1.Biportal Endoscopic Posterior Cervical Revision Surgery for Recurrent Cervical Degenerative Pathology: A Technical Report
Journal of Minimally Invasive Spine Surgery and Technique 2026;11(1):41-50
Objective:
Revision surgery for recurrent cervical radiculopathy or myelopathy after posterior decompression is technically challenging because of epidural adhesions, altered anatomy, and the risk of postoperative instability. Although anterior cervical discectomy and fusion is commonly performed, it sacrifices segmental motion and is associated with fusion-related morbidity. This technical report describes the surgical technique and early clinical outcomes of unilateral biportal endoscopic (UBE) posterior cervical revision as a motion-preserving alternative.
Methods:
Five patients underwent UBE-assisted posterior cervical revision surgery for recurrent cervical disc herniation, foraminal stenosis, or central canal stenosis. Procedures included inclinatory foraminotomy or unilateral laminotomy with bilateral decompression, depending on pathology. Clinical outcomes were evaluated using visual analogue scale (VAS) scores for neck and arm pain, motor strength assessment, radiographic evaluation, and modified MacNab criteria. All patients were followed for at least 1 year.
Results:
All procedures were completed without conversion to open surgery or the need for fusion. Adequate neural decompression was achieved in all cases, with preservation of facet joint integrity and cervical alignment. Neck pain VAS scores improved from 4–8 preoperatively to 0–1 at 1 year postoperatively, while arm pain VAS scores improved from 7–9 to 0–2. Motor weakness improved in all patients who presented with preoperative deficits. No intraoperative or postoperative complications were observed during the follow-up period.
Conclusion
UBE-assisted posterior cervical revision surgery appears to be a feasible and effective minimally invasive option for selected patients. This technique allows sufficient decompression while preserving cervical motion and avoiding fusion-related morbidity.
2.Unilateral Biportal Endoscopic Transforaminal Approach for Chronic Central Thoracic Disc Herniation: A Video Case Report and Surgical Technique Description
Journal of Minimally Invasive Spine Surgery and Technique 2026;11(1):144-148
To demonstrate the feasibility and highlight key technical nuances of a unilateral biportal endoscopic (UBE) transforaminal approach for resecting chronic, centrally calcified thoracic disc herniation (TDH). Central TDH is a rare and technically demanding condition due to the narrow thoracic canal, proximity to the spinal cord, and frequent calcification in chronic cases. Minimally invasive techniques that reduce spinal cord manipulation and preserve posterior stabilizing structures are therefore preferred. A 74-year-old woman presented with lower back and left leg pain, sensory disturbance, and gait impairment. Magnetic resonance imaging revealed a centrally calcified TDH at T10–11 with significant spinal cord compression. The lesion was approached via a transforaminal UBE route under continuous irrigation, providing a direct lateral working corridor for optimal visualization and controlled decompression. The calcified and adherent disc was progressively thinned and delicately dissected from the dura using an angled sharp hook and fine endoscopic instruments, minimizing cord manipulation. Postoperative imaging confirmed complete decompression, and the patient showed marked neurological recovery without complications. For centrally located, calcified TDH, the transforaminal UBE approach enables effective decompression while minimizing spinal cord retraction and preserving posterior elements. The accompanying video provides a detailed step-by-step demonstration of the procedure to enhance its safety and reproducibility.
