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Imaging findings of mimickers of hepatocellular carcinoma

Clinical and Molecular Hepatology 2015;21(4):326-343.
Published online: December 24, 2015

1Department of Medical Imaging, Toronto General Hospital, University of Toronto, Toronto, ON, Canada.

2Department of Radiology, Seoul National University Bundang Hospital, Seongnam, Korea.

Corresponding author: Tae Kyoung Kim. Department of Medical Imaging, Toronto General Hospital, University of Toronto, M5G 2N2 585 University Avenue, Toronto, ON, Canada. Tel: +1-416-340-3372, Fax: +1-416-593-0502, taekyoung.kim@uhn.ca
• Received: August 13, 2015   • Accepted: August 15, 2015

Copyright © 2015 by The Korean Association for the Study of the Liver

This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

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Imaging findings of mimickers of hepatocellular carcinoma
Clin Mol Hepatol. 2015;21(4):326-343.   Published online December 24, 2015
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Imaging findings of mimickers of hepatocellular carcinoma
Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image Image
Figure 1 Arterioportal shunt in 70-year-old man with hepatitis B. (A) There is a wedge shaped subcapsular hyperattenuating lesion in the liver. There is a tubular hyperattenuating structure (arrow) representing early opacification of the branching portal vein due to arterioportal shunt. (B) In the portal venous phase, the lesion is not visible due to isoattenuation.
Figure 2 Fast filling and fading hemangioma with ar teriopor tal shunt in 75-year-old woman. (A) CT scan in the arterial phase shows a homogenously enhancing nodule (arrow) associated with a wedge shaped hyperenhancement representing a hemangioma with arterioportal shunt. (B) In the portal venous phase, the hemangioma (arrow) is homogenously enhancing but with a lesser degree than portal vein. The arterioportal shunt which was shown in the arterial phase is not seen due to isoattenuation.
Figure 3 Hemangioma in 45-year-old woman with hepatitis B. (A) CT in the arterial phase shows hypervascular mass (arrow) with heterogeneous enhancement. (B) CT in the delayed phase shows homogenous hypervascular mass (arrow) in the liver. (C) On gray scale US, the mass shows hypoechogenicity (arrow). The mass shows peripheral nodular enhancement with rapid central filling in two consecutive images (D, E; arrows) of CEUS after microbubble disruption using high mechanical-index frames. The mass shows strong homogenous enhancement in the late phase (F; arrows), which is diagnostic of hemangioma.
Figure 4 Hemangioma in 40-year-old woman with hepatitis B. (A) Arterial phase of T1-weighed postcontrast image with gadoxetic acid shows heterogeneous hypervascular nodule (arrow) in the liver. (B) In portal venous phase the nodule (arrow) shows hyperenhancement. (C) In hepatobiliary phase, the nodule (arrow) shows marked hypointensity. (D) On T2-weighted image, the nodule (arrow) is markedly hyperintense.
Figure 5 Sclerosed hemangioma in 69-year-old woman. (A) Unenhanced T1-weighted MR image shows a hypointense mass (arrow) in the liver. There is mild peripheral enhancement of the mass (arrow) in the arterial phase (B) which progresses in the late phase (C, arrow). However, there is no typical enhancement pattern for hemangioma. (D) On T2-weighted image, the mass (arrow) is mildly hyperintense.
Figure 6 Focal fat sparing in 69-year-old man with nonalcoholic steatohepatitis. (A) Oblique ultrasound scan shows a hypoechoic mass like lesion (arrows) in the liver. (B) CT scan in the portal venous phase shows an aberrant drainage of the right gastric vein (arrows) into the segment 4b of the liver, which shows slight hyperattenuation.
