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International Expert Consensus and Recommendations for Neonatal Pneumothorax Ultrasound Diagnosis and Ultrasound-guided Thoracentesis Procedure
Published on: March 12, 2020
The role of postoperative chest radiography in pediatric tracheotomy
J S Greenberg1, M Sulek, A de Jong
1The Bobby R. Alford Department of Otorhinolaryngology and Communicative Sciences, Baylor College of Medicine, 1 Baylor Plaza, NA-102, Houston, TX 77030, USA.
Insights
Routine postoperative chest X-rays after pediatric tracheotomies are valuable, especially for high-risk patients. This practice helps identify complications like pneumothorax and ensures correct tube placement, impacting patient management.
Area of Science:
- Pediatric Surgery
- Radiology
- Critical Care Medicine
Background:
- Postoperative chest radiography after tracheotomy is standard for evaluating pneumothorax and tube position.
- Adult studies question routine use in uncomplicated cases, but pediatric data is lacking.
Purpose of the Study:
- To assess the clinical utility of postoperative chest radiography in pediatric tracheotomy patients.
- To determine if routine practice impacts patient management and warrants continued use.
Main Methods:
- Retrospective review of 200 pediatric patients undergoing tracheotomy.
- Analysis of postoperative chest radiographs for new findings and interventions.
- Identification of high-risk categories for relevant findings.
Main Results:
- Only 5 of 200 patients had new radiographic findings requiring intervention (3 cases).
- Chest X-rays ruled out pneumothorax in 49 patients with clinical signs.
- 168 patients (84%) fell into high-risk categories (age <2, weight <17kg, emergent procedure, central line).
Conclusions:
- Postoperative chest radiography is clinically relevant in most pediatric tracheotomy cases.
- Routine imaging is prudent, particularly for high-risk pediatric patients.
- Continued use is recommended to ensure patient safety and appropriate management.
Abstract:
A postoperative chest radiograph has traditionally been obtained after tracheotomies to evaluate for the presence of a pneumothorax and to assess tube position. Several recent studies in adults have questioned the usefulness of routine postoperative chest radiography in uncomplicated cases, but the role of post-operative chest radiography in pediatric patients has not been previously reviewed. We performed this study to examine the clinical utility of post-tracheotomy chest radiography in pediatric patients and determine if this routine practice impacts patient management enough to merit continued usage. A retrospective review was performed of 200 consecutive pediatric patients who underwent tracheotomies by the otolaryngology service in a tertiary care pediatric hospital from January 1994 to June 1999. All patients received postoperative chest radiographs. Five of 200 patients had a new postoperative radiographic finding, with three requiring interventions. Two patients required chest tube placement for pneumothorax, and one patient required tracheostomy tube change for repositioning. Fifty-one patients, including both pneumothoraces, exhibited clinical signs of pneumothorax (decreased breath sounds or oxygen saturation) in the immediate postoperative period. Chest X-ray ruled out a pneumothorax in the remaining 49 patients. The majority of these 51 patients were less than 2 years old (94%, P=0.002) or weighed less than 17 kg (89%, P=0.004). Postoperative chest X-rays yielded clinically relevant information in 168 patients that fell into one or more of four high risk categories: age less than 2, weight less than 17 kg, emergent procedures, or concomitant central line placement. Avoiding chest X-rays in the remaining 32 patients would have resulted in potential savings of $5000, which does not reflect the actuarial cost of a missed complication. Since the majority of our patients (84%) fell into a high-risk category, we feel it would be prudent to continue obtaining postoperative chest radiographs following all pediatric tracheotomies.
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