3.Full-Endoscopic Paraspinal Foraminotomy for Lumbar Foraminal Stenosis
Young Hwan KIM ; Jae Ho KIM ; Pius KIM ; Chang Il JU ; Jong Hun SEO
Journal of Minimally Invasive Spine Surgery and Technique 2026;11(1):169-176
Transforaminal endoscopic lumbar foraminotomy (TELF) is widely performed as a full-endoscopic surgical procedure for the treatment of lumbar foraminal stenosis. The technique involves the use of a small-caliber endoscopic system introduced through Kambin triangle to accomplish the primary surgical steps. However, anatomical barriers are frequently encountered in the lower lumbar segments, particularly at L4–5 and L5–S1, which may limit the feasibility of the transforaminal approach. Although various advanced transforaminal techniques have been developed to overcome these anatomical barriers, these techniques often make the procedure more technically demanding and may prolong operative time. In this video presentation, we report 2 cases in which a full-endoscopic paraspinal lumbar foraminotomy was performed to achieve adequate decompression of the exiting nerve root (ENR) without being constrained by these anatomical limitations. We also outline the procedural details and technical characteristics of this approach. Both patients presented with lumbar foraminal stenosis at the L5–S1 level, where anatomical barriers such as a high iliac crest, large transverse process, and sacral ala were present. A full-endoscopic paraspinal foraminotomy was performed at this level using a large-caliber endoscopic system, allowing sufficient decompression of the ENR and resulting in marked relief of radicular leg pain. We report a surgical procedure for full-endoscopic paraspinal lumbar foraminotomy using a large-caliber endoscopic system that permits the use of instruments of various sizes and configurations. When applied in appropriate clinical scenarios, this technique may facilitate more convenient and expedited decompression of the ENR.
4.Full Endoscopic Total Resection of Superior Articular Process for Lumbar Foraminal Decompression
Pius KIM ; Jong Hun SEO ; Hyeun Sung KIM
Journal of Minimally Invasive Spine Surgery and Technique 2026;11(Suppl 1):S53-S62
Objective:
Partial resection of the superior articular process (SAP) is commonly performed during transforaminal endoscopic lumbar foraminotomy (TELF) for the treatment of lumbar foraminal stenosis (LFS). The present study evaluated the efficacy and feasibility of total SAP resection using the selective superior articular process resection (SSAPR) technique, in comparison with conventional TELF.
Methods:
This retrospective cohort study included 79 patients with symptomatic LFS who were treated using TELF (52 segments) or SSAPR (34 segments) between March 2018 and September 2022. Clinical outcomes were evaluated using the visual analogue scale (VAS), Oswestry Disability Index (ODI), and MacNab criteria. Vertebral slippage was measured to assess segmental stability, and postoperative complications were systematically analyzed.
Results:
The study cohort consisted of 79 patients (39 men and 40 women; mean age, 61.9±14.2 years) who were followed for a mean duration of 14.5±2.2 months. At the final follow-up, no significant differences were identified between the TELF and SSAPR groups in VAS or ODI scores (p=0.603 and p=0.776, respectively). Vertebral slippage increased significantly in the TELF group, from 5.49±3.64 mm to 8.75±6.78 mm (p=0.019), whereas only minimal changes were observed in the SSAPR group, from 3.67±3.57 mm to 3.86±3.17 mm (p=0.858). Grade 2 dysesthesia occurred in 12.8% of TELF cases but was not observed in the SSAPR group (p=0.07).
Conclusion
The SSAPR technique provides effective foraminal decompression with improved surgical efficiency and a lower risk of postoperative nerve irritation, while maintaining segmental stability. These findings support the clinical utility of total SAP resection as a safe and viable alternative to conventional partial SAP resection for the treatment of LFS.
5.Full-Endoscopic J-Shaped Transforaminal L5 Nerve Decompression in Bertolotti Syndrome
Chang-Il JU ; Pius KIM ; Jong Hun SEO
Neurospine 2024;21(4):1131-1136
This case report and video demonstrate the technique of full-endoscopic J-shaped transforaminal L5 exiting nerve decompression in Bertolotti syndrome. Bertolotti syndrome, characterized by a congenital lumbosacral transitional vertebra, often results in mechanical lower back pain and nerve root compression. A 69-year-old male presented with progressive radiating pain in the right leg and tingling in the L5 dermatome. Lumbar spine MRI revealed a right foraminal disc herniation at the L5–S1 level, with calcification and foraminal stenosis. The patient was also diagnosed with Castellvi type I Bertolotti syndrome, featuring a large L5 transverse process and a high iliac crest. These anatomical variations complicated the transforaminal approach, creating a narrow safety zone for conventional methods. The approach began with docking on the L5 transverse process. Endoscopic drilling was performed in a J-shaped configuration to partially resect the transverse process and alar wing, facilitating endoscope insertion into Kambin’s triangle. Foraminal decompression was achieved by removing the tip of the superior articular process (SAP), thereby decompressing the L5 exiting nerve root. Full-endoscopic spine surgery offers a safe and effective alternative to traditional open techniques for L5 nerve decompression in Bertolotti syndrome. This video presentation illustrates the intraoperative endoscopic approach, detailing the decompression techniques and highlighting the minimally invasive advantages of this method.
