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Dr. Todd Ponsky

Pediatric Surgery · View profile →

Aerodigestive & Esophageal Surgery - Difficult Tracheal Esophageal Fistula

Video Published 2018-11-13 Updated 2026-08-01

Timestops (7)

Topic Overview

A multidisciplinary panel from Cincinnati Children's Hospital discusses complex tracheoesophageal fistulas (TEFs) and aspiration management in pediatric patients. The discussion covers diagnostic techniques including dual-scope endoscopy, endoscopic TEF repair using bugbee cautery and fibrin glue, slide tracheoplasty for large defects, and transtracheal repair approaches. Multiple case presentations demonstrate recurrent TEFs, H-type fistulas, button battery injuries, and bronchoesophageal fistulas. The panel emphasizes the importance of systematic bronchoscopy, aggressive tissue demucosalization for endoscopic closure, and the need for interposition grafts in open repairs. Success rates for endoscopic TEF closure average 80% with typically 2 procedures required.

Key Takeaways

  • Endoscopic TEF repair succeeds in ~80% of cases, typically requiring 2 procedures; consider open repair after 3-4 failures. (37:01)
  • Effective endoscopic TEF closure requires complete demucosalization of the tract—mucosa won't heal to mucosa. (23:41)
  • Long skinny TEF tracts are ideal for endoscopic repair; short wide tracts require open surgical approach. (1:16:42)
  • Esophageal button batteries are medical emergencies requiring removal within 2 hours; dead batteries still cause injury at ~2V. (57:00)
  • Rigid bronchoscopy with probing is required for laryngeal cleft diagnosis; flexible scope misses 95% of known clefts. (1:56:37)

Inside this episode

Kai, the Library's AI content creator, listened to this episode and mapped who's speaking, the chapters, key claims, and cases. Every item links to the exact moment in the recording.

AI-enriched

Who's speaking

  • Todd — host
  • Michael Rutter — guest
  • Bob Wood — guest
  • Phil Putnam — guest
  • Dan von Elman — guest

Chapters

  • 0:00Introduction and Framework for Aspiration — Introduction of faculty and overview of aspiration types (food/drink, saliva, reflux, esophageal contents) with testing modalities and management options including G-tubes, drool procedures, and laryngotracheal separation.
  • 10:40Diagnostic Techniques for TEF — Demonstration of finding recurrent TEFs using 70-degree scopes, bugbee probes, dual scoping with simultaneous bronchoscopy and esophagoscopy, and positive pressure testing with endotracheal tube in esophagus.
  • 28:00Endoscopic TEF Repair Techniques — Detailed presentation of endoscopic TEF closure using bugbee cautery for demucosalization, fibrin glue application, and management of suture material in fistula tracts. Discussion of success rates (80%) and typical need for 2 procedures.
  • 60:00Slide Tracheoplasty for Complex TEFs — Technique of slide tracheoplasty for large TEF defects, using tracheal tissue to repair esophagus with sternal periosteum interposition. Discussion of button battery complications and two dehiscence cases requiring revision.
  • 80:00Transtracheal TEF Repair — Anterior tracheal approach for high TEFs with three-layer closure (esophageal layer, periosteal graft, tracheal layer) with knots placed intraluminally to prevent refistulization.
  • 95:00Complex Cases: Multiple Fistulas and Complications — Case presentations including 7-year-old with missed H-type TEF, hearing aid foreign body causing bronchoesophageal fistula requiring cardiac bypass repair, and patient with three bronchoesophageal fistulas requiring right lower lobectomy.
  • 115:00Laryngeal Clefts and Tracheal Pouches — Emphasis on systematic evaluation for laryngeal clefts in aspirating patients, limitations of flexible bronchoscopy for cleft diagnosis, and technique for marsupializing tracheal pouches using laparoscopic biopsy forceps.

