The protocol offers a valuable method detailing each step of the FE-TLIF procedure. With proper education, FE-TLIF can be effectively learned, leading to favorable clinical outcomes.
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Method Article
The protocol offers a valuable method detailing each step of the FE-TLIF procedure. With proper education, FE-TLIF can be effectively learned, leading to favorable clinical outcomes.
Uniportal full endoscopic posterolateral lumbar interbody fusion (FE-TLIF) has recently shown promising results. However, beginners may face challenges in mastering the technical skills required to overcome the learning curve for a more efficient and safer procedure. The goals of this study are to provide a detailed FE-TLIF procedure and provide a step-by-step explanation of all methods, as well as to use written text to describe key techniques and precautions for ensuring a safer and more efficient procedure. We present a case of L4-L5 degenerative spondylolisthesis with spinal stenosis syndrome and right sciatica. The study offers valuable educational video footage detailing each step of the FE-TLIF procedure. The protocol incorporates the use of several instruments common to conventional TLIF procedures, an efficient outside-in technique with a trephine for IAP resection, endoscopic visualization for endplate preparation, and nerve protection. With proper education, FE-TLIF can be effectively learned, leading to favorable clinical outcomes while minimizing complications.
Lumbar fusion is considered the standard treatment for various degenerative lumbar conditions1. With the increasing prevalence of minimally invasive spinal surgery, advancements in endoscopic techniques and instruments have expanded the indications for endoscopic spinal surgery2. Endoscopic-assisted fusion has recently demonstrated promising results, including faster recovery, reduced blood loss, and minimized back muscle injury3,4,5. Compared to facet-preserving trans-Kambin endoscopic fusion, facet-sacrificing posterolateral transforaminal lumbar interbody fusion (TLIF) has the benefit of relatively familiar corridor as minimally invasive tubular approach TLIF (MIS-TLIF), direct visualization during spinal decompression and less exiting nerve root injuries6.
Uniportal full endoscopic posterolateral transforaminal lumbar interbody fusion (FE-TLIF) differs significantly in surgical technique and instrument compared to unilateral biportal endoscopy-assisted TLIF (UBE-TLIF)3,6,7. Although both endoscopic fusion techniques have shown similarly favorable early and medium-term postoperative outcomes5,8, the learning curve for FE-TLIF is steeper. Beginners may face challenges in mastering the technical skills required to overcome the learning curve for a more efficient and safer procedure4.
The protocol of FE-TLIF outlined below incorporates techniques described by the Kim and Wu group6,7,9,10,11 with some modifications. In addition to the use of smaller endoscopic equipment with a longer lever arm7, the procedure presents challenges such as equipment limitations, particularly instruments for discectomy and cartilage endplate preparation12, as well as the lack of visualized nerve protection when using specialized cage gliders during adjacent procedures, increasing the risk of nerve root injury13. Wu et al.11 reported a 6% complication rate involving traversing root injuries among 35 patients undergoing FE-TLIF, even in the hands of experienced surgeons. Conversely, Zhao et al.14 observed a 9.6% revision rate in the earliest third of treated patients, along with significantly increased X-ray exposure time during the learning curve.
To overcome these challenges, in the protocol, we incorporate the use of several instruments common to conventional TLIF procedures, endoscopic visualization for nerve protection during endplate preparation and cage insertion. The advantages over applicable references mentioned above7,11,14 were twofold: first, familiarity with instruments such as an endplate shaver, a funnel, and a standard TLIF non-expandable cage enhances procedural safety; and second, visualized nerve protection ensures that neural structures are properly shielded.
The purposes of this study are to video-record the FE-TLIF procedure and provide a step-by-step explanation accompanied by video clips and to use written text to describe key techniques and precautions for ensuring a safer and more efficient procedure.
CASE PRESENTATION:
We present a 68-year-old male with lower back pain, right calf pain, and difficulty walking. The associated symptoms included numbness of the right L5 territory and intermittent claudication. Imaging revealed L4-L5 degenerative spondylolisthesis with spinal stenosis syndrome (Figure 1). After a thorough discussion, the patient was scheduled for right L4-L5 uniportal full endoscopic posterolateral transforaminal lumbar interbody fusion (FE-TLIF).
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This study (Ref. No. 202500125B0) was approved by the institutional review board of Chang Gung Medical Foundation, Taiwan, and appropriate informed consent was obtained.
1. Positioning, skin marking, and patient preparation
2. Creating working space and identifying landmarks
3. Ipsilateral decompression
4. Contralateral decompression
5. Disc space clearance and endplate preparation
6. Interbody fusion with bone graft and cage
7. Final check
8. Application of pedicle screws and rods
9. Closing the skin in layers with drain inserted
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From September 2024 to March 2025, a total of 10 patients at our hospital were diagnosed with L4-L5 degenerative spondylolisthesis with spinal stenosis and underwent surgery. The cohort included five males and five females, with an average age of 67.0 ± 9.27 years (range: 52–82). The average surgical time was 333.2 ± 47.25 min (range: 274–424). Postoperatively, patients reported significant improvement of both back and leg pain score on a visual analog scale (0-10) from 7.2 ± 1.14 to 1.3 ± 1.34. They were able to sit and...
