Absolute reliability of adipose tissue volume measurement by computed tomography: application of low-dose scan and minimal detectable change—a phantom study
Metabolic syndrome increases the risk of developing diabetes and cardiovascular disease, particularly heart failure. Abdominal obesity is commonly assessed by measurement of the waist circumference, which exhibits a positive correlation with the visceral fat area measured on computed tomography (CT)...
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Published in | Radiological Physics and Technology Vol. 8; no. 2; pp. 312 - 319 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Tokyo
Springer Science and Business Media LLC
01.07.2015
Springer Japan |
Subjects | |
Online Access | Get full text |
ISSN | 1865-0333 1865-0341 1865-0341 |
DOI | 10.1007/s12194-015-0322-5 |
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Abstract | Metabolic syndrome increases the risk of developing diabetes and cardiovascular disease, particularly heart failure. Abdominal obesity is commonly assessed by measurement of the waist circumference, which exhibits a positive correlation with the visceral fat area measured on computed tomography (CT). CT is an excellent technique for measurement of cross-sectional areas of adipose tissue, but the exposure to ionizing radiation limits broad and repeated application in healthy subjects. Our purpose in this study was to determine the reliability of low-dose CT for abdominal fat quantification as compared with a standard CT protocol. A phantom was scanned by use of changes in the volume of vegetable oil, simulating visceral and subcutaneous adipose tissue, and by changes in the tube current–time products (25–300 mAs). We measured the volume of vegetable oil for each mAs value, and we calculated the minimal detectable change (MDC) in the volume by making repeated measurements. The measured volume of vegetable oil at 50 mAs and higher was not significantly different (
p
> 0.05), but that at 25 mAs was significantly different (
p
< 0.001), from that at 300 mAs. The MDC was less than 0.4 ml regardless of the mAs value at all mAs values assessed. We suggest that the adipose tissue volume is determined accurately by CT at 50 mAs (75 % reduction of radiation exposure compared with the standard dose). |
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AbstractList | Metabolic syndrome increases the risk of developing diabetes and cardiovascular disease, particularly heart failure. Abdominal obesity is commonly assessed by measurement of the waist circumference, which exhibits a positive correlation with the visceral fat area measured on computed tomography (CT). CT is an excellent technique for measurement of cross-sectional areas of adipose tissue, but the exposure to ionizing radiation limits broad and repeated application in healthy subjects. Our purpose in this study was to determine the reliability of low-dose CT for abdominal fat quantification as compared with a standard CT protocol. A phantom was scanned by use of changes in the volume of vegetable oil, simulating visceral and subcutaneous adipose tissue, and by changes in the tube current–time products (25–300 mAs). We measured the volume of vegetable oil for each mAs value, and we calculated the minimal detectable change (MDC) in the volume by making repeated measurements. The measured volume of vegetable oil at 50 mAs and higher was not significantly different (
p
> 0.05), but that at 25 mAs was significantly different (
p
< 0.001), from that at 300 mAs. The MDC was less than 0.4 ml regardless of the mAs value at all mAs values assessed. We suggest that the adipose tissue volume is determined accurately by CT at 50 mAs (75 % reduction of radiation exposure compared with the standard dose). Metabolic syndrome increases the risk of developing diabetes and cardiovascular disease, particularly heart failure. Abdominal obesity is commonly assessed by measurement of the waist circumference, which exhibits a positive correlation with the visceral fat area measured on computed tomography (CT). CT is an excellent technique for measurement of cross-sectional areas of adipose tissue, but the exposure to ionizing radiation limits broad and repeated application in healthy subjects. Our purpose in this study was to determine the reliability of low-dose CT for abdominal fat quantification as compared with a standard CT protocol. A phantom was scanned by use of changes in the volume of vegetable oil, simulating visceral and subcutaneous adipose tissue, and by changes in the tube current-time products (25-300 mAs). We measured the volume of vegetable oil for each mAs value, and we calculated the minimal detectable change (MDC) in the volume by making repeated measurements. The measured volume of vegetable oil at 50 mAs and higher was not significantly different (p > 0.05), but that at 25 mAs was significantly different (p < 0.001), from that at 300 mAs. The MDC was less than 0.4 ml regardless of the mAs value at all mAs values assessed. We suggest that the adipose tissue volume is determined accurately by CT at 50 mAs (75 % reduction of radiation exposure compared with