Data on analysis of coronary atherosclerosis on computed tomography and 18F-sodium fluoride positron emission tomography

This article contains the data showing illustrative examples of plaque classification on coronary computed tomography angiography (CCTA) and measurement of 18F-sodium fluoride (18F-NaF) uptake in coronary atherosclerotic lesions on positron emission tomography (PET). We divided the lesions into one...

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Main Authors: Toshiro Kitagawa, Hideya Yamamoto, Shinya Toshimitsu, Ko Sasaki, Atsuhiro Senoo, Yumiko Kubo, Fuminari Tatsugami, Kazuo Awai, Yutaka Hirokawa, Yasuki Kihara
Format: Article
Language:English
Published: Elsevier 2017-08-01
Series:Data in Brief
Online Access:http://www.sciencedirect.com/science/article/pii/S235234091730255X
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author Toshiro Kitagawa
Hideya Yamamoto
Shinya Toshimitsu
Ko Sasaki
Atsuhiro Senoo
Yumiko Kubo
Fuminari Tatsugami
Kazuo Awai
Yutaka Hirokawa
Yasuki Kihara
author_facet Toshiro Kitagawa
Hideya Yamamoto
Shinya Toshimitsu
Ko Sasaki
Atsuhiro Senoo
Yumiko Kubo
Fuminari Tatsugami
Kazuo Awai
Yutaka Hirokawa
Yasuki Kihara
author_sort Toshiro Kitagawa
collection DOAJ
description This article contains the data showing illustrative examples of plaque classification on coronary computed tomography angiography (CCTA) and measurement of 18F-sodium fluoride (18F-NaF) uptake in coronary atherosclerotic lesions on positron emission tomography (PET). We divided the lesions into one of three plaque types on CCTA (calcified plaque, non-calcified plaque, partially calcified plaque). Focal 18F-NaF uptake of each lesion was quantified using maximum tissue-to-background ratio. This article also provides a representative case with a non-calcified coronary plaque detected on CCTA and identified on 18F-NaF PET/non-contrast computed tomography based on a location of a vessel branch as a landmark. These complement the data reported by Kitagawa et al. (2017) [1].
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spelling doaj.art-43478701f7ce4ee0a517c621c2eaee6d2022-12-22T02:38:37ZengElsevierData in Brief2352-34092017-08-0113341345Data on analysis of coronary atherosclerosis on computed tomography and 18F-sodium fluoride positron emission tomographyToshiro Kitagawa0Hideya Yamamoto1Shinya Toshimitsu2Ko Sasaki3Atsuhiro Senoo4Yumiko Kubo5Fuminari Tatsugami6Kazuo Awai7Yutaka Hirokawa8Yasuki Kihara9Department of Cardiovascular Medicine, Hiroshima University Graduate School of Biomedical and Health Sciences, Hiroshima, Japan; Corresponding author.Department of Cardiovascular Medicine, Hiroshima University Graduate School of Biomedical and Health Sciences, Hiroshima, JapanHiroshima Heiwa Clinic, Hiroshima, JapanHiroshima Heiwa Clinic, Hiroshima, JapanDepartment of Cardiovascular Medicine, Hiroshima University Graduate School of Biomedical and Health Sciences, Hiroshima, JapanDepartment of Cardiovascular Medicine, Hiroshima University Graduate School of Biomedical and Health Sciences, Hiroshima, JapanDepartment of Diagnostic Radiology, Hiroshima University Hospital, Hiroshima, JapanDepartment of Diagnostic Radiology, Hiroshima University Hospital, Hiroshima, JapanHiroshima Heiwa Clinic, Hiroshima, JapanDepartment of Cardiovascular Medicine, Hiroshima University Graduate School of Biomedical and Health Sciences, Hiroshima, JapanThis article contains the data showing illustrative examples of plaque classification on coronary computed tomography angiography (CCTA) and measurement of 18F-sodium fluoride (18F-NaF) uptake in coronary atherosclerotic lesions on positron emission tomography (PET). We divided the lesions into one of three plaque types on CCTA (calcified plaque, non-calcified plaque, partially calcified plaque). Focal 18F-NaF uptake of each lesion was quantified using maximum tissue-to-background ratio. This article also provides a representative case with a non-calcified coronary plaque detected on CCTA and identified on 18F-NaF PET/non-contrast computed tomography based on a location of a vessel branch as a landmark. These complement the data reported by Kitagawa et al. (2017) [1].http://www.sciencedirect.com/science/article/pii/S235234091730255X
spellingShingle Toshiro Kitagawa
Hideya Yamamoto
Shinya Toshimitsu
Ko Sasaki
Atsuhiro Senoo
Yumiko Kubo
Fuminari Tatsugami
Kazuo Awai
Yutaka Hirokawa
Yasuki Kihara
Data on analysis of coronary atherosclerosis on computed tomography and 18F-sodium fluoride positron emission tomography
Data in Brief
title Data on analysis of coronary atherosclerosis on computed tomography and 18F-sodium fluoride positron emission tomography
title_full Data on analysis of coronary atherosclerosis on computed tomography and 18F-sodium fluoride positron emission tomography
title_fullStr Data on analysis of coronary atherosclerosis on computed tomography and 18F-sodium fluoride positron emission tomography
title_full_unstemmed Data on analysis of coronary atherosclerosis on computed tomography and 18F-sodium fluoride positron emission tomography
title_short Data on analysis of coronary atherosclerosis on computed tomography and 18F-sodium fluoride positron emission tomography
title_sort data on analysis of coronary atherosclerosis on computed tomography and 18f sodium fluoride positron emission tomography
url http://www.sciencedirect.com/science/article/pii/S235234091730255X
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