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Article: Assessment of image quality on effects of varying tube voltage and automatic tube current modulation with hybrid and pure iterative reconstruction techniques in abdominal/pelvic CT: A phantom study

TitleAssessment of image quality on effects of varying tube voltage and automatic tube current modulation with hybrid and pure iterative reconstruction techniques in abdominal/pelvic CT: A phantom study
Authors
KeywordsASIR
computed tomography
image quality
kVp
MBIR
model-based iterative reconstruction
noise index
reconstruction algorithm
tube current modulation
Issue Date2013
Citation
Investigative Radiology, 2013, v. 48 n. 3, p. 167-174 How to Cite?
AbstractOBJECTIVES: The objective of this study was to compare image quality on abdominal/pelvic computed tomographic images acquired with filtered back projection (FBP), adaptive statistical iterative reconstruction (ASIR), and novel model-based iterative reconstruction (MBIR) techniques with varying levels of automatic tube current modulation and tube voltages. METHODS: A 2-phase study was performed. In phase 1, a torso phantom was scanned at 17 different noise levels of automatic current modulation (selected using noise index [NI]) at 120 kilovolt (peak) (kVp). Images reconstructed with FBP, ASIR, and MBIR underwent objective analysis. In phase 2, additional scans were performed at 3 different kVp (80, 100, and 120 kVp at 3 different NIs (33, 50, and 70). Objective and subjective image qualities were assessed. Computed tomography dose index and dose-length products were recorded. RESULTS: The objective image analysis supports significant noise reduction with MBIR compared with ASIR and FBP (P < 0.05) at all 17 NI tested at 120 kVp. When lowering the kVp, the subjective image quality was improved, but when this is performed in conjunction with increasing NI, image quality was maintained only at moderately high NI of 50 but was degraded at higher NIs despite improving contrast-to-noise ratio. CONCLUSIONS: Our results represent the first exploration in the utility of MBIR technique with alteration of kVp in conjunction with tube current modulation in comparison with traditional methods. Objective image noise for MBIR is superior. Subjective image quality is only moderately improved. Scanning at low kVp and moderately high NI with MBIR can ensure that a balance of improved image noise and contrast can be achieved as well as reducing dose. Copyright © 2013 by Lippincott Williams &Wilkins.
Persistent Identifierhttp://hdl.handle.net/10722/197953
ISSN
2021 Impact Factor: 10.065
2020 SCImago Journal Rankings: 2.330
ISI Accession Number ID

 

DC FieldValueLanguage
dc.contributor.authorVardhanabhuti, V-
dc.contributor.authorLoader, R-
dc.contributor.authorRoobottom, CA-
dc.date.accessioned2014-06-16T03:40:03Z-
dc.date.available2014-06-16T03:40:03Z-
dc.date.issued2013-
dc.identifier.citationInvestigative Radiology, 2013, v. 48 n. 3, p. 167-174-
dc.identifier.issn0020-9996-
dc.identifier.urihttp://hdl.handle.net/10722/197953-
dc.description.abstractOBJECTIVES: The objective of this study was to compare image quality on abdominal/pelvic computed tomographic images acquired with filtered back projection (FBP), adaptive statistical iterative reconstruction (ASIR), and novel model-based iterative reconstruction (MBIR) techniques with varying levels of automatic tube current modulation and tube voltages. METHODS: A 2-phase study was performed. In phase 1, a torso phantom was scanned at 17 different noise levels of automatic current modulation (selected using noise index [NI]) at 120 kilovolt (peak) (kVp). Images reconstructed with FBP, ASIR, and MBIR underwent objective analysis. In phase 2, additional scans were performed at 3 different kVp (80, 100, and 120 kVp at 3 different NIs (33, 50, and 70). Objective and subjective image qualities were assessed. Computed tomography dose index and dose-length products were recorded. RESULTS: The objective image analysis supports significant noise reduction with MBIR compared with ASIR and FBP (P < 0.05) at all 17 NI tested at 120 kVp. When lowering the kVp, the subjective image quality was improved, but when this is performed in conjunction with increasing NI, image quality was maintained only at moderately high NI of 50 but was degraded at higher NIs despite improving contrast-to-noise ratio. CONCLUSIONS: Our results represent the first exploration in the utility of MBIR technique with alteration of kVp in conjunction with tube current modulation in comparison with traditional methods. Objective image noise for MBIR is superior. Subjective image quality is only moderately improved. Scanning at low kVp and moderately high NI with MBIR can ensure that a balance of improved image noise and contrast can be achieved as well as reducing dose. Copyright © 2013 by Lippincott Williams &Wilkins.-
dc.languageeng-
dc.relation.ispartofInvestigative Radiology-
dc.subjectASIR-
dc.subjectcomputed tomography-
dc.subjectimage quality-
dc.subjectkVp-
dc.subjectMBIR-
dc.subjectmodel-based iterative reconstruction-
dc.subjectnoise index-
dc.subjectreconstruction algorithm-
dc.subjecttube current modulation-
dc.titleAssessment of image quality on effects of varying tube voltage and automatic tube current modulation with hybrid and pure iterative reconstruction techniques in abdominal/pelvic CT: A phantom study-
dc.typeArticle-
dc.description.naturelink_to_subscribed_fulltext-
dc.identifier.doi10.1097/RLI.0b013e31827b8f61-
dc.identifier.pmid23344519-
dc.identifier.scopuseid_2-s2.0-84873408184-
dc.identifier.volume48-
dc.identifier.issue3-
dc.identifier.spage167-
dc.identifier.epage174-
dc.identifier.isiWOS:000314369800008-
dc.identifier.issnl0020-9996-

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