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At least 19 recordsLinked to original sources

Assessment of apraxia: inter-rater reliability of a new apraxia test, association between apraxia and other cognitive deficits and prevalence of apraxia in a rehabilitation setting.

OBJECTIVE: To investigate the inter-rater reliability of a new apraxia test. Furthermore to examine the association of apraxia with other neuropsychological impairments and the prevalence of apraxia in a rehabilitation setting on the basis of the new test. DESIGN: Cross-sectional cohort study, involving 100 patients with a first stroke admitted to a rehabilitation centre in the Netherlands. MEASURES: General patient characteristics and stroke-related aspects. Cognitive screening involving apraxia, visuospatial scanning, abstract thinking and reasoning, memory, attention, planning and aphasia. RESULTS: The indices for inter-rater agreement range from excellent to poor. Significant correlations are found between apraxia and visuospatial scanning, memory, attention, planning and aphasia. The patients with apraxia perform significantly worse than the patients without apraxia on memory, the time needed to complete the tests for scanning and attention, and aphasia. The prevalence of apraxia is 25.3% in the total group, 51.3% in the left hemisphere stroke patients and 6.0% in the right hemisphere stroke patients. Patients with and without apraxia do not differ significantly concerning age, gender and type of stroke. CONCLUSION: The apraxia test has been shown to be a reliable instrument. Apraxia is often associated with aphasia, memory problems and mental slowness. This study shows that on the basis of the apraxia test, the prevalence of apraxia among patients in the rehabilitation centre is high, especially among patients with left hemisphere lesions.

Apraxias↗

[Slowly progressive dressing and constructional apraxia: symptomatological study, especially for dressing apraxia].

In 1982, Mesulam drew attention to a clinical picture characterized by slowly progressive aphasia without dementia, and since then, there have been many such reports. Recently, there have been 30 reports of slowly progressive apraxia. However, the nature of this apraxia is not uniform. We now report a patient with slowly progressive dressing and constructional apraxia. The patient is a 60-year-old right-handed woman with a 2-year history of a slowly progressive praxic disturbance. On admission, she was alert and aware of this difficulty. A neurological examination disclosed mild rigidity and myoclonus in her left hand. A neuropsychological assessment disclosed severe dressing apraxia, which was unlikely to be caused by dementia and moderate constructional apraxia. Her dressing apraxia was manifested in upper limbs, neck, trunk and lower limbs. However, she could express verbally the action of dressing. She also showed mild limb-kinetic apraxia, but neither ideational apraxia nor ideomotor apraxia was present. Aphasia and agnosia were also absent. On an MRI, the bilateral cerebral hemispheres were atrophic (right > left). A 99m-Tc ECD SPECT revealed decreased uptake in the right cerebral hemisphere and left frontal lobe, and an EEG showed slow waves over the right cerebral hemisphere. There have been 30 reports of slowly progressive apraxia. Most of these cases presented with slowly progressive clumsiness in one or both hands as an initial symptom, followed by constructional, ideomotor or dressing apraxia. Our patient differed from these cases in that dressing and constructional apraxia progressed slowly without any other apraxia except only mild limb-kinetic apraxia. There was a similarity between dressing apraxia of our patient and that of Marie's and Brain's original cases.

Activities of Daily Living↗

Anosodiaphoria for dressing apraxia: contributory factor to dressing apraxia.

We report 2 patients with bilateral dressing apraxia. One patient had prominent bilateral dressing apraxia without severe constructional apraxia together with anosodiaphoria for dressing apraxia. The other patient had mild dressing apraxia with severe constructional apraxia and was aware of her disabilities. This dissociation implies that anosodiaphoria for dressing apraxia is an important factor in the severity of bilateral dressing apraxia. This also explains why automatic acts in dressing are more severely affected than when patients are asked to put clothing on in dressing examination.

Adult↗

[A comparison of the influence of certain contextual factors on the symptoms of persons with acquired verbal apraxia and verbal developmental apraxia].

Data on the individual symptoms of patients with acquired apraxia of speech and developmental apraxia of speech is of theoretical significance in the study of this disorder. A comparison of individual symptoms may shed light on error patterns in apraxia of speech, the possibility of types of apraxia of speech and on the nature of the disorder. In this study which was part of the wider investigation into the effect of variation in contextual factors on apraxia of speech (Van der Merwe, Uys, Loots and Grimbeek, 1987; 1988; Van der Merwe, Uys, Loots, Grimbeek and Jansen, 1989) the symptoms of four patients with acquired apraxia of speech and one subject with developmental apraxia of speech were compared. The auditorily perceived symptoms and the deviations in voice onset time, vowel duration and utterance duration of all the subjects were compared. The results indicated that the frequency of occurrence of certain symptoms created individual error patterns but also that all subjects had the high occurrence of symptoms which reflect the nature of the disorder in common. The subject with developmental apraxia of speech had all symptoms in common with the other subjects but exhibited less deviancy in the temporal flow of speech and in the duration of the utterance. He presented with more sound substitutions than did the acquired group. The theoretical implications of the results are discussed.

