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Peri-operative BiPAP to Prevent Tracheostomy in High-Risk Bilateral Vocal-Cord Paralysis (BVCP)

A Multicenter, Randomized Controlled Trial of Pre-operative BiPAP Training and Post-extubation BiPAP Support to Reduce Peri-operative Tracheostomy or Re-intubation in Patients at High Risk for Bilateral Vocal-Cord Paralysis

Status
Not yet recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07042971
Acronym
BVCP-BiPAP
Enrollment
204
Registered
2025-06-29
Start date
2025-07-01
Completion date
2029-12-31
Last updated
2025-06-29

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Airway Obstruction, Postoperative, Sleep Apnea, Obstructive, Thyroid Neoplasms, Vocal Cord Paralysis, Bilateral

Keywords

BiPAP, Non-invasive Ventilation, Continuous Positive Airway Pressure, Peri-operative Airway Management, Tracheostomy Avoidance, Thyroidectomy, Neck Surgery, Glottic Stenosis, Pre-operative Sleep Training, Voice Handicap Index

Brief summary

Why: After thyroid or neck surgery, some patients can lose movement of both vocal cords (bilateral vocal-cord paralysis, BVCP). This can make breathing difficult and often leads to an emergency or preventive tracheostomy (wind-pipe) surgery. What: This study will test two simple ways to avoid a tracheostomy: Pre-operative BiPAP sleep training - patients practice sleeping with a non-invasive BiPAP breathing machine for seven nights before surgery so they become comfortable with the mask and pressures. Immediate post-extubation BiPAP support - the same BiPAP machine is started as soon as the breathing tube is removed in the operating room or recovery area. How: Adults (18-80 years) who already have, or are at high risk of getting, BVCP will be randomly assigned to one of four groups in a 2 × 2 design: • Group 1: training + post-op BiPAP • Group 2: training only • Group 3: post-op BiPAP only • Group 4: standard care (no planned BiPAP). Main goal: To find out whether either or both BiPAP strategies reduce the need for tracheostomy or re-intubation during the first 7 days after surgery. What participants do: Eligible patients will undergo routine surgery plus the assigned BiPAP plan. Breathing events, comfort, hospital stay, and voice quality will be recorded up to 6 months. Potential benefit/risk: BiPAP is non-invasive and already FDA-cleared for home and hospital use, but some people may feel mask discomfort or air leaks. Trained staff will adjust settings and stop BiPAP if serious problems occur.

Detailed description

Background and Rationale Bilateral vocal-cord paralysis (BVCP) after thyroid and neck procedures poses an immediate risk of airway obstruction. Historical management favors prophylactic or rescue tracheostomy; however, tracheostomy carries morbidity, cost, and long-term stigma. Case series suggest that non-invasive ventilation (NIV) using BiPAP can stent the glottic opening while providing ventilatory support, but no prospective randomized data exist. Objectives Primary: Compare the 7-day composite rate of (a) tracheostomy or (b) re-intubation among patients managed with (i) pre-operative BiPAP training, (ii) immediate post-extubation BiPAP, both, or neither. Secondary: BiPAP usage hours, hypoxemic events, ICU/hospital length of stay, Voice Handicap Index-10 (VHI-10) and Eating Assessment Tool-10 (EAT-10) scores, normalized glottic area (NGA %) at 6 months, cost. Study Design Multicenter, open-label, factorial (2 × 2) randomized controlled trial. Randomization (block size = 4) stratified by center. Total planned enrollment: 204 (to allow for 10 % attrition), yielding \ 46 evaluable participants per arm. Interventions Pre-operative BiPAP training: nightly ≥ 4 h for 7 consecutive nights, pressure ladder EPAP 6 → 8 cmH₂O / IPAP 12 → 16 cmH₂O, recorded on SD-card. Post-extubation BiPAP: same machine and pressures applied immediately after extubation and continued ≥ 48 h or until patient maintains SpO₂ ≥ 94 % for 24 h without BiPAP. Standard care includes oxygen, nebulization, steroids, and surgical airway if necessary. Eligibility (key points) Inclusion: age 18-80; scheduled thyroid/neck surgery; pre-op fixed cords at midline/paramedian or glottic gap ≤ 3 mm OR ≥ 2 high-risk factors (bilateral neck re-entry, tumor near both RLNs, bilateral C + L lymph-node dissection, severe OSA AHI ≥ 30, BMI ≥ 30). Exclusion: emergency surgery, existing tracheostomy, ventilator dependence, mask intolerance, pregnancy, inability to consent. Outcomes and Assessments * Airway status monitored continuously POD 0-2, then daily to POD 7. * ABG, pulse oximetry, and flexible laryngoscopy performed per protocol schedule. * Adverse events graded by CTCAE v5.0; DSMB halting rule: ≥ 3 grade 3 airway failures in any arm. Statistical Methods Intention-to-treat for primary endpoint. Log-binomial regression with center as random effect to estimate risk ratios for each main effect and their interaction. Kaplan-Meier curves for tracheostomy-free survival. Interim analysis at 50 % information using O'Brien-Fleming alpha-spending. Regulatory Status Devices (ResMed AirCurve 10 ST; Philips A40) are FDA-cleared class II ventilators (510(k)); IRB classified study as non-significant-risk device research exempt from IDE under 21 CFR 812.2(b). Data Sharing De-identified individual participant data and statistical code will be shared upon reasonable request 6 months after final publication.

