Literature DB >> 23828227

Clinical evaluation of automatic tube voltage selection in chest CT angiography.

Tilo Niemann1, Simon Henry, Jean-Baptiste Faivre, Kanna Yasunaga, Sofiane Bendaoud, Ariana Simeone, Jacques Remy, Alain Duhamel, Thomas Flohr, Martine Remy-Jardin.   

Abstract

OBJECTIVE: To evaluate the clinical impact of automatic tube voltage selection on chest CT angiography (CTA).
METHODS: Ninety-three patients were prospectively evaluated with a CT protocol aimed at comparing two successive CTAs acquired under similar technical conditions except for the kV selection: (1) the initial CTA was systematically obtained at 120 kVp and 90 ref mAs; (2) the follow-up CTA was obtained with an automatic selection of the kilovoltage (Care KV; Siemens Healthcare) for optimised CTA.
RESULTS: At follow-up, 90 patients (97 %) underwent CTA with reduced tube voltage, 100 kV (n = 26; 28 %) and 80 kV (n = 64; 69 %), resulting in a significant dose-length-product reduction (follow-up: 87.27; initial: 141.88 mGy.cm; P < 0.0001; mean dose reduction: 38.5 %) and a significant increase in the CNR at follow-up (follow-up: 11.5 ± 3.5 HU; initial: 10.9 ± 3.7 HU; P = 0.03). The increase in objective image noise at follow-up (follow-up: 23.2 ± 6.7 HU vs. 17.8 ± 5.1 HU; P < 0.0001) did not alter the diagnostic value of images.
CONCLUSION: Automatic tube voltage selection reduced the radiation dose delivered during chest CT angiograms by 38.5 % while improving the contrast-to-noise ratio of the examinations. KEY POINTS: • As low a dose as possible must be used for CT angiography. • Automatic tube voltage selection permits reduced patient exposure. • Lowering the kVp enables increased intravascular attenuation. • Automatic tube voltage selection does not compromise the overall image quality.

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Year:  2013        PMID: 23828227     DOI: 10.1007/s00330-013-2887-x

Source DB:  PubMed          Journal:  Eur Radiol        ISSN: 0938-7994            Impact factor:   5.315


  20 in total

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Review 4.  Radiation dose reduction in chest CT: a review.

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7.  Automatic selection of tube potential for radiation dose reduction in CT: a general strategy.

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8.  Radiation dose reduction with chest computed tomography using adaptive statistical iterative reconstruction technique: initial experience.

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9.  Vascular enhancement and image quality of MDCT pulmonary angiography in 400 cases: comparison of standard and low kilovoltage settings.

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10.  Multidetector computed tomography chest examinations with low-kilovoltage protocols in adults: effect on image quality and radiation dose.

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  12 in total

1.  Reducing radiation dose in the diagnosis of pulmonary embolism using adaptive statistical iterative reconstruction and lower tube potential in computed tomography.

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Journal:  Eur Radiol       Date:  2014-07-10       Impact factor: 5.315

2.  Attenuation-based kV pair selection in dual source dual energy computed tomography angiography of the chest: impact on radiation dose and image quality.

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Journal:  Eur Radiol       Date:  2017-01-13       Impact factor: 5.315

3.  Reduced radiation dose and improved image quality at cardiovascular CT angiography by automated attenuation-based tube voltage selection: intra-individual comparison.

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4.  Imaging quality evaluation of low tube voltage coronary CT angiography using low concentration contrast medium.

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5.  Combined Use of Automatic Tube Voltage Selection and Current Modulation with Iterative Reconstruction for CT Evaluation of Small Hypervascular Hepatocellular Carcinomas: Effect on Lesion Conspicuity and Image Quality.

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6.  Chest-abdomen-pelvis CT for staging in cancer patients: dose effectiveness and image quality using automated attenuation-based tube potential selection.

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Review 7.  Low radiation dose in computed tomography: the role of iodine.

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8.  Comparison of Chest Pain Protocols for Electrocardiography-Gated Dual-Source Cardiothoracic CT in Children and Adults: The Effect of Tube Current Saturation on Radiation Dose Reduction.

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9.  Diagnostic value of transmural perfusion ratio derived from dynamic CT-based myocardial perfusion imaging for the detection of haemodynamically relevant coronary artery stenosis.

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Review 10.  User-Friendly Vendor-Specific Guideline for Pediatric Cardiothoracic Computed Tomography Provided by the Asian Society of Cardiovascular Imaging Congenital Heart Disease Study Group: Part 1. Imaging Techniques.

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