0RHB43Z
Insertion Thoracolumbar Vertebral Disc to No Qualifier with Infusion Device, Percutaneous Endoscopic Approach
Procedural Specifications
| Clinical Axis | Detail Definition |
|---|---|
| Section | 0 Medical and Surgical |
| Body System | R Upper Joints |
| Operation | H Insertion |
| Body Part | B Thoracolumbar Vertebral Disc |
| Approach | 4 Percutaneous Endoscopic |
| Device | 3 Infusion Device |
| Qualifier | Z No Qualifier |
Operation Definition
Putting in a nonbiological appliance that monitors, assists, performs, or prevents a physiological function but does not physically take the place of a body part
Procedure Overview
Insertion procedures in the upper joints place a nonbiological device into or around a joint, such as a spacer, an internal fixation device used independently of a fusion or repair, or a joint-related monitoring device, without that device taking the place of any body part itself. The device supports, stabilizes, or monitors the joint rather than replacing joint tissue, which sets Insertion apart from procedures like Replacement or Fusion where hardware is used to help rebuild or immobilize a structure.
A common example is placing a temporary antibiotic spacer in a joint during a staged infection treatment, or inserting hardware to stabilize a joint as an isolated procedure separate from any other repair. These devices are typically intended to remain in the body for a period of treatment or, in some cases, permanently, and the procedure itself does not involve cutting out or repairing the underlying joint tissue.
Anatomy & Axis Detail
Thoracolumbar Vertebral Disc
Insertion into a thoracolumbar vertebral disc places a nonbiologic device, such as a radiofrequency or biologic-scaffold catheter, directly into the fibrocartilaginous disc spanning the T12-L1 transition without removing or altering the disc's native structure. This region absorbs the shifting mechanical load between the relatively rigid thoracic spine and the more mobile lumbar spine, making its annulus prone to tears and its nucleus prone to degeneration under torsional stress. Devices placed here are typically used for minimally invasive annular repair, intradiscal electrothermal therapy, or delivery of a biologic agent intended to slow degenerative change. Because the thoracolumbar junction sits near the spinal cord-to-cauda-equina transition, imaging guidance is essential to confirm needle or catheter position and to avoid neural structures during placement.
Approach: Percutaneous Endoscopic
Percutaneous Endoscopic combines a puncture through skin or mucous membrane with insertion of an endoscope to visualize the procedure internally, as in laparoscopic cholecystectomy. It is distinguished from plain Percutaneous by the presence of scope-guided visualization, and from Via Natural or Artificial Opening Endoscopic by its route being a new puncture rather than an existing orifice or stoma.
Device: Infusion Device
Infusion Device denotes a device left in place to deliver medication, fluids, or other substances into a body part over time, such as an intrathecal or epidural pump. It is distinct from devices that merely monitor or mechanically support tissue, since its function is ongoing pharmacologic or fluid delivery rather than structural replacement. Common placements include the spinal canal, peritoneal cavity, and vascular access sites.
Coding & Documentation
Coders need documentation that clearly identifies the device inserted and confirms that no body part was excised, repaired, or replaced during the same encounter, since many operative notes describe hardware placement as part of a broader repair or fusion that would be coded differently. The approach, whether open, percutaneous, or percutaneous endoscopic, must be specified, and the device category (such as spacer or internal fixation device) determines the correct device value. A frequent mistake is coding routine fixation hardware placed during a fracture repair or fusion as a separate Insertion procedure, when it should instead be captured within the device qualifier of the primary root operation rather than coded again independently.
