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      Immediate Postoperative Complications in Adult Tracheostomy

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      1 , , 1 , 1 , 1
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      Cureus
      Cureus
      tracheostomy, tracheostomy complications, air way complications

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          Abstract

          Objective

          Tracheostomy is one of the oldest operations for the management of airway obstruction. With time, indications expanded to prolonged mechanical ventilation, and currently, the majority of tracheostomies are done for this reason. There are several techniques used in a tracheostomy procedure, depending on surgeon preference. Immediate complications such as bleeding, pneumothorax, pneumomediastinum, airway fire, and posterior tracheal wall perforation with esophageal injury are rare, although they do occur, and must be managed accordingly. This study aimed to assess differences in types and rates of immediate postoperative complications in patients undergoing tracheostomy when performed under general anesthesia and local anesthesia (awake tracheostomies) at a large academic institution. This is a continuing ongoing literature reporting tracheostomy adverse events.

          Methods

          A retrospective chart review was performed to identify patients who underwent tracheostomy placement between January 1, 2013 and December 31, 2019 at the Detroit Medical Center, USA. Postoperative complications such as bleeding, pneumothorax, pneumomediastinum, airway fire, and posterior tracheal perforation were collected along with gender, age, and revision tracheostomy status. IBM SPSS Statistics (IBM Inc., Armonk, USA) was used for statistical analysis with the statical significance defined as a p<0.05.

          Results

          A total of 1,469 patient charts were reviewed. Of these, 1,342 met the inclusion and exclusion criteria, of which, males were 57.2% (n=768), and females were 42.8% (n=574). The age range was 18 years to 96 years (mean=58.03; SD= 15.97), and BMI range was 12-83 (mean=28.77; SD=7.885).

          Multinomial logistic regression was performed to determine whether age, BMI, sex, and revision tracheostomies were represented across both general and awake tracheostomy groups proportionally to their numbers in the total sample. It showed non-significant value for age (χ2=0.776, p=0.378), BMI (χ2=0.004, p=0.947), but significant value for sex (χ2=4.645, p=0.031), revision tracheostomy (χ2=18.282, p<0.001), indicating that males and revision tracheostomies over-represented in awake tracheostomies.

          Next, Pearson correlation analysis was performed to determine any significant linear relationship between age, sex, and tracheostomy complications. It showed a significant positive correlation between age and tracheal stomal infection [r(1,340)=0.062, p=0.022].

          An independent sample t-test showed a statistically significant difference between the mean pneumothorax and pneumomediastinum of general (n=1,277, mean=0.01, SD=0.088) and awake tracheostomies (n=65, mean=0.08, SD=0.269, t=2.069, p=0.043).

          Pneumothorax pneumomediastinum complications between the general tracheostomy and awake tracheostomy odds ratio (OR)-6.22, indicates the chance of pneumothorax /pneumomediastinum complication is 6.22 times more in awake tracheostomy than general tracheostomy. Based on the above statistical analysis, we rejected the null hypothesis.

          Conclusions

          Tracheostomy is the procedure of choice to relieve the upper airway obstruction and treat patients requiring prolonged mechanical ventilation. A slightly higher number of Immediate postoperative complications in awake tracheostomy were noticed in patients with more surgically challenging revision tracheostomies.

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          Most cited references19

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          Tracheostomy: epidemiology, indications, timing, technique, and outcomes.

          Tracheostomy is a common procedure performed in critically ill patients requiring prolonged mechanical ventilation for acute respiratory failure and for airway issues. The ideal timing (early vs late) and techniques (percutaneous dilatational, other new percutaneous techniques, open surgical) for tracheostomy have been topics of considerable debate. In this review, we address general issues regarding tracheostomy (epidemiology, indications, and outcomes) and specifically review the literature regarding appropriate timing of tracheostomy tube placement. Based on evidence from 2 recent large randomized trials, it is reasonable to wait at least 10 d to be certain that a patient has an ongoing need for mechanical ventilation before consideration of tracheostomy. Percutaneous tracheostomy with flexible bronchoscopy guidance is recommended, and optimal percutaneous techniques, indications, and contraindications and results in high-risk patients (coagulopathy, thrombocytopenia, obesity) are reviewed. Additional issues related to tracheostomy diagnosis-related groups, charges, and procedural costs are reviewed. New advances regarding tracheostomy include the use of real-time ultrasound guidance for percutaneous tracheostomy in high-risk patients. New tracheostomy tubes (tapered with low-profile cuffs that fit better on the tapered dilators, longer percutaneous tracheostomy tubes) are discussed for optimal use with percutaneous dilatational tracheostomy. Two new percutaneous techniques, a balloon inflation technique (Dolphin) and the PercuTwist procedure, are reviewed. The efficacy of tracheostomy teams and tracheostomy hospital services with standardized protocols for tracheostomy insertion and care has been associated with improved outcomes. Finally, the UK National Tracheostomy Safety Project developed standardized resources for education of both health care providers and patients, including emergency algorithms for tracheostomy incidents, and serves as an excellent educational resource in this important area.
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            Is tracheostomy associated with better outcomes for patients requiring long-term mechanical ventilation?

