Literature DB >> 26685836

[Development of a Novel Body Phantom with Bone Equivalent Density for Evaluation of Bone SPECT].

Hajime Ichikawa1, Kenta Miwa, Norikazu Matsutomo, Yoichi Watanabe, Toyohiro Kato, Hideki Shimada.   

Abstract

We developed a custom-designed phantom for bone single photon emission computed tomography (SPECT)-specific radioactivity distribution and linear attenuation coefficient. The aim of this study was to evaluate the accuracy of the phantom. The lumbar phantom consisted of the trunk of a body phantom (background) containing a cylinder (vertebral body), a sphere (tumor), and a T-shaped container (processus). The vertebral body, tumor, and processus phantoms contained a K(2)HPO(4) solution of bone equivalent density and 50, 300 and 50 kBq/mL of (99m)Tc, respectively. The body phantom contained 8 kBq/mL of (99m)Tc solution. SPECT images were acquired using low-energy high-resolution collimation, a 128 × 128 matrix and 120 projections over 360° with a dwell time of 15 sec/view × 4 times. Thereafter, CT images were acquired at 130 kV and 70 ref mAs using adaptive dose modulation. The SPECT data were reconstructed with ordered subset expectation maximization with three-dimensional, scatter, and CT-based attenuation correction. Count ratio, linear attenuation coefficient (LAC), and full-width at half-maximum (FWHM) were measured. Count ratios between the background, the vertebral body, and the tumor in SPECT images were 463.8: 2888.0: 15150.3 (1: 6.23: 32.7). The LAC of the background and vertebral body in the CT-derived attenuation map were 0.155 cm⁻¹ and 0.284 cm⁻¹, respectively, and the FWHM measured from the processus was 15.27 mm. The precise counts and LAC indicated that the phantom was accurate and could serve as a tool for evaluating acquisition, reconstruction parameters, and quantitation in bone SPECT images.

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Year:  2015        PMID: 26685836     DOI: 10.6009/jjrt.2015_JSRT_71.12.1235

Source DB:  PubMed          Journal:  Nihon Hoshasen Gijutsu Gakkai Zasshi        ISSN: 0369-4305


  3 in total

1.  Phantom and clinical evaluation of bone SPECT/CT image reconstruction with xSPECT algorithm.

Authors:  Noriaki Miyaji; Kenta Miwa; Ayaka Tokiwa; Hajime Ichikawa; Takashi Terauchi; Mitsuru Koizumi; Masahisa Onoguchi
Journal:  EJNMMI Res       Date:  2020-06-29       Impact factor: 3.138

2.  The usefulness of SwiftScan technology for bone scintigraphy using a novel anthropomorphic phantom.

Authors:  Takayuki Shibutani; Masahisa Onoguchi; Yuka Naoi; Hiroto Yoneyama; Takahiro Konishi; Ringo Tatami; Kenichi Nakajima
Journal:  Sci Rep       Date:  2021-01-29       Impact factor: 4.379

3.  On the optimization of bone SPECT/CT in terms of image quality and radiation dose.

Authors:  Monika Tulik; Piotr Tulik; Teresa Kowalska
Journal:  J Appl Clin Med Phys       Date:  2020-10-27       Impact factor: 2.243

  3 in total

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