Key claims

  • 4:39Most children who aspirate have a functional or neurological problem rather than anatomical — Michael Rutter
  • 8:05Lipid-laden macrophages are non-specific markers of aspiration and their recovery depends on material aspirated, amount, lipid content, and time since aspiration — Bob Wood
  • 9:38Multi-channel intraluminal impedance testing detects reflux but does not diagnose aspiration itself — Phil Putnam
  • 9:58If anti-reflux procedure is performed when patient is aspirating from above, it does not help and makes them worse — Dan von Elman
  • 12:10Bugbee cautery is 3 French and serves as a smooth probe for finding small TEFs — Michael Rutter
  • 14:02Cincinnati routinely performs bronchoscopy on all esophageal atresia cases — Dan von Elman
  • 20:22Dual scoping allows visualization of light through tissue, injection of material through holes, and direct visualization of the other scope — Phil Putnam
  • 21:12Typical infant gastroscope is 5.4 or 6 millimeters outer diameter and fits retrograde through 16 French gastrostomy tube — Phil Putnam
  • 23:41Endoscopic TEF repair requires demucosalization of the tract because mucosa is a non-stick surface; need raw against raw for healing — Michael Rutter
  • 24:50Complete metadata for medical education content requires title, description, AI-generated summary, extracted and curated keywords, duration, content type, specialty area, target audience level, and language — Michael Rutter
  • 76:42Long skinny proximal-to-distal TEF tracts are ideal candidates for endoscopic repair; short fat wide tracts do not do well endoscopically — Michael Rutter
  • 77:27When repairing high TEF from thoracic approach, ligating fistula on esophageal side can leave large tracheal pouch/diverticulum — Michael Rutter
  • 37:01Endoscopic TEF closure success rate is approximately 80%, typically requiring 2 procedures — Michael Rutter
  • 37:11After 3-4 failed endoscopic TEF repair attempts, should consider open surgical approach — Michael Rutter
  • 52:28Button batteries can continue causing tissue damage for surprisingly long time, up to 6 weeks or more after removal — Michael Rutter
  • 58:15Dead button batteries still have approximately 2 volts and continue to cause injury — Todd
  • 58:20Button batteries can be distinguished from coins on AP X-ray by visible rim — Todd
  • 57:00Institutional protocol is to remove esophageal button batteries within 2 hours of identification as medical emergency — Phil Putnam
  • 60:54Large round flat 3-volt button batteries are most potentially damaging; smaller fatter batteries pose lower risk — Michael Rutter
  • 62:06Gastric button batteries are removed endoscopically before reaching duodenum to prevent gastric outlet stenosis — Phil Putnam
  • 69:18Transtracheal TEF repair is two-dimensional operation with less surgeon-dependency than three-dimensional operations like slide tracheoplasty — Michael Rutter
  • 70:10Slide tracheoplasty appears to have learning curve and is surgeon-dependent operation — Michael Rutter
  • 67:03For transtracheal repair, knots should be placed in lumen of trachea and esophagus rather than between layers to prevent refistulization — Michael Rutter
  • 47:05Sternal periosteum is like Kevlar, very strong and resilient, ideal for interposition grafts — Michael Rutter
  • 38:35When cauterizing in airway, oxygen concentration should be kept under 30% to reduce fire risk — Michael Rutter
  • 116:37Flexible bronchoscope is not reliable tool for diagnosing laryngeal cleft; cannot find them 95% of time even when known to be present — Bob Wood
  • 116:46Rigid bronchoscopy with probing is required for posterior commissure, subglottic space, or cervical trachea evaluation — Bob Wood
  • 118:01Tracheal pouches can be marsupialized using laparoscopic Storz click-line biopsy forceps at 40 watts cautery — Michael Rutter
  • 28:032.8mm flexible bronchoscope with 1.2mm suction channel can accommodate 3 French bugbee cautery — Bob Wood
  • 17:42Retrograde esophagoscopy through G-tube provides easier maneuvering just below esophageal inlet for finding high fistulas — Phil Putnam