Apraxias↗

Modality specific naming and gesture disturbances: a case with optic aphasia, bilateral tactile aphasia, optic apraxia and tactile apraxia.

This study reports a patient who manifested optic aphasia, tactile aphasia, optic apraxia, and tactile apraxia following an operation for epidural left parietal haematoma. He could neither name nor pantomime the use of objects presented visually or tactually, but correctly performed semantic association tasks, thus demonstrating preserved recognition. He could name and pantomime the use of auditorily presented objects. Experimental results disproved that pantomime disorders were secondary to naming disorders, and suggested that modality specific aphasia and modality specific apraxia are independent clinical syndromes. CT scans showed injury to the posterior callosal radiations, the white matter of the angular gyrus, and the medial portion of the occipital lobe in the left hemisphere. We suggest that modality specific aphasia and modality specific apraxia can be explained by assuming a common semantic memory store.

Aphasia↗

[Left unilateral melokinetic apraxia and left dynamic apraxia following partial callosal infarction].

A 69 year-old right-handed man suffered from an infarct in the left anterior cerebral territory's artery, involving the anterior and middle parts of the corpus callosum, and the cingulum. He had a right crural hemiparesis with a grasp reflex of the right hand, and ipsilaterally a melokinetic and a dynamic apraxia. Agility of the left fingers was lost: fast and nimble movements of theses fingers, and repetitive gestures of the left hand were defective. Execution of motor sequences with the left hand was disrupted by a lack of litheness in gesture series. By analogy with unilateral left ideomotor apraxia, we suggest melokinetic and dynamic apraxia could be symptomatic of an interhemispheric disconnection. Premotor cortex could have a dominance for both digital movements and programmation of gestual sequences. As a general rule, the left cortex could be preferentially activated by the nature of some tasks, particularly the execution of complex gestual series, which implie an internal speech. In theses conditions, an interhemispheric disconnection could lead some difficulties to make theses gestures with the left hand.

Aged↗

Speech apraxia without oral apraxia: can normal brain function explain the physiopathology?

Apraxia of speech, usually associated with stroke, refers to the inability to perform speech motor movements typically with an intact ability to execute non-speech oral movements. It is uncertain whether apraxia of speech results from damage affecting the insula or the inferior frontal gyrus. The controversy started because of conflicting results from studies investigating patients with disrupted brain structure, when dysfunction of both sites can coexist. We conducted a functional magnetic resonance imaging study of individuals without neurological disorders comparing speech and non-speech movements. Speech movements did not recruit the insula, but activated the left inferior frontal gyrus, suggesting that Broca's area, but not the insula, is critical for speech articulation.

Adolescent↗

Ideomotor apraxia without aphasia and aphasia without apraxia: the anatomical support for a double dissociation.

This study aimed to verify the existence of a double aphasia/apraxia dissociation. Apraxic patients without aphasia and aphasic patients without apraxia were included in a consecutive series of patients with cortical or subcortical CT documented vascular lesions in the left hemisphere. Of 699 patients, 10 were found to be apraxic but not aphasic and 149 aphasic but not apraxic. These findings indicate an aphasia/apraxia double dissociation. This suggests that praxis and language make use of two different, partly overlapping networks.

Aged↗

[A case of apraxia and global aphasia without apraxia for axial body movement].

The case of a right handed 58 year old woman is presented who suffered an ischemic stroke after angiography following a vasospasm in the left internal carotid artery. The neuropsychological examination revealed global aphasia and severe apraxia for movements of the face and the extremities. However, the patient was able to carry out adequately axial movements to imitation and also to verbal command. These particular findings are discussed and explained within the context of the existing literature.

Aphasia↗

The basal ganglia and apraxia.

