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[Sleep disorders in Parkinson's disease].

Approximately 74-94% patients with Parkinson's disease have sleep disorders: such as frequent awakening, excessive daytime sleepiness, nightmares, nocturnal cramps, REM sleep behavior disorders and so on. In contrast, the relationship between physiological mechanism of sleep and the dopamine systems are still obscure, because the dopamine systems are not directly related neither initiating or maintaining sleep system nor awaking system. However, most of all the dopaminergic drugs were reported to induce sleepiness or sleep attacks in the patients with Parkinson's disease. So, physicians must inform patients with Parkinson's disease warning the excessive daytime sleepiness and sleep attack. In this article, I suggest the mechanisms of sleep disorders on Parkinson's disease from the physiological points of view, and how to manage these problems.

Humans↗

Sleep Disorders in the Elderly.

Sleep disturbances in the elderly may not be a result of the aging process per se, but rather are likely caused by many factors that are amenable to treatment. These factors include medical and psychiatric problems, medications, and circadian rhythm changes, all of which can cause difficulties during sleep at night, and can lead to complaints of insomnia. Other factors that cause disturbances include a high prevalence of specific sleep disorders such as sleep disordered breathing (SDB), periodic limb movements during sleep (PLMS) and rapid eye movement (REM) sleep behavior disorder (RBD). Although these disorders are more prevalent in the older than younger population, they are not exclusive to this age group, and treatment options that are applicable to young adults are also applicable to older adults. On the other hand, dementia and Parkinson's disease are two neurologic disorders that are almost exclusive to the elderly and most often involve sleep disturbances. Because there are many causes of sleep complaints, when considering treatment options one must identify the underlying problem. If caused by illness, effective treatment of a specific medical or psychiatric problem should help alleviate the sleep problem as well. Changes in the timing of drug administration may improve sleep. For the treatment of chronic insomnia, behavior techniques should always be used in combination with pharmacologic therapy, and sedative-hypnotic medications should be considered when appropriate. The treatment of choice for obstructive sleep apnea is continuous positive airway pressure (CPAP). For PLMS, dopaminergic agents are most effective. For RBD, clonazepam effectively controls the aversive sleep behaviors. Sleep disturbances secondary to dementia and Parkinson's disease are usually problematic for the patient as well as the caregiver, whether in the home or in the nursing home. Proper management of these disturbances is beneficial in terms of delaying institutionalization and reducing nursing care costs, as well as improving the quality of life for both patient and caregiver.

Journal Article↗

Decreased phasic EMG activity during rapid eye movement sleep in treatment-naïve Parkinson's disease: effects of treatment with levodopa and progression of illness.

Rapid eye movement (REM) sleep behavior disorder (RBD) is frequently associated with Parkinson's disease (PD) and may anticipate its diagnosis by several years. We assessed the presence of motor dyscontrol during REM sleep in treatment-naïve PD patients and investigated the putative effect of levodopa (L-dopa) treatment on motor activity. Overnight sleep studies were performed on 15 previously untreated PD patients and 14 controls at baseline, again after a 3- to 9-month treatment period with a low dose of L-dopa, and 2 to 5 days after treatment discontinuation (in 8 patients). No differences in sleep parameters were observed across groups or treatment conditions. None of the patients met criteria for RBD at baseline, whereas 5 patients were symptomatic at the time of the second sleep study. A quantitative analysis of electromyographic (EMG) activity during REM sleep showed a lower phasic twitching activity in untreated PD than in controls. However, an increase in both phasic twitching and tonic activity was found after treatment with L-dopa. Discontinuation of treatment resulted in a return to pretreatment values of phasic but not of tonic EMG activity. Thus, the increase in phasic activity seems to depend on the effects of L-dopa, whereas the increase in tonic EMG activity during REM sleep might be caused by other factors such as the progression of disease. Potential implications for the understanding of the relationship between RBD and PD are discussed.

Aged↗

Homozygous Machado-Joseph disease presenting as REM sleep behaviour disorder and prominent psychiatric symptoms.

A male patient carrying the homozygous gene for Machado-Joseph disease (MJD) presented at age 43 with sleep disturbances and psychiatric symptoms followed by ataxic speech and gait. A polysomnogram (PSG) showed decreased rates of sleep time and stage rapid eye movement (REM) and an increased rate of 'stage 1-REM with tonic EMG' (Tachibana et al., 1975); all compatible with REM sleep behaviour disorder (RBD). Molecular gene analysis at age 59 showed that the CAG repeat units in the MJD gene were 60 and 60, smaller than the reported lengths for homozygous MJD patients (63-70 and 66-72). In addition to sleep disturbances, in particular RBD, psychiatric symptoms may be important clinical features in both heterozygous and homozygous MJD.

