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Biomedical subjects

V P Zarcone

Publications and source records attributed to V P Zarcone.

At least 19 recordsLinked to original sources

Cerebrospinal fluid prostaglandins and corticotropin releasing factor in schizophrenics and controls: relationship to sleep architecture.

Sleep abnormalities have been consistently observed in patients with schizophrenia. Elevated levels of corticotropin releasing factor (CRF) and prostaglandins (PGs) in the cerebrospinal fluid (CSF) of patients with schizophrenia have been reported, and these neurochemical substances, known to modulate sleep in experimental animals, may play a role in these sleep abnormalities. In this study, we measured PGD2, PGE2, PGF2alpha and CRF levels in the CSF of 14 unmedicated schizophrenic patients and 14 age- and sex-matched control subjects. Polysomnographic recordings were also carried out for each subject. As expected, the sleep of the schizophrenic subjects significantly differed from that of the controls; schizophrenic subjects had a longer sleep onset latency, slept less, spent fewer minutes in stage 2 sleep and had a lower sleep efficiency. We could not, however, detect any differences in CSF CRF and PG levels between normal and schizophrenic subjects, nor could we find any correlation between CSF variables and sleep parameters in the schizophrenic subjects and the non-psychiatric controls. These results do not favor the hypothesis of a role for CRF or PGs in the pathophysiology of sleep disturbances in schizophrenia.

Adult↗

BPRS symptom factors and sleep variables in schizophrenia.

To examine the relationship of clinical symptoms to sleep architecture, polysomnography and clinical ratings were carried out in 20 male psychiatric in-patients who met Research Diagnostic Criteria for schizophrenia. Clinical symptoms were assessed by the Brief Psychiatric Rating Scale (BPRS). Four BPRS sub-factors, i.e., 'Thinking Disturbance', 'Withdrawal/Retardation', 'Hostility/Suspiciousness', and 'Anxiety/Depression' were correlated with five components of sleep architecture, namely, sleep onset latency, total sleep time, total slow wave sleep minutes (the summation of visually scored stages 3 and 4), total REM minutes, and REM latency. Partial correlations were computed to control for the effects of age. Of the 20 correlation coefficients computed, only one was statistically significant after Bonferroni correction, namely, sleep onset latency was positively correlated with the 'Thinking Disturbance' factor. This finding is consistent with studies showing that psychotic exacerbation is associated with reduced sleep efficiency. In contrast to this cross-sectional design, longitudinal studies are more likely to clarify the relationship of sleep architecture to changes in clinical state.

Adult↗

Slow wave sleep and computed tomographic measures of brain morphology in schizophrenia.

To test the hypothesis that slow wave sleep in schizophrenia is inversely correlated with ventricular system volume, polysomnography and computed tomographic (CT) brain imaging were carried out in 14 psychiatric patients who met Research Diagnostic Criteria for schizophrenia (h = 11) or schizoaffective disorder (n = 3). Three measures of ventricular system volume were analyzed: (1) raw ventricular volume expressed in cm3; (2) ventricle-to-brain ratio; and (3) ventricular volume corrected for normal variation in age and head size expressed as a standardized (z) score. All three quantifications of ventricular volume were significantly and inversely correlated with visually scored measures of stage 3 and stage 4 sleep. This finding suggests that the etiology of slow wave sleep deficits in schizophrenia is related either directly or indirectly to underlying brain dysmorphology.

Adult↗

Middle ear muscle activity (MEMA) in schizophrenia using a noninvasive technique.

