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H E Bell

Publications and source records attributed to H E Bell.

12 recordsLinked to original sources

Rapid recovery of rat brain intracellular pH after cardiac arrest and resuscitation.

We studied the intracellular pH in rat cerebral cortex of rats subjected to reversible total cerebral ischemia by cardiac arrest and resuscitation. Brain acidoses was more pronounced during ischemia in hyperglycemic rats (6.21 +/- 0.14) than in normoglycemic rats (6.56 +/- 0.07). Brain tissue lactate accumulated proportionally. Nevertheless, within 5 min of reperfusion, pHi in both normoglycemic and hyperglycemic groups had recovered to baseline levels, i.e. near 7.1-7.2, despite the fact that lactate concentrations were still elevated. These results demonstrate a rapid reversal of ischemic acidosis during recovery from 10 min of cardiac arrest, and suggest that acidosis, per se, may not be responsible for neuronal damage following cardiac arrest and resuscitation, even in hyperglycemic conditions.

Acidosis

Constant diazepam infusion in the treatment of continuous seizure activity.

Status epilepticus is a medical emergency that requires rapid seizure control. Intravenous bolus diazepam has been used in the rapid reversal of status epilepticus; this agent usually is combined with parenteral phenobarbital or phenytoin for a more sustained suppression of seizure activity. In certain situations, these longer-acting agents are not effective in controlling the seizure disorder, necessitating alternative therapeutic measures. Continuous diazepam infusion has been used successfully to treat persistent seizure activity. Its use, however, is fraught with pharmaceutical problems. This article reviews the pharmacology, efficacy, and pharmaceutical results of using continuous infusion intravenous diazepam to treat status epilepticus.

Diazepam

Macroglobulins.

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Blood Protein Electrophoresis