Diagnosis, Differential↗

Delayed emergence of a parkinsonian disorder in 38% of 29 older men initially diagnosed with idiopathic rapid eye movement sleep behaviour disorder.

We report longitudinal data on a group of 29 male patients 50 years of age or older who were initially diagnosed as having idiopathic REM sleep behavior disorder (RBD) after extensive polysomnographic and neurologic evaluations. Thirty-eight percent (11/29) were eventually diagnosed as having a parkinsonian disorder (presumably Parkinson's disease) at a mean interval of 3.7 +/- 1.4 (SD) years after the diagnosis of RBD+, and at a mean interval of 12.7 +/- 7.3 years after the onset of RBD. To date, only 7% (2/29) of patients have developed any other neurologic disorder. At the time of RBD diagnosis, data from the RBD group with eventual Parkinson's disease (n = 11) and the current idiopathic RBD group (n = 16) were indistinguishable, with two exceptions: the RBD-Parkinson's disease group had a significantly elevated hourly index of periodic limb movements of non-REM sleep and an elevated REM sleep percentage. RBD was fully or substantially controlled with nightly clonazepam treatment in 89% (24/27) of patients in both groups. Thus, RBD can be the heralding manifestation of Parkinson's disease in a substantial subgroup of older male RBD patients. However, a number of presumed Parkinson's disease patients may eventually be diagnosed with multiple system atrophy (striatonigral degeneration subtype). Our findings indicate the importance of serial neurologic evaluations after RBD is diagnosed and implicate the pedunculopontine nucleus as a likely site of pathology in combined RBD-Parkinson's disease, based on experimental and theoretical considerations rather than on autopsy data.

Brain↗

Brainstem in multiple system atrophy: clinicopathological correlations.

1. Multiple system atrophy (MSA) is a sporadic neurodegenerative disorder that manifests with parkinsonism, cerebellar ataxia, and autonomic failure in various combinations. 2. Orthostatic hypotension, neurogenic bladder, laryngeal stridor and sleep apnea, and rapid eye movement (REM) sleep behavior disorder are prominent manifestations of MSA. 3. In MSA, there is severe depletion of catecholaminergic neurons of the C1 and A1 areas in the ventrolateral medulla, and this may contribute to orthostatic hypotension and endocrine disturbances in this disorder, respectively. 4. Loss of corticotrophin-releasing factor (CRF) neurons in the pontine micturition area may contribute to neurogenic bladder dysfunction. 5. Respiratory abnormalities may reflect loss of cholinergic neurons in the arcuate nucleus of the ventral medulla. 6. Loss of cholinergic mesopontine neurons, in the setting of loss of locus ceruleus neurons and preservation of rostral raphe neurons, may contribute to REM sleep abnormalities in MSA.

Autonomic Pathways↗

[Sleep and movement disorders].

The three different states of being (wakefulness, NREM and REM sleep) are associated with profound neurophysiological and neurochemical changes in the brain. These changes explain the existence of movement disorders appearing only or preferentially during sleep, and the effects of sleep on movement disorders. Sleep-related movement disorders are of clinical relevance for multiple reasons: 1) high frequency (e.g. restless legs syndrome (RLS)); 2) diagnostic relevance (e.g. REM sleep behavior disorder (RBD) as first manifestation of Parkinson disorder); 3) diagnostic uncertainty (e.g. parasomnias vs nocturnal epilepsy); 4) association with injuries (e.g. RBD, sleepwalking), sleep disruption/daytime sleepiness (e.g. RLS), and psycho-social burden (e.g. enuresis); 5) requirement of specific treatments (e.g. nocturnal epilepsy, stridor, RBD). This article gives an overview on clinical manifestations, pathophysiology, work-up and treatment of sleep-related movement disorders (e.g. RLS, bruxism), parasomnias (e.g. sleepwalking, RBD), sleep-related epilepsies, and on sleep-associated manifestations of movement disorders (e.g. Parkinson disease, multiple system atrophy).

Adult↗

Sleep disturbances in Parkinson's disease.