6.Full-Endoscopic J-Shaped Transforaminal L5 Nerve Decompression in Bertolotti Syndrome
Chang-Il JU ; Pius KIM ; Jong Hun SEO
Neurospine 2024;21(4):1131-1136
This case report and video demonstrate the technique of full-endoscopic J-shaped transforaminal L5 exiting nerve decompression in Bertolotti syndrome. Bertolotti syndrome, characterized by a congenital lumbosacral transitional vertebra, often results in mechanical lower back pain and nerve root compression. A 69-year-old male presented with progressive radiating pain in the right leg and tingling in the L5 dermatome. Lumbar spine MRI revealed a right foraminal disc herniation at the L5–S1 level, with calcification and foraminal stenosis. The patient was also diagnosed with Castellvi type I Bertolotti syndrome, featuring a large L5 transverse process and a high iliac crest. These anatomical variations complicated the transforaminal approach, creating a narrow safety zone for conventional methods. The approach began with docking on the L5 transverse process. Endoscopic drilling was performed in a J-shaped configuration to partially resect the transverse process and alar wing, facilitating endoscope insertion into Kambin’s triangle. Foraminal decompression was achieved by removing the tip of the superior articular process (SAP), thereby decompressing the L5 exiting nerve root. Full-endoscopic spine surgery offers a safe and effective alternative to traditional open techniques for L5 nerve decompression in Bertolotti syndrome. This video presentation illustrates the intraoperative endoscopic approach, detailing the decompression techniques and highlighting the minimally invasive advantages of this method.
7.Full-Endoscopic J-Shaped Transforaminal L5 Nerve Decompression in Bertolotti Syndrome
Chang-Il JU ; Pius KIM ; Jong Hun SEO
Neurospine 2024;21(4):1131-1136
This case report and video demonstrate the technique of full-endoscopic J-shaped transforaminal L5 exiting nerve decompression in Bertolotti syndrome. Bertolotti syndrome, characterized by a congenital lumbosacral transitional vertebra, often results in mechanical lower back pain and nerve root compression. A 69-year-old male presented with progressive radiating pain in the right leg and tingling in the L5 dermatome. Lumbar spine MRI revealed a right foraminal disc herniation at the L5–S1 level, with calcification and foraminal stenosis. The patient was also diagnosed with Castellvi type I Bertolotti syndrome, featuring a large L5 transverse process and a high iliac crest. These anatomical variations complicated the transforaminal approach, creating a narrow safety zone for conventional methods. The approach began with docking on the L5 transverse process. Endoscopic drilling was performed in a J-shaped configuration to partially resect the transverse process and alar wing, facilitating endoscope insertion into Kambin’s triangle. Foraminal decompression was achieved by removing the tip of the superior articular process (SAP), thereby decompressing the L5 exiting nerve root. Full-endoscopic spine surgery offers a safe and effective alternative to traditional open techniques for L5 nerve decompression in Bertolotti syndrome. This video presentation illustrates the intraoperative endoscopic approach, detailing the decompression techniques and highlighting the minimally invasive advantages of this method.
