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October 1, 1990Anesthesia & Analgesia54 citations

Inhibition of Sympathetic Neural Outflow During Thiopental Anesthesia in Humans

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TEThomas J. EbertDKDan D. KanitzJKJohn P. Kampine

Key Result

Induction of anesthesia with sodium thiopental significantly reduced tonic muscle sympathetic nerve activity from 38 to 18 bursts/100 cardiac cycles (P<0.01) and attenuated baroreceptor reflex control.

Structured PICO

Does sodium thiopental reduce muscle sympathetic nerve activity and baroreceptor reflex regulation in ASA I and II patients?

P
Population
7 ASA physical status I and II patients, aged 34-65 years, undergoing anesthesia.
I
Intervention
Sodium thiopental induction (4 mg/kg) and infusion (0.25 mg/kg/min)
C
Comparator
Awake state (baseline)
O
Outcome
Postganglionic muscle sympathetic nerve activity (MSNA) and baroreceptor reflex regulationsurrogate

Sodium thiopental significantly reduces tonic muscle sympathetic nerve activity and attenuates baroreceptor reflex control mechanisms, though sympathetic activity still increases during laryngoscopy and intubation.

Main Result

Absolute Event Rate: 18% vs 38%

p-value: p=<0.01

Abstract

The effects of sodium thiopental on postganglionic muscle sympathetic nerve activity (MSNA) and the reflex augmentation in MSNA produced by hypotension were examined in seven ASA physical status I and II patients, 34-65 yr old. Direct recordings of MSNA were obtained from a 5-micron-tipped, epoxy-coated needle percutaneously placed into the common peroneal nerve. Induction of anesthesia with sodium thiopental (4 mg/kg) significantly decreased R-R interval duration an average of 157 +/- 44 ms (mean +/- SEM) decreased systolic pressure (radial artery) an average of 11 +/- 4 mm Hg, and reduced tonic MSNA from 38 +/- 11 to 18 +/- 5 bursts/100 cardiac cycles (P less than 0.01). Baroreceptor reflex regulation of cardiac intervals and MSNA were determined by sequential boluses of nipride (100 micrograms) and phenylephrine (150 micrograms). Awake baroreceptor slopes relating R-R interval to systolic pressure were 9.5 +/- 2.9 ms/mm Hg and decreased 61% to 2.4 +/- 0.5 ms/mm Hg (P less than 0.01) during sodium thiopental infusions (0.25 mg.kg-1.min-1). Moreover baroreceptor slopes relating MSNA to diastolic pressure in awake patients were -4.0 +/- 0.9 bursts/mm Hg and were reduced by 95% to -0.3 +/- 0.18 bursts/mm Hg (P less than 0.01). Despite the fact that hypotension did not elicit increases in MSNA in anesthetized patients, laryngoscopy and tracheal intubation produced profound augmentations in MSNA. Thus, sodium thiopental reduces tonic levels of MSNA and markedly attenuates baroreceptor reflex control mechanisms. However, profound augmentations in sympathetic activity occurred in response to laryngoscopy and tracheal intubation during thiopental anesthesia.

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Cite This Study

Ebert et al. (1990) studied ASA physical status I and II patients undergoing anesthesia (n=7). Sodium thiopental vs. Awake state (baseline) was evaluated on Tonic muscle sympathetic nerve activity (MSNA) in bursts/100 cardiac cycles (p=<0.01). Induction of anesthesia with sodium thiopental significantly reduced tonic muscle sympathetic nerve activity from 38 to 18 bursts/100 cardiac cycles (P<0.01) and attenuated baroreceptor reflex control.

synapsesocial.com/papers/6a3487112e8f795f729e8672https://doi.org/10.1213/00000539-199010000-00001
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