Cases discussed

  • 10:41Term neonate with type C TEF repaired day of life 2, continued aspiration, found to have second proximal H-type TEF missed on initial evaluation
  • 22:01Infant with type C TEF, long gap, primary closure day of life 2, multiple complications including dehiscence, recurrent TEF, pneumothorax, empyema after 3 thoracotomies
  • 32:066-month-old with type C TEF and anorectal malformation, clinically aspirating, concern for laryngeal cleft
  • 41:119-month-old male with type C TEF, 8 prior repairs (6 endoscopic, 2 open), complex fistula with 1cm gap between proximal esophagus ending in trachea and distal esophageal opening
  • 47:2616-year-old female with complex subglottic stenosis, T-tube eroded hole into esophagus at lower cricoid border, 3 failed prior open repairs
  • 48:50Button battery ingestion with large esophageal fistula
  • 96:1312-year-old severely disabled patient who ingested hearing aid mold, developed bronchoesophageal fistula in left bronchus
  • 102:27Female with long segment esophageal atresia without TEF, multiple complications leading to right-sided bronchoesophageal fistula
  • 83:5210-year-old (later stated as 12-year-old) with type C TEF repaired day of life 1, persistent aspiration and pneumonias
  • 78:146-year-old with VACTERL, laryngeal cleft repaired at age 1, recurrence at age 6

Open questions

  • What is the optimal timing for re-scoping patients after button battery removal to assess depth of injury?
  • Is CT angiography sufficiently sensitive to predict aortoesophageal fistula risk after button battery ingestion?
  • Should primary H-type TEF repairs be approached endoscopically, transtracheally, transcervically, or thoracoscopically?
  • What is the role of biologic plugs (anal fistula plugs, Surgisis) in endoscopic TEF closure?
  • Can permanent suture materials like Nylon with knots be safely used for endoscopic TEF repair?
  • Should pectus repair be performed simultaneously with slide tracheoplasty in patients with severe pectus and tracheomalacia?
  • What is the optimal management of tracheal pouches in patients with severe tracheomalacia requiring tracheostomy?
This episode was analyzed and enriched by Kai, the Library's AI content creator. Every item links to the moment it comes from — click a timestamp to listen in context.
Written for:

Tracheoesophageal Fistula: Finding and Fixing Abnormal Airway-Esophageal Connections

The episode's main topic retold as a plain-language walkthrough — what it is, why it matters, and what the speakers concluded. Written by Kai from the episode transcript and reviewed before publishing.

For the care team · Explainer · AI-written, human-reviewed

The Problem

Tracheoesophageal fistula (TEF) exists because the trachea and esophagus, which develop from a common foregut tube, sometimes fail to separate completely. The result is an abnormal connection that allows saliva and gastric contents into the airway or air into the digestive tract. Most TEFs are congenital, repaired in the newborn period alongside esophageal atresia. But fistulas recur, new ones form after injury, and some H-type fistulas — direct connections without atresia — go undiagnosed for years. A child who aspirates chronically after TEF repair, or who has recurrent pneumonias without obvious cause, may have a fistula no one has found 4:39.

Finding the Fistula

Diagnosis is harder than it should be. Contrast studies miss subtle tracts. Flexible bronchoscopy, the workhorse scope for pulmonologists, is nearly useless for posterior airway pathology and misses laryngeal clefts 95% of the time even when they are known to exist 116:37. Rigid bronchoscopy with active probing is required for the posterior commissure, subglottic space, and cervical trachea 116:46.

When a fistula is suspected but not obvious, several techniques help. A 70-degree angled scope visualizes the posterior tracheal wall better than a forward-viewing instrument. A 3 French bugbee cautery — borrowed from ENT practice — serves as a smooth probe for finding small openings 12:10. Dual scoping, with simultaneous bronchoscopy and esophagoscopy, allows one operator to see light from the other scope shining through tissue, watch injected saline bubble through a hole, or directly visualize the other instrument 20:22. Retrograde esophagoscopy through a gastrostomy tube provides easier maneuvering just below the esophageal inlet, where high fistulas hide 17:42. Positive pressure testing — placing a cuffed endotracheal tube in the esophagus and insufflating to 30 cm water pressure — forces air through the fistula, making it visible on bronchoscopy.

