Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0013421 (dystonia)
8,418 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Anticonvulsants cause dyskinesias more commonly than has been appreciated. Diphenylhydantoin (DPH), carbamazepine, primidone, and phenobarbitone may cause asterixis. DPH, but not other anticonvulsants, may cause orofacial dyskinesias, limb chorea, and dystonia in intoxicated patients. These dyskinesias are similar to those caused by neuroleptic drugs and may be related to dopamine antagonistic properties possessed by DPH.
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PMID:Anticonvulsant-induced dyskinesias: a comparison with dyskinesias induced by neuroleptics. 101 Oct 32

Clinical and electrical evidence of peripheral neuropathy may result from long term treatment with phenytoin or barbiturates, especially in combination, or after repeated exposure to toxic blood concentrations of either drug. Prolonged acute toxicity with phenytoin may rarely lead to permanent residual ataxia. Reversible dystonia may occasionally be precipitated by phenytoin or carbamazepine; asterixis by phenytoin, barbiturates or carbamazepine; and, more commonly, tremor by valproate. All the major anticonvulsant drugs, especially in combination, can produce occasional subacute cognitive or behavioural syndromes. In varying degrees, the drugs also impair attention, concentration, memory, mental speed or processing, or motor speed. Possible mechanisms of impaired mental function include neuronal damage, or disturbance of folic acid, monoamine or hormonal metabolism. The relative influence on neurological or psychological function is an important factor in the choice of anticonvulsant drug for the treatment of epilepsy.
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PMID:Adverse neuropsychiatric effects of anticonvulsant drugs. 286 Oct 75

Muscular deficit, voluntary movement disorders, abnormal movements, and global disturbance of movements are considered. A muscular deficit is part of the Dejerine-Roussy syndrome. It appears as hemiparesis, regressive within days or weeks. A juxta-thalamic capsular involvement can be considered as the origin of this deficit in most cases, especially in hemorrhagic processes even if these are located within the thalamus, on account of mass effect. The occurrence of paresis or paralysis in ischemic processes strictly situated in the thalamus, however, is discussed: the deficit may be limited to parts of limbs; most often, it is not associated with pyramidal symptomatology; recovery is observed in the hand before the inferior limb. To these anatomoclinical facts some data from animal experiments or thalamic stereotaxic surgical procedures in humans must be added. A deafferentiation from the cortex seems to be the main cause of these motor disturbances. Three types of voluntary movement disorders may be encountered: contralateral cerebellar incoordination due to the involvement of the nucleus ventrooralis posterior where the superior cerebellar peduncle ends; homolateral imitative syncinesias, not confined to thalamic lesions, but frequently observed in this location with a particular aspect; contracture. Abnormal movements include choreoathetosic movements, and exceptionally intention and action tremor, and asterixis. They primarily involve the superior limb, but reported cases are not associated with thalamic limited lesions. Global disturbance of movements is observed in the hand or gait. "Thalamic hand" consists of incessant finger movements in the vertical and horizontal planes. They are associated with thalamic dystonia and deep sensibility disorder.(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:[Motor symptomatology of the thalamus]. 378 43

Extrapyramidal syndromes have been described after administration of phenytoin and primidone. Although asterixis, dystonia, and tremor have been described with carbamazepine (Tegretol), there is no report of orofacial dyskinesia. We report a case in which a dose-related lingual-facial-buccal extrapyramidal reaction occurred in association with carbamazepine intoxication.
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PMID:Carbamazepine-induced orofacial dyskinesia. 719 14

Reports of 62 cases with a movement disorder associated with a focal lesion in the thalamus and/or subthalamic region were analyzed. Thirty-three cases had a lesion confined to the thalamus. Sixteen cases had a thalamic lesion extending into the subthalamic region and/or midbrain. Thirteen cases had a lesion in the subthalamic region or a subthalamic lesion extending into the midbrain. Nineteen cases with dystonia, 18 with asterixis, 17 with ballism-chorea, three with paroxysmal dystonia, and five with clonic or myorhythmic movements have been described. No case with isolated tremor has been described. In 53 cases with unilateral thalamic or subthalamic lesions, all but one with bilateral blepharospasm (associated with right posterior thalamic, pontomesencephalic, and bilateral cerebellar lesions) had dyskinesias in the limbs contralateral to the lesion. The other nine cases had bilateral paramedian thalamic lesions; seven developed bilateral dyskinesias, and the remaining two had unilateral dyskinesias. Regarding the 19 patients with dystonia, the two with bilateral blepharospasm had thalamic and upper brainstem lesions, and one with hemidystonia and torticollis had a subthalamic lesion. The other 16 patients all had a unilateral thalamic lesion with contralateral dystonia (10 hemidystonia, five focal dystonia affecting a hand and/or and one segmental dystonia involving face, arm, and hand). The exact location of the thalamic lesion was mentioned in 10 cases; the posterior or posterolateral thalamus was involved in six and the paramedian thalamus in four. These areas are more posterior or medial to the ventrolateral and ventroanterior thalamic nuclei, which receive pallido-thalamic and nigro-thalamic afferents. Two cases developed dystonia immediately after thalamotomy, and one case developed it 4 days after head trauma. The others initially had a hemiplegia and developed dystonia 1-9 months after the acute insult. Fifteen of the 17 patients with chorea had a unilateral lesion in the subthalamic nucleus or subthalamic region (eight due to infarcts, one to hemorrhage, five to mass lesions, and one to multiple sclerosis). All had contralateral hemichorea or hemiballism. One other case had bilateral chorea of the hands and tongue due to paramedian thalamic infarction. Another case with generalized chorea and thalamic atrophy was complicated by stereotaxic surgery. Thirteen of the 18 cases with asterixis had lesions confined to the thalamus. Eight were associated with thalamotomy, and five others had a stroke (four infarction and one hemorrhage) affecting the contralateral thalamus.(ABSTRACT TRUNCATED AT 400 WORDS)
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PMID:Movement disorders following lesions of the thalamus or subthalamic region. 799 Aug 45

