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🍁 Canadian pediatric liver testing education for families

Understand liver tests, scans, and procedures.

Bloodwork is only one piece of liver care. This guide explains common blood tests, scans and procedures in plain language — what they are, what they can show, and why doctors often use several pieces of information together.

Educational only. Tests do not make a diagnosis by themselves. Your child’s health-care team interprets results using age, symptoms, medical history, medicines, examination findings and other tests.

One liver-care journey, several different tools

Not every child needs every test. The team chooses tests based on the question they are trying to answer.

Use this guide with any LiverSteps module. If another module mentions a blood test, scan or procedure, you can come here for a more detailed explanation and then return to the condition-specific information.
Blood testsLook for patterns of cell injury, bile flow and liver function.
ImagingShows liver anatomy, bile ducts, spleen and blood flow.
FibroScanUses a gentle vibration to estimate liver stiffness; some devices also estimate liver fat.
Liver biopsyLooks at a tiny liver sample under a microscope when tissue information is needed.
EndoscopyLooks inside the digestive tract and, in selected situations, can also treat a problem.
The main idea

Doctors look for a pattern, not a single “good” or “bad” number.

Blood tests, imaging and procedures answer different questions. A result that matters in one child may mean something different in another, so the whole clinical picture is important.

Children are different

Pediatric ranges matter

Normal laboratory ranges can change with age, growth and development. Your child’s result should be compared with the pediatric reference range used by the laboratory and interpreted in context.

Understanding liver blood tests

“Liver tests” do not all measure the same thing. A useful way to think about them is to ask three different questions.

Question 1
Are liver cells irritated or injured?ALT and AST are important clues. They can rise when cells are inflamed or injured, but they do not by themselves tell us how well the liver is doing all of its jobs.
Question 2
Is there a bile-flow or bile-duct pattern?GGT and bilirubin often help the team decide whether bile flow or the bile ducts may be part of the picture.
Question 3
How is the liver doing some of its jobs?Albumin and PT/INR give different information, including clues about protein production and blood clotting.
Pediatric reference ranges matter for all blood tests. Age, growth, laboratory method and the clinical situation can affect interpretation. Do not compare a child’s result with an adult range found online.

ALT is found mainly in liver cells. It can rise when those cells are irritated or injured.

Important: the ALT number alone does not tell us the exact cause, how much scar tissue is present, or how well the liver is carrying out all of its functions.

AST can rise with liver-cell injury, but it is less liver-specific than ALT because AST is also found in muscle and other tissues.

Doctors interpret AST together with ALT and, when needed, other tests that help distinguish liver from muscle or other sources.

GGT can rise when the bile ducts or bile flow are affected. It is usually interpreted with bilirubin, ALT/AST and imaging rather than on its own.

Not every cholestatic liver condition causes a high GGT, so the pattern matters.

ALP can come from the liver and bile ducts, but also from bone. In children and teenagers, bone growth can make ALP substantially higher than adult values.

That is why doctors interpret ALP using age-appropriate ranges and often look at GGT and the rest of the clinical picture to decide whether the liver is likely to be the source.

Bilirubin is made when red blood cells are broken down. The liver processes it and sends it into bile.

Total bilirubin and direct/conjugated bilirubin answer slightly different questions. A rise in direct/conjugated bilirubin can be an important clue that bile excretion is affected.

Albumin is one of the proteins made by the liver. It tends to change more slowly than ALT or AST.

A low albumin can have liver-related and non-liver-related causes, including nutrition, inflammation, kidney or intestinal losses, so it always needs context.

The liver makes many proteins needed for blood clotting. PT/INR can therefore give important information about liver synthetic function.

Vitamin K status and blood-thinning medicines can also affect PT/INR, so clinicians interpret the result in context.

Platelets are blood cells involved in clotting. In some chronic liver conditions, portal hypertension and an enlarged spleen can be associated with a lower platelet count.

Many other conditions can also change platelets, so a low count does not diagnose portal hypertension by itself.

