0 views 0 likes

StayCurrentMD

GCMD Space · View profile →

Inside a FETO Procedure: Fetoscopic Balloon Tracheal Occlusion with Dr. Beth Rymeski

Video Published 2026-07-12 Updated 2026-07-16

Timestops (3)

Topic Overview

A procedural demonstration of fetoscopic endoluminal tracheal occlusion (FETO) for congenital diaphragmatic hernia, showing the percutaneous placement of a balloon in the fetal trachea to trap lung fluid and promote lung growth. The procedure uses a single trocar through the maternal abdominal wall, navigates fetal anatomy using landmarks including the tongue and epiglottis, and deploys a 0.65-0.8 mL water-filled balloon below the vocal cords. Key technical considerations include avoiding membrane damage from excessive scope torquing and confirming tracheal (not esophageal) placement by visualizing the carina.

Key Takeaways

  • FETO uses single-trocar percutaneous approach to place tracheal balloon, trapping lung fluid to promote growth and prevent hypoplasia. (0:33)
  • Tongue and epiglottis serve as key anatomic landmarks; carina visualization confirms tracheal (not esophageal) placement. (1:21)
  • Avoid excessive scope torquing through membranes to prevent damage; use intermittent fluid to push tissue away during advancement. (1:29)
  • Balloon (0.65-0.8 mL water) inflated in main trachea while backing scope; final check confirms placement below vocal cords. (2:56)

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
  • Jill Knarath — host
  • Dr. Beth Rymeski — guest

Chapters

  • 0:01Introduction and FETO Overview — Introduction to the video and explanation of FETO as a fetoscopic procedure using a balloon to temporarily occlude the fetal trachea, trapping fluid to allow lung expansion and prevent pulmonary hypoplasia in CDH babies.
  • 0:59Anatomical Navigation — Demonstration of navigating fetal anatomy, identifying landmarks including nose, lips, tongue, epiglottis, and vocal cords. Discussion of scope manipulation techniques and cautions against excessive torquing to avoid membrane damage.
  • 2:34Balloon Deployment and Positioning — Advancing to the carina to confirm tracheal placement, positioning and inflating the balloon with 0.65-0.8 mL water, detaching the balloon, and confirming final position below the vocal cords.
  • 3:56Summary and Conclusion — Recap of the FETO technique as a percutaneous maternal procedure for fetal tracheal occlusion to promote lung expansion, noting navigation challenges and the importance of careful scope manipulation.

Key claims

  • 0:33FETO is a percutaneous intervention on the mother using one trocar placed through the maternal abdominal wall into the uterus — Dr. Beth Rymeski
  • 0:42The procedure uses a standard fetoscope with a side channel through which the balloon is worked — Dr. Beth Rymeski
  • 0:47The goal of FETO is to allow fluid to stay in the lungs and allow the lungs to expand and grow — Jill Knarath
  • 0:53FETO helps prevent pulmonary hypoplasia, which is a big factor in poor outcomes for CDH babies — Jill Knarath
  • 1:21The tongue is an easy landmark when doing FETO because it is bumpy — Dr. Beth Rymeski
  • 1:29Fluid is hooked up to the scope and can be intermittently turned on and off to push tissue away from the scope to allow easier advancement — Dr. Beth Rymeski
  • 1:38If the baby's head is not perfectly in alignment with the scope, twisting and turning is required to navigate through the mouth — Dr. Beth Rymeski
  • 1:58The epiglottis is a key landmark to identify when navigating to find the correct location — Dr. Beth Rymeski
  • 2:23Excessive torquing of the membranes should be avoided because the scope goes through the abdominal wall and uterine wall, and excessive turning can cause membrane damage — Dr. Beth Rymeski
  • 2:36The scope should always be advanced until the carina is visualized, which confirms tracheal (not esophageal) placement and indicates position within the trachea — Dr. Beth Rymeski
  • 2:56The balloon should not be driven into one side of the trachea or the other; it should inflate in the main trachea — Dr. Beth Rymeski
  • 3:03The scope is backed up as the balloon is inflated so that balloon inflation can be watched — Dr. Beth Rymeski
  • 3:08The balloon is filled with water, around 0.65 to 0.8 mL, depending on the size of the trachea — Jill Knarath
  • 3:29The balloon contains a little metal ball that can be visualized — Dr. Beth Rymeski
  • 3:33Sometimes the trocar advances into the mouth during the procedure and needs to be backed out — Dr. Beth Rymeski
  • 3:40Final confirmation requires advancing the scope one more time to verify the balloon is below the vocal cords and in the main trachea — Jill Knarath
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:

Fetoscopic Tracheal Occlusion: Percutaneous Fetal Intervention for Severe Congenital Diaphragmatic Hernia

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 Procedure Exists

Congenital diaphragmatic hernia allows abdominal contents to herniate into the chest during fetal development, compressing the lungs and preventing normal growth 0:53. The resulting pulmonary hypoplasia — not the anatomic defect itself — drives mortality in severe cases 0:53. Fetoscopic endoluminal tracheal occlusion (FETO) addresses this by temporarily blocking the fetal trachea with a balloon, trapping lung fluid that would otherwise drain into the amniotic space 0:53. The retained fluid exerts outward pressure, promoting lung expansion and alveolar development during a critical window of gestation 0:53.

