Spaces · StayCurrentMD · Collections · Long Gap Esophageal Atresia
Collection
Built automatically From across the library Not curated by a person

Long Gap Esophageal Atresia

Everything in the library about long gap esophageal atresia — built automatically from the recorded discussions that name it
episodes total cited expert statements Updated Oct 2, 2026
Start exploring
Try
Intelligent Search· answers come only from this collection's expert statements and cite the exact moment · not medical advice
Content of this collection episodes
Long Gap Discussion: EA & TEF
Dr. Todd Ponsky moderates a panel discussion on the work-up of long gap esophageal atresia.
video10:16 · Jan 2019
Watch →
Treatment for Long Gap Esophageal Atresia: Esophageal Elongation and Replacement
Pediatric surgeons Dr. Daniel Von Allmen and Dr. Todd Ponsky from Cincinnati children's Hospital discussing the technique for treating long gap esophageal atresia. For additional info please visit: https://www.youtube.com/c/CincinnatiChildr
podcast10:56 · Jan 2022
Listen →
Dariusz Patkowski, MD, PhD - Best of the Best in Pediatric Surgery 2024
Watch IPEG's Dr. Dariusz Patkowski's presentation on “Thoracoscopic Approach for Long Gap Esophageal Atresia Using the Internal Traction Technique” at the 2024 Best of the Best in Pediatric Surgery event! Moderators: Todd Ponsky, Cecilia
video10:54 · Feb 2024
Watch →
Update Course Rewind: Management of Esophageal Leaks 2022
Podcast Episode · Stay Current in Pediatric Surgery · March 16, 2023 · 8m
podcast8:02 · Jun 2026
Listen →
Journal of Pediatric Surgery Article Review: February 2023, BAPS issue
We’re featuring new Journal of Pediatric surgery articles this week to bring you some of the latest news! This week we are discussing three articles from the February 2023 issue, the BAPS issue We talked to the editor Dr. Mark Davenport
podcast12:32 · Apr 2023
Listen →
Overall Winner: Dariusz Patkowski, MD - Best of the Best in Pediatric Surgery 2024
Our overall winner of the 2024 Best of the Best in Pediatric Surgery is Dariusz Patkowski, MD with his presentation on "Thoracoscopic Approach for Long Gap Esophageal Atresia Using the Internal Traction Technique"!
video4:54 · Feb 2024
Watch →
Aerodigestive & Esophageal Surgery - The Unsalvageable Esophagus & Cases
Join the multidisciplinary team from Cincinnati Children's Hospital as they review the complexities in the management of Tracheal Esophageal Fistula (TEF). This fast paced live event will feature case presentations, video, and panel discuss
video1:41:09 · Nov 2018
Watch →
Update Course 2021: MAGNET THERAPY FOR ESOPHAGEAL ATRESIA
At Pediactric Surgery Update Course 2021, Dr. Bethany Slater, MD from University of Chicago ComerChildren's Hospital and Dr. Steven Rothenberg, MD from Rocky Mountain Hospital for Children sharing their cases on using magnet therapy as an a
video · May 2022
Watch →
Summaries and takeawayssummary · key points · takeaways · the doctors · all expert statements+ Show
The doctors in this collection+ Show
All expert statements+ Show
Aerodigestive & Esophageal Surgery - The Unsalvageable Esophagus & Cases
For long-gap esophageal atresia, a gap of 2 vertebral bodies or approximately 2 centimeters is considered close enough to attempt primary anastomosis.
guidelineDan5:44 ↗
If primary anastomosis cannot be achieved at initial operation, placing the ends on tension for one week and then re-operating often allows successful closure due to stretch.
clinicalDan5:51 ↗
In experimental porcine models of endoscopic Foker (using olive beads and wire traction), pressure necrosis at the anastomotic site is the suspected cause of death.
clinicalTodd Ponsky6:32 ↗
Intraluminal magnetic anastomosis is being developed as a minimally invasive approach to long-gap atresia, with the goal of reducing pressure necrosis compared to bead-based traction.
clinicalTodd Ponsky7:00 ↗
Segmental colonic interposition (preserving distal native esophagus) reduces the risk of long-term redundancy and tortuosity compared to full-length colon interposition from cervical esophagus to stomach.
clinicalDan9:00 ↗
Segmental interposition preserves the native gastroesophageal junction, allowing potential future anti-reflux surgery at the normal GE junction rather than at a colonic-gastric anastomosis.
clinicalDan9:22 ↗
Segmental colonic interposition requires two anastomoses (one in chest, one in neck) and a thoracotomy, making it a morbid operation, but it is theoretically 'one and done.'
clinicalDan9:44 ↗
Sometimes surgeons try too hard to salvage the native esophagus, and children may do better with esophageal replacement, especially when chronic aspiration from recurrent TEFs or strictures causes severe pulmonary disease.
opinionDan11:24 ↗
When mobilizing a distal esophageal pouch off tension (e.g., from prevertebral fascia), the pouch retracts and becomes much shorter than it appeared pre-operatively.
clinicalDan12:53 ↗
Esophageal stents can compress the adjacent trachea, especially in children with tracheomalacia or when the esophagus lies directly posterior to the trachea. Always perform bronchoscopy after stent placement.
