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K L Jansen

Publications and source records attributed to K L Jansen.

28 records · Page 2Linked to original sources

Excitatory amino acid receptors in the human cerebral cortex: a quantitative autoradiographic study comparing the distributions of [3H]TCP, [3H]glycine, L-[3H]glutamate, [3H]AMPA and [3H]kainic acid binding sites.

The excitatory amino acids are probably the major neurotransmitters in the cerebral cortex, and they act through at least three receptors: the N-methyl-D-aspartate, the quisqualate and the kainic acid receptors. Under the appropriate conditions, [3H]1-(1-(2-thienyl)-cyclohexyl)piperidine [( 3H]TCP), [3H]glycine and L-[3H]glutamate label different sites on the N-methyl-D-aspartate receptor, [3H]-alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid [( 3H]AMPA) labels the quisqualate receptor and [3H]kainic acid the kainic acid receptor. The anatomical localizations of these binding sites were studied in sections of blocks removed from the cerebral cortices of eight post-mortem human brains. The results showed that, in the human cerebral cortex, [3H]TCP, [3H]glycine and L-[3H]glutamate binding sites had congruent distributions, with [3H]AMPA binding sites showing a similar distribution. In the hippocampus, these four ligands had high binding site densities in the CA1 region and the dentate gyrus molecular layer. With the exception of the striate cortex, in the neocortex, a tri-laminar pattern was seen consisting of a high density across laminae I-III, a layer of low density corresponding to the region of lamina IV, and a band of moderate density across laminae V and VI, except for [3H]AMPA where the middle zone of low density was usually wider. [3H]Kainic acid showed a binding pattern which was generally complementary to that of the other four ligands. There were low levels of [3H]kainic acid binding sites in the CA1 region of the hippocampus with higher levels in the CA3 region, the hilus, and the inner third of the dentate gyrus molecular layer. In the neocortex there was a band of high density corresponding to laminae V and VI, with a thin band of moderate binding corresponding to lamina I and the outer region of lamina II. An exception was the motor cortex where the highest level of [3H]kainic acid binding was in laminae I and II. The high degree of congruence between the binding patterns of [3H]TCP, [3H]glycine and L-[3H]glutamate (using conditions appropriate for the N-methyl-D-aspartate receptor) supports data indicating that these ligands bind to different regions of the same receptor complex. The similar distribution of [3H]AMPA binding sites, with the exception of the striate cortex, supports observations made in rodents that N-methyl-D-aspartate receptors and quisqualate receptors have similar distributions and perform different but related functions in excitatory transmission.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

An ethnomycological review of psychoactive agarics in Australia and New Zealand.

A comprehensive review is presented of the recreational and accidental ingestion of psychoactive mushrooms in Australia and New Zealand; 15 recognized species are considered from Australia and eight from New Zealand. Common epithets, potency levels, and methods of ingestion are discussed. Legal aspects involving the use of these psychoactive fungi are noted. In addition, medical and psychoactive effects of these mushrooms and treatment for psilocybian mushroom poisoning are described. Numerous case reports, with commentary, are also presented.

Australia↗

A review of the nonmedical use of ketamine: use, users and consequences.

Ketamine is a dissociative anesthetic with an accepted place in human medicine. Ketamine also has psychedelic properties, and there has been a recent increase in nonmedical use linked with the growth of the "dance culture." This has attracted little comment in the formal literature but has been the subject of many reports in the media. Myths and misunderstandings are common. The psychedelic properties of ketamine have also led to its use as an adjunct to psychotherapy. This review is intended as a resource for the wide range of persons now requesting accurate information about the nonmedical use of ketamine. It accepts the current necessity of sometimes referring to anecdotal reports while seeking to encourage an increase in formal research. The review includes the history of ketamine, its growing role as a "dance drug," the sought-after effects (including the near-death experience) for which it is taken in a nonmedical context, how these are produced, common mental and physical adverse effects, and the ketamine model of schizophrenia.

Anesthetics, Dissociative↗

The nonmedical use of ketamine, part two: A review of problem use and dependence.

This is the second part of a review of the nonmedical use of ketamine. Part one discussed the history of ketamine, the sought-after effects for which it is taken in a nonmedical context, how these are produced, common adverse effects, the ketamine schizophrenia model and the neurotoxicity issue. Part two reviews what is currently known about problem use of ketamine, ketamine dependence, treatment options and harm minimization issues. Some ketamine users become dependent on the drug in a manner resembling cocaine dependence, with craving and a high tolerance but no evidence of a physiological withdrawal syndrome. The likely mechanisms of this dependence are discussed in terms of what is known about the neurochemistry of ketamine, its psychological effects, and published case histories in both the formal and informal literature. The conclusions are that ketamine dependence is linked with effects that this complex drug has in common with not only cocaine and amphetamine but also with opiates, alcohol and cannabis, as well as the psychological attractions of its distinctive psychedelic properties.

Anesthetics, Dissociative↗