the standard dose). Metabolic syndrome increases the risk of developing diabetes and cardiovascular disease, particularly heart failure. Abdominal obesity is commonly assessed by measurement of the waist circumference, which exhibits a positive correlation with the visceral fat area measured on computed tomography (CT). CT is an excellent technique for measurement of cross-sectional areas of adipose tissue, but the exposure to ionizing radiation limits broad and repeated application in healthy subjects. Our purpose in this study was to determine the reliability of low-dose CT for abdominal fat quantification as compared with a standard CT protocol. A phantom was scanned by use of changes in the volume of vegetable oil, simulating visceral and subcutaneous adipose tissue, and by changes in the tube current-time products (25-300 mAs). We measured the volume of vegetable oil for each mAs value, and we calculated the minimal detectable change (MDC) in the volume by making repeated measurements. The measured volume of vegetable oil at 50 mAs and higher was not significantly different (p > 0.05), but that at 25 mAs was significantly different (p < 0.001), from that at 300 mAs. The MDC was less than 0.4 ml regardless of the mAs value at all mAs values assessed. We suggest that the adipose tissue volume is determined accurately by CT at 50 mAs (75 % reduction of radiation exposure compared with the standard dose).Metabolic syndrome increases the risk of developing diabetes and cardiovascular disease, particularly heart failure. Abdominal obesity is commonly assessed by measurement of the waist circumference, which exhibits a positive correlation with the visceral fat area measured on computed tomography (CT). CT is an excellent technique for measurement of cross-sectional areas of adipose tissue, but the exposure to ionizing radiation limits broad and repeated application in healthy subjects. Our purpose in this study was to determine the reliability of low-dose CT for abdominal fat quantification as compared with a standard CT protocol. A phantom was scanned by use of changes in the volume of vegetable oil, simulating visceral and subcutaneous adipose tissue, and by changes in the tube current-time products (25-300 mAs). We measured the volume of vegetable oil for each mAs value, and we calculated the minimal detectable change (MDC) in the volume by making repeated measurements. The measured volume of vegetable oil at 50 mAs and higher was not significantly different (p > 0.05), but that at 25 mAs was significantly different (p < 0.001), from that at 300 mAs. The MDC was less than 0.4 ml regardless of the mAs value at all mAs values assessed. We suggest that the adipose tissue volume is determined accurately by CT at 50 mAs (75 % reduction of radiation exposure compared with the standard dose). |
Author | Motomichi Sakata Tsukasa Sasaki Tamotsu Kamishima Takahiro Onuma |
Author_xml | – sequence: 1 givenname: Takahiro surname: Onuma fullname: Onuma, Takahiro organization: Graduate School of Health Sciences, Hokkaido University – sequence: 2 givenname: Tamotsu surname: Kamishima fullname: Kamishima, Tamotsu email: ktamotamo2@yahoo.co.jp organization: Faculty of Health Sciences, Hokkaido University – sequence: 3 givenname: Tsukasa surname: Sasaki fullname: Sasaki, Tsukasa organization: Department of Clinical Support for Medical Practice, Hokkaido University Hospital – sequence: 4 givenname: Motomichi surname: Sakata fullname: Sakata, Motomichi organization: Faculty of Health Sciences, Hokkaido University |
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CitedBy_id | crossref_primary_10_1038_srep40389 crossref_primary_10_1016_j_nut_2021_111227 crossref_primary_10_3390_cells13050380 crossref_primary_10_3109_14764172_2016_1157374 crossref_primary_10_1016_j_trsl_2017_10_009 crossref_primary_10_1016_j_acra_2018_12_008 |
Cites_doi | 10.1038/sj.ejcn.1600612 10.1155/2014/495084 10.1016/j.acra.2007.07.013 10.1016/0002-9149(94)90676-9 10.1016/j.jcmg.2012.11.021 10.1002/(SICI)1096-9136(199807)15:7<539::AID-DIA668>3.0.CO;2-S 10.1111/j.1464-5491.2006.01858.x 10.1001/archinte.1991.00400060019005 10.2522/ptj.20070214 10.1038/sj.ijo.0801921 10.2340/16501977-0337 10.1097/00007632-200012150-00015 10.1007/s00268-011-1414-y 10.1016/S0140-6736(86)90837-8 10.1259/bjr/44384066 10.1177/1545968309335975 10.1093/ptj/86.5.735 10.1093/ajcn/61.2.274 |
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Keywords | Computed tomography (CT) Phantom study Minimal detectable change (MDC) Low-dose scan |
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SubjectTerms | Abdominal Fat Abdominal Fat - anatomy & histology Abdominal Fat - diagnostic imaging Imaging Medical and Radiation Physics Medicine Medicine & Public Health Nuclear Medicine Organ Size Phantoms, Imaging Radiation Dosage Radiology Radiotherapy Reproducibility of Results Tomography, X-Ray Computed Tomography, X-Ray Computed - instrumentation |
Title | Absolute reliability of adipose tissue volume measurement by computed tomography: application of low-dose scan and minimal detectable change—a phantom study |
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