Rapid eye movement (REM) sleep middle ear muscle activity (MEMA) was recorded in four diagnostic groups: schizophrenics (n = 18), schizoaffectives (n = 8), depressives (n = 11) and healthy, nonpsychiatric controls (n = 10). Previous work suggested that schizophrenics have higher than normal rates of REM sleep MEMA; this previous study employed the MEMA recording technique of impedance audiometry, which involves a 90-dB stimulus probe tone. The present study, which utilized a silent, pressure-sensitive transducer (i.e. no acoustic stimulus), was undertaken to determine if the stimulus tone might have elicited excess MEMA in the schizophrenics. In this present study, we observed no significant differences in REM sleep MEMA among the four diagnostic groups, suggesting that REM sleep MEMA cannot be used as a biological marker to differentiate clinical disorders. This failure to replicate our previous finding of high MEMA rates in schizophrenics is likely due to sampling error; alternatively, high REM sleep MEMA rates might be elicited in a subgroup of schizophrenics with an acoustic stimulus.

Acoustic Impedance Tests↗

The Sleep Disorders Questionnaire. I: Creation and multivariate structure of SDQ.

The development of the Sleep Disorders Questionnaire (SDQ) from the Sleep Questionnaire and Assessment of Wakefulness (SQAW) of Stanford University is described in detail. The extraction of the best question items from the SQAW and their subsequent rewording in the SDQ to insure greater completion rates are described. Two item test-retest reliability studies are reported on 71 controls and on 130 sleep-disorder patients, which confirmed adequate reliability. To create multivariate scoring scales, SDQ was then given in a multicenter study to 519 persons, 435 of whom were sleep-disorder patients with full polysomnography. Canonical Discriminant Function Analysis was employed, which resulted in four clinical-diagnostic scales: SA for sleep apnea, NAR for narcolepsy, PSY for psychiatric sleep disorder and PLM for periodic limb movement disorder. Each was adjusted for male and female responses and transformed to a percentile using the observed distribution of raw scores. Using Receiver Operating Characteristics analysis, cutoff points were determined for each scale to maximize its sensitivity and specificity. Positive and negative predictive values were also calculated. The SA and NAR scales proved to be the most discriminating.

Adult↗

The effect of chronic alprazolam on sleep and bioamine metabolites in depression.

Alprazolam administered for 43 days in doses of 6 to 10 mg/day had an antidepressant effect in four of nine depressed patients. Decreases in slow wave sleep, increases in rapid eye movement (REM) latency, and decreases in REM minutes and percent and REM sleep eye movements were found in the group as a whole. The drug had a general hypnotic effect with a trend toward increased total sleep time. Nonsignificant changes in the concentrations of 3-methyl-4-hydroxyphenylglycol and homovanillic acid in the cerebrospinal fluid (CSF) were qualitatively similar to those found after treatment with tricyclic antidepressant drugs; however, only the larger decreases in CSF 5-hydroxyindoleacetic acid achieved statistical significance. Baseline sleep and CSF metabolites and changes in these measures on drug did not predict the therapeutic effects of alprazolam.

Adult↗

Rapid eye movement sleep eye movements in schizophrenia and depression.

OBJECTIVE: To investigate the specificity of rapid eye movement (REM) sleep eye movement measures in schizophrenics, depressives, and nonpsychiatric controls. DESIGN: Survey. SETTING: Inpatient psychiatric hospital. STUDY PARTICIPANTS: Volunteer sample of male veterans who met Research Diagnostic Criteria (RDC) for schizophrenia (n = 21) or major depressive disorder (n = 24), or male veterans recruited from the community with no history of psychiatric illness (n = 13). Patients with a concurrent RDC diagnosis of alcoholism were excluded. After data collection, three schizophrenics, two depressives, and one nonpsychiatric control were eliminated because of two or fewer REM periods on either of the two recording nights. INTERVENTION: None. MAIN OUTCOME MEASURE: Computer-detected total night and within-night measures of REM sleep eye movement density, ie, the ratio of eye movement counts to stage REM minutes. RESULTS: Using a 95% confidence interval, schizophrenics, depressives, and nonpsychiatric controls did not differ in total night or within-night measures of eye movement density. Within nights, eye movement density increased across REM periods in the schizophrenics and nonpsychiatric controls; the depressives showed a flatter within-night distribution associated with their older age. CONCLUSIONS: A broad range of REM sleep eye movement densities characterize both schizophrenics and depressives and substantially overlaps the normal range. Abnormalities of REM sleep eye movement activity should not be considered a biological marker for affective illness.

