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MP 7.01.130 Axial Lumbosacral Interbody Fusion

Medical Policy    
Section
Surgery
 
Original Policy Date
11/10/2011
Last Review Status/Date
Reviewed with literature search/11:2012
Issue
11:2012
  Return to Medical Policy Index

Disclaimer

Our medical policies are designed for informational purposes only and are not an authorization, or an explanation of benefits, or a contract. Receipt of benefits is subject to satisfaction of all terms and conditions of the coverage. Medical technology is constantly changing, and we reserve the right to review and update our policies periodically.


Description 

Axial lumbosacral interbody fusion (also called pre-sacral, trans-sacral or paracoccygeal interbody fusion) is a minimally invasive technique designed to provide anterior access to the L4-S1 disc spaces for interbody fusion, while minimizing damage to muscular, ligamentous, neural, and vascular structures. It is performed under fluoroscopic guidance.

The procedure for one level axial lumbosacral interbody fusion (axial LIF) is as follows (1): Under fluoroscopic monitoring, a blunt guide pin introducer is passed through a 15- to 20-mm incision lateral to the coccyx and advanced along the midline of the anterior surface of the sacrum. A guide pin is introduced and tapped into the sacrum. A series of graduated dilators are advanced over the guide pin, and a dilator sheath attached to the last dilator is left in place to serve as a working channel for the passage of instruments. A cannulated drill is passed over the guide pin into the L5-S1 disc space to rest on the inferior endplate of L5. It is followed by cutters alternating with tissue extractors, and the nucleus pulposus is debulked under fluoroscopic guidance. Next, bone graft material is injected to fill the disc space. The threaded rod is placed over the guide pin and advanced through the sacrum into L5. The implant is designed to distract the vertebral bodies and restore disc and neural foramen height. Additional graft material is injected into the rod, where it enters into the disc space through holes in the axial rod. A rod plug is then inserted to fill the cannulation of the axial rod. Percutaneous placement of pedicle or facet screws may be used to provide supplemental fixation. An advantage of axial LIF is that it allows preservation of the annulus and all paraspinous soft tissue structures. However, there is an increased need for fluoroscopy and an inability to address intracanal pathology or visualize the discectomy procedure directly. Complications of the axial approach may include perforation of the bowel and injury to blood vessels and/or nerves.

Regulatory Status

The AxiaLIF® and AxiaLIF II Level systems were developed by TranS1® and consist of techniques and surgical instruments for creating a pre-sacral access route to perform percutaneous fusion of the L5-S1 or L4–S1 vertebral bodies. The U. S. Food and Drug Administration (FDA) 510(k) marketing clearance summaries indicate that the procedures are intended to provide anterior stabilization of the spinal segments as an adjunct to spinal fusion and to assist in the treatment of degeneration of the lumbar disc; to perform lumbar discectomy; or to assist in the performance of interbody fusion. (2, 3) The AxiaLIF® systems are indicated for patients requiring fusion to treat pseudoarthrosis, unsuccessful previous fusion, spinal stenosis, spondylolisthesis (Grade 1), or degenerative disc disease, defined as back pain of discogenic origin with degeneration of the disc confirmed by history and radiographic studies. They are not intended to treat severe scoliosis, severe spondylolisthesis (Grades 2, 3, and 4), tumor, or trauma. The devices are not meant to be used in patients with vertebral compression fractures or any other condition in which the mechanical integrity of the vertebral body is compromised. Their usage is limited to anterior supplemental fixation of the lumbar spine at L5-S1 or L4-S1 in conjunction with legally marketed facet or pedicle screw systems.


Policy

Axial lumbosacral interbody fusion (axial LIF) is considered investigational.


