A review of my history of research on ultrasound tissue characterization of chronic liver disease for developing ultrasound clinical technology

Wells PNT. Review — absorption and dispersion of ultrasound in biological tissue. Ultrasound Med Biol. 1975;1:369–76.

Article  PubMed  Google Scholar 

Bamber JC, Hill CR. Acoustic properties of normal and cancerous human liver - I. Dependence on pathological condition. Ultrasound Med Biol. 1981;7:121–33.

Article  PubMed  Google Scholar 

Goss SA, Frizzell LA, Dunn F. Compilation of empirical ultrasonic properties of mammalian tissues II. J Acoust Soc Am. 1980;68:93–108.

Article  PubMed  Google Scholar 

Goss SA, Frizzell LA, Dunn F. Ultrasonic absorption and attenuation in mammalian tissues. Ultrasound Med Biol. 1979;5:181–6.

Article  PubMed  Google Scholar 

Parker KJ, Lerner RM, Waag RC. Attenuation of ultrasound: magnitude and frequency dependence for tissue characterization. Radiology. 1984;153:785–8.

Article  PubMed  Google Scholar 

Taylor KJW, Riely CA, Hammers L, et al. Quantitative US attenuation in normal liver and in patients with diffuse liver disease: importance of fat. Radiology. 1986;160:65–71.

Article  PubMed  Google Scholar 

Maklad NF, Ophir J, Balsara V. Attenuation of ultrasound in normal liver and diffuse liver disease in vivo. Ultrason Imaging. 1984;6:117–25.

Article  PubMed  Google Scholar 

Wilson L, Robinson D, Doust B. Frequency domain processing for ultrasonic attenuation measurement in liver. Ultrason Imaging. 1984;6:278–92.

Article  PubMed  Google Scholar 

Zimmermann KP, Smith JC. Ultrasound velocity in fixed human liver: empirical anova and regression modelling on histologically assessed abnormalities. Ultrason Imaging. 1983;5:280–94.

Article  PubMed  Google Scholar 

Chen CF, Robinson DE, Wilson LS, et al. Clinical sound speed measurement in liver and spleen in vivo. Ultrason Imaging. 1987;9:221–35.

PubMed  Google Scholar 

Dunn F, Law WK, Frizzell LA. Nonlinear ultrasonic wave propagation in biological materials. In: IEEE ultrasonics symposium; 1981. p. 527–32.

Cain CA. Ultrasonic reflection mode imaging of the nonlinear parameter B/A: I. A theoretical basis. J Acoust Soc Am. 1986;80:28–32.

Article  Google Scholar 

Errabolu RL, Sehgal CM, Greenleaf JF. Dependence of ultrasonic nonlinear parameter B/A on fat. Ultrason Imaging. 1987;9:180–94.

Article  PubMed  Google Scholar 

Akiyama I, Nakajima M, Yuta S. Proposal of nonlinearity parameter imaging by ultrasonic echo technique. Trans IECE. 1985;CJ68C:588–9 (in Japanese).

Google Scholar 

Akiyama I, Koide T, Iiumakura Y. Reflection imaging of nonlinearity parameter distribution. Jpn J Appl Phys. 1991;30:221–3.

Article  Google Scholar 

Burckhardt CB. Speckle in ultrasound B-mode scans. IEEE Trans Sonics Ultrason. 1978;SU-25:1–6.

Article  Google Scholar 

Wagner RF, Smith SW, Sandrik JM, et al. Statistics of speckle in ultrasound B-scans. IEEE Trans Sonics Ultrason. 1983;30:156–63.

Article  Google Scholar 

Smith SW, Wagner RF. Ultrasound speckle size and lesion signal to noise ratio: verification of theory. Ultrason Imaging. 1984;6:174–80.

PubMed  Google Scholar 

Tuthill TA, Sperry RH, Parker KJ. Deviations from rayleigh statistics in ultrasonic speckles. Ultrason Imaging. 1988;10:81–9.

Article  PubMed  Google Scholar 

Rumelhart DE, Hinton GE, Williams RJ. Learning representations by back-propagating errors. Nature. 1986;323:533–6.

Article  Google Scholar 

Yamaguchi T, Hachiya H. Estimation of the scatter distribution of cirrhotic liver using ultrasonic image. Jpn J Appl Phys. 1998;37:3093–6.

Article  Google Scholar 

Yamaguchi T, Hachiya H. Modeling of the cirrhotic liver considering the liver lobule structure. Jpn J Appl Phys. 1999;38:3388–92.

Article  Google Scholar 

Yamaguchi T, Hachiya H, Kamiyama N, et al. Estimation of characteristics of echo envelope using RF echo signal from the liver. Jpn J Appl Phys. 2001;40:3900–4.

Article  Google Scholar 

Kamiyama N, Yamaguchi T, Toyoda H, et al. Quantitative method for diffuse liver disease using statistical histogram. 79th JSUM Abstracts. 2006;33:S119 (in Japanese).

Google Scholar 

Toyoda H, Kumada T, Kamiyama N, et al. B-mode images with algorithm based on statistical analysis of ultrasound signals: evaluation of liver fibrosis in patients with chronic hepatitis C. AJR. 2009;193:1030–5.

