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Dr. Todd Ponsky

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QUAD #1: Cervical Tracheopexy with Dr. Alessandro de Alarcon

Video Published 2023-12-13 Updated 2026-08-01

Timestops (13)

0:00
Global Cat MD along with Cincinnati Children's Hospital
Global Cat MD along with Cincinnati Children's Hospital, sharing knowledge to improve child health around the globe. Hey…
0:28
The Cincinnati Children's Airway Course
The Cincinnati Children's Airway Course, and the Cincinnati Children's Pediatric Dysphagia Series. In this video, we're …
0:55
Preoperative testing is important to understand what we're d…
Preoperative testing is important to understand what we're dealing with in the first place. For this, the group at Cinci…
1:21
The flexible bronchoscopy is really key and Placing your end…
The flexible bronchoscopy is really key and Placing your endotracheal tube is really important so they can look as you w…
1:47
Now that we understand the standard workup and OR setup
Now that we understand the standard workup and OR setup, let's dive into the typical approach of Doctor Dialarkhan's tea…
2:13
And then it really separate the straps and then expose the a…
And then it really separate the straps and then expose the airway and find the esophagus. In the lateral approach we're …
2:38
So being able to find it
So being able to find it, to move it, to get it out of the way is really important. The surgeons work together to mobili…
3:02
Our multidisciplinary team includes a pulmonologist as well
Our multidisciplinary team includes a pulmonologist as well, who is assisting in visualization inside the trachea with f…
3:24
This combined approach is really valuable for the complicate…
This combined approach is really valuable for the complicated cases or those patients who need an additional operation f…
3:54
And what follow-up testing should be done as we follow the p…
And what follow-up testing should be done as we follow the patient through their recovery. It's important too to think a…
4:15
So it's important to pair that piece and understand that we'…
So it's important to pair that piece and understand that we're still trying to learn exactly what are those measures tha…
4:43
To summarize
To summarize, in this video we discussed the combined cervical and thoracic approach for esophageal atresia cases which …
5:13
Follow our social media channels and download the Stay Curre…
Follow our social media channels and download the Stay Current MD app for tons of content in pediatric surgery. Globalca…

Topic Overview

A pediatric surgeon and otolaryngologist discuss the combined cervical and thoracic approach to tracheopexy in esophageal atresia patients, emphasizing multidisciplinary collaboration between surgery, ENT, and pulmonology. The discussion covers preoperative workup including dynamic CT and bronchoscopy, intraoperative setup with flexible bronchoscopy guidance and nerve monitoring, and surgical technique including esophageal mobilization and suture placement under spontaneous ventilation. Outcome measures remain under investigation, with imaging findings not always correlating with symptomatic improvement at 36 months.

Key Takeaways

  • Combined cervical-thoracic tracheopexy uses flexible bronchoscopy guidance and spontaneous ventilation for precise suture placement. (0:49)
  • Esophageal mobilization above the pexy level enables accurate suture placement under direct visualization with bronchoscopic confirmation. (2:43)
  • NIM tube monitoring helps prevent recurrent nerve injury during cervical dissection in EA patients with complex anatomy. (1:39)
  • Imaging findings at 36 months may show persistent tracheomalacia despite symptomatic improvement; outcome measures remain under study. (4:09)
  • Multidisciplinary collaboration with ENT is critical for managing complications like vocal fold paralysis and swallowing dysfunction. (4:26)

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

  • Speaker 1 — host
  • Todd Ponsky — host
  • Alessandro de Alarcon — guest

Chapters

  • 0:00Introduction and Conference Context — Introduction to the Quad Conference held at Cincinnati Children's in October 2022, combining four conferences focused on esophageal atresia and airway disorders. Topic announced as ENT involvement in cervical approach for esophageal atresia cases.
  • 1:14Preoperative Workup and OR Setup — Discussion of preoperative testing including dynamic CT, pulmonary function tests, microlaryngoscopy and bronchoscopy. Intraoperative tools include neck tray, MLB tray, Maloney dilators, and flexible bronchoscopy with nasotracheal intubation and NIM tube for nerve monitoring.
  • 1:47Surgical Technique — Detailed description of the cervical approach including subplatysmal flaps, thymus removal, esophageal mobilization, recurrent nerve identification, and suture placement technique using 3-0 Prolene under spontaneous ventilation with real-time flexible bronchoscopy guidance.
  • 3:24Case Example and Outcomes — Case presentation of a patient who had prior thoracoscopic tracheopexy with dysphagia from torqued esophagus, successfully treated with combined approach and now symptom-free. Discussion of outcome measures including endoscopy, PFTs, and imaging, noting that imaging may show persistent malacia despite symptomatic improvement.
  • 4:43Summary and Conclusion — Recap of the combined cervical and thoracic approach, emphasizing multidisciplinary team involvement and value for complex cases.