Figure 7 Focal fat sparing in 59-year-old woman with nonalcoholic steatohepatitis. (A) US scan shows a hypoechoic nodule (arrow) in the fatty liver. (B) Noncontrast CT shows fatty infiltration more severely involving the right lobe of the liver with a small hyperattenuating nodule (arrows). (C) In the arterial phase, the nodule (arrows) is slightly hyperattenuating compared to the surrounding liver with fatty infiltration. In phase (D) and out of phase (E) T1-weighted MR images show a diffuse reduction of liver signal intensity in the out of phase representing diffuse fatty liver, more severely involving the right liver. There is a hyperintense nodule (arrow) only visualized in the out of phase (E) representing nodular focal fat sparing.
Figure 8 Multifocal fat deposit in 40-year-old woman with hepatitis B cirrhosis. (A) CT in venous shows multifocal ill-defined hypoattenuating lesions throughout the liver. In phase (B) T1-weighted MR image shows multifocal hepatic lesions which show signal-drop in the out of phase (C), confirming multifocal fat deposit.
Figure 9 Perivascular fat deposition in 63-year-old woman with alcoholic liver cirrhosis. (A) On noncontrast image, there is marked hypoattenuating subcapuslar lesion (arrows) in the left lobe. The lesion (arrows) shows heterogeneous enhancement in the arterial phase (B) and shows marked hypoenhancement in the delayed phase (C).
Figure 10 Abscess with portal vein thrombosis in 54-year-old woman in hepatitis C cirrhosis. On CT scan in the portal vein phase (A, B), there is thrombosis (arrow) within the portal vein. There is an exophytic heterogeneous hypoattenuating mass (B, short arrow) in the left lobe of the liver. Biopsy revealed a pyogenic abscess
Figure 11 Inf lammatory mass in 66-year-old man with hepatitis C cirrhosis. (A) CT in the arterial phase show a heterogeneous hypoattenuating mass (arrow) in the right lobe of the liver. (B) Oblique gray scale ultrasound shows a heterogeneous hypoechoic mass (arrow) in the liver. CEUS in the arterial (C) and venous (D) phase shows no enhancement in the lesion, confirming the diagnosis of avascular non-tumorous lesion (arrow).
Figure 12 Inflammatory pseudotumor in 39-year-old man. (A) T2-weighted MR image shows a mildly hyperintense mass (arrow) in the liver. (B) Gadolinium-enhanced T1-weighted image in the arterial phase shows ill-defined rim-like enhancement (arrow). (C) Delayed-phase gadolinium-enhanced T1-weighted MR image demonstrates retention of contrast agent within the mass (arrow) reflecting internal fibrosis. Biopsy revealed an inflammatory pseudotumor.
Figure 13 Inflammatory pseudotumor in 50-year-old woman. (A) Arterial phase CT scan shows a large mass (arrow) with heterogeneous enhancement and irregular intralesional arteries. (B) In the delayed phase, the mass (arrow) is heterogeneously hypoattenuating. Surgery revealed an inflammatory pseudotumor.
Figure 14 Portal vein thrombosis zones in 46-year-old woman with hepatitis B cirrhosis. (A) In the arterial phase, there is a large hypoattenuating mass like lesion surrounding the hepatic vessels. (B) In the portal venous phase scan shows extensive chronic portal vein thrombosis. The perivascular lesion remains hypoattenuating. (C) In the delayed phase, the lesion shows isoenhancement to the liver.
Figure 15 Confluent fibrosis in 63-year-old man with hepatitis B cirrhosis. (A) On T2-weighted image, there is an irregular hyperintense lesion (arrows) in the right lobe of the liver. (B) The lesion is slightly hypervascular in the arterial phase (arrows). There is slight capsular retraction of the liver (short arrow). (C) In 3 minutes delay, the lesion (arrows) is slightly hypointense. (D) In the hepatobiliary phase, the lesion (arrows) in markedly hypointense.