Serum bile acids may be measured in some cholestatic liver diseases and can help with diagnosis, monitoring or treatment decisions.

They are not part of every routine liver panel and their meaning depends strongly on the condition being evaluated.

Laboratory blood tubes and liver illustration for liver blood tests
Different blood tests answer different questions about the liver.
1
Liver-cell pattern
ALT and AST are more prominent. Doctors then consider the child’s history, medicines, infections, metabolic conditions, autoimmune disease, muscle causes and other possibilities.
2
Bile-flow / bile-duct pattern
GGT and direct bilirubin can become more important, and imaging may help answer whether the bile ducts or bile flow are involved.
3
Function and longer-term clues
Albumin, PT/INR and platelets provide different information and are interpreted alongside the rest of the picture.
Trend matters. One result is a snapshot. Clinicians often by comparing results over time and seeing how the pattern changes.

Imaging: pictures of the liver and bile ducts

Imaging helps the team see anatomy, blood flow and bile ducts. Different scans answer different questions.

Ultrasound machine and Doppler liver imaging
Common first-line scan

Ultrasound & Doppler

No x-ray radiationProbe on the abdomenUsually painless

Ultrasound uses sound waves to look at the liver, gallbladder, bile ducts, spleen and fluid in the abdomen. Doppler adds information about blood flow through vessels such as the portal vein and hepatic vessels.

What it can help showLiver size and appearance, gallbladder and bile-duct changes, spleen size, ascites and blood-flow patterns.
MRI scanner with MRCP-style view of liver and bile ducts
Detailed soft-tissue imaging

MRI & MRCP

Uses a magnetNo x-ray radiationRequires lying still

MRI gives detailed images of the liver and surrounding structures. MRCP is a special MRI technique that gives a detailed map of the bile ducts.

Younger children or children who find it difficult to lie still may need sedation or anesthesia, depending on the scan and the centre.

What it can help showBile-duct narrowing or irregularity, anatomy that is difficult to see on ultrasound, focal lesions and other detailed liver findings.

Other imaging may sometimes be used

CT, contrast-enhanced MRI, nuclear-medicine studies or other specialized scans may be useful for selected questions. CT uses x-rays, so it is used selectively. These scans are not automatically needed for every child with abnormal liver tests.

A useful distinction

Imaging shows structure. Blood tests show chemistry.

A normal-looking scan does not necessarily mean every blood test will be normal, and an abnormal blood test does not automatically mean a scan will show the cause.

FibroScan: measuring liver stiffness without a needle

FibroScan is a type of transient elastography. It uses a probe on the skin to send a gentle vibration through the liver and measure how quickly the wave travels.

FibroScan transient elastography device measuring liver stiffness and attenuation
The probe sends a gentle vibration through the liver and the device measures how the signal travels.
What families usually experience

Quick, non-invasive and usually painless

  • The child usually lies on their back with the right arm raised.
  • A small amount of gel is placed on the skin.
  • The probe makes a gentle tapping or vibration sensation.
  • The machine takes several measurements and checks their quality.
  • The test itself often takes only a few minutes once good readings are obtained.

Centres may give fasting instructions before the test; follow the instructions provided by your child’s team.

Liver stiffness

The main FibroScan result is a liver-stiffness measurement. Higher stiffness can be associated with more fibrosis, but stiffness is not exactly the same thing as scar tissue.

Inflammation, bile obstruction, congestion, recent food intake and technical factors can influence stiffness, so specialists interpret the number in the context of the child and the liver condition.

CAP / liver fat

On devices that provide it, the controlled attenuation parameter (CAP) estimates how much the ultrasound signal is reduced as it travels through the liver. It can provide an estimate related to liver fat.

CAP is most often used in conditions where steatosis is relevant. It is one piece of information, not a stand-alone diagnosis.

FibroScan is not an ultrasound picture and it is not a biopsy. It gives numerical estimates that can be useful for follow-up, but the meaning of a result depends on age, body size, the underlying liver disease, probe choice, measurement quality and the clinical context.

