Congenital Diaphragmatic Hernia with Dr. Charlie Stolar

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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
  • Charlie Stolar — guest
  • Avi Schlager — host

Chapters

  • 0:00Introduction and Antenatal Counseling — Introduction of Dr. Charlie Stolar and discussion of antenatal consultation approach, emphasizing correcting misinformation, providing cautious optimism, and explaining CDH as growth arrest of lungs rather than space-occupying lesion. Covers delivery planning and prenatal intervention considerations.
  • 7:14Initial Evaluation and Respiratory Management — Evaluation of newborn with CDH, respiratory care strategy using permissive hypercapnia and spontaneous ventilation, ventilator settings progression from conventional to high-rate low-pressure mode, role of HFOV and nitric oxide, and indications for ECMO based on end-organ function.
  • 18:38ECMO Management — ECMO candidacy criteria including gestational age limits, VA versus VV ECMO selection, cannulation techniques with echo guidance, weaning strategies, timing of surgical repair on ECMO, and decision-making around futility after 2-3 weeks.
  • 36:24Surgical Repair Techniques — Timing of repair based on ventilator settings and cardiac function, open versus thoracoscopic approach with discussion of recurrence rates, technical details of subcostal approach including mobilization of posterior leaflet and use of pericardial flap, patch repair considerations, and chest tube management.
  • 50:59Thoracoscopic Approach and Postoperative Care — Detailed thoracoscopic technique including patient positioning, port placement, insufflation pressures, suturing methods, and extracorporeal knot tying. Postoperative management and monitoring based on preductal oximetry.
  • 69:28Long-term Complications and Follow-up — Foregut dysmotility as field defect, approach to anti-reflux procedures, multidisciplinary clinic structure, long-term complications including Barrett's esophagitis, neurodevelopmental issues, chest wall deformities, and management of recurrences.
  • 77:21Right-sided CDH and Special Considerations — Special considerations for right-sided diaphragmatic hernias including anomalous hepatic vein drainage directly to right atrium, hepatopulmonary fusion, and surgical approach using combined thoracic and abdominal incisions.