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The FE-TLIF procedure has never been straightforward, even as current trends in spine surgery continue to shift toward minimally invasive approaches17. This study is among the first to provide a detailed video demonstration of the FE-TLIF technique. Zhao et al.14 reported that it took 25 cases to reduce operation time and length of hospital stay. Meanwhile, Ali et al.18 found that the learning curve primarily affected certain surgical metrics but did...
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All authors disclosed no conflict of interest.
Special thanks to Louis Lai for recording the procedure using his smartphone and a tripod. This study received no external funding.
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| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| 10mm shaver | REBORN | 420-0710 | |
| 10mm trial | REBORN | 420-0610A | |
| 11mm shaver | REBORN | 420-0711 | |
| 11mm trial | REBORN | 420-0611A | |
| 12mm shaver | REBORN | 420-0712 | |
| 12mm trial | REBORN | 420-0612A | |
| 13mm shaver | REBORN | 420-0713 | |
| 13mm trial | REBORN | 420-0613A | |
| 14mm shaver | REBORN | 420-0714 | |
| 14mm trial | REBORN | 420-0614A | |
| 8mm shaver | REBORN | 420-0708 | |
| 8mm trial | REBORN | 420-0608A | |
| 9mm shaver | REBORN | 420-0709 | |
| 9mm trial | REBORN | 420-0609A | |
| Biopsy Forceps, Blakesley | JOIMAX | BFS323061 | WL 320 mm / OD 3.5 mm / JL 6.0 mm |
| Biopsy Forceps, Spoon | JOIMAX | THF322541 | WL 320 mm / OD 2.5 mm / JL 4.0 mm |
| Biopsy Forceps, Spoon, angled | JOIMAX | THF322041 | WL 320 mm / OD 2.0 mm / JL 4.0 mm / 45° |
| Bone graft impactor | REBORN | 410-1216 | |
| Dissector | JOIMAX | JDA273515 | WL 275 mm / OD 3.5 mm |
| Dissector, angled | JOIMAX | ON REQUEST | WL 280 mm / OD 3.5 mm / 40° |
| Distractor 10mm | REBORN | 420-1610 | |
| Distractor 11mm | REBORN | 420-1611 | |
| Distractor 12mm | REBORN | 420-1612 | |
| Distractor 13mm | REBORN | 420-1613 | |
| Distractor 14mm | REBORN | 420-1614 | |
| Distractor 8mm | REBORN | 420-1608 | |
| Distractor 9mm | REBORN | 420-1609 | |
| Endo-Flexprobe | JOIMAX | TEFP32020 | L 320 mm / OD 2.0 mm |
| Endo-Flexprobe Handle | JOIMAX | TEFH45025 | L 450 mm / OD 2.5 mm |
| Endo-Kerrison-Pistol Handle | JOIMAX | EKH550000 | OD 5.5 mm |
| Endo-Kerrison-Shaft | JOIMAX | EKS24551540 | WL 240 mm / OD 5.5 mm / F 1.5 mm / 40° |
| Endo-Kerrison-Shaft | JOIMAX | EKS24553040 | WL 240 mm / OD 5.5 mm / F 3.0 mm / 40° |
| Funnel for bone graft | REBORN | 410-1215 | |
| Grasper Forceps | JOIMAX | THG323555 | WL 320 mm / OD 3.5 mm / JL 5.5 mm |
| Guiding Rod, conical | JOIMAX | GRD226315 | L 225 mm / OD 6.3 mm |
| Guiding Tube, conical, red | JOIMAX | GTC177010 | L 165 mm / ID 7 mm / OD 10 mm |
| Guiding Tube, conical, violet | JOIMAX | GTC151510 | L 175 mm / ID 10 mm / OD 15 mm |
| Hook Scissor | JOIMAX | JHS243545 | WL 240 mm / OD 3.5 mm / JL 4.5 mm |
| Laminoscope | JOIMAX | LS1006125O | WL 125 mm / OD 10.0 mm / 15° / WChD 6.0 mm / 2x IC 2.0 mm |
| Lumbar implant impactor | REBORN | 420-3303 | |
| Nerve Hook | JOIMAX | TNH322533 | L 320 mm / OD 2.5 mm / JL 3.3 mm |
| Osteotome | JOIMAX | ON REQUEST | WL 260 mm / OD 5.5 mm |
| Peek lumbar 11#-14# implant driver | REBORN | 420-1715 | |
| Peek lumbar 8#-10# implant driver | REBORN | 420-1714 | |
| Reamer Push-Ejector | JOIMAX | RPE280600 | L 280 mm / OD 6.0 mm |
| Semi-Flexible Grasper Forceps, curved, up-biting | JOIMAX | TFG322522U | WL 320 mm / OD 2.5 mm / Helix |
| Slap hammer | REBORN | 420-0401B | |
| T-handle | REBORN | 460-0101A | |
| Working Reamer Tube, put endoscope into for trephining | JOIMAX | ON REQUEST | L 125 mm / ID 10.2 mm / OD 11.2 mm |
| Working Tube with Handle | JOIMAX | ON REQUEST | L 125 mm / ID 10.2 mm / OD 11.2 mm |
| Working Tube with Handle, long Lip | JOIMAX | WTS121602 | L 132 mm / ID 15 mm / OD 16 mm |
| Working Tube, use with reamer | JOIMAX | ON REQUEST | L 120 mm / ID 11.5 mm / OD 12.5 mm |
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