ICD-10-PCS Billable Code

CF16YZZ

Planar Nuclear Medicine Imaging Liver and Spleen to None with None, Other Radionuclide Approach

Procedural Specifications

Clinical Axis Detail Definition
SectionC Nuclear Medicine
Body SystemF Hepatobiliary System and Pancreas
Operation1 Planar Nuclear Medicine Imaging
Body Part6 Liver and Spleen
ApproachY Other Radionuclide
DeviceZ None
QualifierZ None

Operation Definition

Introduction of radioactive materials into the body for single plane display of images developed from the capture of radioactive emissions

Procedure Overview

Planar nuclear medicine imaging of the hepatobiliary system and pancreas centers on the hepatobiliary iminodiacetic acid (HIDA) scan, in which a radiotracer is injected intravenously, taken up by the liver, and excreted into the bile ducts, gallbladder, and small intestine. A gamma camera captures a series of flat images over roughly one to four hours as the tracer moves through this pathway, showing whether bile flows normally from the liver into the gallbladder and out into the intestine.

The scan is ordered most often to diagnose acute cholecystitis when ultrasound findings are inconclusive, since a gallbladder that fails to fill with tracer strongly suggests obstruction of the cystic duct. It is also used to evaluate biliary leaks after gallbladder surgery or liver transplant, chronic gallbladder dysfunction measured through an ejection fraction after a fatty meal or medication is given, and, less commonly, biliary atresia in infants.

Anatomy & Axis Detail

Liver and Spleen

Imaging the liver together with the spleen exploits the fact that both organs contain phagocytic reticuloendothelial cells that take up colloidal radiotracer from the blood, allowing a single planar study to map the size, shape, and functional tissue distribution of each organ side by side. This combined view is particularly useful for detecting focal hepatic lesions such as tumors or abscesses that appear as photopenic defects against normally uptaking parenchyma, and for assessing conditions like cirrhosis or portal hypertension where blood flow shifts away from the liver and colloid uptake increases in the spleen instead. Because the two organs lie adjacent to one another across the upper abdomen, anterior, posterior, and sometimes lateral views are obtained to separate overlapping activity and to estimate the relative proportion of tracer distributed to each organ, a ratio that itself carries diagnostic meaning.

Radionuclide: Other Radionuclide

Other Radionuclide is used when a nuclear medicine study employs a radioactive tracer that does not correspond to one of the specifically named isotope values in this axis, such as an uncommon or newer radiopharmaceutical. It functions as a catch-all so the procedure can still be coded precisely by section and root operation even when the exact tracer lacks its own dedicated code value.

Coding & Documentation

Coding relies on the report confirming a single-plane, sequential imaging technique rather than a tomographic reconstruction, along with the radioisotope used, typically a technetium-99m labeled iminodiacetic acid derivative. When the study includes a pharmacologic or fatty-meal challenge to calculate a gallbladder ejection fraction, that is part of the same study and does not generate a separate code. A recurring mistake is coding delayed imaging performed hours after the initial injection as a distinct procedure, when it is a continuation of the same planar study and should be captured with a single code.

Commonly Confused With

The main distinction to watch for is Tomographic (Tomo) Nuclear Medicine Imaging of the hepatobiliary system, which would apply only if the camera rotated to build cross-sectional images, something uncommon for standard HIDA protocols but occasionally used for complex biliary anatomy. It is also sometimes confused with liver-spleen scans or sulfur colloid studies that assess liver parenchyma rather than biliary excretion; the tracer type and the structures the report describes as being evaluated, biliary tree versus liver tissue itself, separate the two.