Key claims

  • 3:37CDH diagnosis is usually made at about 20 weeks gestation with routine anatomy scan when ultrasonographers see the stomach in the same cross-sectional plane as the heart — Charlie Stolar
  • 4:14CDH should be discussed as a growth arrest of both lungs with the ipsilateral side more severely affected than the contralateral side — Charlie Stolar
  • 4:23The lungs are affected at birth by a mix of pulmonary hypoplasia and altered pulmonary vascular resistance with altered transitional circulation — Charlie Stolar
  • 5:00CDH is not a surgical emergency but a medical physiologic emergency — Charlie Stolar
  • 5:24Diagnosis of CDH alone is not an indication for cesarean section; recommend elective spontaneous vaginal delivery assuming no obstetric issues — Charlie Stolar
  • 6:35Antenatal interventions for CDH are no better than investigational and experimental at best — Charlie Stolar
  • 7:23Babies with CDH should be born at a full service children's facility with availability of ECMO, as maybe 10-15% will benefit from ECMO — Charlie Stolar
  • 8:31In single center experiences, presence of liver in chest or stomach in chest is of no prognostic value — Charlie Stolar
  • 8:42Lung to head ratio is of no better than limited value except when very low (less than 0.8), where prognosis is concerning — Charlie Stolar
  • 9:07Associated congenital heart disease and central nervous system abnormalities augur for poor prognosis — Charlie Stolar
  • 10:13If shown 100 children with CDH, 80-85% will survive to become teenagers — Charlie Stolar
  • 10:37Steroids have tremendous value for preterm labor under 35 weeks but role in near-term babies (37-39 weeks) with CDH is arguable — Charlie Stolar
  • 12:06Exit to ECMO for CDH is nonsense except potentially for investigational protocol using liquid ventilation with perfluorocarbons as trophic agent to provoke lung growth — Charlie Stolar
  • 15:12Respiratory care strategy requires babies to be breathing spontaneously with no paralysis and minimal sedation — Charlie Stolar
  • 17:52ECMO indication is not meeting tissue oxygen requirements despite best medical management, commonly using oxygenation index greater than 40 for 4 hours or more — Charlie Stolar
  • 19:06All therapy is guided by preductal oximetry, not postductal, because guiding by postductal will lead to premature and precipitous interventions — Charlie Stolar
  • 19:32If preductal saturation is 90% (PAO2 of 65 torr), the brain is doing fine because this is fetal hemoglobin — Charlie Stolar
  • 22:49Most babies with CDH don't tolerate conventional ventilator settings and require unconventional mode with 100 breaths per minute, peak pressure turned down to zero, and high gas flow rate — Charlie Stolar
  • 25:45Nitric oxide is a waste of money for CDH babies; it's terrific for premature babies with immature lung disease but of no value in CDH — Charlie Stolar
  • 26:07The best drug for CDH is oxygen — Charlie Stolar
  • 26:22ECMO gestational age limit has been pushed from 36 weeks down to 35 or 34 weeks, with reports as low as 32 weeks, but intracranial hemorrhage rate increases significantly below 34 weeks — Charlie Stolar
  • 28:45The real issue for ECMO candidacy is whether you have a reversible condition - don't start something you can't finish — Charlie Stolar
  • 30:27VV ECMO is terrific if the heart works, but in CDH the heart function is often depressed and it's hard to get the cannula in with mediastinum shifted — Charlie Stolar
  • 31:53VA bypass is basically dial in a PAO2, while VV has mixing issues and canal position concerns making it much more annoying for unstable CDH patients — Charlie Stolar
  • 32:17Echo guidance during ECMO cannulation is really helpful to avoid driving arterial cannula out subclavian artery or venous cannula into innominate vein — Charlie Stolar
  • 35:10Goal ECMO flow on VA is about 100-125 cc/kg/min, which is about 80% of cardiac output assuming open duct — Charlie Stolar
  • 69:00Typical stable CDH patient will be crummy for about 1 day postoperatively then get better and be extubated in 4-5 days — Charlie Stolar
  • 69:39CDH is a field defect affecting the entire foregut from pharynx to ligament of Treitz, causing disordered motility throughout — Charlie Stolar
  • 69:55GI series in CDH patients shows very dilated, ectatic, abnormal looking esophagus with abnormal motility, gastric motility, and gastric emptying — Charlie Stolar
  • 70:09The foregut dysmotility is not really reflux, and calling it reflux has suckered surgeons into doing fundoplications and pyloroplasties that are basically torture — Charlie Stolar
  • 70:28CDH patients do well with continuous feedings slowly condensed to bolus; unusual to need surgical intervention — Charlie Stolar
  • 70:43Nissen fundoplication is a poor operation for CDH patients because it's fully competent on an esophagus with abnormal motility — Charlie Stolar
  • 72:18CDH patients followed in multidisciplinary clinic have issues with heart, lungs, foregut, nutrition, neurodevelopmental outcome, and axial skeleton that emerge over time — Charlie Stolar
  • 73:18Four CDH teenagers developed Barrett's esophagitis, leading to recommendation for lifelong proton pump inhibitors and regular endoscopy — Charlie Stolar
  • 73:57CDH patients have increased incidence of attention deficit disorders and autism, requiring early intervention for neuropsychiatric issues — Charlie Stolar
  • 74:09As field defect, CDH causes asymmetric chest growth leading to pectus-like deformities requiring Nuss operation and breast implants in girls with no breast development on hernia side — Charlie Stolar
  • 74:34CDH patients develop thoracolumbar scoliosis (not idiopathic), mostly in boys, requiring early bracing program — Charlie Stolar
  • 77:55In right-sided CDH, hepatic veins not infrequently enter directly into right atrium rather than suprahepatic cava, and attempting to reduce liver when attached to heart will cause trouble — Charlie Stolar
  • 78:36Hepatopulmonary fusion exists in CDH where liver and lung are fused and cannot be separated surgically; most patients don't survive and often have severe congenital heart disease and IVC discontinuation — Charlie Stolar

