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Query: UMLS:C0037315 (sleep apnea)
8,000 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Information which has emerged thus far relates to the overall transmitter mechanisms of sleep. The data, while conflicting, point to the involvement of many neuroregulators at numerous integrative levels of the process. However the long term question still remain: what triggers and maintain sleep, what stops sleep, what occurs to the body and brain during sleep--in essence, why sleep? These questions are now problems for behavioral neurochemists, whereas in a previous era, they were problems for philosophers. Unfortunately, our answers to date, while in another idiom, have hardly been more complete or satisfying. To answer these questions, it will be necessary to understand, in detail, the manner in which neurobiochemical processes relate to the functional physiology of sleep. Although existing studies have given invaluable insight into the neurochemical anatomy of sleep, we have only recently acquired the technical and biochemical expertise necessary to investigate sleep as it occurs normally. Future research must focus on the dynamic changes associated with the regulatory mechanisms of neurotransmitters. Many questions can be asked. With sleep transitions, what changes occur in transmitter content, synthesis, or release? Are there changes in metabolic pathways, reflecting a shift from intra- to interneuronal metabolism? What changes occur in pre- and postsynaptic neurotransmitter receptors to affect sensitivity? What constraints do genetic (245) and environmental (246) factors impose upon these mechanisms? Knowledge of such parameters will allow us to construct more complete models of the neuroregulatory basis of sleep and waking. However, as we acquire this knowledge, we must avoid the temptation of assuming causation when the evidence merely shows correlation. Neuroregulation are involved in the control of number different behaviors; and, at present, we have few, if any, methods of establishing causative links between a specific neuroregulator and a specific behavioral state. Yet, even without an understanding of what "causes" sleep, we may be able to develop pharmacological agents which permits discrete alteration of sleep mechanisms in a more physiological and specific manner. This potential for manipulation of sleep is of obvious importance in illnesses such as insomnia, narcolepsy, and sleep apnea (247, 248). In addition, it may be valuable in the treatment of such conditions as psychosis and depression, where sleep disturbances are an important component of the illness. For example, delirium tremens might be best understood as a psychotic episode which is the result of an aspect of sleep emerging into wakefulness. The range and breadth of both the basic questions and the potential application of sleep research portend an exciting future for this field.
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PMID:Neuroregulators and sleep mechanisms. 16 54

Primary sleep disorders include narcolepsy, the Pickwickian syndrome, sleep apnea in infants and other rare conditions. Secondary sleep disorders occur in depression, alcoholism, endocrinopathies, heart failure and pregnancy. Medical symptomatology often increases during rapid-eye-movement (REM) sleep, when physiologic activity is high. Insomnia, the most common sleep disorder, requires careful work-up, attempts at environmental manipulation and judicious short-term pharmacotherapy. Pharmacologic manipulation of sleep is beset with complications. A basic understanding of properties and side effects of the sleep-inducing drugs is needed in order to select the optimal agent.
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PMID:Sleep disorders and insomnia. 62 43

Twenty-seven subjects with insomnia or diurnal hypersomnolence presented a sleep apnea syndrome when their respiration was systematically checked during sleep. These sleep-induced respiratory abnormalities were completely occult and pulmonary function tests performed during wakefulness were normal. The patients, all non-obese, presented serious pulmonary artery pressure changes which were directly connected with the repetitive sleep apneas. Half of the patients also had systemic hypertension. Two children (aged 11 and 15) underwent tracheostomies which by-passed the sleep-induced obstruction. Systemic hypertension was reduced after surgery.
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PMID:[Can an anomaly of the central nervous system be responsible for hemodynamic disorders]. 115 95

Of 250 patients referred to the Stanford Sleep Disorders Clinic, 35 were diagnosed for a sleep induced apnea syndrome. Thirty of them (27 adults and 3 children) were nonobese and complained of a sleep disorder. In 12 patients (9 adults and 3 children) extensive cardiorespiratory workups were done during sleep and wakefulness. Three types of sleep induced apnea syndrome were identified: diaphragmatic (or central), obstructive and mixed. The diaphragmatic type was predominant in sleep apnea insomnia; obstructive was predominant in sleep apnea hypersomnia. Hemodynamic changes were documented during sleep. Tracheostomy, done in two cases, improved the sleep induced symptomatology.
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PMID:Sleep apnea syndrome. Can it induce hemodynamic changes? 115 91

