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Dr. Todd Ponsky

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Posterior Tracheopexy For Severe Tracheomalacia

Video Published 2018-09-16 Updated 2024-02-10

Timestops (3)

Topic Overview

A journal club discussion of a paper on posterior tracheopexy for severe tracheomalacia, focusing on 98 patients with posterior membranous intrusion of the trachea. The technique involves suturing the posterior tracheal wall to the anterior longitudinal ligament of the spine using pledgeted sutures. The study demonstrated clinical and bronchoscopic improvement across most parameters, with 88% of patients having esophageal atresia with or without TEF, and emphasized that tracheomalacia requires systematic bronchoscopic evaluation to distinguish anterior from posterior collapse patterns.

Key Takeaways

  • Posterior tracheopexy sutures posterior tracheal wall to spine's anterior longitudinal ligament for posterior collapse. (0:54)
  • 88% of posterior tracheopexy patients had esophageal atresia ± TEF, showing strong association with this anatomy. (1:05)
  • Clinical symptoms (cough, noisy breathing, infections) and bronchoscopic findings improved post-posterior tracheopexy. (1:15)
  • Tracheomalacia is heterogeneous: anterior vs posterior collapse requires tailored approach; 20% need both procedures. (1:35)
  • Systematic bronchoscopy is essential to distinguish anterior (aortic) from posterior (membranous) tracheal collapse. (0:35)

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 Ponsky — host
  • Ian Glenn — guest

Chapters

  • 0:00Introduction — Todd Ponsky introduces the Journal of Pediatric Surgery two-minute review and his research fellow Ian Glenn on his last day before returning to Cleveland Clinic residency.
  • 0:15Study Overview and Technique — Ian Glenn presents a paper by Hester She and Russell Jennings on posterior tracheopexy for 98 patients with severe tracheomalacia and posterior membranous intrusion, explaining the surgical technique and distinction from anterior compression.
  • 1:05Results and Clinical Implications — Discussion of patient demographics, follow-up duration, clinical outcomes showing improvement in most symptoms, and the importance of systematic bronchoscopic evaluation to guide treatment selection.
  • 1:58Closing Remarks — Todd Ponsky expresses interest in learning the new technique and thanks Ian Glenn for his fellowship.

Key claims

  • 0:28The paper studied 98 patients who had severe tracheomalacia with posterior membranous intrusion — Ian Glenn
  • 0:35All patients received bronchoscopy showing the trachea tended to collapse inward from the posterior aspect — Ian Glenn
  • 0:44Anterior compression is from the aortic arch, while posterior compression is from collapse — Ian Glenn
  • 0:54Posterior tracheopexy involves taking pledgeted sutures and sewing the posterior wall of the trachea to the anterior longitudinal ligament of the spine — Ian Glenn
  • 1:0588% of the 98 patients had esophageal atresia with or without TEF — Ian Glenn
  • 1:05Patients were followed anywhere from 1 week to 36 months — Ian Glenn
  • 1:15Clinical symptoms including cough, barking cough, noisy breathing, and infections improved across the board — Ian Glenn
  • 1:25Patients improved on bronchoscopic evaluation — Ian Glenn
  • 1:30Exercise tolerance did not improve statistically but showed a trend towards improvement — Ian Glenn
  • 1:35Tracheomalacia is not one homogeneous disease — Ian Glenn
  • 1:45Some patients benefit from posterior tracheopexy, some from aortopexy or anterior approach, and some need both — Ian Glenn
  • 1:54Almost 20% of patients in the study required both posterior and anterior procedures — Ian Glenn

Open questions

  • There is a need for standardization in the evaluation and treatment approach to tracheomalacia
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:

Posterior Tracheopexy: Addressing the Collapse Pattern Aortopexy Cannot Fix

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

Why This Technique Exists

Tracheomalacia in children — particularly those born with esophageal atresia — has traditionally been approached as a problem of anterior compression 0:44. The aortic arch presses on the trachea from the front, and aortopexy pulls the arch forward to relieve that pressure 1:45. But bronchoscopy in symptomatic patients often reveals a different pattern: the posterior membranous wall of the trachea collapses inward, independent of any anterior compression 0:35. For these patients, moving the aorta accomplishes nothing 1:45. Posterior tracheopexy was developed to address this distinct collapse mechanism by stabilizing the posterior tracheal wall directly 0:54.