Points of disagreement

  • 40:17Timing of CDH repair relative to ECMO
    • Charlie Stolar: Favors repair just before coming off ECMO because platelets form thrombus lasting 48-72 hours, giving 3 days to wean off ECMO after surgery while maintaining ECMO as safety net if patient deteriorates
    • Charlie Stolar: Notes this is level zero data (opinion) and acknowledges controversy exists, with some centers taking different approaches
  • 48:25Thoracoscopic versus open repair for CDH
    • Charlie Stolar: Skeptical of thoracoscopic approach due to 25% recurrence rate in under 1 year in his series and similar findings in APSA outcomes committee meta-analysis, despite gorgeous view
    • Todd Ponsky: Continues to use thoracoscopic approach but acknowledges Stolar's data is concerning and informs all families; notes others claim to have data showing equivalency not yet published

Open questions

  • Why is the recurrence rate so high with thoracoscopic CDH repair compared to open repair?
  • What is the optimal approach to foregut dysmotility in CDH patients - when should surgical intervention be considered?
  • Could gastric stimulation be effective for CDH patients with severe foregut dysmotility?
  • What is the role of liquid ventilation with perfluorocarbons as a trophic agent to provoke lung growth in high-risk CDH fetuses?
  • How can we better predict which CDH patients will require ECMO support?
  • What is the optimal material for patch repair in CDH - biologic versus non-biologic?
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:

Congenital Diaphragmatic Hernia: Rethinking the Fundamentals with Charlie Stolar

The episode's teaching points arranged as a structured lesson, building from the basics up to the finer points. Written by Kai from the episode transcript and reviewed before publishing.

For the care team · Teaching arc · AI-written, human-reviewed

Reframe the pathophysiology before you touch the ventilator

CDH is a growth arrest, not a space-occupying lesion. The lungs stop developing at 14–15 weeks gestation — both lungs, with the ipsilateral side more severely affected 4:14. The herniated bowel is not compressing anything; the problem already happened months before birth [c2, c3]. This matters because it explains why simply reducing the hernia does not produce miraculous improvement 9:07. The baby arrives with pulmonary hypoplasia and altered pulmonary vascular resistance affecting transitional circulation 4:23. Understand this and you stop chasing the wrong problem.

This is not a surgical emergency. It is a medical physiologic emergency 5:00. The initial treatment begins in the labor and delivery suite, not the operating room. The diagnosis alone does not justify cesarean section; recommend elective vaginal delivery unless obstetric issues dictate otherwise 5:24. The baby should be born at a facility with ECMO capability because 10–15% will need it, and transporting an unstable neonate is far worse than being ready 7:23.

Guide therapy by what the brain sees, not what the blood gas says

All management decisions rest on preductal oximetry. Place the pulse oximeter on the right arm and ignore the postductal reading 19:06. These babies have pulmonary hypertension with ductal or atrial-level shunting. If you guide therapy by postductal saturation, you will intervene prematurely and precipitously 19:06. A preductal saturation of 90% — corresponding to a PaO₂ of 65 torr — means the brain is adequately oxygenated because this is fetal hemoglobin 19:32. The question is not what the blood gas shows; the question is whether end organs are functioning. If the baby is making urine, the heart is not failing, and the brain is working, you are doing fine 17:52.

Accept permissive hypercapnia or destroy the lungs. Most CDH babies cannot tolerate conventional ventilator settings 22:49. If you try to control PCO₂ by increasing pressures, you will trash the lungs 22:49. The respiratory strategy requires spontaneous breathing with minimal sedation and no paralysis. When conventional settings fail — and you will know because preductal saturation drops or becomes labile — switch to an unconventional mode: 100 breaths per minute, peak pressure turned down to zero, high gas flow rate 22:49. The high-frequency oscillator is essentially a signal that you are setting up for ECMO; very few babies are rescued once you reach for it 17:52.

