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QUAD #4: Surgical Management of Button Battery & Caustic Ingestion with Dr. Aaron Garrison

Video Published 2024-03-19 Updated 2026-08-01

Timestops (19)

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. Hi,…
0:24
The Aerodigestive Society conference
The Aerodigestive Society conference, the Cincinnati Children's Airway Course, and the Cincinnati Children's Pediatric D…
0:52
Unfortunately
Unfortunately, more recent studies have found a sevenfold increase in the number of fatalities following ingestions. And…
1:14
And then if the button battery sits in one of these position…
And then if the button battery sits in one of these positions, it causes transmural injury, and it will make a fistula b…
1:43
Timing of ingestion
Timing of ingestion, so the longer that the duration that the battery's been in there, obviously the worse. And the batt…
2:14
23% had a stricture.
23% had a stricture. Some of them required G tube placement, and they stayed in the hostel for nearly 2 weeks. And almos…
2:41
You could see from the autopsy picture below that any small …
You could see from the autopsy picture below that any small communication between the esophagus and the aorta can be pot…
3:09
The top brackets are for a sick patient and the bottom ones …
The top brackets are for a sick patient and the bottom ones are for a well appearing child. If you just think about stra…
3:39
Sometimes imaging beforehand with a CTA to just get some ide…
Sometimes imaging beforehand with a CTA to just get some idea about how much inflammation and proximity to the aorta is …
3:59
If there's any bleeding in that time or if there's any conce…
If there's any bleeding in that time or if there's any concern for a sentinel bleed, then you have a plan with intervent…
4:20
In this case
In this case, the patient had a sternotomy, that meant on bypass where they fixed the aorta with a graft and later they …
4:43
So if you get out of the acute setting and you're trying to …
So if you get out of the acute setting and you're trying to plan these complex repairs, how do you know if you're going …
5:08
Here we're looking at a button battery in the esophagus
Here we're looking at a button battery in the esophagus, and now on the left lower quadrant with the button barrel remov…
5:34
During the procedure
During the procedure, Cincinnati Children's Team tried upsizing the patient's esophageal stent to a larger one, and then…
6:02
And you will see where it changes
And you will see where it changes, and you can make out the posterior wall of the trachea that had become the anterior w…
6:31
Sometimes I think it's easy to get caught up in what the chi…
Sometimes I think it's easy to get caught up in what the child drank and to forget that the kind of airway may take prio…
6:56
So anytime there's an esophageal perforation
So anytime there's an esophageal perforation, we try to stay with the same exposure, debris to viable tissue, get a laye…
7:25
Don't be reassured by a battery in the stomach and know that…
Don't be reassured by a battery in the stomach and know that injuries can progress even after they remove. So having an …
7:52
Don't forget to subscribe to the Stay Current MD YouTube cha…
Don't forget to subscribe to the Stay Current MD YouTube channel. Follow our social media channels and download the Stay…

Topic Overview

A surgical discussion of button battery and caustic ingestions in children, focusing on high-risk criteria and management of life-threatening complications. Button battery ingestions have seen a sevenfold increase in fatalities due to 20-volt lithium cells causing coagulative necrosis and transmural injury. Key risk factors include age under 5, battery size over 20mm, prolonged dwell time, and location behind the aortic arch. Sentinel bleeds after battery removal can signal aortoesophageal fistula formation up to 2 weeks post-removal, requiring multidisciplinary surgical planning including possible ECMO or cardiopulmonary bypass for complex airway-esophageal reconstructions.

Key Takeaways

  • 20-volt lithium button batteries cause sevenfold increase in fatalities via coagulative necrosis and transmural injury. (0:52)
  • High-risk criteria: age <5, battery ≥20mm, prolonged dwell, location behind aortic arch. 30% perforate, 25% die. (1:33)
  • Sentinel bleeds signal aortoesophageal fistula up to 2 weeks post-removal. CTA before endoscopy; have CT surgery available. (2:32)
  • For high-risk patients, scope esophagus even if battery reached stomach. Fistulas near carina need ECMO/bypass for repair. (4:30)
  • Caustic ingestion in kids 1-3yo: airway injury may precede GI injury. Stridor/epiglottitis can occur from spit-back. (6:20)

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
  • M. Goddy — host
  • Aaron Garrison — guest

Chapters

  • 0:00Introduction and Button Battery Epidemiology — Conference introduction and overview of button battery ingestion trends, including a sevenfold increase in fatalities due to 20-volt lithium cells causing coagulative necrosis at three anatomic esophageal narrowings.
  • 1:33High-Risk Criteria and Complications — Discussion of high-risk patient criteria (younger age, larger batteries, longer dwell time, location behind aortic arch) and serious complications including perforation, stricture, and delayed aortoesophageal fistula presenting as sentinel bleeds.
  • 3:05Management Algorithm and Complex Surgical Cases — Review of decision-making algorithm stratifying sick versus well-appearing patients, imaging strategies with CTA and follow-up MRI, and presentation of complex surgical cases including ECMO support and tracheal interposition graft for large tracheoesophageal fistula.
  • 6:10Caustic Ingestions and Summary — Brief overview of caustic ingestion epidemiology in children aged 1-3, emphasis on airway management priority, and summary of key management principles including high-risk identification and post-removal surveillance.

