ICD-10-PCS Billable Code

BP15ZZZ

Fluoroscopy Clavicle, Left to None with None, None Approach

Procedural Specifications

Clinical Axis Detail Definition
SectionB Imaging
Body SystemP Non-Axial Upper Bones
Operation1 Fluoroscopy
Body Part5 Clavicle, Left
ApproachZ None
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

This family describes fluoroscopic imaging of the non-axial upper bones, meaning the clavicle, scapula, humerus, forearm bones, and the bones of the wrist and hand, using continuous or pulsed x-ray exposure displayed as a real-time moving image on a screen. Unlike a single static x-ray, fluoroscopy lets the physician watch the bone and joint move or track the placement of instruments and hardware as the procedure happens.

It is most often used during closed reduction of a fracture or dislocation, when the surgeon needs live feedback to confirm bones are properly aligned before a cast or splint is applied, and during orthopedic procedures such as pinning or hardware fixation where instrument position must be verified continuously rather than at a single point in time.

Because the image can be recorded digitally or on film, fluoroscopy also serves as documentation that reduction or hardware placement was achieved successfully at the time of the procedure.

Anatomy & Axis Detail

Clavicle, Left

Fluoroscopy applied to the left clavicle serves primarily interventional and monitoring purposes rather than initial fracture detection, which conventional radiography typically achieves adequately. Real-time imaging is valuable when reducing a displaced or angulated clavicular fracture, allowing the clinician to visualize bone position continuously while applying manipulation, and it is similarly used during open reduction and internal fixation to confirm that plates, screws, or intramedullary devices are correctly seated before the incision is closed. The clavicle's superficial, curved course makes it accessible to manipulation but also means malunion can be cosmetically and functionally noticeable, raising the stakes of accurate reduction. Fluoroscopic follow-up may also track callus formation and hardware integrity over time in complex or nonunion cases. As with the right side, laterality must be documented to keep left- and right-sided studies distinct.

Coding & Documentation

Coders assign these codes based on the specific bone or joint region visualized under live imaging, which must be documented clearly since fluoroscopy is frequently performed as guidance during another primary procedure rather than as a standalone diagnostic study. A common mistake is coding the fluoroscopy separately when it was truly incidental, bundled guidance for a fracture reduction or hardware placement procedure already captured elsewhere, versus situations where a distinct diagnostic fluoroscopic exam was ordered and should be coded on its own. Reports should state which bones were actually visualized, since the guidance image may include more anatomy than the coder should capture as the body part.

Commonly Confused With

This family is easily confused with plain radiography of the same bones, which captures one static exposure rather than a continuous live image; a procedure that used fluoroscopy only to guide reduction is not the same as a formal multi-view x-ray series taken afterward to confirm final alignment. It is also distinct from CT, which reconstructs cross-sectional images rather than displaying real-time motion, and is not used for intraprocedural guidance in the same way.