A 48-year-old female with multiple sclerosis (MS) accompanied by intractable hiccups of over one month' duration and the sleep apnea syndrome was reported. This MS patient had been well controlled until September 16, 1991 when she experienced nausea, vomiting and hiccups. The patient was admitted to Kawasaki Medical School Hospital on October 9, 1991. A physical examination revealed intractable hiccups. T1-weighted MRI showed a low and T2-weighted image disclosed a high signal intensity area in the tegmentum of the medulla oblongata. The intractable hiccups and vomiting improved with intravenous high dose methylprednisolone injection therapy. The following day, she complained of insomnia and her family observed severe snoring and apnea during the night. These symptoms and the results of a breathing monitor were compatible with the sleep apnea syndrome. These symptoms disappeared following the administration of amitriptyline. There have been few reports of the combination of intractable hiccups and the sleep apnea syndrome in MS. The MRI findings suggest that the causative lesion of these symptoms is in the tegmentum of the medulla oblongata.
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PMID:[A case of multiple sclerosis with intractable hiccups and sleep apnea syndrome]. 129 Nov 66

Very few epidemiological surveys have specifically studied relationships between sleep disturbances and psychiatric diseases. In this review, we preferred to use the classification proposed in 1979 by the Association of Sleep Disorders Centers. It includes four main categories: insomnias, excessive sleepiness, troubles of the wake/sleep schedule and parasomnias. Evaluating psychiatric disorders among general populations is easier owing to DSM III and DSM III-R criteria, but there are not equivalent criteria in evaluating sleep disorders. It is almost impossible to realize polysomnographic recordings in large samples, therefore sleep disorders are to be detected by questionnaires. It has been shown that there is a good correlation between self-reports and polysomnographic recordings among clinical and general samples. The prevalence of insomnia, defined as difficulties of initiating and maintaining sleep, is estimated between 9 and 31%. It is higher among women, elderly people, separated and divorced subjects, and low educational levels' groups. It has to be noticed that polysomnographic records of some subjective insomniacs are not different from those of good sleepers, sleep latency excepted. These subjective (and not objective) insomniacs have high scores in anxiety scale, depression scale, or psychologic distress. Insomnia is more frequently noted amongst subjects with psychiatric diagnoses, especially major depressive disorders and anxiety disorders. Depressive disorders are present in 21-40% of insomniacs versus 0-1% of non-insomniacs, and anxiety disorders in 13-24% of insomniacs versus 3-10% of non-insomniacs. In depressive disorders, sleep alterations are frequently noted: they are difficulties of initiating and maintaining sleep, decreasing proportion of slow-wave sleep, decreasing time of REM (rapid eye movement) sleep and REM sleep latency, and increasing density of REM sleep. Of these modifications, the last two ones seem to be specific for depression. The relationships between sleep, aging and depression are more complex than previously noted. For example, differences between depressed and non-depressed subjects depend on the age of the population. The prevalence of hypersomnia is lower than the insomnia's. It varies between 2 and 4%. It is more frequently noted among young people, and never married subjects. Two specific aetiologies must be looked for: sleep apnea syndrome and narcolepsy. These diagnoses are respectively found in 45% and 24% of hypersomniacs examined in American Sleep Centers. Hypersomnias are objectived by the Multiple Sleep Latency Test, which measures the physiologic sleep tendency.(ABSTRACT TRUNCATED AT 400 WORDS)
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PMID:[Sleep disorders in psychiatric diseases. Epidemiological aspects]. 129 83

