PubMed HealthSearch

SEARCH · PubMed Health

Results for “Limbic System”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

The limbic system: a review of its empirical foundation.

The concept of the limbic system is highly influential in many areas of the neurosciences and in their applications to clinical medicine. The value of this concept has been questioned, denied, and defended several times in the past but a comprehensive critical evaluation has never been published. In this article we take several approaches to analyse empirical data of relevance to the limbic system. First we delineate its factual application in different areas. The limbic system has a very wide scope and divergent use. Secondly we extract criteria for its definition from research literature using the bibliographic database Medline. The limbic system has been defined variously on a number of different descriptive levels from morphology to behaviour. Thirdly we review its empirical foundations comparing evidence from different sources. The limbic system lacks an adequate empirical definition in spite of numerous efforts. Last we evaluate its construction as a scientific concept from empirical facts. The limbic system is a non-empirical explanatory concept for poorly understood brain functions. We conclude that the concept of the limbic system cannot be accepted on empirical grounds. However, it is a very attractive concept in the search for explanation of brain function. The non-empirical contents of the limbic system remains largely unexplored.

Animals

[Relationship between the limbic system and gonadal function. 2. Quantifiable prepuberal differentiation of medial cortical amygdaloid nuclei].

In juvenile female rats beteen the 21st and 26th days of age, the neurons of the medial and cortical amygdaloid nuclei undergo a highly significant karyovolumetrically measurable activation which, however, partially declines almost immediately. Such prepuberal variation of activity was found to be correlated with age-dependent effects of direct interventions with these nuclear regions upon the hypothalamy-pituitary-gonadal axis, e.g. implantation of oestradiol benzoate, stimulation or lesioning. This basically, is a quantitatibe-morphological confirmation of an assumption that had been derived earlier from experimental studies, according to which the mediocortical part of the amygdala undergoes in the prepuberal period a functional muteration or differentiation which is specific and related to puberty and gonadal functions (Döcke, 1976a, b; Döcke et al., 1976).

Aging

Tyrosine hydroxylase and dopamine-beta-hydroxylase: distribution in discrete areas of the rat limbic system.

Tyrosine hydroxylase and dopamine-beta-hydroxylase have been measured in 34 discrete areas and nuclei of the limbic system of the rat. Both enzymes showed an uneven distribution in this system. The ratio between tyrosine hydroxylase and dopamine-beta-hydroxylase activities showed a significant correlation when compared with the ratio of dopamine and norepinephrine concentrations for the areas studied. The results strongly suggest that dopaminergic terminals are present in discrete areas of the limbic cortex, and several septal and amygdaloid nuclei, and allow the precise localization of dopaminergic and noradrenergic areas in the limbic system.

Animals

The limbic system in Alzheimer's disease. A neuropathologic investigation.

The morphologic alterations of Alzheimer's disease, presenile and senile dementia, have conventionally been associated with the cerebral cortex; however, it is clear that other areas of the brain, notably the hippocampus and amygdala, are involved as well. These structures, together with others such as the fornix, cingulate gyrus, septal nuclei, and mamillary bodies, constitute the limbic system, which has been recognized as the anatomic substrate of memory, emotion, and learning. Disturbances in these modalities are central to the clinical expression of Alzheimer's disease; therefore, the limbic system was studied in its entirety in 9 patients with Alzheimer's disease and in 3 elderly individuals with Down's syndrome, in whom identical morphologic lesions were present. The findings disclose that the limbic system is regularly involved in Alzheimer's disease, to a severe degree and in a distinctively patterned distribution.

Aged

[Connections between the nucleus lateralis dorsalis of the thalamus and the limbic system in man. Study of 12 anatomo-clinical cases of vascular origin].

Lateralis dorsalis nucleus of thalamus belong to the limbic system of Papez more by its trigonal than cingular afferent pathways. Its parietal efferent pathways are probable, its cingular and trigonal ones possible but not proved. Neuropathologic studies provide informations to separate a latero-ventral part connected with parietal cortex and a mediodorsal part connected with limbic system.

Aged

Stress ulcer modulation by limbic system structures.

A number of studies suggest that the telencephalic limbic system modulates stress ulcer development. The amygdala is assumed to connect sensory experiences, including stressful stimuli, with the emotional reactions and gastrointestinal effects normally produce. The hippocampal formation (entorhinal cortex, dentate gyrus, hippocampus) is part of a gating system, modulating the organism's coping ability. Changes in transmission in this temporal brain region are linked to individual differences in stress ulcer severity. Interactions among "classical" transmitters and several neuropeptides mediate these differences.

