Vendor free basics of radiation dose reduction techniques for CT

European Journal of Radiology - Tập 110 - Trang 14-21 - 2019
Takeshi Kubo1
1Department of Diagnostic Imaging and Nuclear Medicine, Kyoto University Graduate School of Medicine, 54 Shogoin Kawahara-cho, Sakyo-ku, Kyoto 606-8507, Japan

Tài liệu tham khảo

Berrington de Gonzalez, 2009, Projected cancer risks from computed tomographic scans performed in the United States in 2007, Arch. Intern. Med., 169, 2071, 10.1001/archinternmed.2009.440 Kubo, 2017, Securing safe and informative thoracic CT examinations-Progress of radiation dose reduction techniques, Eur. J. Radiol., 86, 313, 10.1016/j.ejrad.2016.10.012 Pelc, 2014, Recent and future directions in CT imaging, Ann. Biomed. Eng., 42, 260, 10.1007/s10439-014-0974-z Ginat, 2014, Advances in computed tomography imaging technology, Annu. Rev. Biomed. Eng., 16, 431, 10.1146/annurev-bioeng-121813-113601 Kubo, 2008, Radiation dose reduction in chest CT: a review, AJR Am. J. Roentgenol., 190, 335, 10.2214/AJR.07.2556 Mills, 2018, Clinical decision support increases diagnostic yield of computed tomography for suspected pulmonary embolism, Am. J. Emerg. Med., 36, 540, 10.1016/j.ajem.2017.09.004 Lell, 2011, High-pitch spiral computed tomography: effect on image quality and radiation dose in pediatric chest computed tomography, Invest. Radiol., 46, 116, 10.1097/RLI.0b013e3181f33b1d Israel, 2008, Does a combination of dose modulation with fast gantry rotation time limit CT image quality?, AJR Am. J. Roentgenol., 191, 140, 10.2214/AJR.07.3019 Beeres, 2015, CT chest and gantry rotation time: does the rotation time influence image quality?, Acta Radiol., 56, 950, 10.1177/0284185114544242 Naidich, 1990, Low-dose CT of the lungs: preliminary observations, Radiology, 175, 729, 10.1148/radiology.175.3.2343122 Mayo, 1995, CT of the chest: minimal tube current required for good image quality with the least radiation dose, AJR Am. J. Roentgenol., 164, 603, 10.2214/ajr.164.3.7863879 Takahashi, 1998, Low-dose spiral computed tomography of the thorax: comparison with the standard-dose technique, Invest. Radiol., 33, 68, 10.1097/00004424-199802000-00002 Kalra, 2004, Techniques and applications of automatic tube current modulation for CT, Radiology, 233, 649, 10.1148/radiol.2333031150 Lee, 2008, Radiation dose modulation techniques in the multidetector CT era: from basics to practice, Radiographics, 28, 1451, 10.1148/rg.285075075 Matsumoto, 2011, 3D automatic exposure control for 64-detector row CT: radiation dose reduction in chest phantom study, Eur. J. Radiol., 77, 522, 10.1016/j.ejrad.2009.09.012 McNitt-Gray, 2002, AAPM/RSNA physics tutorial for residents: topics in CT. Radiation dose in CT, Radiographics, 22, 1541, 10.1148/rg.226025128 Kalva, 2006, Using the K-edge to improve contrast conspicuity and to lower radiation dose with a 16-MDCT: a phantom and human study, J. Comput. Assist. Tomogr., 30, 391, 10.1097/00004728-200605000-00008 Fanous, 2012, Image quality and radiation dose of pulmonary CT angiography performed using 100 and 120 kVp, AJR Am. J. Roentgenol., 199, 990, 10.2214/AJR.11.8208 Kok, 2015, Automated tube voltage selection for radiation dose reduction in CT angiography using different contrast media concentrations and a constant iodine delivery rate, AJR Am. J. Roentgenol., 205, 1332, 10.2214/AJR.14.13957 Haubenreisser, 2015, Unenhanced third-generation dual-source chest CT using a tin filter for spectral shaping at 100kVp, Eur. J. Radiol., 84, 1608, 10.1016/j.ejrad.2015.04.018 Kuhlman, 2006, Dual-energy subtraction chest radiography: what to look for beyond calcified nodules, Radiographics, 26, 79, 10.1148/rg.261055034 Henzler, 