A survival analysis for predictors of implant subsidence following 1- or 2-level transforaminal lumbar interbody fusion

J Neurosurg Spine 43:42–51, 2025

This study found that after 1- or 2-level TLIF, aggressive disc height restoration and taller interbody implants significantly increase the risk of implant subsidence, especially in patients with poor bone quality. Surgeons should balance correction goals with subsidence risk, particularly in those with low Hounsfield unit measurements.

• This study analyzed predictors of interbody implant subsidence after 1- or 2-level transforaminal lumbar interbody fusion (TLIF) using a time-to-event (survival) analysis.

• Aggressive disc height restoration and use of taller interbody implants significantly increased the risk of subsidence.

• Poor baseline bone quality, measured by lower Hounsfield units (HU) on CT, was a strong independent predictor for significant (≥4 mm) subsidence.

• Longer fusion constructs (more instrumented levels) also increased the risk of significant subsidence.

• No significant association was found between cage material (titanium vs PEEK), device geometry, or lumbopelvic parameters and subsidence risk.

• Subsidence occurred in 38.2% of levels (≥2 mm) and significant subsidence in 10.4% (≥4 mm) by last follow-up.

• Clinical implications suggest balancing correction goals with subsidence risk, especially in patients with poor bone quality.

• Further multicenter and prospective studies are recommended to validate these findings.

Could indirect decompression occur for cord compression by the ligamentum flavum with anterior cervical discectomy and fusion?

J Neurosurg Spine 42:100–109, 2025

Cord compression by the ligamentum flavum (CCLF) has been reported to adversely affect the clinical outcomes of anterior cervical discectomy and fusion (ACDF). While indirect decompression does occur for foraminal stenosis with ACDF, whether ACDF could improve CCLF with the distraction of disc space remains unclear. This study aimed to identify 1) whether indirect decompression occurs for CCLF with ACDF, and 2) risk factors that hinder the improvement of CCLF.

METHODS This retrospective cohort study included 119 patients who underwent ACDF for the treatment of cervical myelopathy and CCLF was detected on preoperative MRI. Patients who demonstrated improvement in CCLF grade after ACDF were included in the improved group, while those who did not show improvement were classified as the unimproved group. Patient characteristics, cervical sagittal parameters, neck and arm pain visual analog scale score, and Japanese Orthopaedic Association (JOA) score were assessed. A comparison between the improved and unimproved groups was performed. Regression analyses were performed to identify factors associated with CCLF grade improvement.

RESULTS Overall, 58.0% (69/119) of patients showed improvement in CCLF grade after ACDF. CCLF grade did not improve in the remaining 42.0% (50/119) of patients, and 3.4% (4/119) of patients experienced aggravation of CCLF after ACDF. Preoperative spondylolisthesis (OR 0.252, 95% CI 0.090–0.711; p = 0.009) and greater segmental lordosis 3 months postoperatively (OR 0.835, 95% CI 0.731–0.953; p = 0.008) were the factors that hindered the improvement of CCLF after ACDF. Furthermore, patients with higher pre- or postoperative CCLF grades showed significantly less improvement in JOA score 2 years postoperatively.

CONCLUSIONS Indirect decompression for CCLF with ACDF is not reliable because 42.0% of patients did not demonstrate improvement in CCLF grade after the operation. Preoperative spondylolisthesis and postoperative increased segmental lordosis were risk factors for failure of CCLF improvement. Both pre- and postoperative higher CCLF grades were associated with poor neurological recovery 2 years postoperatively.

 

Predictors of indirect neural decompression in minimally invasive transpsoas lateral lumbar interbody fusion

J Neurosurg Spine 35:80–90, 2021

An advantage of lateral lumbar interbody fusion (LLIF) surgery is the indirect decompression of the neural elements that occurs because of the resulting disc height restoration, spinal realignment, and ligamentotaxis. The degree to which indirect decompression occurs varies; no method exists for effectively predicting which patients will respond. In this study, the authors identify preoperative predictive factors of indirect decompression of the central canal.

