ICD-10-PCS Billable Code

CH20SZZ

Tomographic (Tomo) Nuclear Medicine Imaging Breast, Right to None with None, Thallium 201 (Tl-201) Approach

Procedural Specifications

Clinical Axis Detail Definition
SectionC Nuclear Medicine
Body SystemH Skin, Subcutaneous Tissue and Breast
Operation2 Tomographic (Tomo) Nuclear Medicine Imaging
Body Part0 Breast, Right
ApproachS Thallium 201 (Tl-201)
DeviceZ None
QualifierZ None

Operation Definition

Introduction of radioactive materials into the body for three dimensional display of images developed from the capture of radioactive emissions

Procedure Overview

This family covers nuclear medicine scans that create three-dimensional images of the skin, subcutaneous tissue, or breast after a small amount of radioactive tracer is introduced into the body. The tracer collects in the tissue of interest, and a rotating camera captures its emissions from many angles so a computer can reconstruct cross-sectional and volumetric images, similar in concept to a CT scan but built from radioactivity rather than X-rays. The most common clinical use is lymphoscintigraphy to map the sentinel lymph node before breast cancer surgery, letting the surgeon remove only the nodes most likely to contain spreading cancer cells rather than a larger, more invasive node dissection.

Because the tomographic technique resolves depth and layering, it is chosen over a flat, single-plane scan when the surgical team needs to know not just whether a node lit up but exactly where it sits relative to skin landmarks and deeper structures. Patients typically receive the tracer by injection near the tumor site hours before imaging, and the scan itself is painless, though some may find lying still for the acquisition tedious.

Anatomy & Axis Detail

Breast, Right

Tomographic imaging of the right breast reconstructs cross-sectional slices from multiple angular projections, offering depth resolution that planar views cannot, which is valuable when a sentinel node lies close to the chest wall or when overlapping structures obscure a flat image. This technique is more time- and resource-intensive than planar acquisition and is typically reserved for cases where initial planar or clinical findings are ambiguous and three-dimensional localization would change surgical approach. The right breast's relationship to axillary and internal mammary nodal chains means tomographic slices help distinguish which drainage basin a node truly belongs to. As with the planar code, laterality documentation confirming a right-sided-only study is necessary to support this specific body part selection.

Radionuclide: Thallium 201 (Tl-201)

Thallium 201 (Tl-201) identifies studies using this radionuclide, historically significant for myocardial perfusion imaging because it is taken up by viable heart muscle in proportion to blood flow. It has largely been supplemented by technetium-based agents for cardiac imaging but remains coded distinctly when used, differing from Tc-99m tracers and from positron-emitting isotopes used in PET perfusion studies.

Coding & Documentation

A coder should confirm the operative or radiology report explicitly documents a three-dimensional or SPECT-style acquisition rather than a single static image set, since planar and tomographic studies carry different root operation values even when the same tracer and body area are involved. The physiological system value for breast versus generalized skin/subcutaneous tissue also needs to match the anatomy actually imaged, not just the underlying diagnosis being worked up. A frequent error is coding a combined SPECT/CT lymphoscintigraphy study using only the nuclear medicine tables while ignoring documentation that a separate CT component was fused in, which may need its own code depending on payer and facility conventions. Another recurring mix-up is selecting the qualifier for the radionuclide or radiopharmaceutical class without verifying it against the actual agent named in the report.

Commonly Confused With

Planar Nuclear Medicine ImagingThis family is easily confused with Planar Nuclear Medicine Imaging of the same body system, where the distinguishing factor is strictly the imaging technique documented (single-plane versus volumetric/tomographic), not the clinical indication.
Nonimaging Nuclear Medicine ProbeIt can also be confused with Nonimaging Nuclear Medicine Probe procedures, such as intraoperative gamma probe localization of a sentinel node, which produce no reconstructed image at all and instead give the surgeon a real-time count reading; the presence or absence of an actual image data set is the deciding factor between the two.