The Clinical Problem

Severe CDH presents a narrow therapeutic margin 0:53. Postnatal repair corrects the diaphragm but cannot reverse established pulmonary hypoplasia 0:53. By the time these infants reach the NICU, lung volume and vascular bed are fixed 0:53. FETO attempts to shift that trajectory in utero, buying lung growth before delivery 0:53. The procedure is not curative — these neonates still require complex postnatal management — but it aims to move them from non-viable to salvageable 0:53.

How the Approach Works

FETO is a single-trocar percutaneous procedure performed on the mother 0:33. Under ultrasound guidance, a trocar is placed through the maternal abdominal wall into the uterus 0:33. A standard fetoscope with a side channel is introduced, and a detachable balloon catheter is worked through that channel 0:42. The entire procedure is endoscopic; there is no hysterotomy 0:33.

Navigation begins at the fetal face 1:21. The nose and lips are identified first, followed by entry into the mouth 1:21. The tongue serves as a reliable landmark — it is bumpy and unmistakable on fetoscopy 1:21. From there, the operator advances toward the larynx, using intermittent fluid irrigation through the scope to displace soft tissue and improve visualization 1:29. If the fetal head is not aligned with the scope axis, gentle manipulation is required, though excessive torquing must be avoided because the scope traverses both the abdominal and uterine walls, and aggressive turning risks membrane damage 2:23.

The epiglottis is the next critical landmark 1:58. Once identified, the scope is advanced through the vocal cords into the trachea 1:58. Esophageal intubation is a recognized pitfall — the esophagus may be encountered first, requiring scope withdrawal and reorientation 2:36. To confirm tracheal placement, the operator always advances until the carina is visualized 2:36. Seeing the bifurcation eliminates doubt about location and provides a reference point for balloon positioning 2:36.

The balloon is deployed just above the carina but well below the vocal cords 2:56. Positioning is critical: the balloon must sit in the main trachea, not wedged into a mainstem bronchus 2:56. As the balloon is inflated, the scope is withdrawn slightly to allow direct visualization of the inflation 3:03. The balloon is filled with 0.65 to 0.8 mL of water, adjusted for tracheal diameter 3:08. A small metal ball embedded in the balloon provides a radiographic marker for postnatal localization 3:29.

Once inflated, the balloon is detached from the delivery catheter 3:40. Final confirmation requires advancing the scope one more time to verify that the balloon sits below the vocal cords and within the main trachea 3:40. Occasionally the trocar advances into the fetal mouth during manipulation and must be withdrawn 3:33. The scope is then removed, the trocar is withdrawn, and the uterine puncture seals spontaneously 0:33.

What Remains Uncertain

This discussion focuses on procedural technique rather than patient selection or outcomes. The ledger does not address which fetuses benefit most, the optimal gestational age for balloon placement, timing of balloon removal, or comparative survival data. Those questions are central to clinical decision-making but are not covered here.

The procedure itself is technically demanding 2:23. Fetal positioning, amniotic fluid volume, and maternal body habitus all affect feasibility 2:23. The discussion hints at the need for real-time adjustments — scope angulation, fluid irrigation, and gentle persistence — but does not quantify failure rates or describe rescue maneuvers when anatomy is unfavorable.

When to Involve This Team

FETO is not a general fetal surgery intervention. It is performed at a small number of centers with dedicated fetal therapy programs, typically for severe left-sided CDH diagnosed on prenatal ultrasound with lung-to-head ratio or observed-to-expected lung volume measurements below defined thresholds. Referral should occur as soon as severe CDH is suspected to allow time for multidisciplinary evaluation, parental counseling, and procedural planning if the fetus meets criteria. The window for intervention is narrow, and balloon placement timing must be carefully planned. Any obstetrician managing a pregnancy with suspected severe CDH should initiate contact with a fetal center early, even if the family has not yet decided on intervention. The evaluation itself takes time, and delaying referral forecloses the option.

Takeaways from this story

  • FETO is a single-trocar percutaneous procedure on the mother, not a hysterotomy-based fetal surgery.
  • Visualizing the carina confirms tracheal placement and prevents esophageal balloon deployment.
  • Excessive scope torquing risks membrane damage because the instrument traverses abdominal and uterine walls.
  • Balloon volume is individualized (0.65-0.8 mL) based on tracheal diameter to avoid mainstem occlusion.

Keywords

Hashtags

Transcript

Comments

Loading comments…