Interventions

DEVICEPre-operative BiPAP Training

Seven consecutive nights (≥ 4 h/night) of BiPAP use at home or on ward, pressure ladder EPAP 6→8 cmH₂O / IPAP 12→16 cmH₂O, recorded on SD card; devices: ResMed AirCurve 10 ST or Philips A40.

DEVICEPost-extubation BiPAP Support

Same BiPAP device started immediately after tracheal extubation; EPAP 8 cmH₂O / IPAP 14 cmH₂O (or patient's final training setting) maintained ≥ 48 h, then weaned when SpO₂ ≥ 94 % off-BiPAP for 24 h.

OTHERStandard Peri-operative Care

Routine oxygen, nebulized steroids, airway monitoring; rescue re-intubation or tracheostomy per institutional protocol; no planned BiPAP unless crossover criteria met.

Sponsors

Fujian Medical University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
FACTORIAL
Primary purpose
DIAGNOSTIC
Masking
NONE

Masking description

Open-label; blinding not feasible because BiPAP mask/pressures are apparent. Primary endpoint (tracheostomy or re-intubation) is objective.

Intervention model description

Two-by-two factorial randomized controlled trial testing the independent and combined effects of (A) 7-day pre-operative BiPAP training and (B) immediate post-extubation BiPAP support.

Eligibility

Sex/Gender
ALL
Age
18 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

* Age 18 - 80 years. * Scheduled for thyroidectomy or other neck surgery under general anesthesia. * High risk of bilateral vocal-cord paralysis (BVCP) defined by at least ONE of: * Pre-operative flexible laryngoscopy showing fixed vocal cords at midline or paramedian position, or glottic gap ≤ 3 mm; OR * Presence of ≥ 2 high-risk factors: * Planned bilateral central plus lateral neck dissection * Re-operative bilateral neck surgery or dense scarring * Tumor involving both recurrent laryngeal nerves or crico-arytenoid joints * Severe obstructive sleep apnea (AHI ≥ 30 events/hour) * Body-mass index (BMI) ≥ 30 kg/m² * Able to tolerate and give informed consent for BiPAP mask use.

Exclusion criteria

* Emergency surgery or need for immediate tracheostomy. * Existing tracheostomy or home ventilator dependence. * Inability to protect airway (e.g., Glasgow Coma Scale \< 13). * Craniofacial anomaly or skin condition precluding mask seal. * Pregnancy or breastfeeding. * Participation in another interventional trial that could interfere with study endpoints.

Design outcomes

Primary

MeasureTime frameDescription
Composite Airway Failure (Tracheostomy OR Re-intubation)The first occurrence of (a) surgical tracheostomy or (b) endotracheal re-intubation for respiratory distress within 7 days after extubation. Event status adjudicated by an independent investigator using pre-defined criteria.Post-operative Day 0 through Day 7

Secondary

MeasureTime frameDescription
Total BiPAP Usage HoursPost-op Day 0 to Day 2 (48 hours)Sum of hours recorded by device SD-card while patient is connected to BiPAP during the first 48 h after extubation.
Hypoxemic Episodes (SpO₂ < 90 % ≥ 3 min)Post-op Day 0 to Day 2Number of discrete desaturation events captured by continuous pulse oximetry logs.
ICU Length of StaySurgery end → ICU discharge (up to 7 days)Hours from ICU admission to ICU discharge documented in EMR.
Voice Handicap Index-10 (VHI-10)6 months (±14 days) post-opPatient-reported outcome; total score 0-40 (higher = worse voice handicap).
Normalized Glottic Area (NGA %)Baseline pre-op and 6 months post-opPercentage of glottic opening area measured on flexible laryngoscopy and normalized to true-vocal-fold length.

Countries

China

Contacts

Primary ContactBo WANG, MD
wangbo@fjmu.edu.cn+8613959123550
Backup ContactWANG
wangbo@fjmu.edu.cn13959123550

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026