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Drug treatment of poststroke aphasia.

Impairment of language function (aphasia) is one of the most common neurological symptoms after stroke. Approximately one in every three patients who have an acute stroke will suffer from aphasia. The estimated incidence and prevalence of stroke in Western Europe is 140 and 800 per 100,000 of the population. Aphasia often results in significant disability and handicap. It is a major obstacle for patients to live independently in the community. When recovery from aphasia occurs, it is usually incomplete and patients are rarely able to return to full employment and other social activities. Currently, the main treatment for aphasia is conventional speech and language therapy. However, the effectiveness of this intervention has not been conclusively demonstrated and empirical observations suggest that spontaneous biological recovery may explain most of the improvement in language function that occurs in aphasics. The generally poor prognosis of the severe forms of poststroke language impairment (Broca, Wernicke and global aphasia), coupled with the limited effectiveness of conventional speech and language therapy has stimulated the search for other treatments that may be used in conjunction with speech and language therapy, including the use of various drugs. Dopamine agonists, piracetam (Nootropil), amphetamines, and more recently donepezil (Aricept), have been used in the treatment of aphasia in both the acute and chronic phase. The justification for the use of drugs in the treatment of aphasia is based on two types of evidence. Some drugs, such as dextroamphetamine (Dexedrine), improve attention span and enhance learning and memory. Learning is an essential mechanism for the acquisition of new motor and cognitive skills, and hence, for recovery from aphasia. Second, laboratory and clinical data suggest that drug treatment may partially restore the metabolic function in the ischemic zone that surrounds the brain lesion and also has a neuroprotective effect following acute brain damage. An example of this is the nootropic agent piracetam. Extensive animal studies have demonstrated the beneficial effects of this and other drugs on neural plasticity, but data on humans are still sparse. This review provides a critical analysis of the current evidence of the effectiveness of these drugs in the treatment of acute and chronic aphasia.

Amphetamine↗

[Assessment of regional cerebral blood flow in subcortical infarction with aphasia].

We assessed the regional cerebral blood flow (rCBF) in 8 patients with subcortical aphasia and 8 patients with subcortical infarction without aphasia using the N-isopropyl-P-[123I]-iodoamphetamine autoradiography (123I-IMP ARG) method. In this study, we evaluated vermis to left cortex ratio of CBF. In cases of Broca's aphasia (N = 2), CBF was lower in the posterior frontal regions including Broca's area, and more hypoperfused in the posterior frontal and in the posterior temporal regions, including Wernicke's area of total aphasia (N = 2). But, it was not significantly hypoperfused in those regions in the cases of Wernicke's (N = 2) and amnestic aphasia (N = 2). In the subcortical aphasia, global CBF in the left cerebral cortex was lower than that in the right cerebral cortex. However, in the subcortical infarction group without aphasia there was no difference between CBF in the left cerebral cortex and the right cerebral cortex. We conclude that hypoperfusion in the left cerebral cortex was greater than that in the right cerebral cortex and it was probably due to dysfunction of the left cerebral cortex when subcortical infarction occurred with aphasia. Though some types of aphasia were not relative to the dysfunction of the left cerebral cortex.

Aged↗

Aphasia and auditory extinction: Preliminary evidence of binding.

Background: McNeil, Odell, and Tseng (1991), and Murray and colleagues (Murray, 2000; Murray, Holland, & Beeson, 1997a, 1997b) have suggested that variability of performance in patients with aphasia may be due to nonlinguistic cognitive variables, such as attention (i.e., resources, capacity, effort), which affect language comprehension and production. Given the research that has supported the relationship between aphasia and attention deficits, it is important to determine what effect this breakdown in attention may have on cognitive processes for individuals with aphasia.Aims: This study aims to determine if auditory extinction is present in individuals with aphasia, and if so, if this is due to a breakdown in binding. If extinction is found for individuals with aphasia, it would further support the notion that auditory attention difficulties are present among individuals with aphasia, since visual and auditory research has attributed extinction to a breakdown in attention (Baylis, Driver, & Rafal, 1993; Deouell, Bentin, & Soroker, 2000; Deouell & Soroker, 2000). If binding is found to be deficient, the fact that individuals with both left and right hemisphere lesions demonstrate this phenomenon would lead to a number of implications regarding the relationship of attention and aphasia.Methods & Procedures: Auditory extinction, in which one stimulus is not perceived during double simultaneous stimulation (DSS) presentation, was examined in six individuals with aphasia (aged 42-74 years) and six age-matched healthy adults. Two different experiments were conducted in which the auditory stimuli, consisting of male and female voices speaking the letters "T" or "O", were systematically varied to investigate whether binding of identification to location contributes to extinction.Outcomes & Results: Participants with aphasia made more omission errors (extinction) than the control group, and extinction was significantly greater for binding versus nonbinding conditions, suggesting that binding may play a role in extinction for individuals with aphasia.Conclusions: These data provide preliminary results that auditory extinction exists in individuals with aphasia and may be due to deficits in binding together identification and localisation information. Research on this phenomenon and how it influences language would be a worthwhile endeavour for future studies. Moreover, little is known about assessment of auditory attention in patients with aphasia. Further research in this area can lead to advancements in theoretical and functional assessment for individuals with aphasia who have auditory attention and/or binding deficits and require speech-language pathology intervention.

Journal Article↗

Regional cerebral distribution of [Tc-99m] hexylmethylpropylene amineoxine in patients with progressive aphasia.

