviation of the mCT numbers between bone materials in tissue-equivalent phantom and the contrast agent were larger than 8 HU. The GmCT was within 4.0 in the tissue-equivalent phantom and more than 6.0 in the contrast agent. The ROV was 0.97-1.00 at more than 1 mg/mL contrast agent. Improved the contrast agent extraction system could be used for a patient's CT image. It could extract the iodinated tumor or lesion automatically. The contrast agent extraction system was improved by the mCT number. It is expected to only extract the contrast-enhanced region automatically.

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2.00
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6-12 weeks
期刊介绍: Australasian Physical & Engineering Sciences in Medicine (APESM) is a multidisciplinary forum for information and research on the application of physics and engineering to medicine and human physiology. APESM covers a broad range of topics that include but is not limited to: - Medical physics in radiotherapy - Medical physics in diagnostic radiology - Medical physics in nuclear medicine - Mathematical modelling applied to medicine and human biology - Clinical biomedical engineering - Feature extraction, classification of EEG, ECG, EMG, EOG, and other biomedical signals; - Medical imaging - contributions to new and improved methods; - Modelling of physiological systems - Image processing to extract information from images, e.g. fMRI, CT, etc.; - Biomechanics, especially with applications to orthopaedics. - Nanotechnology in medicine APESM offers original reviews, scientific papers, scientific notes, technical papers, educational notes, book reviews and letters to the editor. APESM is the journal of the Australasian College of Physical Scientists and Engineers in Medicine, and also the official journal of the College of Biomedical Engineers, Engineers Australia and the Asia-Oceania Federation of Organizations for Medical Physics.
期刊最新文献
Acknowledgment of Reviewers for Volume 35 Acknowledgment of Reviewers for Volume 34 A comparison between EPSON V700 and EPSON V800 scanners for film dosimetry. Nanodosimetric understanding to the dependence of the relationship between dose-averaged lineal energy on nanoscale and LET on ion species. EPSM 2019, Engineering and Physical Sciences in Medicine : 28-30 October 2019, Perth, Australia.
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