Normal Sonographic Anatomy

Similar documents
Anatomy Jessica Ferguson Ashley Dobos May 31, 2006 LIVER

Abdominal ultrasound:

My Patient Has Abdominal Pain PoCUS of the Biliary Tract and the Urinary Tract

Imaging of common diseases of hepatobiliary and GI system

Guidelines, Policies and Statements D5 Statement on Abdominal Scanning

Abdominal Ultrasound. Diane Hallinen, MD. Bloodroot

Surface Anatomy. Location Shape Weight Role of Five Surfaces Borders Fissures Lobes Peritoneal Lig

Abdominal Sonography Review

Abdomen and Retroperitoneum Ultrasound Protocols

Radiology of hepatobiliary diseases

Accessory Glands of Digestive System

Basic Abdominal Sonography

ULTRASOUND NOMENCLATURE

Q129. Which of the following is NOT true about lymph node?

Use of Ultrasound in NAFLD

Imaging of liver and pancreas

IT 의료융합 1 차임상세미나 복부질환초음파 이재영

HEPATO-BILIARY IMAGING

Interesting Cases from Liver Tumor Board. Jeffrey C. Weinreb, M.D.,FACR Yale University School of Medicine

US in non-traumatic acute abdomen. Lalita, M.D. Radiologist Department of radiology Faculty of Medicine ChiangMai university

Basic of Ultrasound Physics E FAST & Renal Examination. Dr Muhammad Umer Ihsan MBBS,MD, DCH CCPU,DDU1,FACEM

Abdominal Ultrasound

Duodenum retroperitoneal

EFSUMB Course Book, 2 nd Edition

Contents. Basic Ultrasound Principles and Terminology. Ultrasound Nodule Characteristics

Category Term Definition Comments 1 Major Categories 1a

DIAGNOSTIC IMAGING: LIVER DISEASE

What is Ultrasound? What is Ultrasound? B A. Basic Principles of Ultrasound. Basic Principles of Ultrasound. Basic Principles of Ultrasound

Pediatric Hepatobiliary, Pancreatic & Splenic US

Lecture 02 Anatomy of the LIVER

1 Right & left Hepatic ducts Gastric Impression of spleen

Scrotum Kacey Morrison Amanda Baxter Sabrina Tucker July 18, 2006 SCROTUM

4/9/2018 OBJECTIVES PANCREAOTO BILIARY ULTRASOUND: BEYOND CHOLECYSTITIS

Biliary Ultrasonography Kathleen O Brien MD MPH RDMS Kaiser Permanente South Sacramento

CTA/MRA of Pediatric Hepatic Masses Radiology-Pathology Correlation

Evaluation of Liver Mass Lesions. American College of Gastroenterology 2013 Regional Postgraduate Course

Liver Ultrasound - Beyond the Basics. Pamela Parker Lead Sonographer

of Thyroid Lesions Comet Tail Crystals

Chapter 3. Sonographic Image Interpretation

The Focal Hepatic Lesion: Radiologic Assessment

CT 101 :Pancreas and Spleen

Guide to Small Animal Vascular Imaging using the Vevo 770 Micro-Ultrasound System

Sex: 女 Age: 51 Occupation: 無 Admission date:92/07/22

Peritoneum: Def. : It is a thin serous membrane that lines the walls of the abdominal and pelvic cavities and clothes the viscera.

To describe the liver. To list main structures in porta hepatis.

US LI-RADS v2017 CORE

Shadow because the air

We are IntechOpen, the world s leading publisher of Open Access books Built by scientists, for scientists. International authors and editors

Recently role of non-invasive diagnostics methods

Policies, Standards, and Guidelines. Guidelines for Abdominal Ultrasound Examination

Case-based discussion:

Hepatic Imaging: What Every Practitioner Should Know

Surgical anatomy of the biliary tract

Leonard M. Glassman MD

Exploring Anatomy: the Human Abdomen

Hepatobiliary Ultrasound Rimon Bengiamin, MD, RDMS Assistant Clinical Professor Director of Emergency Ultrasound UCSF Fresno. Objectives. Why?

