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Russell C Brockwell

Publications and source records attributed to Russell C Brockwell.

3 recordsLinked to original sources

Posttetanic count revisited: are measurements more reliable using the TOF-Watch accelerographic peripheral nerve stimulator?

OBJECTIVE: Measurement of profound neuromuscular block using posttetanic count is among the most subjective measurements made in clinical anesthesia. The TOF-Watch accelerographic peripheral nerve stimulator provides objective measurements of neuromuscular block that may improve our ability to quantitate intense blockade. METHODS: The TOF-Watch and Digi Stim III peripheral nerve stimulators were used to monitor onset and early recovery of neuromuscular response induced by rocuronium 0.6 mg/kg i.v. in 30 patients anesthetized with general anesthesia. After induction, train-of-four count (when present) was measured at one-min intervals. Subsequently, posttetanic count was measured at three-min intervals until the first response to train-of-four stimulation reappeared. RESULTS: Posttetanic count and train-of-four count measurements were determined to be consistently unreliable throughout the study in seven (23%) patients with the TOF-Watch stimulator and three (10%) patients with the Digi Stim III stimulator (p = NS). Among stimulators yielding reliable measurements, decreases in train-of-four count to 0/4 were noted earlier with the Digi Stim III monitor (median = 2 min) as compared with the TOF-Watch device (median = 4 min) (p < 0.05). Also, posttetanic count decreased to zero in only 35% of patients with the TOF-Watch stimulator versus 67% of patients with the Digi Stim III stimulator (p < 0.05). CONCLUSIONS: Both monitors were similar in their ability to predict return to TOFC = 1 as a function of PTC measurements. The TOF-Watch monitor is easy to apply even in inexperienced hands. However, the device yielded erroneous data in 23% of patients.

Adult↗

Complications of inhaled anesthesia delivery systems.

Inhaled anesthesia delivery systems (ADS) have evolved in the past 20 years from simple pneumatic machines to complex computer-controlled devices. For the purposes of this discussion, we will outline some of the potential complications that may result from the use of these systems. Because of the complexity of modern ADS, it is incumbent on the anesthesiologist to be cognizant of potential problems that may arise with their use. Even though it is now more difficult than ever for the practitioner to develop a comprehensive understanding of these machines, it remains essential for the safe practice of anesthesia. When the anesthesiologist understands the basic design differences between products from different manufacturers, it is more likely that the appropriate preoperative checks will be performed and that delivery of a safe anesthetic can be ensured. Although malpractice claims associated with anesthesia delivery systems are rare, when they do occur they may be severe, and they continue to occur. These complications may range in severity from mild hypercapnia to awareness and even death.

Air Pressure↗