Figure 16 Confluent fibrosis in 46-year-old woman with alcoholic liver cirrhosis. (A) On T1-weighted MR image, the liver shows heterogeneous signal intensity. (B) In the arterial phase, there is a heterogeneous hypervascular lesion in the subcapsular portion (arrows) with mild capsular retraction. (C) In delayed phase, the lesion (arrows) shows mild hyperenhancement relative to the liver. (D) On diffusion-weighted image, the lesion is hyperintense.
Figure 17 Large regenerative nodules and confluent fibrosis in 41-year-old woman with Budd-Chiari syndrome. (A) On T2-weighted image, there are multiple hypointense nodules (arrows). There are irregular hyperintense lesions (short arrows) representing confluent fibrosis associated with Budd-Chiari syndrome. (B) In the arterial phase of gadoxetic acid enhanced T1-weighted imaging, the nodules (arrows) are homogenously hypervascular. (C) The nodules (arrows) remain hyperenhancing at 3 minutes delay. (D) The nodules (arrows) are strongly hyperintense in the hepatobiliary phase. There are irregular hypoenhancing lesions representing confluent fibrosis (short arrows).
Figure 18 Intrahepatic mass-forming CC in 56-year-old woman with hepatitis B. (A) CT scan in the arterial phase shows mass (arrow) with heterogeneous hypervascularity. (B) The mass (arrow) shows persistent hyperattenuation in the delayed phase. (C) The mass (arrow) is hyperintense on T2-weighted MR image. (D) On T1-weighted image, the mass (arrow) is hypointense. The mass (arrow) is hyperintense in the arterial phase (E) and delayed phase (F).
Figure 19 Intrahepatic mass-forming cholangiocarcinoma in 56-year-old woman with hepatitis B cirrhosis. (A) CT in the arterial phase show subcapsular hypoattenuating mass (arrow) with peripheral enhancement. (B) In the portal venous phase, the mass (arrow) is hypoattenuating. (C) Contrast enhanced ultrasound at 14 seconds show a mass (arrow) with mild peripheral hypervascularity. (D) At 15 seconds the tumor (arrow) shows diffuse heterogeneous hypervascularity. (E) At 28 seconds, tumor shows rapid wash-out. (F) At 108 seconds, the mass (arrow) shows marked wash out and is seen as punched out lesion.
Figure 20 Mixed hepatocellular carcinoma/cholangiocarcinoma in 61-year-old woman. (A) In the arterial phase, there is hypoattenuating mass (arrow) with peripheral enhancement. There is a hypervascular mass (short arrow) in the left lobe, representing focal nodular hyperplasia. The mass (arrow) is hypoattenuating in portal venous phase (B) and delayed phase (C). There is central hyperenhancing area in the delayed phase (C).
Figure 21 Fat-deficit angiomyolipoma in 43-year-old woman. (A) T1-weighted image shows mass (arrow) with multiple hyperintense foci representing hemorrhagic necrosis in the left lobe. There are two typical hemangiomas (short arrows). Arterial (B) and venous (C) phase postcontrast T1-weighted images show heterogeneous enhancement with areas of nonenhancing necrosis. (D) On T2-weighted image, the mass shows hyperintensity with small areas of hemorrhagic necrosis showing fluid-fluid levels.
Figure 22 Regenerative nodule in 53-year-old woman with Budd-Chiari syndrome. (A) CT in the arterial phase shows heterogeneous enhancement of the liver, central hypertrophy with hyperenhancement which is characteristic findings of Budd-Chiari syndrome. There is a subcapsular hypervascular nodule (arrow). The nodule (arrow) remains hyperattenuating at 3 minutes delay (B). Three consecutive CEUS in the arterial phase (C, D, and E) show hypervascularity with centrifugal enhancement of the nodule (arrow). (F) At 3 minutes delay, the nodule (arrow) shows sustained hyperenhancement.
Figure 23 Hereditary hemorrhagic telangiectasia in 65-year-old woman. Three CT images in the arterial phase (A, B, and C) show early opacification of the hepatic vein due to arteriovenous shunt (A) and marked heterogeneous enhancement with ill-defined hypervascular focal abnormalities throughout the liver. Common hepatic artery (arrow) is markedly enlarged (C).
Imaging findings of mimickers of hepatocellular carcinoma