Policy Guidelines

Effective January 1, 2013, there is a new CPT category I code for this procedure:

22586 Arthrodesis, pre-sacral interbody technique, including disc space preparation, discectomy, with posterior instrumentation, with image guidance, includes bone graft when performed, L5-S1 interspace

and a new category III add-on code for the additional interspace:

0309T Arthrodesis, pre-sacral interbody technique, including disc space preparation, discectomy, with posterior instrumentation, with image guidance, includes bone graft, when performed, lumbar, L4-L5 interspace (List separately in addition to code for primary procedure)

Also effective January 1, 2013, the category III codes that were previously used for this procedure were revised to indicate that they represent the procedure without instrumentation:

0195T Arthrodesis, pre-sacral interbody technique, disc space preparation, discectomy, without instrumentation, with image guidance, includes bone graft when performed; L5-S1 interspace

0196T L4-L5 interspace (List separately in addition to code for primary procedure)

Between 2009 and 2012, the following CPT category III codes were used for axial LIF:

0195T Arthrodesis, pre-sacral interbody technique, including instrumentation, imaging (when performed), and discectomy to prepare interspace, lumbar; single interspace

0196T each additional interspace (List separately in addition to code for primary procedure)


Benefit Application
BlueCard/National Account Issues

State or federal mandates (e.g., FEP) may dictate that all FDA-approved devices, drugs, or biologics may not be considered investigational, and thus these devices may be assessed only on the basis of their medical necessity.


Rationale

The literature on axial lumbosacral interbody fusion (axial LIF) consists of case series. No controlled trials have been identified that compare outcomes of axial LIF with other approaches to lumbosacral interbody fusion.

The largest case series published to date is a 2011 retrospective analysis of 156 patients from 4 clinical sites in the U.S. (4) Patients were selected for inclusion if they underwent a L5-S1 interbody fusion via the axial approach and had both presurgical and 2-year radiographic or clinical follow-up. The number of patients who underwent axial LIF but were not included in the analysis was not reported. The primary diagnosis was degenerative disc disease (61.5%), spondylolisthesis (21.8%), revision surgery (8.3%), herniated nucleus pulposus (8.3%), spinal stenosis (7.7%) or other (8.3%). Pain scores on a numeric rating scale improved from a mean of 7.7 to 2.7 (n=155), while the Oswestry Disability Index (ODI) improved from a mean of 36.6 preoperatively to 19.0 (n=78) at 2-year follow-up. Clinical success rates, based on an improvement of at least 30%, were 86% for pain (n=127/147) and 74% for the ODI (n=57/77). The overall radiographic fusion rate at 2 years was 94% (145 of 155). No vascular, neural, urologic, or bowel injuries were reported in this study group. Limitations of this study include the retrospective analysis, lack of controls, and potential for selection bias by only reporting on the patients who had 2 years of follow-up.

In 2010, Patil and colleagues reported a retrospective review of 50 patients treated with axial LIF. (5) Four patients (8%) underwent 2-level axial LIF, and 16 patients (32%) underwent a combination of axial LIF with another procedure for an additional level of fusion. There were 3 reoperations due to pseudoarthrosis (n=2) and rectal injury (n=1). Other complications included superficial infection (n=5), hematoma (n=2), and irritation of a nerve root by a screw (n=1). At 12- to 24-month follow-up, visual analog scale (VAS) scores had decreased from 8.1 to 3.6 (n=48). At an average 12-month follow-up, 47 of 49 patients (96%) with postoperative radiographs achieved solid fusion. There were no significant differences between pre- and postoperative disk space height and lumbar lordosis angle.

Aryan and colleagues reported on a series of 35 patients with average follow-up of 17.5 months in 2008. (6) These patients had pain secondary to lumbar degenerative disc disease, degenerative scoliosis, or lytic spondylolisthesis. In 21 of the patients, the axial LIF procedure was followed by percutaneous pedicle screw-rod fixation; 2 patients had extreme lateral interbody fusion (XLIF) combined with posterior instrumentation, and 10 had a standalone procedure. Two patients had axial LIF as part of a larger construct after unfavorable anatomy prevented access to the L5-S1 disc space during open lumbar fusion. Radiographic evidence of stable cage placement and fusion was found in 32 patients at last follow-up.