Disorders of sleep and daytime alertness are frequent in Parkinson's disease patients and arise from a number of diverse factors. The most common complaint of night-time sleep disturbance in Parkinson's disease is sleep fragmentation. Sleep fragmentation can be associated with recurrent parkinsonian symptoms, the effect of medications, concomitant medical disorders such as nocturia, or psychiatric disorders such as depression or anxiety. Likewise, nocturnal sleep disturbance may arise from sleep apnea, periodic limb movements of sleep, or rapid eye movement (REM) sleep behavior disorder. Nocturnal sleep deprivation may lead to excessive daytime sleepiness. Other potential sources of daytime sleepiness include the effects of medications or disruption of central sleep mechanisms due to the pathologic processes of Parkinson's disease itself. Diagnosis of sleep disturbances and daytime sleepiness requires a direct interview of the patient and the caregiver, and may involve consultation with the sleep specialist or medical physician. Treatment is aimed toward improving night-time sleep and daytime drowsiness by addressing the causative factors.

Antiparkinson Agents↗

Mammalian sleep.

This review examines the biological background to the development of ideas on rapid eye movement sleep (REM sleep), so-called paradoxical sleep (PS), and its relation to dreaming. Aspects of the phenomenon which are discussed include physiological changes and their anatomical location, the effects of total and selective sleep deprivation in the human and animal, and REM sleep behavior disorder, the latter with its clinical manifestations in the human. Although dreaming also occurs in other sleep phases (non-REM or NREM sleep), in the human, there is a contingent relation between REM sleep and dreaming. Thus, REM is taken as a marker for dreaming and as REM is distributed ubiquitously throughout the mammalian class, it is suggested that other mammals also dream. It is suggested that the overall function of REM sleep/dreaming is more important than the content of the individual dream; its function is to place the dreamer protagonist/observer on the topographical world. This has importance for the developing infant who needs to develop a sense of self and separateness from the world which it requires to navigate and from which it is separated for long periods in sleep. Dreaming may also serve to maintain a sense of 'I'ness or "self" in the adult, in whom a fragility of this faculty is revealed in neurological disorders.

Animals↗

Assessment [RETIRED]: techniques associated with the diagnosis and management of sleep disorders. Report of the Therapeutics and Technology Assessment Subcommittee of the American Academy of Neurology.

Polysomnography and measurements of physiologic sleepiness (MSLT/MWT) have been established as effective and safe in identifying many sleep/wake disorders, and have identified and defined a number of specific conditions such as SDB, narcolepsy, idiopathic CNS hypersomnia, periodic movements of sleep, and the REM sleep behavior disorder. The performance of these studies requires specialized equipment and accommodations. This technology, coupled with other clinical information and appropriate medical tests, particularly in experienced hands, is valuable in the diagnosis, classification, and treatment of patients with sleep disorders.

Electroencephalography↗

Dyssomnias, parasomnias, and sleep disorders associated with medical and psychiatric diseases.

Sleep disorders can be intrinsic, as are insomnia or narcolepsy, or can be accounted for by external factors, such as noise, altitude, drug or alcohol abuse, or shift work. The arousal disorders, common in children, are usually benign and disappear by puberty. Sleep-wake transition disorders such as sleep starts are benign as well, and may occur at any age. The parasomnias comprise different entities such as nightmares, REM-sleep behavior disorder, sleep enuresis, and bruxism. Diagnosis and treatment often require a multidisciplinary approach. Virtually every psychiatric, neurologic, or medical disease, when of sufficient severity, leaves its specific fingerprint on sleep; some disorders, such as peptic ulcer disease, gastroesophageal reflux, or epilepsy, tend to be exacerbated during sleep. Fortunately, most sleep disorders are amenable to therapy, which can include counseling, sleep hygiene, withholding of an offending agent, behavioral therapy, light therapy, or cautious drug therapy.

Humans↗

Normal CSF hypocretin-1 (orexin A) levels in dementia with Lewy bodies associated with excessive daytime sleepiness.

Excessive daytime sleepiness, hallucinations and REM sleep behavior disorder are symptoms reported in both dementia with Lewy bodies (DLB) and narcolepsy. Considering the demonstration of low hypocretin-1/orexin A levels in the cerebrospinal fluid (CSF) of most patients with narcolepsy, we hypothesized the presence of a deficient hypocretinergic transmission in DLB. Hypocretin-1 was tested in the CSF of 10 DLB patients. Levels were found to be in the normal range (mean 521 pg/ml, range 382-667) when compared to controls (n = 20, mean 497 pg/ml, range 350-603) and Alzheimer's disease patients (n = 7, mean 474 pg/ml, range 333-564). In DLB, excessive daytime sleepiness, hallucinations and REM sleep behavior may occur in the absence of a detectable hypocretin deficiency.

Aged↗

Sleep and quantitative EEG in neurodegenerative disorders.

