Microvascular Decompression for Patients With Type 1 Trigeminal Neuralgia Using Vein Sacrifice and a Teflon Transposition Technique: A 23-Year Cohort

Neurosurgery 98:588–596, 2026

This study reports outcomes from a 23-year, prospectively maintained cohort of 523 patients with unilateral Type 1 trigeminal neuralgia treated by microvascular decompression using vein sacrifice and a Teflon transposition technique. Primary outcome was long-term pain-free survival without medications, with median follow-up 8.2 years and 5-, 10-, 15-year pain-free rates of 77.6%, 72.5%, and 69.7%, respectively.

Operative details, complications, and reoperation rates are presented: arterial transposition was performed when possible, veins contacting the nerve were sacrificed, and Teflon pledgets used to maintain separation. Complications were uncommon and generally non-disabling (most frequent: facial numbness, diplopia); true Teflon granulomas were rare but noted in isolated reoperations.

Microvascular decompression (MVD) is the most effective surgical treatment for medically unresponsive Type 1 trigeminal neuralgia (TN), aiming to eliminate neurovascular contact with the trigeminal nerve using arterial transposition, vein sacrifice, and polytetrafluoroethylene (PTFE, “Teflon”) implantation when appropriate.

Study outcomes show that 92.7% of patients were initially pain-free without medications after MVD, with pain-free survival rates of 77.6% at 5 years, 72.5% at 10 years, and 69.7% at 15 years.

Operative technique selection depends on intraoperative findings: arteries are transposed and secured with PTFE whenever possible, veins in contact with the nerve are sacrificed, and partial sensory rhizotomy is reserved for cases without significant vascular compression.

Complication rates are low; the most common was new or worsened facial numbness (7.1%), with higher rates when veins were sacrificed (6.9%) versus arterial decompression alone (1.6%). Venous infarction occurred in 0.6% of patients, and Teflon granuloma in 0.4%.

Pain-free survival was lower in women (hazard ratio 1.48, P = .03), but not associated with pain duration, previous ablative surgery, or new facial numbness.

Vein sacrifice is generally safe and facilitates surgical exposure, though it carries a low but real risk of venous complications; evidence is mixed regarding whether preserving or sacrificing the superior petrosal vein impacts complication rates.

PTFE (“Teflon”) material is widely used for vessel transposition; however, true Teflon granulomas—characterized by mass effect, edema, and inflammatory response—are rare and should not be used to describe all cases of recurrent pain with adherent PTFE.

Terminology precision is important: “Teflon” is a trademark for Chemours’ PTFE products, and not all PTFE felt used in surgery is identical. Variability in material properties may affect surgical outcomes and study reproducibility.

Redo surgery for trigeminal neuralgia: reasons for re‐exploration and long‐term outcomes

Acta Neurochirurgica (2021) 163:2407–2416

To investigate the causes of failure and recurrence after microvascular decompression (MVD) for trigeminal neuralgia (TGN) and to analyze the results of redo surgery.

Methods Sixty-three cases of redo surgery were retrospectively reviewed. Reasons for re-exploration were categorized into 4 groups based on the operative findings. Patient characteristics, outcomes of re-exploration, and operative complications were analyzed by Kaplan–Meier and logistic regression analyses.

Results Reasons for redo surgery were divided into arterial compression in 13 patients (21%), venous compression in 11 patients (17%), prosthesis-related in 25 patients (40%), and adhesion or negative exploration in 14 patients (22%). Immediate pain relief was obtained in 59 patients (94%) postoperatively with newly developed facial numbness in 17 patients (27%). Of these, 48 patients (76%) maintained pain-free 1 year postoperatively. Overall recurrence was noted in 17 patients (27%) during the median 49-month follow-up period. Most recurrences occurred within 1 year after redo surgery, but the prosthesis-related patients showed a continuous recurrence up to 4 years. Patients having vascular compression showed significantly better pain control than those without vascular contact in Kaplan–Meier analyses (p = 0.0421). No prognostic factor for pain-free 1 year after redo surgery was found.

Conclusions Redo surgery is effective for patients with remaining vascular compression rather than those without vascular contact. Teflon contact onto the nerve root should be avoided because it is a potential risk for recurrence and causes poor prognosis after redo surgery.