Never assume a single fistula. One discussant emphasized: "Seek and ye shall find. If you do not look for it, you cannot find it" [q6]. Recurrent aspiration after repair warrants repeat rigid bronchoscopy, not reassurance.

Endoscopic Repair

Long, narrow, proximal-to-distal fistula tracts are ideal candidates for endoscopic closure; short, wide tracts are not 76:42. The principle is demucosalization. Mucosa is a non-stick surface. Healing requires raw tissue apposed to raw tissue. As one surgeon put it: "You don't want to give the mucosa a fright, you want to destroy it" [q1]. Bugbee cautery at less than 30% oxygen concentration ablates the tract lining 23:41 38:35. A minimal amount of fibrin glue — 0.1 mL, not a large bolus that becomes a foreign body — seals the tract while scarring outpaces re-epithelialization. A cuffed endotracheal tube positioned past the fistula site holds the surfaces together during initial healing.

Success rate is approximately 80%, typically requiring two procedures 37:01. After three or four failed attempts, open repair is indicated 37:11.

Open Surgical Approaches

When endoscopy fails or the anatomy is unfavorable, open repair offers several options. The transtracheal approach — an anterior tracheal incision — provides excellent exposure for high fistulas without the recurrent laryngeal nerve risk of lateral pharyngotomy. The repair is three-layered: esophageal closure, interposition graft (sternal periosteum is preferred — "like Kevlar," strong and abundant 47:05), and tracheal closure. Knots are placed intraluminally rather than between layers to prevent refistulization 67:03. This is described as a two-dimensional operation, less surgeon-dependent than more complex reconstructions 69:18.

Slide tracheoplasty, a technique developed for complete tracheal rings, can be adapted for large TEF defects. The trachea is transected above and below the fistula, creating tracheal wings that are turned inward to repair the esophagus. Periosteal interposition separates the suture lines, and the trachea is reconnected. This shortens the trachea and provides robust three-layer closure, though it appears to have a learning curve 70:10.

Complications and Associated Pathology

Button battery ingestion creates TEFs through ongoing electrochemical injury. Dead batteries still carry approximately 2 volts and continue damaging tissue 58:15. Tissue injury can progress for six weeks or more after removal 52:28. Large 3-volt batteries are most dangerous 60:54. Institutional protocol should mandate removal within two hours of identification 57:00.

Laryngeal clefts frequently coexist with TEF and are missed on flexible bronchoscopy. Rigid examination with probing is mandatory in any aspirating child with TEF history 116:37 116:46.

When high TEFs are ligated from a thoracic approach, the tracheal side may be left as a large pouch or diverticulum 77:27. If the child requires tracheostomy, the tube may inadvertently enter the pouch rather than the distal trachea. These pouches can be marsupialized endoscopically using laparoscopic biopsy forceps with cautery at 40 watts, chomping through the common wall 118:01.

When to Refer

Refer any child with recurrent aspiration pneumonia after TEF repair, particularly if contrast studies are equivocal. Refer before concluding that aspiration is purely neurological — most aspirating children do have functional problems 4:39, but anatomical causes must be excluded with rigid bronchoscopy and systematic evaluation. If an anti-reflux procedure is being considered in an aspirating patient, determine whether aspiration originates above or below the upper esophageal sphincter; fundoplication worsens aspiration from above 9:58. The clinical picture matters more than ambiguous studies. As one discussant noted: "If it barks like a dog and it wags its tail, it's probably a dog" [q5].

Takeaways from this story

  • Flexible bronchoscopy misses laryngeal clefts 95% of the time; rigid scoping with probing is mandatory for posterior airway evaluation.
  • Endoscopic TEF repair requires complete demucosalization, not superficial cautery — mucosa must be destroyed, not frightened.
  • Dead button batteries still carry ~2 volts and cause tissue injury for 6+ weeks after removal; remove within 2 hours of identification.
  • Long narrow fistula tracts close endoscopically; short wide tracts require open repair after 3-4 failed endoscopic attempts.
  • Fundoplication worsens aspiration originating above the UES; determine aspiration source before considering anti-reflux surgery.

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