IN THE NAME OF GOD POV: CYSTIC OVARIAN LESION

Pancreas & Biliary System. Dr. Vohra & Dr. Jamila

Thyroid and Parathyroid Ultrasound Protocol

Role of imaging in RCC. Ultrasonography. Solid lesion. Cystic RCC. Solid RCC 31/08/60. From Diagnosis to Treatment: the Radiologist Perspective

The peritoneum. Prof. Oluwadiya KS, MBBS, FMCS(Orthop) Website:

Chest X-ray Interpretation

Appendix 5. EFSUMB Newsletter. Gastroenterological Ultrasound

Kidney Case 1 SURGICAL PATHOLOGY REPORT

Urinary system Ultrasound (Renal & Urinary bladder)

X-Ray Corner. Imaging Approach to Cystic Liver Lesions. Pantongrag-Brown L. Solitary cystic liver lesions. Hepatic simple cyst (Figure 1)

Abdominal Ultrasound : Aorta, Kidneys, Bladder

CT abdomen and pelvis

Point-of-Care Ultrasound Guide for Landmarks, Recording, and Report Content. TJUH/MHD EM Ultrasound Division 2012

TIN COLLOID LIVER/SPLEEN SCINTIGRAPHY THIRD YEAR MEDICAL STUDENTS DIAGNOSTIC BLOCK

GASTRIC ULTRASOUND. A Point-of-care tool for aspiration risk assessment.

Ultrasound 5/1/2017. Ultrasound in the FNA Clinic. Uses of Ultrasound Outside of. Cardiology

Looking Outside the Box: Incidental Extracardiac Finding in Echo

Abdominal Ultrasonography

Ultrasonography of Peritoneal and Retroperitoneal Spaces and Abdominal Lymph Nodes

The abdominal Esophagus, Stomach and the Duodenum. Prof. Oluwadiya KS

Lecture 3. Inflammatory Processes

د. عصام طارق. Objectives:

Sonographic imaging of pediatric thyroid disorders in childhood. Experiences and report in 150 cases

Essentials of Clinical MR, 2 nd edition. 65. Benign Hepatic Masses

Multiple Primary Quiz

Acute flank pain in children: Imaging considerations

AACE/ACE Advanced Endocrine Neck Ultrasound Training Course 2016

Liver o The liver is the largest gland in the body and has a wide variety of functions. - It s an accessory organ of GIT

ACRIN 6666 IM Additional Evaluation: Additional Views/Targeted US

Liver Tumors. Prof. Dr. Ahmed El - Samongy

CT & MRI of Benign Liver Neoplasms Srinivasa R Prasad

The posterior abdominal wall. Prof. Oluwadiya KS

Block 3: DISSECTION 2 CELIAC TRUNK, JEJUNUM/ILEUM, LARGE INTESTINE, DUODENUM, PANCREAS, PORTAL VEIN; MOBILIZATION OF THE LIVER

OF HEMATOMA INTRACRANIAL HEMORRHAGE

Pocket-sized versus standard ultrasound machines in abdominal imaging

The Whipple Operation Illustrations

GENERAL ABDOMINAL IMAGING PERITONEAL SPACE, PANCREAS, & SPLEEN. VMB 960 March 25, 2013

Mousa Salah. Dr. Mohammad Al. Mohtasib. 1 P a g e

Renal masses - the role of diagnostic imaging

The Adnexal Mass. Handout NCUS 3/18/2017 Suzanne Dixon, MD

The Spleen. Dr Fahad Ullah

Objectives. Hepatobiliary Ultrasound: Anatomy, Technique, Pathology. RUQ: Normal Anatomy. Emergency Ultrasound: Gallbladder Location

Anatomy of the SMALL INTESTINE. Dr. Noman Ullah Wazir PMC

Sparing of Fatty Infiltration Around Focal Hepatic Lesions in Patients with Hepatic Steatosis: Sonographic Appearance with CT and MRI Correlation

