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1.
Article in English | MEDLINE | ID: mdl-36474666

ABSTRACT

Objectives: Determine variability in intra- and post-operative management of tracheostomies (trachs) at our institution as existing literature suggests that trachs are a frequent trigger for airway-related emergencies. Catalyze the development of an institution-wide protocols for trach care. Methods: A 39-question online survey was sent to 55 providers who perform open and percutaneous trachs at three of the hospitals within our large, urban, academic medical center. These providers were identified by surveillance of the operating room schedules for 1 year. Results: The survey was completed by 40 of the 53 eligible providers (75.5%). Response rate by question varied. Respondents included members of all departments that perform trachs at our institution (Otorhinolaryngology, Trauma Surgery, Thoracic Surgery, General Surgery, Cardiovascular Surgery and Interventional Pulmonology).While most responses demonstrated uniformity in practice, notable variations included the following: 80% of percutaneous trach providers stated that morbid obesity was not a contraindication to performing a trach outside of the operating room (n = 20) while 58% of open trach providers stated that morbid obesity was a contraindication; only 35% of open trach providers perform a Bjork flap (n = 350). The survey also identified significant variability in practice with regards to timing of trach suture removal. Discussion: Lack of uniformity was identified in several practices related to intra- and post-operative tracheostomy care. Results did, however, trend toward consensus in many areas. The results are being used to establish a more consistent approach to tracheostomy management across our institution to ensure standardization of practice amidst the rapidly evolving practices of trach placement. Implications for practice: With ongoing evolution in the methods of trach placement and its management, the concepts put forth here will be a resource for health care providers at other institutions to consider intra-institutional analysis and establishment of practice standardization.

2.
Otolaryngol Head Neck Surg ; 165(1): 76-82, 2021 07.
Article in English | MEDLINE | ID: mdl-33371823

ABSTRACT

OBJECTIVE: To describe the management, technical nuances, and success rates of transoral robotic surgery (TORS)-assisted sialolithotomy. STUDY DESIGN: Retrospective database review. SETTING: Quaternary academic medical center. METHODS: Between the months of January 2015 and May 2019, patients with hilar submandibular gland stones underwent 2 main variations of TORS-assisted sialolithotomy and sialendoscopy: (1) TORS followed by sialendoscopy for patients with palpable predominantly single stones and (2) either sialendoscopy followed by TORS and sialendoscopy or sialendoscopy followed by TORS only for patients with nonpalpable or multiple stones. Clinical charts were reviewed to collect data, including stone size (imaging review, intraoperative measurement), palpability, duration of operation, TORS variation, operative challenges, symptom improvement, gland preservation rate, and complications. RESULTS: Thirty-seven patients were identified. Patients were 26 to 80 years old (mean, 57.2 years), and 40.5% were female. Twenty-four patients (64.9%) underwent TORS followed by sialendoscopy; 10 (27.0%), sialendoscopy followed by TORS and sialendoscopy; and 3 (8.1%), sialendoscopy followed by TORS only. The mean stone size was 12.4 mm (range, 4-28 mm). Eleven patients had multiple stones with a mean 4 stones per patient (range, 2-9). Procedural success was 91.9% (34/37) at a mean follow-up of 34.2 weeks (range, 1.4-262.1), and the gland preservation rate was 97.3% (36/37). No patients reported symptoms of lingual nerve injury at 3-month follow-up. CONCLUSION: TORS combined with sialendoscopy for hilar submandibular gland sialolithiasis allows for improved visualization of critical anatomy, tissue manipulation, and operative flexibility. In our experience, the operative success rate is high, and duration of surgery compares favorably with conventional combined hilar approaches.


Subject(s)
Endoscopy/adverse effects , Postoperative Complications/etiology , Robotic Surgical Procedures/adverse effects , Salivary Gland Calculi/surgery , Submandibular Gland Diseases/surgery , Adult , Aged , Aged, 80 and over , Endoscopy/methods , Female , Humans , Male , Middle Aged , Operative Time , Retrospective Studies , Robotic Surgical Procedures/methods , Salivary Gland Calculi/diagnosis , Submandibular Gland Diseases/diagnosis , Treatment Outcome
3.
Ann Surg ; 272(3): e181-e186, 2020 09 01.
Article in English | MEDLINE | ID: mdl-32541213

ABSTRACT

OBJECTIVE: To determine the outcomes of patients undergoing tracheostomy for COVID-19 and of healthcare workers performing these procedures. BACKGROUND: Tracheostomy is often performed for prolonged endotracheal intubation in critically ill patients. However, in the context of COVID-19, tracheostomy placement pathways have been altered due to the poor prognosis of intubated patients and the risk of transmission to providers through this highly aerosolizing procedure. METHODS: A prospective single-system multi-center observational cohort study was performed on patients who underwent tracheostomy after acute respiratory failure secondary to COVID-19. RESULTS: Of the 53 patients who underwent tracheostomy, the average time from endotracheal intubation to tracheostomy was 19.7 days ±â€Š6.9 days. The most common indication for tracheostomy was acute respiratory distress syndrome, followed by failure to wean ventilation and post-extracorporeal membrane oxygenation decannulation. Thirty patients (56.6%) were liberated from the ventilator, 16 (30.2%) have been discharged alive, 7 (13.2%) have been decannulated, and 6 (11.3%) died. The average time from tracheostomy to ventilator liberation was 11.8 days ±â€Š6.9 days (range 2-32 days). Both open surgical and percutaneous dilational tracheostomy techniques were performed utilizing methods to mitigate aerosols. No healthcare worker transmissions resulted from performing the procedure. CONCLUSIONS: Alterations to tracheostomy practices and processes were successfully instituted. Following these steps, tracheostomy in COVID-19 intubated patients seems safe for both patients and healthcare workers performing the procedure.


Subject(s)
COVID-19/therapy , Critical Care , Intubation, Intratracheal , Respiration, Artificial , Tracheostomy , Adult , Aged , Aged, 80 and over , COVID-19/complications , COVID-19/mortality , Extracorporeal Membrane Oxygenation , Female , Humans , Male , Middle Aged , Prospective Studies , Treatment Outcome , Young Adult
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