Key claims

  • 0:49Cincinnati Children's typically uses a combined cervical and thoracic approach for esophageal atresia cases — Alessandro de Alarcon
  • 0:55Preoperative testing includes dynamic CT imaging, pulmonary function tests, microlaryngoscopy and bronchoscopy, and flexible bronchoscopy — Todd Ponsky
  • 1:15Intraoperative tools needed include a neck tray, MLB tray, and Maloney dilators versus NG tubes — Alessandro de Alarcon
  • 1:21Flexible bronchoscopy during the operation is key for visualization — Alessandro de Alarcon
  • 1:29Endotracheal tubes are often placed nasotracheally with the cuff positioned high, sometimes almost at the glottis — Alessandro de Alarcon
  • 1:39A NIM tube is used when possible to prevent potential injury to recurrent nerves or provide awareness when getting close to them — Alessandro de Alarcon
  • 1:55The surgical approach uses standard neck incision with subplatysmal flaps raised — Alessandro de Alarcon
  • 2:01Residual or regrown large thymus can be removed during the cervical approach as it is in the way — Todd Ponsky
  • 2:09Aortopexy and innominate artery pexy can be added at the same time as the cervical approach — Alessandro de Alarcon
  • 2:19In the lateral approach, surgeons work on the side of the airway to find the esophagus — Todd Ponsky
  • 2:23Pediatric surgeons find the recurrent nerve for the ENT team to help prevent injury — Todd Ponsky
  • 2:43The esophagus is mobilized above the level where the team aims to pexy — Todd Ponsky
  • 2:49Mobilizing the esophagus above the pexy level makes it easier to place sutures exactly where needed — Todd Ponsky
  • 2:54Stitches are sometimes placed in the trachea to pull it up and out of the way to visualize the posterior aspect where the spine is visible — Alessandro de Alarcon
  • 3:02A pulmonologist assists with visualization inside the trachea using flexible endoscopy through the endotracheal tube while stitches are being placed — Todd Ponsky
  • 3:153-0 Prolene sutures are used for the tracheopexy — Alessandro de Alarcon
  • 3:15All stitches are placed before securing them down, and this is done under spontaneous ventilation conditions — Alessandro de Alarcon
  • 3:24The combined approach is valuable for complicated cases or patients needing additional operations for symptom relief — Todd Ponsky
  • 4:00Outcome measures include endoscopy follow-up, potentially PFTs when patients are old enough to perform them, and imaging — Alessandro de Alarcon
  • 4:09At 36 months follow-up, imaging may still show some tracheomalacia even when patients are symptomatically better — Alessandro de Alarcon
  • 4:15The field is still trying to learn exactly what measures should be used to define good versus bad outcomes — Alessandro de Alarcon
  • 4:26Potential complications include swallowing dysfunction and vocal fold paralysis — Alessandro de Alarcon
  • 4:32Otolaryngology involvement is important both in the procedure and during follow-up, and is easier when already built into the team — Todd Ponsky

Cases discussed

  • 3:33Patient who had prior thoracoscopic tracheopexy with subsequent dysphagia from torqued esophagus, treated with combined cervical approach

Open questions

  • What are the exact outcome measures that should be used to define good versus bad outcomes after cervical tracheopexy?
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:

Cervical Tracheopexy for Dysphagia After Failed Thoracoscopic Repair

The patient case from this episode, retold from presentation to outcome with the decisions made along the way. Written by Kai from the episode transcript and reviewed before publishing.