Adult↗

Markovian analysis of phasic measures of REM sleep in normal, depressed, and schizophrenic subjects.

Rapid eye movement (REM) phasic activity refers to brief events that occur in periods of REM sleep, such as individual eye movements (EMs). REM density (RD) is the best-known measure of such activity, although reports of RD differences among normal, depressed, and schizophrenic subjects have been equivocal. RD is a measure with a large variability, and its physiological substrate is not known. We sought a more consistent measure which might also suggest the underlying physiology. Using the time intervals between individual EMs, we calculated empirical probability distributions which showed that EMs fell into two subgroups or states: "burst" and "isolated." Then, a novel Markov chain model of sequential transition between the states was calculated for nine normal, eight schizophrenic, and seven depressed male veterans. A significantly higher probability of remaining in the burst state was observed in both patient groups. The actual number of EMs in the isolated state was nearly identical in the three groups. Possible pontine neurochemical explanations involving cholinergic and serotonergic mechanisms are discussed.

Brain↗

An inexpensive alternative for recording middle ear muscle activity (MEMA) during sleep.

In past studies of middle ear muscle activity (MEMA) in sleep, one of two methods of recording has been used: an acoustic impedance bridge (AIB) or a miniaturized pressure transducer (MPT). A low-cost and less fragile piezoresistive pressure transducer was tested to determine its practicality in recording MEMA during sleep in humans. A specialized ear mold accommodating both types of pressure transducer was custom-fitted for six subjects. The sleep of each subject was analyzed epoch by epoch for one night to determine comparability of the two transducers. In no case did either transducer indicate a MEMA without confirmation by the other. It is recommended that this type of transducer would be practical for researchers interested in recording MEMA in sleep.

Acoustic Impedance Tests↗

MMPI measures of impulsivity and depression correlate with CSF 5-HIAA and HVA in depression but not schizophrenia.

Recent studies have linked impulsivity with CSF concentrations of both 5-hydroxyindoleacetic acid (5-HIAA) and homovanillic acid (HVA). One work found a negative correlation between the MMPI psychopathic deviate (Pd) scale and 5-HIAA in personality disordered men (Brown et al., 1982). We found that the 5-HIAA/Pd correlation extends (P less than 0.05) to unmedicated depressed patients (n = 21). A trend was found between HVA and Pd in depression. There was no relationship between either metabolite and the Pd scale in unmedicated schizophrenics (n = 24). A significant inverse correlation was found between the MMPI depression scale and CSF HVA but not 5-HIAA in the depressed patients.

Adult↗

Evidence for the role of serotonin in the regulation of slow wave sleep in schizophrenia.

Nocturnal sleep data and cerebrospinal fluid (CSF) concentrations of the biogenic amine metabolites were measured in 20 male schizophrenics. Consistent with other reports of a stage 4 sleep deficit in schizophrenia, measures of stage 4 sleep were low relative to normal reference data. Measures of stage 4 sleep in absolute amounts and corrected for total sleep were positively correlated with CSF concentrations of the serotonin metabolite, 5-hydroxyindole acetic acid (5-HIAA). CSF 5-HIAA was also correlated with measures of stage 3 sleep and total sleep time suggesting that serotonin may modulate the amount of slow wave sleep broadly defined and possibly sleep duration. Total stage 4 time was also correlated with the dopamine metabolite HVA; consequently, the specificity of the finding might be limited. Also, in this study, schizophrenia was used as a particular model for stage 4 deficits; however, the association of measures of stage 4 sleep with CSF levels of 5-HIAA is not thought to be specific to schizophrenia.

Adult↗

Middle-ear muscle activity (MEMA) and its association with motor activity in the extremities and head in sleep.