In 2012, Gerszten et al. reported a series of patients who had a minimum 2-year follow-up after axial LIF with percutaneous posterior fixation with pedicle screws for the stabilization of grade 1 or grade 2 lumbosacral isthmic spondylolisthesis. (7) (Treatment of grade 2 spondylolisthesis is an off-label indication.) There were no perioperative procedure-related complications. The spondylolisthesis grade in the 26 consecutive patients was significantly improved at follow-up, with 50% of patients showing a reduction of at least 1 grade. Axial pain severity improved from a VAS score of 8.1 to 2.8, and 81% of patients were considered to have excellent or good results by Odom criteria. At 2 years post-treatment, all patients showed solid fusion.

Marchi and colleagues reported prospective 2-year follow-up on 27 patients who underwent 2-level (L4-5 and L5-S1) axial LIF. (8) Average back pain improved from a VAS score of 8.08 to 4.04 and the ODI improved from 51.7 to 31.4. Although no intraoperative complications occurred, the authors reported that the rod was malpositioned in 3 cases due to difficulty in attaining an adequate route for the double-level access, and in one of these cases, the rod eventually migrated and perforated the bowel. Five patients (18.5%) underwent additional surgery for malpositioned rods, broken posterior screws, failure of the rods, and collapse of spine levels. Total complications observed at follow-up included screw breakage (14.8%), transsacral rod detachment (11.1%), radiolucency around the transsacral rod (52%), and disc collapse with cephalic rod migration (24%). A gain in disc height was observed 1 week after surgery, but by the 24-month follow-up, the disc space was reduced compared to the preoperative state. Only 22% of levels had solid fusion at the 24-month radiologic evaluation, and only 2 patients had solid fusion at both levels.

Adverse Events

An industry-sponsored 5-year voluntary postmarketing surveillance study of 9,152 patients was reported by Gundanna et al. in 2011. (9) A single-level L5-S1 fusion was performed in 8,034 patients (88%), and a 2-level (L4-S1) fusion was performed in 1,118 patients (12%). A pre-defined database was designed to record device- or procedure-related complaints through spontaneous reporting. Several procedures, including the presence of a TransS1 representative during every case, were implemented to encourage complication reporting. The complications that were recorded included bowel injury, superficial wound and systemic infections, transient intraoperative hypotension, migration, subsidence, presacral hematoma, sacral fracture, vascular injury, nerve injury, and ureter injury, (pseudoarthrosis was not included). The follow-up period ranged from 3 months to 5 years 3 months. Complications were reported in 120 patients (1.3%) at a median of 5 days (mean, 33 days; range, 0-511 days). Bowel injury was the most commonly reported complication (0.6%), followed by transient intraoperative hypotension (0.2%). All other complications had an incidence of 0.1% or lower. There were no significant differences in complication rates for single-level (1.3%) and 2-level (1.6%) fusion procedures. Although this study includes a large number of patients, it is limited by the dependence on spontaneous reporting, which may underestimate the true incidence of complications.

Lindley and colleagues found high complication rates in a retrospective review of 68 patients who underwent axial LIF between 2005 and 2009. (10) Patient diagnoses included degenerative disc disease, spondylolisthesis, spinal stenosis, degenerative lumbar scoliosis, spondylolysis, pseudoarthrosis, and recurrent disc herniation. Ten patients underwent 2-level axial LIF (L4-S1), and 58 patients underwent a single-level axial LIF (L5-S1). A total of 18 complications in 16 patients (23.5%) were identified with a mean 34 months’ follow-up (range 17-61 months). Complications included pseudoarthrosis (8.8%), superficial infection (5.9%), sacral fracture (2.9%), pelvic hematoma (2.9%), failure of wound closure (1.5%), and rectal perforation (2.9%). Both of the patients with rectal perforation underwent emergency repair and were reported to have no long-term sequelae. The patients with non-union underwent additional fusion surgery with an anterior or posterior approach. The 2 patients with sacral fractures had pre-existing osteoporosis; one was treated with long iliac screws. Because of the potential for these complications, the authors recommend full bowel preparation and preoperative magnetic resonance (MR) imaging prior to an axial LIF procedure to assess the size of the presacral space, determine rectal adherence to the sacrum, rule out vascular abnormalities, and determine a proper trajectory.

