Safety and Efficacy of Real-Time Intraoperative Ultrasound-Guided Posterolateral Thoracic Diskectomy

Operative Neurosurgery 31:20–27, 2026

This article reports a single-center retrospective case series evaluating real-time intraoperative ultrasound (IOUS)-guided posterolateral thoracic diskectomy for symptomatic thoracic disk herniation (TDH). The study of 32 patients (41 levels) demonstrates significant reductions in pain and Nurick scores, low blood loss, moderate operative times, no postoperative complications, and high fusion rates at follow-up.

The manuscript details patient selection, surgical technique using IOUS for direct ventral cord visualization during posterolateral diskectomy, perioperative outcomes, and limitations. Authors conclude IOUS-guided posterolateral diskectomy is a safe, effective, and broadly adoptable method that improves decompression while minimizing morbidity compared with traditional anterior or lateral approaches.

Clinical problem: Thoracic disk herniation surgery is technically challenging because the thoracic canal is narrow and the spinal cord blocks direct access/visualization of ventral pathology.

Technique: Real-time intraoperative ultrasound (IOUS) is used during a posterolateral thoracic diskectomy to directly visualize the spinal cord and TDH, guide instrument positioning, and confirm decompression intraoperatively.

Study design: Retrospective single-surgeon series of symptomatic TDH patients treated with IOUS-guided posterolateral diskectomy from May 2020 to Feb 2025 at a major academic center.

Cohort details: 32 patients (41 levels); 50% had calcified disks (n=16), predominantly central lesions (n=13), including 2 “giant” TDHs (>40% canal).

Key operative steps: Laminectomy and partial bony removal (including <¼ pedicle), creation of a cavity by removing small cranial/caudal endplate portions, then using an ultrasound-visualized curette to push the disk fragment ventrally into the cavity for safe removal, with repeat IOUS confirmation of anterior cord decompression.

Clinical outcomes: Significant improvement in pain and neurological/ambulatory function (VAS 5.9±2.0 to 1.8±1.2; Nurick 2.8±0.7 to 1.0±0.8; P<.001 for both).

Perioperative metrics: Mean operative time 132.8±32.9 minutes, mean blood loss 118.1±77.6 mL, and average length of stay 4.7±2.6 days.

Safety/fusion: No postoperative complications were observed; among those with ≥1-year follow-up (30/32), all achieved Lenke-Bridwell Grade A or B fusion without pseudarthrosis or revision surgery.

Use of Cannulated Reamers to Facilitate Thoracic Diskectomy Using a Minimally Invasive Retropleural Thoracotomy Approach

Operative Neurosurgery 23:E313–E319, 2022

The surgical treatment of symptomatic thoracic disk herniations is technically challenging. In the past decade, a minimally invasive retropleural thoracotomy approach has become more popular to treat this pathology. However, efficient bone removal to safely perform the diskectomy and spinal cord decompression is difficult with this technique because of the small incision size and long working distance in the thoracic cavity and the proximity of the compressed thoracic cord.

OBJECTIVE: To describe a novel surgical technique for performing a thoracic diskectomy using a minimally invasive lateral approach using cannulated reamers to facilitate bone removal.

METHODS: This technique was used in 7 consecutive patients who presented with thoracic myelopathy from a thoracic disk herniation. First, a standard lateral minimally invasive retropleural approach to the thoracic spine was performed. Partially threaded guide wires were placed in the posterior aspect of the vertebral bodies adjacent to the affected disk space, and sequential cannulated reamers were passed over the guidewires to perform partial corpectomies. The posterior annulus, posterior longitudinal ligament, and herniated disk material were then resected using Penfield dissectors and Kerrison rongeurs to complete the decompression.

RESULTS: All 7 patients who underwent thoracic diskectomy using this approach had stable or improved neurologic function postoperatively. There were no complications related to the use of the cannulated reamer technique.

CONCLUSION: The use of cannulated reamers provides a simple and efficient method for safe bone removal to facilitate minimally invasive thoracic diskectomy using a lateral approach. This is an easily reproducible technique using commonly available equipment.