Liver biopsy: looking at a tiny sample under the microscope

A biopsy is used when the liver team needs information that blood tests and imaging cannot fully provide. Many children with liver disease never need one.

Ultrasound-guided liver biopsy with tissue sample and microscope illustration
Ultrasound commonly helps guide the biopsy; a tiny tissue sample is then examined under a microscope.
Why a biopsy may be recommended

Sometimes the tissue pattern answers the question

  • Clarify a diagnosis when blood tests and imaging are not enough.
  • Assess inflammation and the type or amount of fibrosis.
  • Look at bile ducts, liver-cell changes, fat or other microscopic features.
  • Help guide treatment or assess response in selected liver diseases.
It is a selective test. The reason for biopsy should be specific to the child and the clinical question.
1
Before

The team reviews blood clotting and medicines and gives fasting instructions when sedation or anesthesia is planned.

2
During

Ultrasound is commonly used to locate the liver and select a safe site. Sedation or anesthesia practice varies by age, child and centre.

3
The sample

A biopsy needle removes a very small core of tissue. A pathologist examines it under a microscope.

4
After

The child is observed for a period afterward. Many planned biopsies are day procedures when recovery is uncomplicated.

What might the report describe?

Inflammation, fibrosis, fat, bile-duct changes, iron or other deposits, and disease-specific microscopic patterns. The report is interpreted together with the rest of the clinical picture.

What are the main risks?

Pain after biopsy is common enough to discuss. Bleeding is uncommon but is the most important complication specialists monitor for; infection and injury to nearby structures are uncommon. The team explains the child’s individual risk before consent.

Endoscopy, ERCP and colonoscopy

These are not routine tests for every liver condition. They are used when the liver disease creates a specific question involving the esophagus, stomach, bile ducts or bowel.

Upper endoscopy showing esophageal varices
Upper GI endoscopy

Looking for and treating varices

A flexible camera passes through the mouth to examine the esophagus, stomach and first part of the small intestine. In children, the procedure is performed with sedation or anesthesia according to age and centre practice. In children with portal hypertension, endoscopy may be used to look for enlarged veins called varices.

If esophageal varices bleed, endoscopy can be used to treat them. One common treatment is endoscopic variceal ligation (EVL), or banding, which places small elastic bands around selected varices.

ERCP showing the bile ducts, endoscope and fluoroscopic imaging
Endoscopic retrograde cholangiopancreatography

ERCP: a procedure that can also treat bile-duct problems

During ERCP, an endoscope reaches the first part of the small intestine. A small catheter is passed into the bile-duct opening and contrast is used with x-ray imaging.

In selected children, ERCP can treat a narrowed or blocked bile duct, remove material, dilate a narrowing or place a stent. Because ERCP is invasive, specialist teams use it selectively; when only a detailed picture of the ducts is needed, MRCP is often preferred first.

Colonoscopy showing the colon and an internal endoscopic view
Not a routine liver test

Colonoscopy when bowel disease is part of the question

Colonoscopy uses a flexible camera to examine the colon. It may be relevant when inflammatory bowel disease (IBD) is suspected or needs assessment.

That is particularly important in some children with primary sclerosing cholangitis (PSC) or autoimmune sclerosing cholangitis (ASC), because IBD can occur alongside these liver conditions. Colonoscopy is not automatically needed simply because a child has abnormal liver tests or autoimmune hepatitis.

Clipboard icon representing an individualized care plan
Individualized care

Endoscopy plans are not identical for every child

After a variceal bleed, repeat endoscopy with EVL is commonly used to help prevent rebleeding when technically feasible. Before a child has ever bled, decisions about when to screen and whether preventive EVL is appropriate are more individualized in pediatrics and can vary by centre.

Why practice can differ: age and size, the cause of portal hypertension, platelet/spleen changes, previous bleeding, local expertise and the balance between anesthesia/procedure burden and expected benefit all matter.