Related Experiment Video
Updated: Aug 8, 2026

Direct Intraventricular Delivery of Drugs to the Rodent Central Nervous System
Published on: May 12, 2013
Comparison of mivacurium and suxamethonium administered by bolus and infusion
B W Brandom1, S K Woelfel, D R Cook
1Department of Anesthesiology, Presbyterian-University Hospital, Pittsburgh, Pennsylvania.
Abstract:
Mivacurium chloride is a new, short-acting nondepolarizing neuromuscular blocking agent presently undergoing clinical evaluation. The neuromuscular effects of mivacurium and suxamethonium given by bolus and infusion were compared in adult patients during nitrous oxide-oxygen-opioid anaesthesia. Neuromuscular block was monitored by recording the compound electromyogram of the adductor pollicis muscle resulting from supramaximal train-of-four stimuli applied to the ulnar nerve. Time to onset of complete block and recovery to T5 were significantly shorter for suxamethonium than for mivacurium (1.0 (0.1) v. 2.5 (0.3) min and 6.4 (0.7) v. 17.5 (1.8) min; mean (SEM]. Conditions for tracheal intubation were similar in the two groups although intubation was performed 0.75-1.3 min later following mivacurium. The infusion rate required to maintain neuromuscular block was 88.6 (10.4) micrograms kg-1 min-1 for suxamethonium and 7.8 (1.2) micrograms kg-1 min-1 for mivacurium. There was a significant negative correlation between recovery to T5 and infusion rate for mivacurium and for suxamethonium. It was equally easy to titrate the infusion rate to the desired degree of block in each group. The recovery index (T25-T75) after the infusion stopped was similar in patients who received mivacurium and those who received suxamethonium.
More Related Videos
06:40Combined Infusion and Stimulation with Fast-Scan Cyclic Voltammetry (CIS-FSCV) to Assess Ventral Tegmental Area Receptor Regulation of Phasic Dopamine
Published on: April 23, 2020
04:30Stimulated Single Fiber Electromyography (SFEMG) for Assessing Neuromuscular Junction Transmission in Rodent Models
Published on: March 8, 2024
Related Concept Videos
Nondepolarizing (Competitive) Neuromuscular Blockers: Mechanism of Action
Competitive antagonists prevent acetylcholine from binding to its receptor, inhibiting membrane depolarization. Without conformational changes or intrinsic...
Nondepolarizing (Competitive) Neuromuscular Blockers: Pharmacokinetics
Instead, they are transported by the blood to different tissues. Muscles with a greater blood supply (arteries) and blood flow receive more...
Depolarizing Blockers: Pharmocokinetics
Skeletal Muscle Relaxants: Therapeutic Uses
One-Compartment Open Model for IV Bolus Administration: General Considerations
The drug's presence in the body is defined by an equation representing the difference between the rates of drug entry and exit. Key parameters—elimination rate constant, half-life,...
Two-Compartment Open Model: IV Bolus Administration
The disparity between drug input and the sum of drug transfer rates between...