Automated MTF measurement in CT images with a simple wire phantom

This study developed a simple wire phantom and an algorithm to automatically measure the modulation transfer function (MTF) in computed tomography (CT) and implemented it to evaluate the effect of focal spot size and reconstruction filter type. The phantom consisted of a resin cylinder filled with w...

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Published inPolish journal of medical physics and engineering Vol. 25; no. 3; pp. 179 - 187
Main Authors Anam, Choirul, Fujibuchi, Toshioh, Haryanto, Freddy, Budi, Wahyu Setia, Sutanto, Heri, Adi, Kusworo, Muhlisin, Zaenul, Dougherty, Geoff
Format Journal Article
LanguageEnglish
Published Warsaw Sciendo 01.09.2019
De Gruyter Brill Sp. z o.o., Paradigm Publishing Services
Subjects
Online AccessGet full text
ISSN1898-0309
1425-4689
1898-0309
DOI10.2478/pjmpe-2019-0024

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Abstract This study developed a simple wire phantom and an algorithm to automatically measure the modulation transfer function (MTF) in computed tomography (CT) and implemented it to evaluate the effect of focal spot size and reconstruction filter type. The phantom consisted of a resin cylinder filled with water, with a tin wire of diameter 0.1 mm positioned along the center of the cylinder. The automated MTF algorithm used an axial image of the phantom and comprised several steps. The center position of a region of interest (ROI) was automatically determined at the center of the wire image. The pixels were then summed along the y-direction to obtain the profile of the pixel values at a point along the x-direction. Following this, both edges of the profile were made equal to zero. The profile curve was then normalized so that the total of all the data was equal to unity. The normalized profile curve is the line spread function (LSF), and the MTF curve was obtained by taking its Fourier transform. Our system (phantom and algorithm) is able to differentiate the MTFs of CT images from different focal sizes and reconstruction filter types.
AbstractList This study developed a simple wire phantom and an algorithm to automatically measure the modulation transfer function (MTF) in computed tomography (CT) and implemented it to evaluate the effect of focal spot size and reconstruction filter type. The phantom consisted of a resin cylinder filled with water, with a tin wire of diameter 0.1 mm positioned along the center of the cylinder. The automated MTF algorithm used an axial image of the phantom and comprised several steps. The center position of a region of interest (ROI) was automatically determined at the center of the wire image. The pixels were then summed along the y-direction to obtain the profile of the pixel values at a point along the x-direction. Following this, both edges of the profile were made equal to zero. The profile curve was then normalized so that the total of all the data was equal to unity. The normalized profile curve is the line spread function (LSF), and the MTF curve was obtained by taking its Fourier transform. Our system (phantom and algorithm) is able to differentiate the MTFs of CT images from different focal sizes and reconstruction filter types.
Author Budi, Wahyu Setia
Dougherty, Geoff
Fujibuchi, Toshioh
Anam, Choirul
Haryanto, Freddy
Adi, Kusworo
Muhlisin, Zaenul
Sutanto, Heri
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  surname: Anam
  fullname: Anam, Choirul
  email: anam@fisika.undip.ac.id
  organization: Department of Physics, Faculty of Mathematics and Natural Sciences, Diponegoro University, Jl. Prof. Soedarto SH, Tembalang, Semarang 50275, Central Java, Indonesia
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  givenname: Toshioh
  surname: Fujibuchi
  fullname: Fujibuchi, Toshioh
  organization: Department of Health Sciences, Faculty of Medical Sciences, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan
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  givenname: Freddy
  surname: Haryanto
  fullname: Haryanto, Freddy
  organization: Department of Physics, Faculty of Mathematics and Natural Sciences, Bandung Institute of Technology, Ganesha 10, Bandung 40132, West Java, Indonesia
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  givenname: Wahyu Setia
  surname: Budi
  fullname: Budi, Wahyu Setia
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  organization: Department of Physics, Faculty of Mathematics and Natural Sciences, Diponegoro University, Jl. Prof. Soedarto SH, Tembalang, Semarang 50275, Central Java, Indonesia
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  givenname: Kusworo
  surname: Adi
  fullname: Adi, Kusworo
  organization: Department of Physics, Faculty of Mathematics and Natural Sciences, Diponegoro University, Jl. Prof. Soedarto SH, Tembalang, Semarang 50275, Central Java, Indonesia
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  givenname: Zaenul
  surname: Muhlisin
  fullname: Muhlisin, Zaenul
  organization: Department of Physics, Faculty of Mathematics and Natural Sciences, Diponegoro University, Jl. Prof. Soedarto SH, Tembalang, Semarang 50275, Central Java, Indonesia
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  givenname: Geoff
  surname: Dougherty
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  organization: Department of Applied Physics and Medical Imaging, California State University Channel Islands, Camarillo, CA 93012, USA
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Snippet This study developed a simple wire phantom and an algorithm to automatically measure the modulation transfer function (MTF) in computed tomography (CT) and...
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SubjectTerms Algorithms
Automation
Computed tomography
CT scan
Cylinders
Fourier transforms
image quality
Image reconstruction
Line spread function
Medical imaging
Modulation transfer function
modulation transfer function (MTF)
Optical communication
Pixels
simple phantom
spatial resolution
Water purification
Wire
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Title Automated MTF measurement in CT images with a simple wire phantom
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