XNS3332
Reposition Cervical Vertebra to New Technology Group 2 with Magnetically Controlled Growth Rod(s), Percutaneous Approach
Procedural Specifications
| Clinical Axis | Detail Definition |
|---|---|
| Section | X New Technology |
| Body System | N Bones |
| Operation | S Reposition |
| Body Part | 3 Cervical Vertebra |
| Approach | 3 Percutaneous |
| Device | 3 Magnetically Controlled Growth Rod(s) |
| Qualifier | 2 New Technology Group 2 |
Operation Definition
Moving to its normal location, or other suitable location, all or a portion of a body part
Procedure Overview
Reposition procedures in this family move a bone that has shifted out of its correct alignment back to where it belongs, using a device technology advanced enough to warrant separate tracking from conventional realignment hardware. The best-known example is a magnetically controlled growing rod system used in children with progressive spinal deformity, where the rod can be lengthened gradually from outside the body without repeat open surgery.
This approach is chosen for young patients whose scoliosis or other spinal curvature is still worsening as they grow, since traditional rods would require frequent surgical lengthenings under anesthesia. Instead, an external magnet adjusts the implanted rod in a clinic visit, and the underlying procedure code captures the surgical placement and the correction of bone position that the device achieves over time.
Anatomy & Axis Detail
Cervical Vertebra
The cervical vertebrae support the head and protect the spinal cord through a narrow canal, so even modest angular or rotational displacement can produce pain, instability, or neurologic symptoms. Repositioning a cervical vertebra realigns it without removing bone, and in pediatric or early-onset spinal deformity, this is increasingly achieved with a magnetically controlled growth rod system that lets a surgeon distract the construct from outside the body using an external magnetic device. This spares the child recurring surgical lengthenings that older rod systems required, while still allowing gradual correction of curvature involving the cervical segment. Because the cervical spine's proximity to the cord and vertebral arteries raises the stakes of any malposition, precise imaging confirmation of the corrected alignment is part of how these procedures are typically documented.
Approach: Percutaneous
In New Technology, Percutaneous describes entry into the body via needle or instrument puncture through the skin or a mucous membrane, without a surgical incision, mirroring the same concept in Medical and Surgical. It is distinguished from Open access, which requires a full incision, and from Percutaneous Endoscopic, which adds visualization through the puncture site.
Device / Substance / Technology: Magnetically Controlled Growth Rod(s)
Magnetically controlled growth rods are spinal implants used mainly in pediatric scoliosis, allowing surgeons to lengthen the rod noninvasively using an external magnetic remote rather than repeated open or minimally invasive lengthening surgeries. They differ from traditional growing rods, which require surgical adjustment under anesthesia at each lengthening interval. This distinction in adjustment mechanism is what separates them from other spinal distraction or motion preservation devices in the same axis.
Qualifier: New Technology Group 2
Group 2 covers technologies granted New Technology section status in the 2017 update, one of the earlier expansions of this axis after the section's 2016 debut. The qualifier tags a code's vintage rather than its clinical content, so two very different interventions can share this value if they were approved the same year. It sits between Group 1 and Group 3 in the chronological sequence.
Coding & Documentation
Coders should look for documentation identifying the specific device system by name, since the New Technology designation depends on which product was implanted, not just on the fact that a rod was placed. The note should also describe the bone segment being moved back into anatomic alignment, distinguishing the initial implantation encounter from later outpatient adjustment visits, which are typically not separately coded to this family.
A common error is coding every rod-lengthening visit as a new Reposition procedure; most adjustment sessions are noninvasive magnet-driven and fall outside inpatient procedural coding entirely. Another pitfall is missing the New Technology code altogether because the case was coded solely from the spinal fusion or instrumentation codes without recognizing the distinct device category.
Commonly Confused With
This family is frequently confused with standard Reposition procedures done with conventional growing rods or standard spinal instrumentation, where the difference is entirely the technology used, not the clinical intent. It also overlaps conceptually with Insertion procedures for monitoring devices, but Reposition specifically captures correction of the bone's position, while Insertion applies to appliances that assist or monitor without relocating the bone itself.