Host summaryEm Gootee summarizing the discussion — not the host's own clinical position48:18 ↗
On CT scan, if the dilated esophagus lies immediately posterior to the malacic trachea, any esophageal distention (food bolus, stent) will compress the trachea. If the esophagus deviates to the left, tracheal compression is less likely.
clinicalBob48:58 ↗
Chronic esophageal foreign bodies (e.g., coins lodged for weeks) can cause posterior tracheal bulge and present as refractory asthma or bronchiolitis, often diagnosed late because chest X-rays are not routinely obtained in asthma protocols.
Host summaryEm Gootee summarizing the discussion — not the host's own clinical position50:20 ↗
For recalcitrant esophageal strictures, weekly dilations (3–4 cycles) prevent fibroblasts from bridging and allow the stricture to scar open rather than closed.
Host summaryEm Gootee summarizing the discussion — not the host's own clinical position36:29 ↗
Needle knife incision of esophageal strictures is effective for short, well-defined, non-circumferential scar bands. It should be avoided on the anterior wall in patients with prior TEF due to proximity to the trachea.
clinicalPhil35:13 ↗
Kenalog (steroid) injection after stricture dilation is preferred over mitomycin. Mitomycin at high concentrations (up to 5 mg/mL) causes tissue necrosis and has not shown superior outcomes compared to steroids.
Host summaryEm Gootee summarizing the discussion — not the host's own clinical position33:28 ↗
Patients born with tracheoesophageal fistula, especially those with esophageal atresia, are at significantly higher risk for eosinophilic esophagitis, a non-acid inflammatory condition that causes strictures if untreated.
epidemiologicalPhil46:14 ↗
Eosinophilic esophagitis in infants is effectively managed with elemental formula, which works in approximately 95% of cases.
clinicalPhil47:14 ↗
Routine esophageal biopsies should be performed during endoscopy in TEF patients to screen for eosinophilic esophagitis, even in the absence of overt symptoms.
guidelinePhil46:53 ↗
In patients with recalcitrant anastomotic strictures and documented reflux, treating reflux with fundoplication may allow the stricture to heal. However, this approach risks making subsequent esophageal mobilization more difficult if replacement is ultimately needed.
clinicalDan43:07 ↗
Medical acid suppression (PPI) reduces gastric acid but does not stop reflux itself. A mechanical barrier (fundoplication) is required to prevent reflux of bile and other irritants.
clinicalPhil44:13 ↗
Feeding via gastrojejunal tube with gastric drainage (GJ/G) is a temporizing measure to reduce reflux into the esophagus while managing a refractory stricture.
Host summaryEm Gootee summarizing the discussion — not the host's own clinical position45:47 ↗
Substernal colonic interposition avoids thoracotomy and is useful when the chest is heavily scarred from prior operations. However, it requires sacrificing the entire native esophagus.
clinicalDan10:27 ↗
When performing segmental colonic interposition, the choice of right vs. left colon is based on intraoperative assessment of the marginal artery; the side with better vascularity is selected.
clinicalDan1:06:15 ↗
Redundant colonic interposition can be revised by shortening the conduit at the distal anastomosis, dividing small branches along the colonic wall while preserving the vascular arcade.
clinicalDan1:12:54 ↗
Covered esophageal stents (8 mm diameter) are now available for pediatric use and may be effective for temporizing strictures or leaks. They are partially covered to reduce migration and perforation risk.
clinicalPhil38:45 ↗
In complex esophageal cases, a combined operating room evaluation with rigid bronchoscopy, flexible bronchoscopy, and EGD (often with two scopes simultaneously) provides comprehensive anatomic assessment and is safer than sequential procedures.
clinicalDan1:18:10 ↗
Contrast studies through the endoscope under fluoroscopy are routinely performed before attempting wire passage or dilation to confirm anatomy and avoid perforation.
clinicalPhil1:18:53 ↗
Esophageal bypass (leaving native esophagus in situ) is a viable option when resection would create an unreconstructible tracheal defect. A fundoplication is performed to prevent reflux into the residual esophageal pouch.
clinicalDan1:26:54 ↗
When performing esophageal bypass, leaving a tracheoesophageal fistula open allows native esophageal secretions to drain into the airway, preventing mucocele formation in the residual pouch.
clinicalBob1:27:49 ↗
Children who have been unable to swallow for years may continue to spit reflexively even after successful esophageal reconstruction. It can take weeks to months for them to relearn swallowing.
clinicalDan1:28:42 ↗
What's newChangelog · + Show
    Start the course
    We remember your choice for this collection.
    Follow this collection We'll email you when something new is added to Long Gap Esophageal Atresia — the new recordings themselves, with links. Nothing when nothing is added; every email has an unsubscribe link.