Key claims

  • 0:41A 1992 study of over 2000 button battery ingestions found no deaths — M. Goddy
  • 0:52Recent studies show a sevenfold increase in fatalities following button battery ingestions — M. Goddy
  • 0:59The increase in fatalities is due to change to 20-volt lithium cells which cause coagulative necrosis — M. Goddy
  • 1:06There are 3 locations in the esophagus where foreign bodies tend to get stuck: upper esophageal sphincter, behind the aortic arch, and at the lower esophageal sphincter — Aaron Garrison
  • 1:14Button batteries cause transmural injury and create fistulas to adjacent structures including trachea and blood vessels — M. Goddy
  • 1:33High-risk criteria include younger patients with smaller esophagus — Aaron Garrison
  • 1:39Batteries 20 millimeters or greater in size are riskier — M. Goddy
  • 1:43Longer duration of battery dwell time increases risk — Aaron Garrison
  • 1:49Battery location behind the aortic arch is more concerning — M. Goddy
  • 1:52Patients who present with bleeding after battery removal require emergency management — Aaron Garrison
  • 2:05In a Colorado study of 13 high-severity injury patients, 30% had esophageal perforation — M. Goddy
  • 2:1423% of high-severity injury patients developed strictures — M. Goddy
  • 2:16High-severity injury patients stayed in hospital for nearly 2 weeks — M. Goddy
  • 2:22Almost 25% of patients in the Colorado series died — Aaron Garrison
  • 2:22Two fatalities in the series presented with batteries already in the stomach — Aaron Garrison
  • 2:32Sentinel bleeds can be the first sign of aortoenteric fistulas — M. Goddy
  • 2:50Some aortoesophageal fistulas appeared over 2 weeks after battery removal — M. Goddy
  • 2:55Fistula formation does not always happen during hospitalization — Aaron Garrison
  • 3:09Management should stratify patients as sick versus well-appearing — Aaron Garrison
  • 3:26For esophageal foreign bodies with active bleeding or clinical instability, GI surgery and CT surgery should be available for the procedure — Aaron Garrison
  • 3:39CTA imaging before endoscopy can assess inflammation and proximity to aorta — M. Goddy
  • 3:47If imaging shows injury close to aorta, continue NPO and antibiotics and repeat MRI in 5-7 days to assess trajectory of inflammation — Aaron Garrison
  • 4:30For high-risk patients (under 5 years, larger battery), endoscopic evaluation of esophagus is recommended even if battery reached the stomach — Aaron Garrison
  • 4:43ECMO or cardiopulmonary bypass need depends on fistula location and ability to intubate past the injury to adequately ventilate — Aaron Garrison
  • 4:59Fistulas near the carina require complex airway reconstruction and preclude adequate ventilation during repair — Aaron Garrison
  • 6:56For esophageal perforation, standard approach is debridement to viable tissue, layered closure, and muscle flap coverage when possible — Aaron Garrison
  • 7:09If perforation is too large, drain and plan delayed repair — Aaron Garrison
  • 6:10Button batteries are ingested more than 3500 times per year in the United States — M. Goddy
  • 6:20Caustic ingestion is most common in children between 1 and 3 years of age — M. Goddy
  • 6:25Most caustic ingestions by children are accidental and amounts tend to be small — M. Goddy
  • 6:31Airway management may take priority over the ingested substance in caustic injuries — Aaron Garrison
  • 6:38Caustic ingestion patients can present with stridor or allergic-reaction-like symptoms, especially with acidic substances — Aaron Garrison
  • 6:43Severe epiglottic injury can occur from caustic substances that are spit back up rather than swallowed — M. Goddy
  • 7:25Injuries from button batteries can progress even after removal — M. Goddy
  • 7:39Small perforations from caustic ingestion can heal and be managed conservatively — M. Goddy
  • 7:43Strictures from caustic ingestion may require dilation or surgery — M. Goddy

Cases discussed

  • 4:10Pseudoaneurysm from aortic arch after button battery ingestion managed with staged surgical repair
  • 5:08Large tracheoesophageal fistula from button battery requiring ECMO and tracheal interposition graft

Open questions

  • What is the optimal timing for follow-up imaging after high-risk button battery removal?
  • How should institutions without cardiothoracic surgery capabilities manage high-risk button battery cases?
  • What is the role of prophylactic interventional radiology consultation in high-risk cases before complications develop?
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.
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