Wakefulness and sleep are antagonistic states competing for the domain of brain activity. Non-REM sleep and REM sleep are different states of being, sustained by activity in brainstem nuclei, hypothalamus, basal forebrain, and thalamus. Such complex phenomenology is subject to many alterations grouped in the new International Classification of Sleep Disorders. The insomnias are the result of interacting psychosocial, psychophysiologic, neurodevelopmental, and medical factors. Proper perspective of each factor provides the clinical strategies to approach medically the symptom-complex of insomnia. The most common cause of daytime hypersomnia is chronic sleep deprivation. Obstructive sleep apnea responds to nasal CPAP, but the failure rate approaches 30%. In intolerant patients BiPAP and surgical remedies should be considered. Motor and behavioral abnormalities of sleep may be linked to REM sleep as in the REM sleep behavior disorder. Paroxysmal nocturnal dystonia and nocturnal wanderings may be associated with epilepsy. Intrusions of one state of being (wakefulness, non-REM sleep, and REM sleep) into another result in mixed, poorly defined, or only partially developed states. Dissociation of states may be responsible for confusional arousals, hallucinations, and cateplexy. Senile degeneration of the suprachiasmatic nuclei may underlie the circadian rhythm changes in old age and the "sundown" syndrome in demented patients. Misalignment of the hypothalamic pacemaker causes dysregulation of sleep-related physiologic and behavioral variables. Exposure to bright light retrains the pacemaker in night-shift workers, transmeridian travelers, and in patients with seasonal affective syndrome. Benzodiazepine compounds are very effective hypnotics, but should be used sparingly in the elderly to avoid falls, memory lapses, and aggravation of a preexisting sleep apnea syndrome. Sleep laboratory evaluations are indicated in patients with hypersomnia, suspected sleep apnea syndrome, motor-behavioral disorders of sleep, and in many individuals complaining of insomnia.
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PMID:Update on disorders of sleep and the sleep--wake cycle. 160 36

Quality of sleep influences the level of daytime functioning, including stress levels, psychosomatic complaints, general health, and overall well-being. As people age, they complain more about disturbed sleep, insomnia, increased time in bed, and sleep fragmentation. These complaints can be related to circadian rhythm desynchronization, hypnotic or other medication use, chronic bedrest, napping, dementia, or to sleep apnea, a disorder of respiratory cessation which is quite prevalent in the elderly. We review here the results of 12 years of research on sleep in the elderly. In studies of three populations of elderly, it was found that between 24% and 42% had five or more apneas per hour of sleep and 4%-14% had 20 or more apneas per hour of sleep. Since apnea is related to dementia and even to mortality, this high prevalence of apnea is of extreme importance.
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PMID:Prevalent sleep problems in the aged. 176 Apr 57

Insomnia is one of the most common complaints encountered by the primary care physician. Yet, in many cases, physicians treat the symptom of insomnia rather than evaluating and treating the underlying causes of insomnia. Because the subjective complaint of insomnia does not always correlate with evidence of objective sleep disruption, a careful history and evaluation are required. Assessment of the duration of insomnia and quantification of the impact of nocturnal sleep disruption on daytime functioning provide the most reliable indices of severity. Primary insomnia may be due to a number of different causes, such as poor sleep hygiene or circadian rhythm disruption. Insomnia may also be the presenting symptom of other primary sleep disorders, such as sleep apnea syndrome or nocturnal myoclonus, or of a variety of medical or psychiatric illnesses. The treatment of the patient with insomnia should address the underlying cause, when identifiable. When the cause cannot be identified, treatment should be conservative; nonpharmacologic therapies should be used whenever possible. When pharmacologic approaches are indicated, short-acting benzodiazepines should be administered in concordance with strict prescribing guidelines. Frequent follow-up is necessary to ensure continued therapeutic efficacy of the prescribed therapy.
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PMID:Detection and assessment of insomnia. 179 May 41

One male and two female cases in a family of Machado-Joseph disease were reported. Two cases showed typical symptoms that are characterized by bulging eyes, ophthalmoplegia, dystonia, ataxia, spasticity of extremities and amyotrophy, and were consistent with Type II (Rosenberg et al). But another one lacked diversity of the symptoms, showing mainly progressive cerebellar ataxia for over 10 years. We pointed out the existence of a new type of MJD case exhibiting only progressive cerebellar ataxia over a long period. A female patient had dyspnea and insomnia after 20 years in her clinical course, and central sleep apnea was revealed by respiratory monitor. But, the apnea and irregular respiration appeared in both awake and sleep stages. We described the importance of attention to the apnea as a new complication of Machado-Joseph disease.
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PMID:[A family of Machado-Joseph disease with a patient having frequent apnea in all day]. 191 27


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