QUAD #4: Surgical Management of Button Battery & Caustic Ingestion with Dr. Aaron Garrison
With Dr. Aaron Garrison · hosted by Dr. M. Goddy · StayCurrentMD
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Aerodigestive / ENT 28 items
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Educational content from recorded physician discussions — not medical advice. Talk to your (or your child's) care team about your situation.
More about button battery ingestion
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What the experts said
There are 3 locations in the esophagus where button batteries tend to get stuck: the upper esophageal sphincter, behind the aortic arch, and at the lower esophageal sphincter.
High-risk criteria include younger patients with smaller esophagus.
Longer duration that the battery has been in the esophagus is associated with worse outcomes.
If a patient has had a battery removed and presents later with a bleed, that is an emergency that needs to be taken seriously and requires a plan.
Almost 25% of patients in the Colorado series died.
Two of the fatalities in the Colorado series presented with the button batteries already in the stomach.
Any small communication between the esophagus and the aorta can be potentially life-threatening.
Aortoesophageal fistulas do not always happen in the hospital, so having a high index of suspicion and a plan for what to do once the battery is removed is helpful.
For sick patients with esophageal foreign bodies and active bleeding or clinical instability, it is recommended to have GI surgery and CT surgery available for the procedure.
If imaging shows injury close to the aorta, continue NPO and antibiotics and repeat MRI in 5 to 7 days to assess the trajectory of inflammation.
For high-risk patients (less than 5 years old, larger battery size), endoscopic evaluation of the esophagus is recommended because the duration of battery presence higher up than the stomach is unknown.
The need for ECMO or cardiopulmonary bypass depends on the location of the fistula and whether you can intubate past the injury enough to ventilate during the case.
If the fistula is near the carina, complex airway reconstruction will be needed and adequate ventilation during the case will not be possible.
In one case with a large tracheoesophageal fistula, the patient was placed on ECMO because they were unable to adequately ventilate.
In the Cincinnati Children's case, an interposition graft was performed by removing a segment of trachea and using that trachea as the front wall of the esophagus.
The airway may take priority in caustic ingestion cases, and patients can present in extremis or with an allergic-reaction-like presentation.
For esophageal perforation, the approach is to maintain the same exposure, debride to viable tissue, achieve layered closure with coverage, and if possible use a muscle flap for coverage.
If the perforation is too big, drain it to allow for delayed repair.
A 1992 study reviewed more than 2000 cases of button battery ingestion in children and found no deaths.
Recent studies have found a sevenfold increase in fatalities following button battery ingestions.
The increase in fatalities is because of the change to a 20-volt lithium cell which causes coagulative necrosis.
When a button battery sits in one of these positions, it causes transmural injury and will make a fistula between the esophagus and adjacent structures including trachea, blood vessels, or vocal cords.
A larger battery over 20 millimeters or greater is riskier.
A battery behind the aortic arch is more concerning.
In a Colorado study of 13 patients with high severity button battery injuries, 30% had esophageal perforation.
In the Colorado study, 23% of patients developed stricture.
Some patients in the Colorado study required G-tube placement and stayed in the hospital for nearly 2 weeks.
Sentinel bleeds can be the first sign of aortoenteric fistulas.
Some aortoesophageal fistulas showed up over 2 weeks after the batteries were removed.
Imaging beforehand with a CTA to assess inflammation and proximity to the aorta is helpful.
If there is any bleeding or concern for sentinel bleed, have a plan with interventional radiology, cardiology, or anyone who can help in that situation.
In one case report with a pseudoaneurysm from the arch of the aorta, repair was done with a staged approach: sternotomy on bypass to fix the aorta with a graft, followed by flap repair of the esophagus.
Button batteries are ingested more than 3500 times per year in the United States.
Caustic ingestion is most common in young children between 1 and 3 years of age.
Most caustic ingestions by children are accidental and the amounts ingested tend to be small.
Acidic substances that are spit back up rather than swallowed can cause severe injury to the epiglottis.
Smaller children, bigger batteries, and longer ingestion time pose greater risk.
Do not be reassured by a battery in the stomach, as injuries can progress even after battery removal.
Having an imaging plan to be proactive about finding transmural and worsening inflammation toward vessels is important.
For caustic ingestions, be patient; small perforations can heal and be managed conservatively.
If strictures develop after caustic ingestion, either dilation or surgery may be necessary.