Google Scholar 

Nakauchi S, Kamiyama N, Yamaguchi T, et al. Ultrasound liver tissue characterization — study of local heterogeneity parameters. 83rd JSUM Abstracts. 2010;37:83 (in Japanese).

Google Scholar 

Nakajima S, Shibuya K, Kamiyama N, et al. Comparison of ultrasound colored image views produced by application of statistical analysis of radio-frequency signals and histological findings in patients with chronic hepatitis C. J Med Ultrasonics. 2010;37:51–8.

Article  Google Scholar 

Kuroda H, Kakisaka K, Kamiyama N, et al. Non-invasive determination of hepatic steatosis by acoustic structure quantification from ultrasound echo amplitude. World J Gastroenterol. 2012;18:3889–95.

Article  PubMed  PubMed Central  Google Scholar 

Saito S, Denpo H, Kubota K, et al. Study of qualitative and quantitative inspection methods for liver fat using CAP and FD-ratio. 86th JSUM Abstracts. 2013;40:S276 (in Japanese).

Google Scholar 

Tamaki S, Tsuchiya K, Yasui Y, et al. Quantitative evaluation of diffuse liver disease using acoustic structure quantification. 88th JSUM Abstracts. 2015;42:517–24 (in Japanese).

Google Scholar 

Lee DH, Lee JY, Park MS, et al. Non-invasive monitoring of hepatic steatosis via acoustic structure quantification of ultrasonography with MR spectroscopy as the reference standard. Ultrasonography. 2019;39:70–8.

Article  PubMed  PubMed Central  Google Scholar 

Ludwig J, Viggiano TR, McGill DB, et al. Nonalcoholic steatohepatitis: Mayo Clinic experiences with a hitherto unnamed disease. Mayo Clin Proc. 1980;55:434–8.

Article  PubMed  Google Scholar 

Schaffner F. Non-alcoholic fatty liver. In: Berk JE, Haubrich WS, Kalser MH, editors. Bockus gastroenterology. 4th ed. Philadelphia: PA Saunders; 1985. p. 3049–61.

Google Scholar 

Suzuki K, Hayashi N, Sasaki Y, et al. Dependence of ultrasonic attenuation of liver on pathologic fat and fibrosis: examination with experimental fatty liver and liver fibrosis models. Ultrasound Med Biol. 1992;18:657–66.

Article  PubMed  Google Scholar 

Fujii Y, Taniguchi N, Itoh K, et al. A new method for attenuation coefficient measurement in the liver: comparison with the spectral shift central frequency method. J Ultrasound Med. 2002;21:783–8.

Article  PubMed  Google Scholar 

Fujii Y, Taniguchi N, Wang Y, et al. Study on ultrasound liver tissue characterization – evaluation of liver cirrhosis using histogram analysis of RF signal envelope amplitude using ROI segmentation. J Med Ultrasonics. 2001;28:25–33 (in Japanese).

Google Scholar 

Kanayama Y, Kamiyama N, Maruyama K, et al. Real-time ultrasound attenuation imaging of diffuse fatty liver disease. Ultrasound Med Biol. 2013;39:692–705.

Article  PubMed  Google Scholar 

Yao LX, Zagzebski JA, Madsen EL. Backscatter coefficient measurements using a reference phantom to extract depth-dependent instrumentation factors. Ultrason Imaging. 1980;12:58–70.

Article  Google Scholar 

Oguri T, Kamiyama N, Kato S, et al. Considerations on ultrasound transmission/reception conditions for fatty liver attenuation imaging. Acoustic Imaging Study Group, Japan Society of Acoustics. 2015;AI2015-4-08 (in Japanese)

Oguri T, Kamiyama N, Hashimoto H, et al. Considerations on optimizing transmission/reception conditions for ultrasound attenuation imaging. 89th JSUM Abstracts. 2016;43:S552 (in Japanese).

Google Scholar 

Fujiwara Y, Kuroda H, Abe T, et al. The B-mode image-guided ultrasound attenuation parameter accurately detects hepatic steatosis in chronic liver disease. Ultrasound Med Biol. 2018;44:2223–32.

Article  PubMed  Google Scholar 

Tada T, Kumada T, Toyoda H, et al. Utility of attenuation coefficient measurement using an ultrasound-guided attenuation parameter for evaluation of hepatic steatosis: comparison with MRI-determined proton density fat fraction. AJR. 2018;212:332–41.

Article  PubMed  Google Scholar 

Tada T, Kumada T, Toyoda H, et al. Liver stiffness does not affect ultrasound-guided attenuation coefficient measurement in the evaluation of hepatic steatosis. Hepatol Res. 2019;50:190–8.

Article  PubMed  Google Scholar 

Kuroda H, Fujiwara Y, Abe T, et al. Two-dimensional shear wave elastography and ultrasound-guided attenuation parameter for progressive non-alcoholic steatohepatitis. PLoS ONE. 2021. https://doi.org/10.1371/journal.pone.0249493.

Article  PubMed  PubMed Central  Goo

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