ICD-10-PCS Billable Code

B31G0ZZ

Fluoroscopy Vertebral Arteries, Bilateral to None with None, High Osmolar Approach

Procedural Specifications

Clinical Axis Detail Definition
SectionB Imaging
Body System3 Upper Arteries
Operation1 Fluoroscopy
Body PartG Vertebral Arteries, Bilateral
Approach0 High Osmolar
DeviceZ None
QualifierZ None

Operation Definition

Single plane or bi-plane real time display of an image developed from the capture of external ionizing radiation on a fluorescent screen. The image may also be stored by either digital or analog means

Procedure Overview

Fluoroscopy of the upper arteries is a real-time x-ray technique in which contrast dye injected into the bloodstream is tracked continuously on a screen as it travels through the subclavian, axillary, brachial, or other arm arteries. This moving picture, often called an arteriogram, lets a physician see narrowing, blockage, aneurysm, or abnormal connections between vessels as blood actually flows past them, which a single static image cannot show.

It is typically performed when a patient has symptoms suggesting reduced blood flow to the arm, such as pain, coolness, or weak pulses, or to plan and guide a subsequent procedure like angioplasty or stent placement. A catheter is usually threaded through a blood vessel to the area of interest, contrast is injected, and the radiologist watches the images live, sometimes storing them digitally for later review.

Anatomy & Axis Detail

Vertebral Arteries, Bilateral

The vertebral arteries arise from the subclavian arteries and ascend through the transverse foramina of the cervical vertebrae before joining to form the basilar artery, supplying the posterior brain, brainstem, and cerebellum. Fluoroscopic imaging of both vessels together is used to evaluate vertebrobasilar insufficiency, dissection, stenosis, or the tortuous course these arteries can take through bony canals, which makes them prone to compression with neck rotation. Because the vessels are paired and their contribution to posterior circulation is often asymmetric, bilateral imaging allows comparison of flow and caliber side to side and helps identify dominance patterns. Catheter access is typically obtained centrally and selectively advanced into each vertebral origin, with contrast injected under real-time fluoroscopic guidance to trace the vessels from their subclavian origin to the craniocervical junction.

Contrast: High Osmolar

High Osmolar identifies imaging studies performed using a high-osmolar iodinated contrast agent, an older class of media with osmolality well above that of blood plasma. These agents carry a comparatively higher risk of adverse reactions and are used less often today than Low Osmolar agents, which produce similar radiographic enhancement with better patient tolerance. The value simply records which contrast class, if any, was administered for the study.

Coding & Documentation

Documentation must confirm that contrast was injected and that imaging was captured in real time, since this is what distinguishes fluoroscopy from plain radiography of the same vessels. The specific artery or arterial segment imaged drives the body part selection, and the coder should verify whether the study was purely diagnostic or performed as guidance for an interventional procedure, since guidance fluoroscopy for a separate therapeutic intervention is not coded the same way as a standalone diagnostic arteriogram. A frequent error is failing to capture bilateral studies correctly when both upper extremities were imaged in the same session, or coding the catheter insertion site as the imaged body part instead of the artery actually visualized.

Commonly Confused With

This family is closely related to and often confused with CT angiography of the upper arteries, since both use contrast to visualize the same vessels; the distinguishing factor is that fluoroscopy produces a live, continuously viewed image during contrast injection while CT produces a computer-reconstructed set of cross-sectional images from multiple static exposures. It is also distinguished from plain radiography of the same arteries, which involves no contrast tracking and no real-time viewing, and from ultrasonography, which assesses flow using sound waves rather than ionizing radiation and injected dye.