The Core Problem

Severe tracheomalacia presents with cough, barking cough, noisy breathing, recurrent respiratory infections, and exercise intolerance 1:15. The underlying pathology is excessive collapse of the tracheal lumen during respiration 0:28, but the collapse can originate from different directions 1:35. Anterior compression results from the aortic arch 0:44. Posterior collapse — the target of this technique — occurs when the membranous posterior wall intrudes into the airway lumen 0:28 0:35. The distinction matters because the surgical solution is entirely different 1:45.

Eighty-eight percent of the patients in this series had esophageal atresia with or without tracheoesophageal fistula 1:05, a population known to have high rates of tracheomalacia 1:05. The key insight is that tracheomalacia is not one homogeneous disease 1:35. Bronchoscopic evaluation reveals which wall is collapsing, and that finding dictates the approach 0:35 1:45.

How Posterior Tracheopexy Works

The procedure involves taking pledgeted sutures and sewing the posterior wall of the trachea to the anterior longitudinal ligament of the spine 0:54. This creates a fixed posterior boundary, preventing the membranous wall from collapsing inward during expiration or coughing 0:28 0:54. The technique is conceptually straightforward — you are tethering a floppy structure to a rigid one 0:54.

The decision to proceed with posterior tracheopexy rests entirely on bronchoscopic findings 0:35 1:45. If the trachea collapses from the posterior aspect, this is the appropriate intervention 0:35. If the collapse is anterior, aortopexy is indicated 1:45. If both patterns are present — and nearly one-fifth of patients in this series required both procedures — a combined approach is necessary 1:54.

Outcomes

Patients were followed from one week to several months postoperatively 1:05. Clinical symptoms including cough, barking cough, noisy breathing, and respiratory infections improved across the board 1:15. Bronchoscopic evaluation also showed improvement, meaning the tracheal lumen remained patent under direct visualization 1:25. Exercise tolerance did not reach statistical significance for improvement, though the authors noted a trend in that direction 1:30.

These are meaningful outcomes for a population that often cycles through pulmonology, ENT, and gastroenterology without a clear path forward 1:15. The improvement in bronchoscopic findings is particularly important — it confirms that the anatomic problem has been addressed, not just the symptoms 1:25.

What Remains Uncertain

The series does not define thresholds for intervention beyond the bronchoscopic finding of posterior membranous intrusion 0:35. The paper emphasizes the importance of systematic bronchoscopic evaluation 1:45, but clinical judgment regarding severity and timing remains center-dependent.

The need for combined procedures in a subset of patients raises another question: can you predict preoperatively who will need both, or does this become apparent only after the first procedure 1:54? The discussion does not address this.

When to Involve This Team

If you are managing a child with persistent respiratory symptoms — particularly one with a history of esophageal atresia repair 1:05 — and standard interventions are not controlling the problem, bronchoscopy is the next step 1:45. If that bronchoscopy shows posterior tracheal wall collapse, referral to a pediatric surgeon with experience in tracheopexy is appropriate 0:35 0:54. The same applies if a child has already undergone aortopexy but remains symptomatic; the posterior wall may be the unaddressed component 1:45.

The key is recognizing that tracheomalacia is not a single entity 1:35. Some patients benefit from posterior tracheopexy, some from aortopexy, and some need both 1:45 1:54. The bronchoscopy tells you which patient you have 0:35 1:45.

Takeaways from this story

  • Tracheomalacia is not one disease — posterior collapse requires posterior tracheopexy, anterior compression requires aortopexy.
  • Bronchoscopy is essential to identify the collapse pattern and guide surgical decision-making.
  • Nearly 20% of patients need both posterior and anterior procedures to fully address their tracheomalacia.
  • Clinical symptoms and bronchoscopic findings improved after posterior tracheopexy in this series.

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