Normal values of liver elasticity measured by real-time tissue elastography (RTE) in healthy infants and children
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Abdi W, Millan JC, Mezey E. Sampling variability on percutaneous liver biopsy. Arch Intern Med. 1979;139:667–9.
Castéra L, Nègre I, Samii K, et al. Pain experienced during percutaneous liver biopsy. Hepatology. 1999;30:1529–30.
Piccinino F, Sagnelli E, Pasquale G, et al. Complications following percutaneous liver biopsy. A multicentre retrospective study on 68,276 biopsies. J Hepatol. 1986;2:165–73.
Maharaj B, Maharaj RJ, Leary WP, et al. Sampling variability and its influence on the diagnostic yield of percutaneous needle biopsy of the liver. Lancet. 1986;1:523–5.
Poniachik J, Bernstein DE, Reddy KR, et al. The role of laparoscopy in the diagnosis of cirrhosis. Gastrointest Endosc. 1996;43:568–71.
Goldschmidt I, Baumann U. Hepatic fibrosis in paediatric liver disease. Clin Res Hepatol Gastroenterol. 2012;36:268–70.
Engelmann G, Gebhardt C, Wenning D, et al. Feasibility study and control values of transient elastography in healthy children. Eur J Pediatr. 2012;171:353–60.
Castéra L, Vergniol J, Foucher J, et al. Prospective comparison of transient elastography, Fibrotest, APRI, and liver biopsy for the assessment of fibrosis in chronic hepatitis C. Gastroenterology. 2005;128:343–50.
Castéra L, Forns X, Alberti A. Non-invasive evaluation of liver fibrosis using transient elastography. J Hepatol. 2008;48:835–47.
de Ledinghen V, Douvin C, Kettaneh A, et al. Diagnosis of hepatic fibrosis and cirrhosis by transient elastography in HIV/hepatitis C virus-coinfected patients. J Acquir Immune Defic Syndr. 2006;41:175–9.
Sporea I, Badea R, Sirli R, et al. How efficient is acoustic radiation force impulse elastography for the evaluation of liver stiffness? Hepat Mon. 2011;11:532–8.
Ferraioli G, Tinelli C, DAl Bello B, et al. Accuracy of real-time shear wave elastography for assessing liver fibrosis in chronic hepatitis C: a pilot study. Hepatology. 2012;56:2125–33.
Noruegas MJ, Matos H, Gonçalves I, et al. Acoustic radiation force impulse-imaging in the assessment of liver fibrosis in children. Pediatr Radiol. 2012;42:201–4.
Nobili V, Monti L, Alisi A, et al. Transient elastography for assessment of fibrosis in paediatric liver disease. Pediatr Radiol. 2011;41:1232–8.
Eiler J, Kleinhildermann U, Albers D, et al. Standard value of ultrasound elastography using acoustic radiation force impulse imaging (ARFI) in healthy liver tissue of children and adolescents. Ultraschall Med. 2012;33:474–9.
Morikawa H, Fukuda K, Kobayashi S, et al. Real-time tissue elastography as a tool for the noninvasive assessment of liver stiffness in patients with chronic hepatitis C. J Gastroenterol. 2011;46:350–8.
Tatsumi C, Kudo M, Ueshima K, et al. Non-invasive evaluation of hepatic fibrosis for type C chronic hepatitis. Intervirology. 2010;53:76–81.
Dittrich M, Milde S, Dinkel E, et al. Sonographic biometry of liver and spleen size in childhood. Pediatr Radiol. 1983;13:206–11.
Yamakawa M, Shiina T. Strain estimation using the extended combined autocorrelation method. Jpn J Appl Phys. 2001;40:3872–6.
Nitta N, Yamakawa M, Shiina T. Tissue elasticity imaging based on combined autocorrelation method and 3D tissue model. In: Proceedings of the IEEE Ultrasonics Symposium. Savoy, III: Institute of Electrical and Electronics Engineers Ultrasonics, Ferroelectrics, and Frequency Control Digital Archive, vol. 2. 1998. p.1447–50.
Shrout PE, Fleiss JL. Intraclass correlation: uses in assessing rater reliability. Psychol Bull. 1979;86:420–8.
Morikawa H. Real-time tissue elastography and transient elastography for evaluation of hepatic fibrosis. In: Tagaya N, editor. Liver Biopsy-Indications, Procedures, Results. Rijeka: InTech; 2012. p. 281–92.
Millonig G, Reimann FM, Friedrich S, et al. Extrahepatic cholestasis increases liver stiffness (Fibroscan) irrespective of fibrosis. Hepatology. 2008;48:1718–23.
Millonig G, Friedrich S, Adolf S, et al. Liver stiffness is directly influenced by central venous pressure. J Hepatol. 2010;52:206–10.
Calvaruso V, Camma C, Di Marco V, et al. Fibrosis staging in chronic hepatitis C: analysis of discordance between transient elastography and liver biopsy. J Viral Hepat. 2010;17:469–74.
Castera L, Foucher J, Bernard P, et al. Pitfalls of liver stiffness measurement: a 5-year prospective study of 13,369 examinations. Hepatology. 2010;51:828–35.
Friedrich-Rust M, Ong MF, Herrmann E, et al. Real-time elastography for noninvasive assessment of liver fibrosis in chronic viral hepatitis. AJR Am J Roentgenol. 2007;188:758–64.
Binkovitz LA, El-Youssef M, Glaser KJ, et al. Pediatric MR elastography of hepatic fibrosis: principles, technique and early clinical experience. Pediatr Radiol. 2012;42:402–9.
Lee DH, Lee JM, Han JK, et al. MR elastography of healthy liver parenchyma: normal value and reliability of the liver stiffness value measurement. J Magn Reson Imaging. 2012. doi: 10.1002/jmri.23958 .
Roulot D, Czernichow S, Le Clésiau H, et al. Liver stiffness values in apparently healthy subjects: influence of gender and metabolic syndrome. J Hepatol. 2008;48:606–13.
Motosugi U, Ichikawa T, Amemiya F, et al. Cross-validation of MR elastography and ultrasound transient elastography in liver stiffness measurement: discrepancy in the results of cirrhotic liver. J Magn Reson Imaging. 2012;35:607–10.
Faria SC, Ganesan K, Mwangi I, et al. MR imaging of liver fibrosis: current state of the art. Radiographics. 2009;29(6):1615–35.
Friedrich-Rust M, Schwarz A, Ong M, et al. Real-time tissue elastography versus FibroScan for noninvasive assessment of liver fibrosis in chronic liver disease. Ultraschall in Med. 2009;30:478–84.
Gulizia R, Ferraioli G, Filice C. Open questions in the assessment of liver fibrosis using real-time elastography. AJR Am J Roentgenol. 2008;190:W370–1.
Orlacchio A, Bolacchi F, Antonicoli M, et al. Liver elasticity in NASH patients evaluated with real-time elastography (RTE). Ultrasound Med Biol. 2012;38:537–44.
Hirooka M, Koizumi Y, Hiasa Y, et al. Hepatic elasticity in patients with ascites: evaluation with real-time tissue elastography. AJR Am J Roentgenol. 2011;196:W766–71.
Havre RF, Waage JR, Gilja OH, et al. Real-time elastography: strain ratio measurements are influenced by the position of the reference area. Ultraschall in Med. 2011;33:559–68.