Transcription:

hapter 2:The Liver DUNSTAN ABRAHAM Normal Sonographic Anatomy Homogeneous, echogenic texture (Figure 2-1) Measures approximately 15 cm in length and 10 12.5 cm anterior to posterior; measurement taken at mid clavicular in longitudinal section Divisions right, left, and caudate lobes (Figure 2-2) Main lobar fissure Echogenic line extending to gallbladder fossa (Figure 2-3) Separates right and the left lobes Falciform ligament (contains ligamentum teres) Round, hyperechoic area in left lobe (Figure 2-3) Divides left lobe into medial and lateral segments Fissure for ligamentum venosum Echogenic line anterior to caudate lobe (Figure 2-4) Separates caudate from left lobe THE LIVER Hepatic Vessels Portal veins Main portal vein enters liver at hilum (Figure 2-5). Divides into right and left branches Right branch divides into anterior and posterior branches. Left branch divides into medial and lateral branches (Figure 2-6). Walls are thick and echogenic. Hepatic veins Right, middle, and left branches drain into inferior vena cava (Figure 2-7). Walls are thin compared with thick-walled portal vein (Figure 2-8). 25

26 hapter 2: The Liver Figure 2-1 Normal Liver. A longitudinal sonogram demonstrates a homogeneous liver with midlevel echoes. Anechoic structures (white arrows) represent normal vessels.the diaphragm (black arrow) is seen superiorly. L Figure 2-2 Lobes of the liver. Transverse view shows right (RT), left (LT), and caudate (L) lobes of the liver. The inferior vena cava () is seen posterior to the caudate lobe (L). L main lobar fissure.

Normal Sonographic Anatomy 27 LL RL RK Figure 2-3 Main lobar fissure and falciform ligament. A transverse sonogram shows main lobar fissure (1) separating the right lobe (RL) from the left lobe (LL).The falciform ligament (2) is seen within the left lobe.the right kidney (RK) is seen posterior to the right lobe. H IV Figure 2-4 Fissure for ligamentum venosum. A longitudinal scan shows fissure for ligamentum venosum (arrow) anterior to the caudate lobe ().The left hepatic vein (H) is seen joining the inferior vena cava (ivc).

28 hapter 2: The Liver H P I Figure 2-5 Main portal vein. A longitudinal sonogram shows main portal vein (P) as it enters hilum of the liver. The inferior vena cava (I) and hepatic vein (H) are also demonstrated. A M RT LT P L I Figure 2-6 Branches of the portal vein. A transverse image showing the right branch of the portal vein (RT) dividing into anterior (A) and posterior (P) segments.the left branch (LT) divides into medial (M) and lateral (L) segments.the inferior vena cava (I) is seen posteriorly. Note the echogenic borders of the portal vein.

Normal Sonographic Anatomy 29 Figure 2-7 Hepatic veins. A transverse sonogram showing right (2), middle (3), and left (4) hepatic veins draining into the inferior vena cava (1). GB ST Figure 2-8 Portal and hepatic veins. A transverse sonogram showing a section of portal vein (PV) with its hyperechoic borders adjacent to a section of hepatic vein (HV), which has thin border (not hyperechoic).the gallbladder (GB) and fluid-filled stomach (ST) are also identified.

30 hapter 2: The Liver Hepatic artery Generally seen between the common bile duct and the portal vein as small, rounded, anechoic structure Linear and anechoic when demonstrated in oblique long axis view (Figure 2-9) Intrahepatic bile ducts Are anechoic and seen anterior to portal vein Measure less than 2 mm in anterior to posterior dimensions Diaphragm seen as curvilinear hyperechoic structure abutting liver superiorly Reidel s lobe Downward projection of right lobe (Figure 2-10) May give false appearance of hepatomegaly H P I Figure 2-9 Hepatic artery. A longitudinal oblique view demonstrates the hepatic artery (H) between the main portal vein (P) and common bile duct () as it enters the liver. I inferior vena cava.

Liver Pathology 31 RL RK Figure 2-10 Reidel s lobe. A longitudinal image shows a Reidel s lobe (RL) projecting from the right lobe of the liver.the right kidney (RK) is seen posteriorly. Liver Pathology Diffuse Diseases Hepatomegaly Liver measures more than 15 cm in length (Figure 2-11) ommonly seen with infiltrative diseases and masses in the liver Fatty Liver Mild (early stage) Minimal increase in liver echogenicity Intrahepatic vessels and diaphragm well visualized (Figure 2-12A) Moderate (mid stage) Moderate increase in liver echogenicity Intrahepatic vessels and diaphragm suboptimally visualized

32 hapter 2: The Liver RK P Figure 2-11 Hepatomegaly. Liver measurement in a longitudinal section shows enlargement of the organ (RK right kidney, P pleural effusion). RK Figure 2-12A Mild fatty infiltration of the liver. A longitudinal image showing generalized increased echogenicity of the liver. Note that the diaphragm (black arrow) and section of an intrahepatic vessel (white arrow) are well visualized. Right kidney (RK) is posterior to the liver.

