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Biomedical subjects

C N Karson

Publications and source records attributed to C N Karson.

At least 37 records · Page 2Linked to original sources

Correlation of severity of psychiatric patients' delusions with right hemispatial inattention (left-turning behavior).

Studies associate psychotic disorders with various forms of subtle inattention to the right hemispace (left-turning behavior). The authors examined the correlation between this dopamine-related sign and severity of delusions (presumably dopaminergic symptoms) in 20 psychotic patients. Delusions were significantly correlated with severity of left-turning bias, and this neurological sign accounted for 33% of the variance in severity of delusions.

Adolescent↗

Choline acetyltransferase in schizophrenia.

OBJECTIVE: To test the hypothesis that schizophrenia involves altered cholinergic tone in the pons, the authors studied post-mortem brain tissue from subjects with schizophrenia. METHOD: The authors used Western immunoblot to measure the concentration of choline acetyltransferase, an acetylcholine synthesizing enzyme, in the post-mortem brain tissue of 25 schizophrenic subjects and 28 nonschizophrenic comparison subjects. They also measured the concentration of glial fibrillary acidic protein, a protein from astrocytes, to examine the question of neurodegeneration. RESULTS: The pontine choline acetyltransferase concentrations of the schizophrenic subjects were 46% lower than those of comparison subjects, a significant difference. Glial fibrillary acidic protein concentrations did not differ between the two groups. CONCLUSIONS: The lower concentration of choline acetyltransferase in the pontine tegmentum of schizophrenic subjects compared with comparison subjects suggests involvement of pontine cholinergic neurons in schizophrenia.

Acetylcholine↗

The profile of cognitive impairment in elderly dyskinetic subjects.

Cognitive performance was assessed in 107 psychiatric patients whose age exceeded 59 years and who did not carry the diagnosis of organic mental syndrome. In this sample, tardive dyskinesia (TD) was associated with greater impairment in each of the seven cognitive domains assessed. These data do not address the etiology of TD but raise questions regarding the use of antipsychotics in young patients with cognitive impairment. Insofar as TD is an expression of basal ganglia dysfunction, these data also emphasize the critical role of relatively caudal brain structures in cognition and emotional expression.

Aged↗

Human brain fluoxetine concentrations.

Data on 22 subjects treated with fluoxetine suggest that magnetic resonance spectroscopy (MRS) of fluorine-19 can measure brain concentrations of fluoxetine/norfluoxetine in vivo. Fluoxetine accumulates in the human brain relative to plasma, with brain concentrations of fluoxetine/norfluoxetine ranging up to 10.7 micrograms/ml. Brain concentrations may reach a plateau between 6 and 8 months of treatment. The apparent concentration in brain relative to plasma is 20:1, roughly parallel to brain antidepressant concentration ratios in animal studies.

Adolescent↗

The neuropathology of schizophrenia. A focus on the subcortex.

Investigations into the neuropathology of schizophrenia have increasingly altered the perception of the illness. Early studies focused on finding consistent and discrete areas of cortical pathology in the brain material of schizophrenic patients. After nearly a half century of study, little evidence emerged from a great body of data suggesting any consistent, discrete neuropathologic finding associated with this illness. This lack of evidence led to obvious frustration on the part of researchers and movement within the psychiatric community towards significantly less brain-based theories of the genesis of schizophrenia. With the advent of new technologies such as enhanced structural imaging (CT, MRI), functional imaging (PET, SPECT), and better neuropathologic methods, the focus of schizophrenia research has again turned towards the brain. Ultimately, hypotheses regarding the cause of schizophrenia will be proved or disproved on neuropathologic evidence. Few, if any, modern schizophrenia researchers would make the argument that there is a single, consistent neuropathologic lesion that is responsible for the entire illness of schizophrenia. Current theories tend to interpret the wide variety of neuropathologic changes in this illness as evidence of disturbed nervous system maturation--either acquired or inherent--or perhaps as a response to damage with aberrant neuronal regeneration. Evidence for a neurodegenerative disorder has not proved to be compelling. Furthermore, these theories emphasize dysfunction of elements of distributed neuronal systems, including subcortical systems, not discrete "lesions." The danger with the theoretic approach of distributed systems is, as Steriade and McCarley noted so well, that the flexibility of this idea can "mean a retreat into vagueness so that hypotheses concerning the role of multiple interrelated structures in the genesis of a given behavioral state cannot be proved wrong." (p 23). Despite the risks, this approach to investigation promises to offer more than just information pertinent to schizophrenia research; it offers insights into the mechanisms of behavior as a product of integrated brain function.

Brain↗

Fluoxetine and trifluoperazine in human brain: a 19F-nuclear magnetic resonance spectroscopy study.