Oxygen is the drug; ECMO is the delivery system. The indication for ECMO is failure to meet tissue oxygen requirements despite optimal medical management, commonly defined as an oxygenation index greater than 40 for four hours or more 17:52. But think of ECMO as a way to deliver oxygen to end organs, not as a machine to fix numbers 17:52. The real contraindication is starting something you cannot finish — do not cannulate a baby with a non-reversible condition 28:45.

Operate when you can get off ECMO, not when you get on

Repair the hernia just before anticipated decannulation. Heparin inhibits fibrinogen-to-fibrin conversion, leaving only platelets to form clot. Platelet thrombus lasts 48–72 hours, giving you a window to wean ECMO after surgery 35:10. Operating earlier keeps ECMO as a safety net if the patient deteriorates postoperatively; operating after decannulation risks needing a second ECMO run when the baby gets stiff 69:00. The typical stable patient will be worse for about one day after surgery, then improve and extubate in four to five days 69:00.

Recognize the field defect or you will torture the patient

CDH affects the entire foregut from pharynx to ligament of Treitz. The lung is part of the foregut, and the whole system shows disordered motility 69:39. GI series will show dilated, ectatic esophagus with abnormal gastric motility and emptying 69:55. This is not reflux, and calling it reflux has led surgeons to perform fundoplications and pyloroplasties that amount to torture 70:09. Most patients do well with continuous feeds slowly condensed to bolus; surgical intervention is rarely needed 70:28. When it is, approach it as palliation — not a Nissen, which creates a fully competent wrap on an esophagus with abnormal motility 70:43.

The most emphasized point: 80–85% of these babies will become teenagers 10:13. Start the antenatal consultation with cautious optimism, not doom. The discussion should end with parents understanding they are likely raising a child who will need multidisciplinary follow-up for pulmonary, cardiac, foregut, neurodevelopmental, and skeletal issues — but who will survive [c33, c35, c36, c37].

Takeaways from this story

  • CDH is bilateral lung growth arrest at 14-15 weeks, not bowel compression—reducing hernia won't miraculously fix hypoplastic lungs.
  • Guide all therapy by preductal (right arm) oximetry; postductal readings drive premature interventions in babies with ductal shunting.
  • Accept permissive hypercapnia—trying to control PCO2 with increased pressures destroys lungs; most need 100 bpm, zero peak, high flow.
  • ECMO indication is end-organ dysfunction (no urine, failing heart), not arbitrary blood gas thresholds; think oxygen delivery, not numbers.
  • CDH is a foregut field defect causing lifelong dysmotility—not reflux. Fundoplication on abnormal esophageal motility is torture.

Topic overview

Expert discussion on congenital diaphragmatic hernia (CDH) management with Dr. Charlie Stolar, covering the full care continuum from antenatal counseling through long-term follow-up. Core clinical points include: CDH is a growth arrest of both lungs beginning at 14-15 weeks gestation, not simply a space-occupying lesion; initial treatment is medical/physiologic stabilization rather than surgical emergency; respiratory management emphasizes permissive hypercapnia with spontaneous ventilation at high rates (100 breaths/minute) and low pressures; ECMO is indicated when end-organs fail despite optimal medical management, with timing of repair ideally just before decannulation to maintain ECMO as safety net; and CDH represents a field defect affecting foregut motility, requiring multidisciplinary long-term follow-up for complications including Barrett's esophagitis, neurodevelopmental issues, and chest wall deformities.

Key takeaways

  • CDH is a medical emergency, not surgical—stabilize physiology first with spontaneous ventilation at 100 breaths/min, low pressures. (5:00)
  • Guide CDH management by preductal sat (target 90%); postductal monitoring leads to premature, harmful interventions. (19:06)
  • ECMO indicated when end-organs fail despite optimal medical management (OI >40 for 4+ hours); repair ideally just before decannulation. (17:52)
  • CDH is a foregut field defect causing lifelong dysmotility—avoid Nissen fundoplication; manage with continuous feeds, not surgery. (1:09:39)
  • CDH survivors need multidisciplinary long-term follow-up for Barrett's esophagitis, scoliosis, pectus deformities, and neurodevelopmental issues. (1:12:18)

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