Related Experiment Video
Updated: Sep 20, 2026

Low-Dose Gamma Radiation Sterilization for Decellularized Tracheal Grafts
Published on: April 14, 2023
Successful Tracheostomy Decannulation: Why Body Mass Index Alone Is Not Enough
Gregory C Wetmore1, Ellen R Becker1, Taylor E Wallen1
1Department of Surgery, University of Cincinnati Medical Center, University of Cincinnati, Cincinnati, OH, USA.
Abstract:
BackgroundObesity is increasingly common among critically ill patients. The association between body mass index and outcomes of tracheostomy including eventual decannulation are not well understood. This study aimed to evaluate whether body mass index (BMI) is associated with time to tracheostomy decannulation among surgical critical care patients undergoing tracheostomy. We hypothesized that increasing BMI would be associated with longer duration from tracheostomy placement to decannulation in surgical patients.MethodsAdult participants undergoing tracheostomy creation by the general surgery services at a single academic center from April 2018 through December 2022 were retrospectively evaluated. Outcomes were analyzed by obesity status (BMI > 30 kg/m2) and BMI classification, with associations assessed by Wilcoxon rank-sum analysis, Spearman rank correlation, and Kaplan-Meier analysis.ResultsA total of 385 participants were included for analysis. Obesity was associated with a longer duration of endotracheal intubation (10.4 ± 6.5 vs 12.1 ± 6.4 days, P = 0.002) prior to tracheostomy creation. Among the 275 participants who achieved decannulation, there was no significant difference in time to decannulation between obese (BMI ≥ 30) and non-obese (BMI < 30) (χ2 = 1.74, df = 1, P = 0.19) or when stratified by BMI category (χ2 = 4.30, df = 5, P = 0.51).DiscussionAlthough BMI was associated with delayed tracheostomy creation, BMI was not associated with prolonged tracheostomy dependence. Within contemporary decannulation practice, successful tracheostomy liberation appears to be driven by broader factors including disease severity, neurologic recovery, respiratory physiology, and multidisciplinary assessment of decannulation readiness.
Related Concept Videos
Tracheostomy Decannulation
Description of the Procedure
Decannulation refers to the permanent removal of the tracheostomy tube, signaling the resolution of the condition that initially necessitated the tracheostomy. The process requires a well-coordinated interplay between...
Tracheostomy: Procedure and Tubes
Tracheostomy tubes can be made of semiflexible plastic (polyurethane or silicone), rigid plastic, or metal, and they come in...
Tracheostomy Care II: Procedure
Step 1: Perform hand hygiene, and put on personal protective equipment: gown, gloves, mask and...
Tracheostomy Care I: Pre-procedural Steps
Required Equipment
The equipment necessary for tracheostomy care includes:
Oxygen Delivering System III: Tracheostomy and T-piece
Tracheostomy
A tracheostomy is a surgically created opening (stoma) in the anterior part of the trachea. It is used to establish a patient airway, bypass an upper airway obstruction, simplify the removal of secretions, permit long-term...
Oxygen Delivering System II: Venturi Mask and Transtracheal Oxygen
Venturi Mask
The Venturi mask, named after the Venturi effect, is designed to deliver precise oxygen concentrations. It consists of a large tube with an oxygen inlet that narrows down, causing a pressure drop that pulls air in through adjustable side ports. The mask is a lightweight,...