A search of the FDA’s MAUDE database (available online at: http://www.accessdata.fda.gov/scripts/cdrh/cfdocs/cfMAUDE) in September 2012 identified over 120 adverse event reports for axial LIF, including possible and confirmed bowel injuries.

Clinical Input Received Through Specialty Medical Societies and Academic Medical Centers

While the various physician specialty societies and academic medical centers may collaborate with and make recommendations during this process through the provision of appropriate reviewers, input received does not represent an endorsement or position statement by the physician specialty societies or academic medical centers, unless otherwise noted.

In response to requests, input was received from 2 specialty medical societies and 3 academic medical centers while this policy was under review in 2011. The input considered axial LIF to be investigational.

Summary

The available published evidence on axial LIF consists of case series. This evidence is insufficient to evaluate whether axial LIF is as effective or as safe as other surgical approaches to lumbosacral interbody fusion, due to the variable natural history of the disorder and the subjective nature of the main outcomes. In addition, there are a relatively large number of adverse event reports in the MAUDE database for axial LIF, which raises the possibility of an increased risk of complications. Controlled trials are needed to better define the benefits and risks of this procedure compared to alternative treatment options. Due to limited evidence and concerns about the safety and efficacy of the axial approach, axial LIF is considered investigational.

Practice Guidelines and Position Statements

The United Kingdom’s National Institute for Health and Clinical Excellence (NICE) provided guidance on transaxial interbody fusion in the lumbar spine in 2011. (11) The guidance states that current evidence on the efficacy of transaxial interbody lumbosacral fusion is limited in quantity but shows symptom relief in the short term in some patients. Evidence on safety shows that there is a risk of rectal perforation. Therefore this procedure should only be used with special arrangements for clinical governance, consent, and audit or research. NICE encourages further research into transaxial interbody lumbosacral fusion. Research outcomes should include fusion rates, pain and functional scores, quality-of-life measures, and the frequency of both early and late complications. NICE may review this procedure on publication of further evidence.

The American Association of Neurological Surgeons published guidelines for interbody techniques for lumbar fusion in 2005. (12) There was insufficient evidence to recommend a treatment standard. Minimally invasive procedures were not reviewed.

Medicare National Coverage

There is no national coverage decision. 

References:

  1. Shen FH, Samartzis D, Khanna AJ et al. Minimally invasive techniques for lumbar interbody fusions. Orthop Clin North Am 2007; 38(3):373-86.
  2. U.S. Food and Drug Administration Center for Devices and Radiological Health. Premarket Notification [510(K)] Summary. TranS1® AxiaLIF® Fixation System. Available online at: http://www.accessdata.fda.gov/cdrh_docs/pdf7/K073514.pdf. Last accessed October, 2011.
  3. U.S. Food and Drug Administration Center for Devices and Radiological Health. Premarket Notification [510(K)] Summary. TranS1® AxiaLIF® II System. Available online at: http://www.accessdata.fda.gov/cdrh_docs/pdf7/K073643.pdf. Last accessed October, 2011.
  4. Tobler WD, Gerszten PC, Bradley WD et al. Minimally invasive axial presacral L5-s1 interbody fusion: two-year clinical and radiographic outcomes. Spine (Phila Pa 1976) 2011; 36(20):E1296-301.
  5. Patil SS, Lindley EM, Patel VV et al. Clinical and radiological outcomes of axial lumbar interbody fusion. Orthopedics 2010; 33(12):883.
  6. Aryan HE, Newman CB, Gold JJ et al. Percutaneous axial lumbar interbody fusion (AxiaLIF) of the L5-S1 segment: initial clinical and radiographic experience. Minim Invasive Neurosurg 2008; 51(4):225-30.
  7. Gerszten PC, Tobler W, Raley TJ et al. Axial presacral lumbar interbody fusion and percutaneous posterior fixation for stabilization of lumbosacral isthmic spondylolisthesis. J Spinal Disord Tech 2012; 25(2):E36-40.
  8. Marchi L, Oliveira L, Coutinho E et al. Results and complications after 2-level axial lumbar interbody fusion with a minimum 2-year follow-up. J Neurosurg Spine 2012; 17(3):187-92.
  9. Gundanna MI, Miller LE, Block JE. Complications with axial presacral lumbar interbody fusion: A 5-year postmarketing surveillance experience. SAS Journal 2011; 5:90-94.
  10. Lindley EM, McCullough MA, Burger EL et al. Complications of axial lumbar interbody fusion. J Neurosurg Spine 2011; 15(3):273-9.
  11. National Institute for Health and Clinical Excellence (NICE). Transaxial interbody lumbosacral fusion, IPG 387. 2011. Available online at: http://www.nice.org.uk/nicemedia/live/13025/53631/53631.pdf. Last accessed October, 2011.
  12. Resnick DK, Choudhri TF, Dailey AT et al. Guidelines for the performance of fusion procedures for degenerative disease of the lumbar spine. Part 11: interbody techniques for lumbar fusion. J Neurosurg Spine 2005; 2(6):692-9.  

