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PubMed · 8299284

Transient global amnesia.

Abstract

Transient global amnesia (TGA) is a transient, benign neurological syndrome, characterized by global loss of memory, preserved consciousness and self-awareness, associated with some behavioral changes (in particular, repetitive questioning). It generally resolves within 24 h. Mild brain stem symptoms can often be demonstrated during the attack, but major neurological abnormalities never occur. The only sequel is a permanent amnesic gap for the duration of the episode. The episode is often preceded by typical precipitating events, such as physical activity, emotional stress, acute pain, comprising haemodynamic changes of the body. The diagnosis is easy provided one is acquainted with the syndrome. The prevalence of vascular risk factors is low and the risk for stroke is not increased. Although much evidence indicates the possibility of a causative ischaemia in the inferomedial parts of the temporal lobes, an atherothrombo-embolic TIA is not the cause of TGA, and TGA is unrelated to cerebrovascular disease in general. In the author's view, the cause of TGA is a transient ischemic attack (TIA) but a haemodynamic one of the vertebrobasilar system, producing a transient dysfunction of inferomedial parts of the temporal lobes, regions that are particularly sensitive to impaired blood supply. For a full pathogenetic explanation of TGA, clarification of the underlying mechanisms is a prerequisite. This touches on the genesis of migraine and Leao's spreading depression phenomenon. The term 'amnesic TIA' would reflect the pathogenesis more appropriately.

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BibTeXRIS

J A Frederiks. 1993. Transient global amnesia.. https://doi.org/10.1016/0303-8467(93)90102-m

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Determination of the EC50 amnesic concentration of etomidate and its diffusion profile in brain tissue: implications for in vitro studies.

BACKGROUND: Etomidate is a widely used general anesthetic that has become a useful tool to investigate mechanisms of anesthetic action in vivo and in brain slices. However, the free aqueous concentration of etomidate that corresponds to amnesia in vivo and the diffusion profile of etomidate in brain slices are not known. METHODS: The authors assessed the effect of intraperitoneally injected etomidate on contextual fear conditioning in mice. Etomidate concentrations in brain tissue were obtained by high-performance liquid chromatography. Uptake studies in 400-microm-thick brain slices were used to calculate the diffusion and partition coefficients of etomidate. A diffusion model was used to calculate the expected concentration profile within a brain slice as a function of time and depth. The predicted rate of drug equilibration was compared with the onset of electrophysiologic effects on inhibitory circuit function in recordings from hippocampal brain slices. RESULTS: Etomidate impaired contextual fear conditioning with an ED50 dose of 11.0+/-0.1 mg after intraperitoneal injection, which corresponded to an EC50 brain concentration of 208+/-9 ng/g. The brain:artificial cerebrospinal fluid partition coefficient was 3.35, yielding an EC50,amnesia aqueous concentration of 0.25 microm. The diffusion coefficient was approximately 0.2x10 cm/s. The development of etomidate action in hippocampal brain slices was compatible with the concentration profile predicted by this diffusion coefficient. CONCLUSIONS: The free aqueous concentration of etomidate corresponding to amnesia, as defined by impaired contextual fear conditioning in mice, is 0.25 microM. Diffusion of etomidate into brain slices requires approximately an hour to reach 80% equilibration at a typical recording depth of 100 microm. This information will be useful in designing and interpreting in vitro studies using etomidate.

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