2012, Dual-energy CT: radiation dose aspects, AJR Am. J. Roentgenol., 199, S16, 10.2214/AJR.12.9210 Johnson, 2018, Enhancimage quality in the era of radiation dose reduction: postprocessing techniques for body CT, J. Am. Coll. Radiol., 15, 486, 10.1016/j.jacr.2017.11.001 Kalra, 2003, Can noise reduction filters improve low-radiation-dose chest CT images? Pilot study, Radiology, 228, 257, 10.1148/radiol.2281020606 Kubo, 2006, 3-dimensional adaptive raw-data filter: evaluation in low dose chest multidetector-row computed tomography, J. Comput. Assist. Tomogr., 30, 933, 10.1097/01.rct.0000221951.60393.64 Higaki, 2018 Willemink, 2013, Iterative reconstruction techniques for computed tomography Part 1: technical principles, Eur. Radiol., 23, 1623, 10.1007/s00330-012-2765-y Winklehner, 2011, Raw data-based iterative reconstruction in body CTA: evaluation of radiation dose saving potential, Eur. Radiol., 21, 2521, 10.1007/s00330-011-2227-y Kaasalainen, 2014, Effect of patient centering on patient dose and image noise in chest CT, AJR Am. J. Roentgenol., 203, 123, 10.2214/AJR.13.12028 Zanca, 2012, Excess radiation and organ dose in chest and abdominal CT due to CT acquisition beyond expected anatomical boundaries, Eur. Radiol., 22, 779, 10.1007/s00330-011-2332-y 2018 2017 European Commission, 2014 Osman, 2018, Computed tomography pulmonary angiography is overused to diagnose pulmonary embolism in the emergency department of academic community hospital, J. Community Hosp. Intern. Med. Perspect., 8, 6, 10.1080/20009666.2018.1428024 van Belle, 2006, Effectiveness of managing suspected pulmonary embolism using an algorithm combining clinical probability, D-dimer testing, and computed tomography, JAMA, 295, 172, 10.1001/jama.295.2.172 Hwang, 2012, Radiation dose reduction of chest CT with iterative reconstruction in image space - Part I: studies on image quality using dual source CT, Korean J. Radiol., 13, 711, 10.3348/kjr.2012.13.6.711 Fefferman, 2005, Appendicitis in children: low-dose CT with a phantom-based simulation technique--initial observations, Radiology, 237, 641, 10.1148/radiol.2372041642 Kubo, 2016, Low dose chest CT protocol (50 mAs) as a routine protocol for comprehensive assessment of intrathoracic abnormality, Eur. J. Radiol. Open, 3, 86, 10.1016/j.ejro.2016.04.001 Smith-Bindman, 2010, Is computed tomography safe?, N. Engl. J. Med., 363, 1, 10.1056/NEJMp1002530 Brink, 2015, U.S. National diagnostic reference levels: closing the gap, Radiology, 277, 3, 10.1148/radiol.2015150971 Rehani, 2011, Patient exposure tracking: the IAEA smart card project, Radiat. Prot. Dosimetry, 147, 314, 10.1093/rpd/ncr300 Prakash, 2010, Diffuse lung disease: CT of the chest with adaptive statistical iterative reconstruction technique, Radiology, 256, 261, 10.1148/radiol.10091487 Andersen, 2018, Image quality with iterative reconstruction techniques in CT of the lungs-A phantom study, Eur. J. Radiol. Open, 5, 35, 10.1016/j.ejro.2018.02.002 Chen, 2013, Volumetric quantification of lung nodules in CT with iterative reconstruction (ASiR and MBIR), Med. Phys., 40, 10.1118/1.4823463 Sullivan, 2015, Metrology standards for quantitative imaging biomarkers, Radiology, 277, 813, 10.1148/radiol.2015142202 Boone, 2011 McCollough, 2014, Use of water equivalent diameter for calculating patient size and size-specific dose estimates (SSDE) in CT: the report of AAPM task group 220, AAPM Rep., 2014, 6 Ranallo, 2015, The correct selection of pitch for optimal CT scanning: avoiding common misconceptions, J. Am. Coll. Radiol., 12, 423, 10.1016/j.jacr.2014.12.017 Goldman, 2007, Principles of CT: radiation dose and image quality, J. Nucl. Med. Technol., 35, 213, 10.2967/jnmt.106.037846