Liver Pathology 33 Severe (late stage) Significant increase in liver echogenicity Poor visualization of posterior aspect of liver Poor or nonvisualization of intrahepatic vessels and diaphragm (Figure 2-12B) Focal fat infiltration Hyperechoic area within an otherwise normal liver; commonly seen in right lobe and may resolve over time (Figure 2-13) Focal fat sparing Area of normal liver within fatty liver; commonly seen anterior to portal vein and gallbladder (Figure 2-14) Focal fat infiltration and sparing may mimic liver tumor Figure 2-12B Severe fatty infiltration of the liver. A longitudinal image showing increased echogenicity of the liver in the anterior segment { }.The posterior segment [ ] is hypoechoic because of poor penetration of the beam.the diaphragm (arrow) is poorly demonstrated and the intrahepatic vessels are not seen.

34 hapter 2: The Liver LONG Figure 2-13 Focal fatty infiltration. A longitudinal image showing hyperechoic area (M) consistent with focal fatty infiltration. Figure 2-14 Focal fatty sparing. The longitudinal image demonstrates normal liver (M) surrounded by liver with increased echogenicity caused by fatty infiltration.

Liver Pathology 35 irrhosis Early stage Liver echogenicity increased Late stage Irregular surface (nodules), enlarged caudate lobe, and small right lobe (Figure 2-15A,B) Associated findings may include dilated portal vein, portal vein flow away from liver (hepatofugal), recanalized umbilical vein, splenomegaly, and ascites. Ascites seen as anechoic area or areas around abdominal organs and in flanks and pelvis (see hapter 12) ystic Masses Epithelial yst Single or multiple, anechoic, well-defined cystic mass(es) with good posterior enhancement (Figure 2-16) yst may become complex with internal echoes caused by hemorrhage or infection (Figure 2-17). omplex cyst may mimic tumor. Polycystic Liver Disease Multiple anechoic masses with posterior enhancement (Figure 2-18) May have low level echoes (debris) May have echogenic wall calcification Associated with polycystic kidney disease (see hapter 6) Inflammatory Diseases (Abscesses) ommon types include echinococcal, pyogenic, and amebic. Abscesses may be intrahepatic, subhepatic, and subphrenic (subdiaphragmatic). Variable sonographic appearances as described later here

36 hapter 2: The Liver AS AS AS P (A) AS RL G B AS (B) Figure 2-15A & B Late stage cirrhosis. Transverse views of the liver demonstrate surface nodularity in (A) (white arrows) and a small right lobe (RL) in image (B). Ascites (AS) is seen surrounding the liver. P portal vein, G gallbladder, B bowel.

Liver Pathology 37 LONG Figure 2-16 Epithelial cyst. Longitudinal image shows a simple hepatic cyst (), which is anechoic with smooth borders, and acoustic enhancement posteriorly. Figure 2-17 omplex hepatic cyst. Longitudinal view show hepatic cyst () with medium-level echoes (white arrow).

38 hapter 2: The Liver I Figure 2-18 Polycystic liver disease. Longitudinal sonogram showing multiple liver cysts () in a patient with advanced polycystic kidney disease. I inferior vena cava. Echinococcal ysts Varies from simple cysts (completely anechoic) to complex mass (cyst with internal echoes) Posterior enhancement Echogenic thin linear septations and wall calcifications may be seen Large cyst (mother cyst) with smaller cysts within (daughter cysts) is specific for echinococcosis (Figure 2-19). Pyogenic Abscess Round or ovoid mass Irregular walls Anechoic to hyperechoic Enhancement in most cases Echogenic area with shadowing represents air from gas-producing organisms (Figure 2-20) Amebic Abscess More common in right lobe Round or oval shape mass

Liver Pathology 39 Figure 2-19 Echinococcal cyst. The transverse sonogram of the liver demonstrates a mother cyst (between arrows) containing several daughter cysts (). ABSESS SH Figure 2-20 Pyogenic abscess. Transverse image of the right lobe of liver showing a pyogenic abscess. Note the presence of multiple echogenic foci (arrows) with shadowing (SH) posteriorly.these represent gas bubbles within the abscess.

