Biomedical subjects
L Stein
Publications and source records attributed to L Stein.
Possible etiology of schizophrenia: progressive damage to the noradrenergic reward system by endogenous 6-hydroxydopamine.
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Norepinephrine: reversal of anorexia in rats with lateral hypothalamic damage.
Injection of norepinephrine in the lateral ventricles of rats recovering from lateral hypothalamic anorexia caused immediate feeding and, frequently, overeating. Intraventricular administration of the alpha-noradrenergic blocker, phentolamine, suppressed feeding in both normal rats and rats that had recovered from lateral hypothalamic lesions. Feeding is reinforced by ascending medial forebrain bundle fibers that form alpha-noradrenergic synapses in the hypothalamus and forebrain. Damage to these fibers suppresses feeding by reducing noradrenergic transmission and, hence, the rewarding value of food. Recovery of feeding after hypothalamic lesions coincides with the recovery of noradrenergic reward function.
Possible etiology of schizophrenia: progressive damage to the noradrenergic reward system by 6-hydroxydopamine.
Single or repeated intraventricular injections of 6-hydroxydopamine caused marked and long-lasting deficits in brain self-stimulation and other rewarded behaviors in the rat. The behavioral deficits, as well as the depletion of brain norepinephrine induced by 6-hydroxydopamine, were prevented by prior treatment with chlorpromazine. Episodic or continuous formation of endogenous 6-hydroxydopamine in man as a result of a genetically determined enzymatic error could selectively damage the binding capacity and, eventually, the structural integrity of the noradrenergic reward mechanism. Such damage might cause the fundamental symptoms and long-term downhill course of schizophrenia.
Neurochemistry of reward and punishment: some implications for the etiology of schizophrenia.
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Psychopharmacology of 7-chloro-5-(o-chlorophenyl)-1,3-dihydro-3-hydroxy-2H-1,4-benzodiazepin-2-one (lorazepam) in squirrel monkey and rat.
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Statistical summary of 10,000 male cases using Afrodex in treatment of impotence.
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Monocular blindness in the young.
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Foreign bodies of the tracheobronchial tree and esophagus. A new approach to therapy.
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Attracting young people into careers in the health professions.
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The neuroleptics. 5. Animal behavior.
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Serotonin: a possible mediator of behavioral suppression induced by anxiety.
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Paradoxical fear-increasing effects of tranquilizers: evidence of repression of memory in the rat.
Conditioned suppression of feeding, an index of fear, was increased rather than decreased by the administration of benzodiazepine tranquilizers or amobarbital. The drug-induced increase in conditioned fear varied directly with the intensity of the shock used in fear conditioning. The drugs had no fear-increasing effect in unshocked controls or in rats made amnesic by electroconvulsive shock given immediately after fear conditioning. These observations in animals are reminiscent of clinical reports that intraveneous amobarbital facilitates the recall of repressed traumatic experiences. The retrieval of painful memories may be inhibited or repressed in animals as well as in humans. In both cases, tranquilizers may counteract repression by disinhibition of the act of retrieval.
Facilitation of brain self-stimulation by central administration of norepinephrine.
Rats with electrodes implanted in the medial forebrain bundle stimulated their own brains at sharply reduced rates after systemic administration of disulfiram or intraventricular administration of diethyldithiocarbamate. Both drugs inhibit dopamine-beta-hydroxylase, the enzyme responsible for the final step in the biosynthesis of norepinephrine. The suppressed behavior was reinstated by intraventricular injections of 1-norepinephrine, but not by injection of its biologically inactive isomer, d-norepinephrine. Intraventricular administration of dopamine and serotonin did not restore self-stimulation. The rewarding effect of medial forebrain bundle stimulation may depend on the availability of norepinephrine as a transmitter, but not on dopamine or serotonin.
Asymmetrical dissociation of learning between scopolamine and Wy 4036, a new benzodiazepine tranquilizer.
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An analysis of the learning deficits produced by scopolamine.
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Cholinergic synapses in the ventromedial hypothalamus for the suppression of operant behavior by punishment and satiety.
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