Animals

Unit activity of limbic system neurons: effects of morphine, diazepam and neuroleptic agents.

The effects of morphine, diazepam and three neuroleptic agents (chloropromazine, perphenazine and haloperiodol) on neuronal firing rats were studied in the limbic system of immobilized cats. Parietal craniotomy was carried out under 1.5--4.0% halothane. Extracellular potentials from single cells in the cingulate gyrus, septum and lateral hypothalamic areas were recorded using glass-coated, platinum-iridium microelectrodes. In general, intravenous adminstration of morphine sulfate augmented the spontaneous firing rates of most of the neurons studied. In contrast, diazepam produced a marked attenuation of both spontaneous and morphine augmented firing rates, whereas the neuroleptic agents had no significant or consistent effects on the morphine augmented firing rates of neurons in these limbic areas. These data indicate that the limbic system may play an important role in the behavioral excitement in cats induced by morphine administration and also the depressant effect of the tranquilizer diazepam. In contrast, the inability of the neuroleptic agents to antagonize the morphine augmented neuronal firing rates suggest these agents may act outside the limbic areas studied here.

Animals

Neuronal plasticity in the limbic system during classical conditioning of the rabbit nictitating membrane response. II: Septum and mammillary bodies.

Neuronal unit activity was recorded from several limbic system structures during classical conditioning of the rabbit nictiating membrane response to a tone CS. Air puff to cornea was used as a UCS. The present and past investigations of hippocampal activity using this paradigm show a neuronal plasticity which develops early in training, increases rapidly and shifts forward in time as behavioral conditioning develops. Recordings from the lateral septal region demonstrate the same within-trial pattern of unit discharge seen in hippocampus, indicating a projection of hippocampal plasticity over precommissural fornix pathways. Medial septal neurons, on the other hand, respond in an excitatory manner to the onsets of tone and air puff stimulation. While unit discharges seen in hippocampus and lateral septum occur only during the paired (learning) paradigm, medial septal activity is identical under both paired and unpaired (control) conditions. The latter fact lends support for a sensory interpretation of medial septal responses, and is consistent with anatomical evidence of a major septohippocampal projection originating from this region. In contrast to results for lateral septum, recordings from medial and lateral mammillary nuclei indicate only small, diffuse excitation that exhibits no consistent changes over training, and is not related to activity seen in hippocampal or septal regions. The apparent lack of correspondence between learning dependent unit measures obtained from pre- and postcommissural fornix structures is entirely consistent with current modified descriptions of limbic system anatomy.

Action Potentials

Carbamazepine in the dyscontrol syndrome associated with limbic system dysfunction.

The literature has long demonstrated an association between certain behavioral problems and EEG abnormalities, particularly the association of aggressive and sometimes violent behavior with foci in the temporal lobes. The concept of "dyscontrol syndromes" has also been established and it is possible that some instances of the dyscontrol syndrome arise from an abnormal sensitization of the limbic system, due to disturbance in or near the temporal lobes. Carbamazepine is an interesting new drug, with both anticonvulsant and psychotropic properties, for which both the behavioral effects and pharmacological actions have been defined. The properties of carbamazepine for blocking polysynaptic reflexes and suppressing post-tetanic potentiation are discussed with respect to this limbic system dysfunction in the dyscontrol syndrome. It is also proposed that this drug might be considered for its psychotropic effect in certain instances of dyscontrol, with or without clinical diagnosis of epilepsy. An illustrative case is cited.

Adult

Differential effect of neuroleptic drugs on dopamine turnover in the extrapyramidal and limbic system.

In gallamine-immobilized cats, the caudate nucleus and the nucleus accumbens septi were perfused by means of a push-pull cannula and dopamine was measured in the perfusate. Chlorpromazine (10 mg kg(-1)) and clozapine (20 mg kg(-1)), administered intravenously, enhanced the release of dopamine. The effect of chlorpromazine was similar in both regions whereas that of clozapine was more pronounced in the nucleus accumbens than in the caudate nucleus. Furthermore, in the rat, sulpiride, clozapine and thioridazine increased the homovanillic acid concentration in striatum and limbic system to a similar extent. However, following probenecid administration, the net effect of these drugs on homovanillic acid accumulation was more marked in the limbic system than in the striatum whereas haolperidol and chlorpromazine had a similar effect in the two regions. It is concluded that, in contrast to haloperidol and chlorpromazine, sulpiride, clozapine and thioridazine may preferentially affect the limbic dopaminergic transmission. This possibly accounts for the fact that sulpiride, clozapine and thioridazine display an antipsychotic action and yet cause less extrapyramidal side effects than haloperidol and chlorpromazine.