This paper reviews current knowledge on sleep problems, sleep architecture changes and quantitative EEG alteration brought on by various neurodegenerative diseases, such as Alzheimer's disease (AD), progressive supranuclear palsy (PSP), REM sleep behavior disorder (RBD), Parkinson's disease (PD), dementia with Lewy bodies (DLB), multiple system atrophy MSA, Huntington's disease and Creutzfeldt-Jakob disease, in comparison to normal aging. The study of sleep variables and that of the spectral composition of the EEG can provide valuable information for understanding the pathophysiology and for assisting the diagnosis of neurodegenerative diseases.

Aged↗

[Respiratory disorders during sleep in degenerative diseases of the brain stem].

Sleep-disordered breathing may be present in patients with degenerative diseases affecting the brainstem. Indeed, this last structure contains the executive system of rapid eye movement (REM) sleep (tegmentum of the pons), of respiratory drive (medulla oblongata and pons) and motor neurons of upper airways dilators (fifth, seventh, ninth, tenth and twelfth cranial roots). Patients with Parkinson's disease suffer frequently from insomnia, partly caused by nocturnal motor disability, and from REM sleep behavior disorder. In 20 percent of the patients, excessive daytime sleepiness is caused by a sleep apnea syndrome, with a partly levodopa-dependent upper airway dysfunction. In 40 percent of the patients, sleepiness mimics a secondary narcolepsy and may be associated with hypnagogic hallucinations. During supranuclear palsy, REM sleep is progressively curtailed with rare sleep-disordered breathing. Patients with multiple systemic atrophy may present a nocturnal stridor caused by laryngeal palsy and benefit from tracheotomy or continuous nasal positive airway pressure. Seldom sleep and respiratory studies in genetic ataxic diseases suggest a normal respiratory drive, occasional diaphragmatic dysfunction and night hypopneas. During amyotrophic lateral sclerosis, the progressive loss of phrenic nerve leads to a diaphragmatic dysfunction, dyspnea and a lesser survival. Adequate ventilation is jeopardized during REM sleep with a consequent loss of this state.

Brain Stem↗

Event-related potentials in idiopathic rapid eye movements sleep behaviour disorder.

OBJECTIVE: To assess psychophysiological parameters in idiopathic rapid eye movements sleep behaviour disorder (RBD), in order to identify possible markers for pre or sub-clinical cognitive abnormalities. METHODS: Sixteen consecutive unmedicated patients with idiopathic RBD and 16 age- and sex-matched controls performed active and passive auditory oddball paradigms and an attentional test. RESULTS: There were no significant between-group latency and amplitude differences. The two groups showed a difference in the inter-peak interval between N100 and P200 in the active condition. A significant correlation between attentional matrices scores and N100 amplitude at Fz and Cz to standard stimuli in the passive condition was found in controls but not in patients. CONCLUSIONS: In RBD there are minimal event-related potentials (ERPs) abnormalities involving the early stages of information processing. SIGNIFICANCE: ERPs are not sensitive to pre or sub-clinical cognitive abnormalities in RBD. In alternative, these findings might support the existence of a truly idiopathic RBD syndrome.

Aged↗

Improvement of sleep architecture in PD with subthalamic nucleus stimulation.

High-frequency stimulation of the subthalamic nucleus (STN) was used to investigate the relationship of sleep disorders with motor handicap in PD. In 10 insomniac patients with PD, stimulation reduced nighttime akinesia by 60% and completely suppressed axial and early morning dystonia, but did not alleviate periodic leg movements (n = 3) or REM sleep behavior disorders (n = 5). Total sleep time increased by 47%; wakefulness after sleep onset decreased by 51 minutes. Insomnia in patients with PD may predominantly result from nighttime motor disability.

Adult↗

REM sleep behaviour disorder in a child with Tourette's syndrome.

PURPOSE: To describe an association of Tourette's syndrome with rapid eye movement sleep behaviour disorder (RBD) in a prepubescent boy. METHODS: A four year longitudinal single-case study. RESULTS: The co-existence of Tourette's syndrome and RBD was confirmed after polysomnographic studies using the standard criteria. The authors propose possible overlap in the pathophysiological mechanisms underlying the two disorders.

Child↗

REM sleep parasomnias.

This article focuses primarily on REM sleep behavior disorder, a recently identified syndrome with a corresponding animal model. Diagnostic methods and criteria, treatment, and the world literature are reviewed, and the experience of the authors' institution--The Minnesota Regional Sleep Disorders Center (Minneapolis, MN)--is summarized. Other REM parasomnias, including nightmares, REM sleep-related sinus arrest, and sleep-related painful erections, are discussed briefly.

Animals↗