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Biomedical subjects

P Coble

Publications and source records attributed to P Coble.

24 records · Page 2Linked to original sources

Electroencephalographic sleep diagnosis of primary depression.

Studies of severely depressed hospitalized patients suggest a shortened rapid eye movement (REM) latency as a specific biological marker for primary affective disease. To assess the validity of these findings, 40 outpatients referred to our Electroencephalographic Sleep Center for evaluation of depressive symptoms were studied. Concurrent with the all night EEG sleep studies, all patients received a brief clinical interview and a battery of self-rating scales. The entire sample was then subdivided into primary and secondary depressives on the basis of follow-up diagnoses. While there were no significant differences between groups on self-ratings of depressive symptoms, the group of primary depressives had significantly shorter REM latencies and higher measures of phasic REM than the secondary depressives. Furthermore, in this patient group, the delineation of primary vs secondary depression was greater than 80% on the basis of only two nights of EEG sleep. Such objective biological measures, if replicated, could provide a method for increasing the accuracy of differential diagnosis among depressed populations in clinical research.

Adult↗

Agitated psychotic depression associated with severe hypomanic episodes: a rare syndrome.

The authors present detailed clinical and follow-up data on 12 patients with agitated psychotic depressions who developed serious hypomanic or manic episodes. In six patients, each type of affective episode seemed to merge into the others, while in the other patients there was always a clear temporal distinction between each type of episode. The authors suggest that the older ages of their patients may have contributed to the syndrome. They also offer several possible theoretical explanations: the patients 1) had mixed affective states and were trapped in the "switch" state from depression to mania, 2) inherited both unipolar and bipolar diseases, 3) represent a subgroup of bipolar patients, and 4) were schizoaffective.

Adult↗

Sleep disturbance in schizophrenia. A revisit.

Rapid eye movement (REM) sleep mechanisms may play a role in the pathophysiology of schizophrenia, but results have been inconclusive and studies of sleep in schizophrena have been deficient in identifying, comparing, and differentiating between subcategories of schizophrenia. Twenty-nine hospitalized, drug-free schizophrenics were divided into three subgroupsācute, latent, and schizoaffective. The REM intensity measures and REM latency were found to differentiate significantly the schizoaffective group. Sleep-continuity indexes separated the latent and acute groups. Seven patients who later required treatment with tricyclic an tidepressants had base line REM latencies significantly lower and hospitalizations significantly more prolonged than the patients who did not require antidepressants. Sleep measurements may thus identify diagnostic subgroups of schizophrenia as well as predict which schizophrenic depressive syndrome or a concurrent affective syndrome.

Acute Disease↗

Sleep-related hormone secretion in depressed patients.

Among human subjects, sleep is a time of considerable neuro-endocrine activity and the nocturnal secretion of growth hormone is intimately related to the sleep-wake cycle. In contrast, the hypothalamic-pituitary-adrenal axis of entrained individuals shows a circadian pattern of activity with secretion increasing in the latter part of sleep. A variety of neuroendocrine disturbances have been described in depressed patients who also manifest consistent disturbances in their sleep-wake cycle. The sleep-wake cycle is capable of masking these rhythms and thereby modifying patterns of hormone secretion. The sleep disturbance in depressed patients appears to have little effect on the phase of either cortisol or growth hormone secretion but does reduce their amplitudes.

Adrenal Cortex↗