Fluorine-19 (19F) is a nonradioactive isotope that is well-suited to nuclear magnetic resonance spectroscopy (NMRS) and is a constituent of several medications used to treat psychiatric illnesses. Fluoxetine, a trifluorinated agent, generated a signal from brain that was readily measured by 19F-NMRS. Estimated brain concentrations ranged from 1.3-5.7 micrograms/ml in six subjects at a steady state dose of 40 mg/day. Enhanced sensitivity of 19F has been obtained by conforming the surface coil to the shape of the forehead. Hence, at the current state of development, 19F-NMRS can be applied to clinical questions relevant to concentrations of fluoxetine in brain. We also report observation of NMRS signals from fluorinated neuroleptics in a number of patients at steady state. These signals continue to be difficult to obtain, although a correlation between dose and estimated brain concentrations is suggested.

Adult↗

Outcomes and costs of two VA inpatient treatment programs for older alcoholic patients.

One hundred thirty-seven older alcoholic patients were randomly assigned to two different inpatient treatment programs at a Veterans Affairs medical center and followed for one year after discharge. The older alcoholic rehabilitation (OAR) program was operated by a tolerant staff that specialized in treating elderly alcoholics. Treatment included reminiscence therapy with goals of developing patient self-esteem and peer relationships. The traditional care program emphasized confrontation to focus on patients' past failures and present conflicts. Patient care costs were slightly lower (2.5 percent lower) in the OAR program than in the more traditional program, and OAR patients were 2.1 times more likely to report abstinence at one year. Response to the OAR program was best for patients over 60 years of age.

Aged↗

The brain stem reticular formation in schizophrenia.

Post-mortem brain tissue was obtained from four patients with schizophrenia and five controls to study cell groups in the brain stem reticular formation. Cholinergic neurons in the pedunculopontine nucleus (PPN) and lateral dorsal tegmental nucleus (LDT) were labeled using nicotinamide adenosine dinucleotide phosphate (NADPH)-diaphorase histochemistry, while catecholaminergic neurons of the locus ceruleus (LC) were labeled immunocytochemically using an antibody to tyrosine hydroxylase. In schizophrenic patients, there were increased numbers of neurons in the PPN labeled by NADPH-diaphorase and reduced cell size in the LC. These results implicate the reticular formation as a possible pathophysiological site for at least some patients with schizophrenia. This also suggests that some of the deficits observed may be based on faulty neurodevelopment.

Aged↗

Blink rates in schizophrenia.

In schizophrenia, blink rates are frequently elevated and the peak of the electroencephalographic alpha rhythm is often absent or of a lower frequency. Emerging evidence suggests that both blinks and the alpha rhythm may be controlled by a linked neuroanatomical circuit that begins in rostral pons and involves several subcortical structures as well as the occipital cortex. Blink-alpha abnormalities in schizophrenia further suggest that this blink-alpha neurocircuit may be a locus of the pathophysiological process of this disorder.

Arousal↗

Dyskinetic movements, cognitive impairment, and negative symptoms in elderly neuropsychiatric patients.

The presence or absence of tardive dyskinesia, cognitive status, and psychopathology were assessed in a group of elderly male psychiatric patients (N = 49) in a nursing home setting. Twenty-five patients were found to have tardive dyskinesia, which was associated with a greater degree of cognitive impairment and negative symptoms. This finding was not related to obvious macroscopic organic pathologies, which were less prevalent in the dyskinetic patients. In fact, patients with frontal lesions (primarily lobotomies) had a significantly lower prevalence of tardive dyskinesia.

Aged↗

High prevalence of visual hallucinations in research subjects with chronic schizophrenia.

The authors examined the prevalence of visual hallucinations in severely ill hospitalized research subjects with carefully diagnosed chronic schizophrenia and found it to be high. A chart review of 100 discharged subjects revealed documentation of visual hallucinations in 32%, and a prospective examination of 43 additional subjects revealed a history of visual hallucinations in 56% (N = 24). Also, the fact that in 43% of the patients with visual hallucinations the history of visual hallucinations was first documented during the research ward work-up suggests that clinicians frequently do not inquire about visual hallucinations in patients with chronic schizophrenia.

Chronic Disease↗

Blinking.

Spontaneous blink rates are controlled by a definable neural system originating in PPRF with facilitatory modulation from SN and superior colliculus and inhibitory modulation provided by cerebellum and occipital cortex. The thalamus may also be involved but the result of its influence is not clear. Reflex blinking is often reduced when spontaneous blink rate is increased and the reverse applies as well. The anatomic control of reflex is primarily in structures in the caudal half of pontine tegmentum and rostral midbrain. However, SN and cerebellum and other structures that regulate blink rate also modulate reflex blinking. Neurochemical control as determined by neuropharmacological experiments is exerted by dopaminergic, cholinergic and GABAergic systems of brain stem. Dopamine activity correlates directly with blink rate whereas agonism of the other two relevant neurotransmitter systems may inhibit blink rate. Clinical implications in central nervous system disease are currently restricted to Parkinson's disease, schizophrenia and autism. In the former illness, reduced blink rate signifies a worsening of the illness and a significant increase in blink rate in patients treated with dopamine agonist may be a harbinger of agonist-induced dyskinesia. In schizophrenia, increased blink rate, even in medication-naive subjects, may signify involvement of the structures that regulate blinking. This is important because these structures are rarely invoked as sites of potential pathophysiological import in schizophrenia. Similar considerations apply to autism except that increased blinking more clearly differentiates this disorder from other forms of retardation.