METHODS The authors performed a retrospective evaluation of prospectively collected consecutive patients at a single institution who were treated with LLIF without direct decompression. Preoperative and postoperative MRI was used to grade central canal stenosis, and 3D volumetric reconstructions were used to measure changes in the central canal area (CCA). Multivariate regression was used to identify predictive variables correlated with radiographic increases in the CCA and clinically successful improvement in visual analog scale (VAS) leg pain scores.

RESULTS One hundred seven levels were treated in 73 patients (mean age 68 years). The CCA increased 54% from a mean of 0.96 cm2 to a mean of 1.49 cm2 (p < 0.001). Increases in anterior disc height (74%), posterior disc height (81%), right (25%) and left (22%) foraminal heights, and right (12%) and left (15%) foraminal widths, and reduction of spondylolisthesis (67%) (all p < 0.001) were noted. Multivariate evaluation of predictive variables identified that preoperative spondylolisthesis (p < 0.001), reduced posterior disc height (p = 0.004), and lower body mass index (p = 0.042) were independently associated with radiographic increase in the CCA. Thirty-two patients were treated at a single level and had moderate or severe central stenosis preoperatively. Significant improvements in Oswestry Disability Index and VAS back and leg pain scores were seen in these patients (all p < 0.05). Twenty-five (78%) patients achieved the minimum clinically important difference in VAS leg pain scores, with only 2 (6%) patients requiring direct decompression postoperatively due to persistent symptoms and stenosis. Only increased anterior disc height was predictive of clinical failure to achieve the minimum clinically important difference.

CONCLUSIONS LLIF successfully achieves indirect decompression of the CCA, even in patients with substantial central stenosis. Low body mass index, preoperative spondylolisthesis, and disc height collapse appear to be most predictive of successful indirect decompression. Patients with preserved disc height but severe preoperative stenosis are at higher risk of failure to improve clinically.

Can unilateral-approach minimally invasive transforaminal lumbar interbody fusion attain indirect contralateral decompression?

Can unilateral-approach minimally invasive transforaminal lumbar interbody fusion attain indirect contralateral decompression?

Eur Spine J (2014) 23:1144–1149

Few studies have measured the amount of indirect decompression at the contralateral neural foramen after unilateral-approach minimally invasive transforaminal lumbar interbody fusion (MITLIF). This study examined the amount of intraoperative indirect decompression at the contralateral neural foramen after a unilateral-approach MITLIF in patients with bilateral foraminal stenosis.

Methods From February 2009 to October 2012, 66 consecutive patients with bilateral foraminal stenosis underwent unilateral-approach MITLIF and postoperative magnetic resonance imaging (MRI). Direct decompression was performed at the central canal and approach-side neural foramen, while indirect decompression using cage distraction was pursued at the contralateral neural foramen. Qualitative parameters of the central canal (dural sac morphology) and neural foramen (foramen morphology) were analyzed using pre- and post-operative MRI. Quantitative measurement on the central canal (dural sac crosssectional area) and neural foramen (foramen height and width) were also measured.

Results A total of 69 intervertebral levels in the 66 patients were analyzed. Qualitative parameters of the central canal and contralateral neural foramen improved significantly after unilateral-approach MITLIF (both P<0.001). The mean dural sac cross-sectional area increased from 51.1 ± 28.8 to 84.8 ± 30.2 mm2 (P<0.001). The mean preoperative contralateral foramen height, maximum foramen width, and minimum foramen width were 11.8 ± 2.0, 4.9 ± 1.5, and 1.5 ± 0.7 mm, respectively, and these values increased postoperatively to 14.7 ± 2.5, 6.5 ± 1.8, and 2.4 ± 1.0 mm, respectively (all P<0.001).

Conclusion Quantitative and qualitative parameters of the central canal and contralateral neural foramen increased significantly after unilateral-approach MITLIF.