            To evaluate the effect of tracheostomy on intensive care unit (ICU) and in-hospital mortality for patients requiring prolonged (> 3 days) mechanical ventilation (MV). We retrospectively reviewed the charts of all consecutive patients admitted to our 18-bed tertiary care ICU over 3 yrs (2002-2004) and who received prolonged MV. Outcomes of tracheostomized and nontracheostomized patients were evaluated using univariable and multivariable logistic-regression analyses and by constructing a case-control cohort using a propensity score for performing tracheostomy. MV duration for controls was at least equal to the time from MV onset to tracheostomy for the matched case. Of the 506 patients requiring prolonged MV, 166 were tracheostomized after a median of 12 days of MV. Nontracheostomized patients had higher ICU (42% vs. 33%, p = .06) and in-hospital (48% vs. 37%, p = .03) mortality rates and shorter MV durations and ICU lengths of stay. Performing a tracheostomy (odds ratio, 0.58; 95% CI, 0.37-0.90) was independently associated with a lower probability of ICU death, even after adjusting for other important prognostic factors. No significant differences were detected between the 120 cases and their matched controls regarding ICU admission and day-3 clinical characteristics. After conditional logistic-regression analysis, tracheostomy was associated with lower risk of ICU (odds ratio, 0.47; 95% CI, 0.24-0.89) and in-hospital (odds ratio, 0.48; 95% CI, 0.25-0.90) death. Tracheostomy performed in our ICU for long-term MV patients was associated with lower ICU and in-hospital mortality rates, even after carefully controlling for ICU admission and day-3 clinical and physiologic differences between groups. Whether these results reflect that physicians were able to adequately select for tracheostomy patients who, despite having similar physiologic and demographic variables, had the highest probabilities of survival or that the procedure itself really affected the outcomes of these patients will remain speculative.
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              Timing of tracheostomy as a determinant of weaning success in critically ill patients: a retrospective study

              Introduction Tracheostomy is frequently performed in critically ill patients for prolonged intubation. However, the optimal timing of tracheostomy, and its impact on weaning from mechanical ventilation and outcomes in critically ill patients who require mechanical ventilation remain controversial. Methods The medical records of patients who underwent tracheostomy in the medical intensive care unit (ICU) of a tertiary medical centre from July 1998 to June 2001 were reviewed. Clinical characteristics, length of stay in the ICU, rates of post-tracheostomy pneumonia, weaning from mechanical ventilation and mortality rates were analyzed. Results A total of 163 patients (93 men and 70 women) were included; their mean age was 70 years. Patients were classified into two groups: successful weaning (n = 78) and failure to wean (n = 85). Shorter intubation periods (P = 0.02), length of ICU stay (P = 0.001) and post-tracheostomy ICU stay (P = 0.005) were noted in patients in the successful weaning group. Patients who underwent tracheostomy more than 3 weeks after intubation had higher ICU mortality rates and rates of weaning failure. The length of intubation correlated with the length of ICU stay in the successful weaning group (r = 0.70; P < 0.001). Multivariate analysis revealed that tracheostomy after 3 weeks of intubation, poor oxygenation before tracheostomy (arterial oxygen tension/fractional inspired oxygen ratio <250) and occurrence of nosocomial pneumonia after tracheostomy were independent predictors of weaning failure. Conclusion The study suggests that tracheostomy after 21 days of intubation is associated with a higher rate of failure to wean from mechanical ventilation, longer ICU stay and higher ICU mortality.
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                Author and article information

                Journal
                Cureus
                Cureus
                2168-8184
                Cureus
                Cureus (Palo Alto (CA) )
                2168-8184
                22 December 2020
                December 2020
                : 12
                : 12
                : e12228
                Affiliations
                [1 ] Otolaryngology, Michigan State University Detroit Medical Center, Detroit, USA
                Author notes
                Article
                10.7759/cureus.12228
                7757757
                33381358
                5b029094-62d6-4d1d-a219-6baa1010bfb8
                Copyright © 2020, Bathula et al.

                This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

                History
                : 22 December 2020
                Categories
                Otolaryngology
                General Surgery
                Trauma

                tracheostomy,tracheostomy complications,air way complications

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