Animals

A case of limbic system dysfunction with hypersexualith and fugue state.

This paper describes a case of limbic dysfunction in a 28-year-old female veteran who presented with psychoses and sexual promiscuity. She had EEG abnormalities and showed dramaic improvement with anti-convulsant medication. Limbic system dysfunction in general may present as "functional psychoses." The literature is briefly reviewed.

Adult

[Relationship between the limbic system and gonadal function. 3. Quantifiable prepuberal morphokinesis of the basolateral amygdaloid body and the ventral hippocampus formation].

In juvenile female rats the neurons of the limbic system which are attached to the basolateral amygdaloid nucleus and to a circumscribed area of ventral hippocampal formation are characterised by markedly quantifiable morphokinesis between the 21st day of age and onset of the first oestrus. This morphokinesis will take the form of consecutively occurring highly significant volume alterations of the cell nuclei which, in turn, reflect variation in neuronal activity. Some of such variation represents a expression of the general maturation and differentiation of central nervous neurons. The time of occurrence of such variation as well as its peculiar nature also appear to suggest the existence of some special relationship to sexual maturation. This seems to support the conclusion that the basolateral amygdaloid nucleus and the ventral hippocampal formation are attached to the extrahypothalamic central nervous structures of the cerebro-hypophyseal-gonadal axis, in addition to the medial and cortical amygdaloid nuclei. However, the very nature of relationships that may exist between the two investigated components of the limbic system, on the one hand, and sexual maturation as well as gonadal function, on the other, cannot be derived from the results reported in this paper.

Amygdala

Pituitary-adrenal response to stimulation of the limbic system and lateral hypothalamus in the rhesus monkey (Macacca mulatta).

Various sites within the limbic system, frontal lobe and lateral hypothalamus of the rhesus monkey brain were electrically stimulated using chronically implanted electrodes. Increases in plasma cortisol was observed after stimulation of the lateral hypothalamic area, basolateral amygdala, pyriform cortex, hippocampus, certain sites in the cingulate gyrus and orbital part of the frontal lobe. Inactive sites included the caudate nucleus, putamen and white matter in the frontal lobe.

Amygdala

Lack of effect of various endocrine manipulations on tryptophan hydroxylase activity of individual nuclei of the hypothalamus, limbic system, and midbrain of the rat.

The tryptophan hydroxylase activity of individual nuclei of the limbic system, hypothalamus, and midbrain was determined after various endocrine manipulations in an attempt to identify specific endocrine-responsive serotonergic structures in the rat brain. Following adrenalectomy, thyroidectomy, castration, or treatment with pharmacological doses of dexamethasone, testosterone, or thyroxine, no changes in tryptophan hydroxylase activity occurred in any of the areas of brain examined. Furthermore, in large sections of the hypothalamus and midbrain, total tryptophan hydroxylase activity was unaltered, and no changes in Km for substrate or co-factor were found after adrenalectomy. This study, therefore, has failed to detect any hormonally responsive tryptophan hydroxylase activity in the rat brain. These findings suggest that endocrine-induced alterations in serotonin turnover, if they occur, do so without measurable changes in the activity or kinetic properties of tryptophan hydroxylase.

Adrenal Glands

[Relationship between the limbic system and gonadal function. Quantifiable morphokinesis of the medial amygdaloid nucleus with reference to the estrous cycle].

Karyovolumetric investigation showed that in rat the neurons of the limbic system which are associated with the Pars caudalis of the nucleus amygdaloideus medialis followed a morphokineses which was quantifiable in relation to the oestral cycle. The cell nuclei differed significantly in volume between cycle phases, which was interpreted as morphological correlation between variations in neuronal activity of metabolism. It was thought to be another point in support of the relationship between the amygdala and central-nervous structures of the cerebro-pituitary-gonadal axis.

Amygdala

Anterograde transneuronal degeneration in the limbic system: clinical-anatomic correlation.

A 64-year-old man with diffuse atherosclerosis developed an organic mental syndrome, followed by hypothalamic symptoms. Autopsy showed an old large cystic infarct involving the left temporal lobe including the hippocampus, and atrophy of the ipsilateral fornix, mammillary body, hypothalamus, mammillothalamic tract, and the anterior thalamic nucleus. The clinical deterioration and pathologic findings may be explained by anterograde transneuronal degeneration within the limbic system following the infarction.

Atrophy