Objective: To determine whether neuromuscular blockade with rocuronium bromide (RB) would improve endotracheal intubation (EI) conditions in comparison with topical lidocaine hydrochloride (LH).
Study Design: Randomized prospective study.
Animals: Forty seven healthy cats of unspecified breed, aged 17 ± 11 months and weighing 2.8 ± 0.8 kg, undergoing elective procedures.
Methods: Anesthesia was induced with xylazine (XZ) (1.1 mg kg(-1) IM) and tiletamine-zolazepam (XTZ) (7 mg kg(-1) IM) and EI was attempted. Cats which could not be intubated at the first attempt (n = 34), were randomly medicated with either 0.1 mL LH 10% spray on the laryngeal mucosa (n = 17) or 0.6 mg kg(-1) intravenous RB (n = 17). Sixty seconds later, a second attempt at EI was performed. The effect of both drugs was assessed using a previously published scale (Sandor Agoston). EI conditions associated with laryngoscopy, vocal cord position and movement, cough, patient movement, time and attempts needed in order to perform EI were recorded. Heart rate and end-expired CO2 concentration were monitored.
Results: Groups were comparable in age, weight, gender and hematological parameters. Clinically acceptable EI conditions were not significantly different between RB and LH assisted groups (p = 0.31). However, there was a significant difference in cough, vocal cord movement and position between the RB and the LH groups. The group intubated at the first attempt and receiving neither RB nor LH coughed persistently (11/13). The cats receiving RB had to be ventilated for 10-28 minutes.
Conclusions And Clinical Relevance: The present study shows that, when used in cats anesthetized with XTZ, RB paralyzes the internal laryngeal muscles keeping the vocal cords in an intermediate position (paramedial) 60 seconds after being administered. RB is an effective alternative to LH to overcome the airway protective reflexes when performing EI but requires ventilatory support until the paralysis wears off.
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http://dx.doi.org/10.1111/vaa.12028 | DOI Listing |
J Perianesth Nurs
January 2025
Ellmer School of Nursing Mason and Joan Brock Virginia Health Sciences, Old Dominion University, Virginia Beach, VA. Electronic address:
Purpose: neuromuscular blockade (NMB) remains a significant risk for patients after anesthesia. This study examines the confidence and knowledge of the use and side effects of NMB and associated reversal agents amongst postanesthesia care unit (PACU) nurses caring for the postanesthesia surgical population. Retrospective data on the incidence and demographics of patients who underwent general anesthesia with NMB were also examined.
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January 2025
Department of Anesthesiology, Fudan University Shanghai Cancer Center, Shanghai, China. Electronic address:
Prehosp Emerg Care
January 2025
Department of Emergency Medicine, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA.
Objectives: Prehospital endotracheal intubation (ETI) is a lifesaving procedure with known complications. To reduce ETI-associated morbidity and mortality, organizations prioritize first-pass success (FPS). However, there are few data evaluating the association of FPS with clinician licensure.
View Article and Find Full Text PDFBr J Clin Pharmacol
January 2025
Center for Pharmacometrics and Systems Pharmacology, Department of Pharmaceutics. College of Pharmacy, University of Florida, Orlando, FL, USA.
Aims: Residual neuromuscular blockade (RNB) commonly occurs when using neuromuscular blockers and increases the risk for pulmonary complications, such as airway obstruction and severe hypoxemia, in extubated patients. Rocuronium exhibits a high variability in recovery time, contributing to an increased risk for RNB. This study aimed to identify and characterize the sources of variability in rocuronium exposure and response via a population pharmacokinetic/pharmacodynamic (PK/PD) analysis and to apply the developed PK/PD model to investigate clinical implications.
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January 2025
Department of Rheumatology, University Clinical Hospital No. 1 Szczecin, Szczecin, Poland.
Skeletal muscle relaxants have their place in everyday use in numerous anesthesiological procedures, such as preparing a patient for surgery, supporting mechanical ventilation, and performing effective intubation. These drugs can be divided, based on their mechanism of action, into depolarizing skeletal relaxants, such as succinylcholine, and non-depolarizing skeletal muscle relaxants. Non-depolarizing agents are further categorized, based on their structure, into steroidal (eg, rocuronium) and benzylisoquinoline (eg, atracurium) compounds.
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