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Published in: Radiological Physics and Technology 1/2009

01-01-2009

Need for liquid–crystal display monitors having the capability of rendering higher than 8 bits in display-bit depth

Authors: Takeshi Hiwasa, Junji Morishita, Shiro Hatanaka, Masafumi Ohki, Fukai Toyofuku, Yoshiharu Higashida

Published in: Radiological Physics and Technology | Issue 1/2009

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Abstract

Our purpose in this study was to examine the potential usefulness of liquid–crystal display (LCD) monitors having the capability of rendering higher than 8 bits in display-bit depth. An LCD monitor having the capability of rendering 8, 10, and 12 bits was used. It was calibrated to the grayscale standard display function with a maximum luminance of 450 cd/m2 and a minimum of 0.75 cd/m2. For examining the grayscale resolution reported by ten observers, various simple test patterns having two different combinations of luminance in 8, 10, and 12 bits were randomly displayed on the LCD monitor. These patterns were placed on different uniform background luminance levels, such as 0, 50, and 100%, for maximum luminance. All observers participating in this study distinguished a smaller difference in luminance than one gray level in 8 bits irrespective of background luminance levels. As a result of the adaptation processes of the human visual system, observers distinguished a smaller difference in luminance as the luminance level of the test pattern was closer to the background. The smallest difference in luminance that observers distinguished was four gray levels in 12 bits, i.e., one gray level in 10 bits. Considering the results obtained by use of simple test patterns, medical images should ideally be displayed on LCD monitors having 10 bits or greater so that low-contrast objects with small differences in luminance can be detected and for providing a smooth gradation of grayscale.
Literature
5.
go back to reference Kimura N, Fujioka K. Fundamentals of liquid crystal displays and its recent technology. Jpn J Rad Tech. 2004;60(10):1361–8 (in Japanese). Kimura N, Fujioka K. Fundamentals of liquid crystal displays and its recent technology. Jpn J Rad Tech. 2004;60(10):1361–8 (in Japanese).
6.
go back to reference Hashimoto N. Image display devices (1). Jpn J Rad Tech. 2002;58(10):1297–302 (in Japanese). Hashimoto N. Image display devices (1). Jpn J Rad Tech. 2002;58(10):1297–302 (in Japanese).
7.
go back to reference Hashimoto N. Image display devices (3) LCD monitor. Jpn J Rad Tech. 2003;59(1):21–8 (in Japanese). Hashimoto N. Image display devices (3) LCD monitor. Jpn J Rad Tech. 2003;59(1):21–8 (in Japanese).
8.
go back to reference The Illuminating Engineering Institute of Japan. Lighting handbook. Tokyo: Ohmsha; 2006. p. 17–36 (in Japanese). The Illuminating Engineering Institute of Japan. Lighting handbook. Tokyo: Ohmsha; 2006. p. 17–36 (in Japanese).
9.
go back to reference Flynn MJ. Visual requirements for high-fidelity display, advances in digital radiography: RSNA categorical course in diagnostic radiology physics 2003; 103–7. Flynn MJ. Visual requirements for high-fidelity display, advances in digital radiography: RSNA categorical course in diagnostic radiology physics 2003; 103–7.
10.
go back to reference Flynn MJ, Kanicki J, Badano A, Eyler WR. High fidelity electronic display of digital radiographs. Radiographics. 1999;19:1653–69.CrossRefPubMed Flynn MJ, Kanicki J, Badano A, Eyler WR. High fidelity electronic display of digital radiographs. Radiographics. 1999;19:1653–69.CrossRefPubMed
11.
go back to reference Samei E. AAPM/RSNA Physics tutorial for residents technological and psychophysical considerations for digital mammographic d[t]isplays. Radiographics. 2005;25:491–501.CrossRefPubMed Samei E. AAPM/RSNA Physics tutorial for residents technological and psychophysical considerations for digital mammographic d[t]isplays. Radiographics. 2005;25:491–501.CrossRefPubMed
12.
go back to reference Giger ML, Ohara K, Doi K. Investigation of basic imaging properties in digital radiography 9. Effect of displayed grey levels on signal detection. Med Phys. 1986;13:312–8.CrossRefPubMed Giger ML, Ohara K, Doi K. Investigation of basic imaging properties in digital radiography 9. Effect of displayed grey levels on signal detection. Med Phys. 1986;13:312–8.CrossRefPubMed
13.
go back to reference Giger ML, Ohara K, Doi K. Effect of quantization on digitized noise and detection of low-contrast objects. Proc Soc Photo Opt Instrum Eng. 1986;626:214–24. Giger ML, Ohara K, Doi K. Effect of quantization on digitized noise and detection of low-contrast objects. Proc Soc Photo Opt Instrum Eng. 1986;626:214–24.
14.
Metadata
Title
Need for liquid–crystal display monitors having the capability of rendering higher than 8 bits in display-bit depth
Authors
Takeshi Hiwasa
Junji Morishita
Shiro Hatanaka
Masafumi Ohki
Fukai Toyofuku
Yoshiharu Higashida
Publication date
01-01-2009
Publisher
Springer Japan
Published in
Radiological Physics and Technology / Issue 1/2009
Print ISSN: 1865-0333
Electronic ISSN: 1865-0341
DOI
https://doi.org/10.1007/s12194-008-0051-0

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