Literature DB >> 17822016

The influence of patient centering on CT dose and image noise.

Thomas Toth1, Zhanyu Ge, Michael P Daly.   

Abstract

Although x-ray intensity shaping filters (bowtie filters) have been used since the introduction of some of the earliest CT scanner models, the clinical implications on dose and noise are not well understood. To achieve the intended dose and noise advantage requires the patient to be centered in the scan field of view. In this study we explore the implications of patient centering in clinical practice. We scanned various size and shape phantoms on a GE LightSpeed VCT scanner using each available source filter with the phantom centers positioned at 0, 3, and 6 cm below the center of rotation (isocenter). Surface doses were measured along with image noise over a large image region. Regression models of surface dose and noise were generated as a function of phantom size and centering error. Methods were also developed to determine the amount of miscentering using a scout scan projection radiograph (SPR). These models were then used to retrospectively evaluate 273 adult body patients for clinical implications. When miscentered by 3 and 6 cm, the surface dose on a 32 cm CTDI phantom increased by 18% and 41% while image noise also increased by 6% and 22%. The retrospective analysis of adult body scout SPR scans shows that 46% of patients were miscentered in elevation by 20-60 mm with a mean position 23 mm below the center of rotation (isocenter). The analysis indicated a surface dose penalty of up to 140% with a mean dose penalty of 33% assuming that tube current is increased to compensate for the increased noise due to miscentering. Clinical image quality and dose efficiency can be improved on scanners with bowtie filters if care is exercised when positioning patients. Automatically providing patient specific centering and scan parameter selection information can help the technologist improve workflow, achieve more consistent image quality and reduce patient dose.

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Year:  2007        PMID: 17822016     DOI: 10.1118/1.2748113

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  49 in total

1.  Dynamic fluence field modulation for miscentered patients in computed tomography.

Authors:  Andrew Mao; Grace J Gang; William Shyr; Reuven Levinson; Jeffrey H Siewerdsen; Satomi Kawamoto; J Webster Stayman
Journal:  J Med Imaging (Bellingham)       Date:  2018-10-24

2.  Implementation and Assessment of Dynamic Fluence Field Modulation with Multiple Aperture Devices.

Authors:  Grace J Gang; Andrew Mao; Jeffrey H Siewerdsen; J Webster Stayman
Journal:  Conf Proc Int Conf Image Form Xray Comput Tomogr       Date:  2018-05

3.  Dynamic fluence field modulation in computed tomography using multiple aperture devices.

Authors:  Grace J Gang; Andrew Mao; Wenying Wang; Jeffrey H Siewerdsen; Aswin Mathews; Satomi Kawamoto; Reuven Levinson; J Webster Stayman
Journal:  Phys Med Biol       Date:  2019-05-21       Impact factor: 3.609

4.  Validation of CT dose-reduction simulation.

Authors:  Parinaz Massoumzadeh; Steven Don; Charles F Hildebolt; Kyongtae T Bae; Bruce R Whiting
Journal:  Med Phys       Date:  2009-01       Impact factor: 4.071

5.  Local noise estimation in low-dose chest CT images.

Authors:  J Padgett; A M Biancardi; C I Henschke; D Yankelevitz; A P Reeves
Journal:  Int J Comput Assist Radiol Surg       Date:  2013-07-23       Impact factor: 2.924

Review 6.  Anniversary paper. Development of x-ray computed tomography: the role of medical physics and AAPM from the 1970s to present.

Authors:  Xiaochuan Pan; Jeffrey Siewerdsen; Patrick J La Riviere; Willi A Kalender
Journal:  Med Phys       Date:  2008-08       Impact factor: 4.071

7.  Investigating the CT localizer radiograph: acquisition parameters, patient centring and their combined influence on radiation dose.

Authors:  J W Lambert; S Kumar; J S Chen; Z J Wang; R G Gould; B M Yeh
Journal:  Br J Radiol       Date:  2015-01-22       Impact factor: 3.039

8.  Radiation dose and image quality of CT fluoroscopy with partial exposure mode.

Authors:  Keisuke Takiguchi; Atsushi Urikura; Tsukasa Yoshida; Yoshihiro Nakaya; Masahiro Endo; Takeshi Aramaki
Journal:  Diagn Interv Radiol       Date:  2020-07       Impact factor: 2.630

9.  Design of a digital beam attenuation system for computed tomography: part I. System design and simulation framework.

Authors:  Timothy P Szczykutowicz; Charles A Mistretta
Journal:  Med Phys       Date:  2013-02       Impact factor: 4.071

10.  Experimental realization of fluence field modulated CT using digital beam attenuation.

Authors:  T P Szczykutowicz; C A Mistretta
Journal:  Phys Med Biol       Date:  2014-02-20       Impact factor: 3.609

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