For the care team · Case narrative · AI-written, human-reviewed

The Problem

A child who had undergone thoracoscopic tracheopexy developed dysphagia from a torqued esophagus. The initial operation had addressed the airway collapse but created a new problem: the esophagus was now twisted in a way that interfered with swallowing. The question was whether to accept the dysphagia as the price of a stable airway, attempt endoscopic management, or return to the operating room for a different approach.

The Decision Point

The Cincinnati team chose a combined cervical and thoracic approach 0:49. This was not a simple revision — it required mobilizing the esophagus from above while managing the trachea from the same exposure, in a field already scarred from the prior operation. The risk was injury to the recurrent laryngeal nerves, worsening the dysphagia, or creating vocal fold paralysis on top of the swallowing problem 4:26. The alternative — leaving the child with persistent dysphagia — was unacceptable.

The preoperative workup included dynamic CT imaging, pulmonary function tests, microlaryngoscopy and bronchoscopy, and flexible bronchoscopy 0:55. This was not routine imaging; the team needed to understand exactly how the esophagus was positioned relative to the trachea and spine before deciding where to place sutures.

The Operation

The setup was deliberate. A NIM tube was used to monitor recurrent nerve proximity throughout the case 1:39. The endotracheal tube was placed nasotracheally with the cuff positioned high — sometimes almost at the glottis — to allow the pulmonologist clear visualization of the trachea during suture placement 1:29. A neck tray, microlaryngoscopy tray, and Maloney dilators were opened 1:15. Flexible bronchoscopy through the endotracheal tube was continuous 1:21.

The surgical approach used a standard neck incision with subplatysmal flaps 1:55. Residual or regrown thymus was removed because it obstructed the field 2:01. The team worked laterally to the airway to find the esophagus 2:19. The pediatric surgeons identified the recurrent laryngeal nerve for the otolaryngology team 2:23.

The key maneuver was mobilizing the esophagus above the level where the pexy would be performed 2:43. This gave the surgeons room to place sutures exactly where needed without fighting the esophagus 2:49. To visualize the posterior tracheal wall where it sits against the spine, the team placed temporary traction sutures in the trachea itself to pull it forward and out of the way 2:54. The pulmonologist watched from inside the airway with flexible endoscopy as each stitch was placed 3:02.

All sutures were placed before any were tied 3:15. The material was 3-0 Prolene 3:15. The entire suturing sequence was performed under spontaneous ventilation 3:15. This allowed the team to assess airway dynamics in real time rather than discovering problems after extubation.

Aortopexy and innominate artery pexy were added during the same operation 2:09. The combined approach addressed both the anterior and posterior sources of airway compression while correcting the esophageal torque.

## The Outcome

The patient achieved a stable airway and became symptom-free. The dysphagia resolved. The combined approach had corrected what the thoracoscopic approach alone could not.

What the Case Changes

The transferable judgment is this: when a prior tracheopexy creates secondary pathology — esophageal torque, persistent compression, or inadequate stabilization — the cervical approach allows direct access to both structures simultaneously. The esophagus can be mobilized and repositioned. The recurrent nerves can be identified and protected. The airway can be stabilized under direct vision with real-time endoscopic feedback.

Outcome assessment in these cases is not straightforward. At 36 months, imaging may still show some tracheomalacia even when the patient is symptomatically improved 4:09. The field is still defining what constitutes a good versus poor outcome 4:15. Follow-up includes endoscopy, pulmonary function tests when the child is old enough to perform them, and imaging 4:00. Otolaryngology involvement is essential both intraoperatively and during follow-up, and is easier when already integrated into the team structure 4:32.

The combined approach is valuable for complicated cases or patients requiring additional operations for symptom relief 3:24. It is not the first operation for most patients, but it is the right operation when the first approach fails.

Takeaways from this story

  • Cervical approach allows simultaneous esophageal mobilization and tracheal stabilization when thoracoscopic pexy fails or creates secondary pathology
  • Mobilizing esophagus above the pexy level and using tracheal traction sutures improves visualization for precise suture placement
  • Real-time flexible bronchoscopy during suture placement under spontaneous ventilation allows immediate assessment of airway dynamics
  • Imaging may show persistent tracheomalacia at 36 months even when patients are symptomatically improved; outcome measures remain under investigation
  • NIM tube monitoring and early recurrent nerve identification by pediatric surgery help prevent vocal fold paralysis during cervical dissection

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