Intentional tracheoesophageal fistula cannulation for gastric decompression in type C esophageal atresia
Pediatric Anesthesia,Volume 28, Issue 4, Page 367-369, April 2018. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 26, 2018 Category: Anesthesiology Source Type: research

Anesthesia of thoracic surgery in children
Pediatric Anesthesia,Volume 28, Issue 4, Page 326-331, April 2018. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 26, 2018 Category: Anesthesiology Source Type: research

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Pediatric Anesthesia, Ahead of Print. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 26, 2018 Category: Anesthesiology Source Type: research

Distances from vocal cords to mid ‐trachea for optimizing endotracheal tubes depth markers according to gestational age
ConclusionThe linear relationship between laryngo‐tracheal size and gestational age offers the opportunity to revise endotracheal tube depth markers for the smallest patients. Trials comparing those suggested markers with those currently in use are needed before implementation. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 26, 2018 Category: Anesthesiology Authors: Vincent Rigo, Pierre Fayoux Tags: RESEARCH REPORT Source Type: research

Intentional tracheoesophageal fistula cannulation for gastric decompression in type C esophageal atresia
We describe a nonsurgical technique for managing gastric distention in infants with type C esophageal atresia, involving intubating the trachea with an umbilical catheter and entering the stomach through the fistula as soon as a flexible bronchoscope found its wide‐open orifice. This technique might have a special role when gastric distention precedes other commonly used preventive measures. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 26, 2018 Category: Anesthesiology Authors: Paola Papoff, Roberto Cicchetti, Francesco Montecchia, Fabio Midulla, Silvia Ceccanti, Denis Cozzi Tags: CASE REPORT Source Type: research

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Pediatric Anesthesia,Volume 28, Issue 3, Page 306-307, March 2018. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 12, 2018 Category: Anesthesiology Source Type: research

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Pediatric Anesthesia,Volume 28, Issue 3, Page 305-306, March 2018. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 12, 2018 Category: Anesthesiology Source Type: research

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Pediatric Anesthesia,Volume 28, Issue 3, Page 304-305, March 2018. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 12, 2018 Category: Anesthesiology Source Type: research

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Pediatric Anesthesia,Volume 28, Issue 3, Page 301-302, March 2018. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 12, 2018 Category: Anesthesiology Source Type: research

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Pediatric Anesthesia,Volume 28, Issue 3, Page 195-203, March 2018. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 12, 2018 Category: Anesthesiology Source Type: research

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Pediatric Anesthesia,Volume 28, Issue 3, Page 193-194, March 2018. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 12, 2018 Category: Anesthesiology Source Type: research

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Pediatric Anesthesia,Volume 28, Issue 3, Page 257-263, March 2018. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 12, 2018 Category: Anesthesiology Source Type: research

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Pediatric Anesthesia,Volume 28, Issue 3, Page 302-303, March 2018. (Source: Pediatric Anesthesia)
Source: Pediatric Anesthesia - February 12, 2018 Category: Anesthesiology Source Type: research