Codes

Number

Description

CPT 22586 Arthrodesis, pre-sacral interbody technique, including disc space preparation, discectomy, with posterior instrumentation, with image guidance, includes bone graft when performed, L5-S1 interspace (new code 1/1/13)
  0309T Arthrodesis, pre-sacral interbody technique, including disc space preparation, discectomy, with posterior instrumentation, with image guidance, includes bone graft, when performed, lumbar, L4-L5 interspace (List separately in addition to code for primary procedure) (new code 1/1/13)
  0195T Arthrodesis, pre-sacral interbody technique, disc space preparation, discectomy, without instrumentation, with image guidance, includes bone graft when performed; L5-S1 interspace (descriptor revised effective 1/1/13)
  0196T L4-L5 interspace (List separately in addition to code for primary procedure) (descriptor revised effective 1/1/13)
ICD-9 Procedure  81.08 Spinal fusion; lumbar and lumbosacral fusion, anterior technique (includes axial LIF)
ICD-9 Diagnosis    Investigational for all diagnoses
HCPCS      

ICD-10-CM (effective 10/1/13)

  Investigational for all diagnoses
  M43.15-M43.16 Spondylolisthesis, codes for thoracolumbar and lumbar regions  
  M48.05-M48.06 Spinal stenosis, codes for thoracolumbar and lumbar regions  
  M51.05-M51.06 Intervertebral disc disorders with myelopathy, codes for thoracolumbar and lumbar regions  
  M51.15-M51.16 Intervertebral disc disorders with radiculopathy, codes for thoracolumbar and lumbar regions  
  M51.35-M51.36 Other intervertebral disc degeneration, codes for thoracolumbar and lumbar regions  
   M96.0 Pseudarthrosis after fusion or arthrodesis 
ICD-10-PCS (effective 10/1/13)   ICD-10-PCS codes are only used for inpatient services. There is no specific ICD-10-PCS code for this procedure.  
  0SG0330, 0SG1330, 0SG3330 Surgical, lower joints, fusion, percutaneous, anterior approach, anterior column, interbody fusion device, code by body part (lumbar vertebral joint, lumbar vertebral joints two or more, or lumbosacral joint  
Type of Service  Surgery 
Place of Service  Inpatient/Outpatient 


Index

Lumbar interbody fusion
Lumbosacral interbody fusion
Paracoccygeal interbody fusion
Pre-sacral interbody fusion
Trans-sacral interbody fusion


Policy History

Date

Action

Reason

11/10/11

Add to Surgery section

Section on axial LIF moved from policy 7.01.115 (Minimally Invasive Lumbar Interbody Fusion) and updated with literature search through September 2011; policy 7.01.115 (Minimally Invasive Lumbar Interbody Fusion) archived.

11/08/12 Replace policy Policy updated with literature review through August 2012; references 7 and 8 added; one reference removed. Policy statement unchanged. CPT coding updated.