As a clinical diagnostic approach, the evoked potential has been used to differentiate movement disorders, especially myoclonic movements, Giant somatosensory evoked potentials (SEPs) and long-loop reflex to electrical stimulation of the peripheral nerve are commonly employed in the evaluation of patients with myoclonus. Recently, abnormality in a specific component of SEP frontal N30 has been reported in focal dystonia. Jerk locked back averaging has been applied to cortical reflex myoclonus, minipolymyoclonus, cortical tremor, simple tics, chorea-acanthocytosis, Huntington's chorea, etc. Silent period locked averaging is also used for asterixis. With these new electrophysiological techniques, evaluation of functional mechanisms in movement disorders may be expected, with fruitful results.
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PMID:[Clinical diagnosis of movement disorders--evoked potentials]. 827 66

Stroke-related nonepileptic transient dyskinesias are rare, and the site of ischemia remains often undetermined. Five cases out of 47 consecutive thalamic infarcts (10.6 per cent) are reported. Patients presented with monochorea (1 case), hemiballism-hemichorea (2 cases), choreoathetosis (1 case with subsequent arm painful dystonia and hand tremor), and asterixis (1 case). Magnetic resonance imaging demonstrated that the subthalamic nucleus was spared in all cases. Transient dyskinesias occurred at any time in the course of infarction (as a warning sign in 1 case, as an associated symptom in 3 cases, or during recovery in 1 case). Moreover, this study suggests that: 1) transient dyskinesias are mainly related to thalamic ischemic injury, and 2) small vessels disease is the main etiology.
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PMID:[Transient involuntary movement disorders and thalamic infarction]. 830 59

This article focuses on the current knowledge about movement disorders associated with alcohol and drug abuse. Chronic alcohol use can produce a wide spectrum of movement disorders including tremor, withdrawal parkinsonism and dyskinesias, cerebellar ataxia, and asterixis. MPTP, a neurotoxin first reported to cause parkinsonism in a group of drug abusers, has provided important insights into the pathogenesis of Parkinson's disease. There is a growing body of literature providing evidence that dyskinesias such as tics and dystonia may be precipitated or exacerbated by cocaine. Amphetamines have been implicated in the production of stereotypies and exacerbation of tics.
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PMID:Movement disorders. 837 47

We prospectively studied motor symptoms in 32 patients with CT- or MRI-proven acute pure parietal stroke. A transient, mild, 'pseudoparesis' of the hand (90%), was noted, improved by visual attention and prompting, associated with non-awareness of muscle power (53%), transient soft pyramidal signs (50%), unilateral akinesia (100%) and motor hemineglect (37%) in non-dominant lesions. Lower motoneurone-type atrophy was not observed in this acute phase. We called 'poikilotonia' the striking unpredictable variations in muscle tone, ranging from extreme hypertonia to hypotonia, found in all patients. When maintaining postures, patients showed large oscillations (100%), laterodeviation or levitation of the arm (60%), especially in the case of large or posterior lesions, or, occasionally (3%), motor persistence or even hemicatalepsy (3%). Limb kinetic and manipulatory apraxia, with inadequate organization and anticipation of motor sequences and synergies, motor arrests, perplexity, unrecognizable gestures and loss of bimanual coordination, was a constant finding (100%). Other apraxias (62%) and difficulty in copying intransitive gestures of the hand (84%) were associated with posterior lesions involving the supramarginal gyrus. When reaching towards objects, all patients showed abnormal anticipatory hand shaping, but visuomotor ataxia (3%) was only seen with bilateral posterior stroke. Sensory (70%) or pseudocerebellar (4%) ataxia, was seen in both anterior and posterior lesions. Avoidance behaviors (34%) were not uncommon, but had no localizing value. Of the dyskinesias, hand dystonia (84%) was frequent, but athetosis (16%), asterixis (15%), postural tremor (15%), myoclonus (9%) and stereotypia (9%), were uncommon. The abnormal eye movements were unilateral hypo-akinesia of exploratory saccades (43%), abnormal ipsilateral pursuit and contralateral optokinetic nystagmus in the case of posterior lesions, and oculomotor apraxia with bilateral posterior lesions. In conclusion, parietal motor syndrome can be recognized during bedside examination, and probably reflects the loss of multiple sensory feedback to motor programs, especially those directed to the extrapersonal space.
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PMID:Parietal motor syndrome: a clinical description in 32 patients in the acute phase of pure parietal strokes studied prospectively. 987 53

An array of movement disorders is associated with ethanol, illicit drugs, and tobacco. Heavy ethanol users experience withdrawal tremor and, less often, withdrawal parkinsonism, chorea, and myoclonus. Asterixis is a feature of hepatic failure. On the other hand, ethanol can ameliorate essential tremor and myoclonus-dystonia. Among opioid drugs, meperidine can precipitate myoclonus. Severe parkinsonism affected users of a synthetic meperidine analog contaminated with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine. Spongiform leukoencephalopathy, sometimes with chorea and myoclonus, occurred in inhalers of heroin vapor (chasing the dragon). Psychostimulants including cocaine acutely cause stereotypies and dyskinesias. Phencyclidine toxicity causes myoclonus. Tobacco use, on the other hand, protects against Parkinson's disease. Clinicians need to consider substance abuse in patients with unexplained movement disorders.
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PMID:Substance abuse and movement disorders. 2072 28


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