The Effects of Flumazenil After Midazolam Sedation on Cerebral Blood Flow and Dynamic Cerebral Autoregulation in Healthy Young Males
Autor: | Setsuro Ogawa, Jitsu Kato, Ken-ichi Iwasaki, Yojiro Ogawa, Kaname Ueda, Ryo Yanagida, Ken Aoki |
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Rok vydání: | 2015 |
Předmět: |
Adult
Flumazenil Male genetic structures Ultrasonography Doppler Transcranial Midazolam Sedation Conscious Sedation Electroencephalography Cerebral autoregulation Young Adult Cerebral circulation Consciousness Monitors mental disorders Homeostasis Humans Hypnotics and Sedatives Medicine Arterial Pressure heterocyclic compounds GABA Modulators Young male medicine.diagnostic_test business.industry Healthy Volunteers Anesthesiology and Pain Medicine Cerebral blood flow Cerebrovascular Circulation Anesthesia Respiratory Mechanics Surgery Neurology (clinical) medicine.symptom business psychological phenomena and processes medicine.drug |
Zdroj: | Journal of Neurosurgical Anesthesiology. 27:275-281 |
ISSN: | 0898-4921 |
DOI: | 10.1097/ana.0000000000000156 |
Popis: | It is unknown whether flumazenil antagonizes the decrease in cerebral blood flow or the alteration in dynamic cerebral autoregulation induced by midazolam. We, therefore, investigated the effects on cerebral circulation of flumazenil administered after midazolam, to test our hypothesis that, along with complete reversal of sedation, flumazenil antagonizes the alterations in cerebral circulation induced by midazolam.Sixteen healthy young male subjects received midazolam followed by flumazenil. The modified Observer's Assessment of Alertness/Sedation (OAA/S) scale and bispectral index (BIS) were used to assess levels of sedation/awareness. For evaluation of cerebral circulation, steady-state mean cerebral blood flow velocity (MCBFV) was measured by transcranial Doppler ultrasonography. In addition, dynamic cerebral autoregulation was assessed by spectral and transfer function analysis between mean arterial pressure (MAP) variability and MCBFV variability.During midazolam sedation, defined by an OAA/S score of 3 (responds only after name is called loudly and/or repeatedly), BIS, steady-state MAP, steady-state CBFV, and transfer function gain decreased significantly compared with baseline. After flumazenil administration, an OAA/S score of 5 (responds readily to name spoken in a normal tone) was confirmed. Then, BIS and MAP returned to the same level as baseline. However, steady-state MCBFV showed a further significant decrease compared with that under midazolam sedation, and the decreased transfer function gain persisted.Contrary to our hypothesis, the present results suggest that despite complete antagonism of the sedative effects of midazolam, flumazenil would not reverse the alterations in cerebral circulation induced by midazolam. |
Databáze: | OpenAIRE |
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