8.Full-Endoscopic J-Shaped Transforaminal L5 Nerve Decompression in Bertolotti Syndrome
Chang-Il JU ; Pius KIM ; Jong Hun SEO
Neurospine 2024;21(4):1131-1136
This case report and video demonstrate the technique of full-endoscopic J-shaped transforaminal L5 exiting nerve decompression in Bertolotti syndrome. Bertolotti syndrome, characterized by a congenital lumbosacral transitional vertebra, often results in mechanical lower back pain and nerve root compression. A 69-year-old male presented with progressive radiating pain in the right leg and tingling in the L5 dermatome. Lumbar spine MRI revealed a right foraminal disc herniation at the L5–S1 level, with calcification and foraminal stenosis. The patient was also diagnosed with Castellvi type I Bertolotti syndrome, featuring a large L5 transverse process and a high iliac crest. These anatomical variations complicated the transforaminal approach, creating a narrow safety zone for conventional methods. The approach began with docking on the L5 transverse process. Endoscopic drilling was performed in a J-shaped configuration to partially resect the transverse process and alar wing, facilitating endoscope insertion into Kambin’s triangle. Foraminal decompression was achieved by removing the tip of the superior articular process (SAP), thereby decompressing the L5 exiting nerve root. Full-endoscopic spine surgery offers a safe and effective alternative to traditional open techniques for L5 nerve decompression in Bertolotti syndrome. This video presentation illustrates the intraoperative endoscopic approach, detailing the decompression techniques and highlighting the minimally invasive advantages of this method.
9.Full-Endoscopic J-Shaped Transforaminal L5 Nerve Decompression in Bertolotti Syndrome
Chang-Il JU ; Pius KIM ; Jong Hun SEO
Neurospine 2024;21(4):1131-1136
This case report and video demonstrate the technique of full-endoscopic J-shaped transforaminal L5 exiting nerve decompression in Bertolotti syndrome. Bertolotti syndrome, characterized by a congenital lumbosacral transitional vertebra, often results in mechanical lower back pain and nerve root compression. A 69-year-old male presented with progressive radiating pain in the right leg and tingling in the L5 dermatome. Lumbar spine MRI revealed a right foraminal disc herniation at the L5–S1 level, with calcification and foraminal stenosis. The patient was also diagnosed with Castellvi type I Bertolotti syndrome, featuring a large L5 transverse process and a high iliac crest. These anatomical variations complicated the transforaminal approach, creating a narrow safety zone for conventional methods. The approach began with docking on the L5 transverse process. Endoscopic drilling was performed in a J-shaped configuration to partially resect the transverse process and alar wing, facilitating endoscope insertion into Kambin’s triangle. Foraminal decompression was achieved by removing the tip of the superior articular process (SAP), thereby decompressing the L5 exiting nerve root. Full-endoscopic spine surgery offers a safe and effective alternative to traditional open techniques for L5 nerve decompression in Bertolotti syndrome. This video presentation illustrates the intraoperative endoscopic approach, detailing the decompression techniques and highlighting the minimally invasive advantages of this method.
10.Surgical Options for Bertolotti Syndrome
Yo Han AHN ; Jong Hun SEO ; Chang Il JU ; Pius KIM
Journal of Minimally Invasive Spine Surgery and Technique 2024;9(1):3-13
This article provides a comprehensive examination of Bertolotti syndrome (BS), a disorder characterized by back pain due to a lumbosacral transitional vertebra, to facilitate surgical decision-making by exploring various surgical options, including the innovative approach of endoscopic spine surgery. A review of existing literature and studies on BS published until December 2023 was undertaken, utilizing databases such as PubMed and Google Scholar to identify relevant information. The review offers an integrated overview of the essential knowledge of BS and a comprehensive range of surgical treatments. Symptomatic BS can manifest as pain originating from pseudoarticulation and the facet joints, discs, adjacent segments, and the L5 root, indicating a diverse distribution of pain sources. Furthermore, various surgical strategies are tailored to the specific origin of pain, including pseudoarticulation resection, transverse processectomy, decompression, nerve root decompression, fusion, and endoscopic spine surgery. For individuals with BS contemplating surgical solutions, performing a detailed assessment of symptoms and physical evaluations is imperative to accurately identify the origin of the pain. The choice of a surgical strategy must be meticulously customized according to the identified source of pain, guaranteeing a tailored and efficacious treatment for each patient.

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