Animals↗

Computerized EEG in schizophrenia.

Despite advances in the processing and display of electroencephalographic (EEG) data, the utility of this inexpensive and noninvasive technique in the investigation of schizophrenia has not been well established. We studied the resting EEG in 19 medication-free patients with chronic schizophrenia and 21 normal controls. Patients with schizophrenia had increased delta activity which was not specific to the frontal regions. Schizophrenic patients also had increased fast activity, and this increase was left sided for the fast beta frequency. Alpha frequency was reduced (less than 10.2 Hz) in 7 of 16 schizophrenic patients. Moreover, those patients with an alpha frequency reduction had a significantly larger mean cerebral ventricular size. These results indicate that the EEG does detect neurophysiological changes in schizophrenia. Our understanding of these changes may be enhanced by other neuroimaging techniques such as computed tomography.

Adult↗

Cerebral structural pathology in schizophrenia: evidence for a selective prefrontal cortical defect.

To replicate earlier findings of central and cortical cerebral structural abnormalities and to further examine specific prefrontal cortical irregularities in schizophrenia, the authors examined computerized tomographic (CT) scans of 71 patients with chronic schizophrenia and 30 normal volunteer control subjects for ventricle-brain ratio (VBR), third ventricle width, and prominence of cortical markings in a generalized (parieto-occipital) distribution compared with the prefrontal area. Patients showed significantly larger VBRs and third ventricle widths than control subjects. Patients also showed significantly greater prefrontal markings in terms of both the number of individuals affected and the degree of difference. The relative differences on measures of VBR and prefrontal atrophy did not appear gender related, but the difference in third ventricle width between schizophrenic and control women was greater than that between schizophrenic and control men.

Adult↗

Alpha frequency in schizophrenia: an association with enlarged cerebral ventricles.

Low alpha frequency (less than 10.2 Hz) occurred more frequently in medication-free schizophrenic patients than in normal control subjects, as determined by quantitative EEG analysis. Furthermore, those patients with low alpha frequency had significantly larger lateral ventricles, as measured by CT scan, than did other schizophrenic patients (mean +/- SD ventricle-brain ratios = 9.8 +/- 1.9 versus 5.0 +/- 2.4; p less than 0.01). This finding suggests the existence of a relationship between cerebral structural pathology and the alpha rhythm that may be based on involvement of alpha-generating structures which border the cerebral ventricles. Future EEG studies of schizophrenia may resolve these questions in the context of other brain findings.

Adult↗

Physiology of normal and abnormal blinking.

Blink rate is determined by many factors, including local eye irritation, the state of the corneal tear film, factors related to general visual function, the amount of general facial movement, cognitive variables, and the level of arousal. These factors appear to be mediated by several neuroanatomic structures (Table 2). The timing and the nature of the interrelationship between neuroanatomic structures during blinking remains to be determined. Dopamine is the neurotransmitter that is most strongly linked to blinking, exerting its effect on blinking primarily through the D2 receptor. The reduced rate in Parkinson's disease seems to implicate the nigrostriatal system. Perhaps efferents of the nigrostriatal system, such as those to the superior colliculus, are primarily involved, as suggested by the reduced blinking in PSP. Changes in blinking produced in the sylvian aqueduct syndrome further suggest involvement of the periaqueductal structures. At best, however, these conclusions are tentative, as the biochemical neuroanatomy will probably prove more complicated than suggested by the initial studies using the dopaminergic paradigm. Nevertheless, insofar as blink rate represents a noninvasive probe of CNS dopamine activity, the failure to associate dyskinesias (except levodopa-induced dyskinesia) with increased blinking, indicates that the pathophysiology of these conditions may not involve hyperactivity of CNS dopamine systems. Fittingly, the current clinical potential of blink rate seems maximal in parkinsonism, both to follow the severity of the illness and to monitor side effects of dopamine agonist treatment.

Animals↗

Computed electroencephalographic activity mapping in schizophrenia. The resting state reconsidered.

Several topographic mapping studies of electroencephalographic (EEG) power spectra have reported increased slow (delta) activity in the frontal regions of schizophrenic patients. Using supraorbital and lateral canthus electrodes to detect eye movement, we deleted EEG epochs during eye movement in 15 medication-free patients with schizophrenia and in 13 normal control subjects. Power spectral analysis of the 28-channel EEG demonstrated a diffuse mild increase in delta activity in schizophrenic patients compared with normal control subjects but no tendency for frontal localization of this slow activity. There were no differences between schizophrenic patients and normal control subjects in other frequency bands. These results, which replicate earlier findings of increased delta activity in schizophrenia, emphasize the importance of excluding the slow activity due to eye movement in the comparisons of summed EEG spectra. This emphasis can best be ensured by equating the summed spectra from extraocular movement channels of experimental and control groups.

Adult↗