Middle-ear muscle activity (MEMA) in sleep was simultaneously recorded from both ears using extratympanic manometry. Head movement, speech movements, ankle flexion and wrist movement were monitored by electromyographic recording using surface electrodes at the back of the neck, second laryngeal notch, anterior tibialis and forearm muscle. Motor events recorded from these electrode placements were examined for correlation with MEMA to test the hypothesis that the middle-ear muscles are activated in conjunction with other motor activities, aside from eye movements, by a central motor command system. Phi coefficients were calculated for each subject; all were positive, thus indicating an association between MEMA and other noneye movement motor events. These results suggest that there is a central phasic motor system responsible for MEMA and associated phasic motor activity in sleep.

Adult↗

Sleep patterns in borderline personality disorder.

Sleep patterns of borderline patients with and without a history of affective disorder were compared to each other and to normal reference data. The three groups could not be distinguished in terms of REM latency because a wide spread of values was seen within each group. Borderlines were different from normal controls in other aspects of sleep architecture; they had less total sleep, more stage 1 sleep, and less stage 4 sleep. If one assumes that REM latency is a biological marker for mood disorder, then our results do not support the hypothesis that borderline personality disorder is a variant of affective illness. However, other data suggest that REM latency should not be used to validate the presence of affective illness.

Adult↗

REM latency in Alzheimer's disease.

Latency to the first episode of rapid eye movement sleep (REML) has been proposed as a potential biomarker for Alzheimer's disease (AD). In this study, we compared REML values from 28 AD patients and 28 age- and sex-matched controls. We employed multiple definitions of REML and multiple cutoffs to classify patients and controls. Results indicated that the best REML definition and optimal cutoff criterion resulted in only 65% correct classifications. We discuss the longer REML in AD patients relative to controls in terms of both overall sleep disturbance and selective deterioration of the REM-cholinergic system. As REML may be relatively short in other forms of psychopathology (e.g., affective disorders), REML may still hold promise in the differential diagnosis of dementia and pseudodementia.

Aged↗

Abnormal rapid eye movement latencies in schizophrenia.

Several previous studies have observed short rapid eye movement (REM) latencies in schizophrenic patients without major affective disorder. This study was designed to meet several of the criticisms of those previous studies. Using Research Diagnostic Criteria, we compared the sleep patterns of schizophrenic patients with those of normal controls and patients with major depressive disorder and schizoaffective disorder. All patients were medication free, and REM latency was explicitly defined using both strict and lenient criteria. Chronically ill paranoid or undifferentiated schizophrenics could not be distinguished from patients with major depressive disorder or schizoaffective disorder using any definition of REM latency. These results were not due to longer REM latency in the particular sample of patients with major depressive disorder. They had abnormally low REM latencies; however, the schizophrenic patients showed similar decrements. These data cast serious doubt on the specificity of short REM latency as a biological marker for major depressive disorder.

Adult↗

Brief consultation and stress management treatments for drug-dependent insomnia: effects on sleep quality, self-efficacy, and daytime stress.

Brief consultation and stress management treatments to help insomniacs withdraw from sleep medication were evaluated with 12 drug-dependent women. The effects of treatment were assessed by all-night home polysomnographic recordings and questionnaires. All 12 subjects succeeded in withdrawing from sleep medication and showed a number of improvements independent of the treatment received: (a) decreased latency to sleep onset, (b) increased minutes of Stage 3 sleep and total slow-wave sleep, (c) increased self-efficacy, and (d) reductions in some types of daytime stress. Subjects in the stress management treatment compared to those in the brief consultation program showed (a) significantly greater improvement on latency to sleep onset, total wake time, total dark time, and sleep efficiency, (b) less of an increase in minutes awake after sleep onset, and (c) greater reductions in anger and depression. Results of 6- and 12-month follow-up and partial replication of the brief consultation program are reported.

Adult↗