ICD-10-PCS Billable Code

C216YZZ

Planar Nuclear Medicine Imaging Heart, Right and Left to None with None, Other Radionuclide Approach

Procedural Specifications

Clinical Axis Detail Definition
SectionC Nuclear Medicine
Body System2 Heart
Operation1 Planar Nuclear Medicine Imaging
Body Part6 Heart, Right and Left
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 heart captures a single flat image, or a limited series of flat images from fixed angles, after a radioactive tracer has been injected into the bloodstream. Unlike rotational scans that build a three-dimensional model, this technique records the tracer's distribution from one or a few stationary camera positions, producing a simpler two-dimensional snapshot of cardiac activity.

Historically this approach was used for first-pass or equilibrium radionuclide angiography, which assesses how efficiently the heart's chambers pump blood with each beat, generating a measurement called the ejection fraction. It may also be used in select infarct-avid imaging to detect areas of recent heart muscle damage. Patients receive an intravenous tracer injection and then lie under a gamma camera for a period of imaging that is typically shorter than a full tomographic study.

Anatomy & Axis Detail

Heart, Right and Left

Planar imaging of the heart, right and left, refers to studies acquiring two-dimensional gamma camera images that capture both ventricular chambers together, commonly for first-pass radionuclide angiography or shunt detection studies where flow through both sides of the heart is tracked in sequence. Because planar acquisition lacks depth resolution, the right and left chambers can overlap in projection, so multiple views or careful timing of tracer bolus arrival are used to separate right-sided from left-sided activity. This body part value is chosen specifically when the study is designed to characterize both ventricles as paired structures, distinguishing it from studies targeting the myocardium as a whole muscular mass. The coder should confirm from the protocol whether chamber-specific or whole-heart terminology applies.

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

Documentation must specify that images were acquired from one or a limited fixed set of camera angles rather than through a full rotational acquisition, since that distinction separates a planar study from a tomographic one. The tracer administered and clinical indication, such as ejection fraction assessment, should also be recorded to support accurate code assignment.

A frequent error is coding a modern myocardial perfusion study as planar when it was actually acquired tomographically (SPECT), since many facilities still colloquially refer to these studies using older terminology. Coders should verify the acquisition technique described in the technical portion of the report rather than relying on the referring diagnosis or exam order name alone.

Commonly Confused With

Planar cardiac imaging is most often confused with Tomographic Nuclear Medicine Imaging of the heart, the modern standard for myocardial perfusion studies; the deciding factor is whether the camera rotated around the patient to build a 3D dataset or simply captured images from stationary positions. It is also distinct from stress echocardiography and cardiac catheterization studies, which do not involve radioactive tracers and fall outside the nuclear medicine section altogether.