40 hapter 2: The Liver Low-level internal echoes (Figure 2-21A,B) Distal acoustic enhancement Benign Liver Tumors avernous Hemangioma ommonly seen in posterior aspect right lobe Round, hyperechoic solid mass (Figure 2-22) Well-defined borders Normally less than 3 cm in size but may be larger an mimic liver tumor Focal Nodular Hyperplasia ommonly isoechoic to liver texture but may be hyperechoic to hypoechoic (Figure 2-23) May have a central fibrous scar that may be hypoechoic or hyperechoic and linear Increased vascularity within central scar May mimic hepatoma or adenoma (see later here) TRANS Figure 2-21A Amebic abscess. (A) A transverse sonogram showing an amebic abscess (between white arrows) in the right lobe of liver. Note the presence of diffuse low-level echoes and a thick septation (small white arrow).

Liver Pathology 41 Figure 2-21B (B) The transverse view shows a large, well-defined cystic mass with low-level echoes and moderate posterior enhancement (between arrows). Figure 2-22 avernous hemangioma. The transverse view demonstrates a small, rounded hyperechoic mass (arrow) consistent with a hemangioma.

42 hapter 2: The Liver LONG Figure 2-23 Focal nodular hyperplasia. Longitudinal section of liver with a rounded mass (between calipers), which is isoechoic to the adjacent liver texture.this represents focal nodular hyperplasia. Liver ell Adenoma Hypoechoic, hyperechoic, isoechoic, or complex mass Fluid component and intraperitoneal blood seen with hemorrhage May mimic focal nodular hyperplasia Lipoma and Angiomyolipoma Well-defined echogenic masses (Figure 2-24) May mimic hemangiomas, liver metastasis, or focal fat infiltration Malignant Hepatic Neoplasms Hepatoma (Hepatocellular arcinoma) and Metastasis Hepatomas and metastasis may have a similar appearance. Single or multiple masses Hypoechoic, isoechoic, or hyperechoic to liver texture (Figure 2-25)

Liver Pathology 43 Figure 2-24 Lipoma. Longitudinal image shows lipoma as an echogenic liver mass (between calipers). L Figure 2-25 Hepatoma. Transverse view of the liver showing a large hepatoma, which presents as a discrete mass with well-defined borders (between arrows).the mass is slightly more echogenic than the adjacent areas of normal liver texture (L).

44 hapter 2: The Liver Metastatic lesions commonly have the following features: Multiple masses (Figure 2-26A) Hypoechoic mass with echogenic center (bull s-eye appearance)(figure 2-26 B) Echogenic calcification(s) Diffusely inhomogeneous liver parenchyma without discrete mass(es) (Figure 2-26) Low-level echoes in portal vein, hepatic vein, IV, and bile ducts may represent tumor (Figure 2-27). Benign tumors (e.g., adenomas and focal nodular hyperplasias) can mimic hepatomas and metastasis M3 M1 M2 SH RK (A)

Liver Pathology 45 (B) () Figure 2-26A Liver Metastasis. Longitudinal (A and ) and transverse (B) views demonstrating various sonographic patterns of metastasis. In (A), liver masses are of varying echogenicities when compared with the adjacent liver texture. Mass (M1) is isoechoic, mass (M2) hyperechoic, and mass (M3) is hypoechoic. In (B), a bull s-eye appearance is seen as hypoechoic masses with an echogenic center. In (), the liver is diffusely inhomogeneous without a discrete mass or masses.

46 hapter 2: The Liver Figure 2-27 Tumor/thrombus in portal vein. The echogenic mass (arrow) seen in the portal vein represents tumor. Note the inhomogeneity of liver texture consistent with metastatic disease.