Ever since Liepmann's original descriptions at the beginning of the century apraxia has usually been attributed to damage confined to the cerebral cortex and/or cortico-cortical connecting pathways. However, there have been suggestions that apraxia can be due to deep subcortical lesions, which raises the question as to whether damage to the basal ganglia or thalamus can cause apraxia. We therefore analysed 82 cases of such 'deep' apraxias reported in the literature. These reports consisted of a small number (n=9) of cases studied neuropathologically, and a much larger group (n=73) in which CT or MRI was used to identify the size and extent of the lesion. The reports were subdivided into (i) those with small isolated lesions which involved nuclei of the basal ganglia or thalamus only, and not extending to involve periventricular or peristriatal white matter; (ii) those with large lesions which involved two or more of the nuclei, or one or more of these deep structures plus damage to closely adjacent areas including the internal capsule, periventricular or peristriatal white matter; and (iii) lesions sparing basal ganglia and thalamus but involving adjacent white matter. The main conclusions to be drawn from this meta-analysis are that lesions confined to the basal ganglia (putamen, caudate nucleus and globus pallidus) rarely, if ever, cause apraxia. Lesions affecting the lenticular nucleus or putamen nearly always intruded into the adjacent lateral white matter to involve association fibres, in particular those of the superior longitudinal fasciculus and frontostriatal connections. Apraxia occurred with deep lesions of the basal ganglia apparently sparing white matter in only eight out of the 82 cases. Apraxia was most commonly seen when there were lesions in the lenticular nucleus or putamen (58 out of 72 cases) with additional involvement of capsular, and particularly of periventricular or peristriatal, white matter. Lesions of the globus pallidus (no cases) or caudate nucleus (three cases) rarely caused apraxia. The caudate lesions also had white matter involvement. Indeed, involvement of periventricular white matter alone caused apraxia. The vast majority of cases described with apraxia associated with deep lesions were in the left, dominant hemisphere. Ideomotor apraxia was described in most reports (72 out of 82 cases). Orofacial apraxia was less common (37 cases), usually with ideomotor apraxia. Ideational apraxia was rare (five cases), all with ideomotor apraxia. Apraxia was either bilateral or involved the left hand if there was a right hemiparesis, in those cases where descriptions were available. Lesions of the thalamus can sometimes cause apraxia (26 cases), even if there is no apparent involvement of white matter (12 cases). Small lesions confined to the thalamus can also sometimes cause apraxia (eight cases). The role of the thalamus in higher order motor control and apraxia remains to be determined. It is suggested that the term limb-kinetic apraxia should be retained to describe motor deficits in planning 'what to do', 'how to do it' and 'when to do it'; decisions which appear to involve activation of a complex distributed network of dorsolateral prefrontal cortex, supplementary motor areas, anterior cingulate regions and lateral premotor cortex. Such deficits need to be quantified. If they are present in patients with basal ganglia disease, over and above classical akinesia, bradykinesia and hypokinesia, then such patients could be said to exhibit limb-kinetic apraxia.

Apraxias↗

Apraxia in movement disorders.

The definition of apraxia specifies that the disturbance of performed skilled movements cannot be explained by the more elemental motor disorders typical of patients with movement disorders. Generally this does not present a significant diagnostic problem when dealing with 'higher-level' praxic disturbances (e.g. ideational apraxia), but it can be a major confound in establishing the presence of limb-kinetic apraxia. Most motor disturbances characteristic of extrapyramidal disorders, particularly bradykinesia and dystonia, will compromise the ability to establish the presence of loss of dexterity and deftness that constitutes this subtype. The term 'apraxia' has also been applied to other motor disturbances, such as 'gait apraxia' and 'apraxia of eyelid opening', that perhaps are misnomers, demonstrating the lack of a coherent nomenclature in this field. Apraxia is a hallmark of corticobasal degeneration (CBD) and historically this has received the most attention among the movement disorders. Corticobasal degeneration is characterized by various forms of apraxia affecting limb function, particularly ideomotor apraxia and limb-kinetic apraxia, although buccofacial and oculomotor apraxia can be present as well. The syndrome of parkinsonism and prominent apraxia, designated the 'corticobasal syndrome' (CBS), may be caused by a variety of other central nervous system pathologies including progressive supranuclear palsy (PSP), Alzheimer's disease, dementia with Lewy bodies and frontotemporal dementias. Distinct from the CBS, PSP and Parkinson's disease can demonstrate varying degrees of apraxia on selected tests, especially in those patients with more severe cognitive dysfunction. Diseases that cause the combination of apraxia and a primary movement disorder most often involve a variety of cerebral cortical sites as well as basal ganglia structures. Clinical-pathological correlates and functional imaging studies are compromised by both this diffuse involvement and the confusion experienced in the clinical evaluation of apraxia in the face of the additional elemental movement disorders. Finally, although apraxia results in clear disability in patients with the CBS, it is not clear how milder ideomotor apraxia found on specific testing contributes to patients' overall day-to-day motor disability.

Alzheimer Disease↗