Progressive aphasia is a prominent clinical feature of several neurodegenerative disorders. This study used hexylmethylpropylene amineoxine (HMPAO) single photon emission computed tomography (SPECT) to estimate blood flow in areas of the brain that mediate language in patients with progressive aphasia and matched control subjects. The patient population consisted of four men and 12 women with a mean +/- SD age of 69.1 +/- 7.6. Of these, eight were classified as having a nonfluent form of aphasia, whereas the other eight had a fluent form. The patients were compared to 16 healthy volunteers who were studied with an identical protocol. The SPECT images of the brain were acquired with 740 MBq (20 mCi) of Tc-99m-labeled HMPAO on a triple-headed gamma camera equipped with fan beam collimators. The images were analyzed with a set of standardized templates. Mean counts per pixel in 33 regions of interest were compared to the mean counts in the whole supratentorial brain. A laterality index was determined for homotopic regions using the equation 100 x (R - L)/(1/2 x (R - L)). Patients with progressive aphasia had several regions of significantly decreased HMPAO uptake in the left cortex when compared to the homotopic regions on the right. The most prominent deficit in the nonfluent group, as determined by the laterality index, were found in the left dorsolateral prefrontal region (p < 0.05), whereas the most prominent deficits in the group with fluent aphasia were found in the left temporal and parietal language centers (p < 0.05). The left subcortical nuclei were differentially affected, particularly in patients with nonfluent aphasia. The HMPAO SPECT indicates that multiple regions of the left hemisphere are dysfunctional in patients with progressive aphasia. The pattern of perfusion deficits in patients with fluent aphasia appears to be distinct from the pattern in patients with nonfluent aphasia.

Aged↗

Neuroanatomical correlates of the post-stroke aphasias studied with cerebral blood flow SPECT scanning.

BACKGROUND: Researchers are not in complete agreement over the extent to which specific language functions are subserved by certain brain areas. The purpose of this article was to determine neuroanatomical correlates of aphasia following cerebrovascular accident. MATERIAL/METHODS: The participants included 50 stroke patients with a single left-hemisphere lesion and residual mild to severe aphasia. Language, assessed by the Boston Diagnostic Aphasia Examination (BDAE), was affected to various degrees by a wide range of pathologies. Single-photon emission computed tomography (SPECT) images of the brain were acquired with 740 MBq (20 mCi) of Tc-99m-labeled ECD on a triple-headed gamma camera equipped with low-energy, high-resolution collimator. Correlation between reduced cerebral perfusion and the BDAE score was analyzed. RESULTS: The most prominent perfusion abnormalities in Broca's aphasia, as determined by the laterality index, were found in the frontal lobe, and to a lesser degree, the parietal lobe and striatum, whereas the most prominent deficits in Wernicke's aphasia were found in the left temporal and parietal areas. In global aphasia, SPECT images evidenced the most extensive damage throughout the perisylvian region of the left hemisphere. CONCLUSIONS: There is need for reinterpretation of the anatomical correlation of selected aphasic syndromes, especially classic Broca's and Wernicke's aphasias. The present study highlights the integrative role of some subcortical structures in language and speech functions. The results support the usefulness of regional cerebral blood flow SPECT imaging as a diagnostic aid in the post-stroke aphasias.

Adult↗

Clinical note: acquired pragmatic impairments and aphasia.

Recent advances in the field of communication sciences have led to the description of acquired communication disorders affecting pragmatic skills in patients with brain damage. The present article discusses the impact of such findings on the clinical concept of aphasia. Through reference to a number of articles contained in this Special Issue, it must be reiterated that pragmatic and other linguistic components of communication abilites are two sides of a same coin-that of language-and intimately interrelated. It is also argued that the difference between traditional (e.g., syntax) and pragmatic components of language cannot be explained in simple terms such as the former being subserved only by linguistic processes and the latter by other cognitive processes. Pragmatic components are thus to be considered as part of language. The evolution of the concept of language has a direct impact on the clinical concept of aphasia. Indeed, if aphasia corresponds to an acquired impairment of language, then pragmatic impairments must be considered part of aphasia. The inclusion of pragmatic impairments in the concept of aphasia does not hold only when they occur within the frame of classic types of aphasia, but also when they occur in isolation. Consequently, a new type of aphasia-pragmatic aphasia-should be considered and defined in order to describe the clinical condition of those individuals suffering from acquired pragmatic disorders as those reported among right-hemisphere-damaged right-handers. It is concluded that the recent evolution around the concept of language should be followed by an evolution of the concept of aphasia per se.

Aphasia↗

Early prediction of aphasia outcome in left basal ganglia hemorrhage.

OBJECTIVES: The independent predictors of aphasia outcome for patients with left basal ganglia hemorrhage were evaluated. PATIENTS AND METHODS: We included 140 patients of 1,036 patients with spontaneous intracerebral hemorrhage admitted to our hospital from January 1993 through December 1997. Aphasia was assessed using the aphasia scale of the Scandinavian stroke scale. Univariate and step-wise logistic regression analyses were performed to assess the relationships between the initial aphasia score, age, gender, blood volume, locations of hematoma and aphasia outcome. RESULTS: Step-wise logistic regression analysis revealed that the following two factors were independently associated with the final aphasia outcome: initial aphasia score (P < 0.0001) and location of hematoma involving the posterior limb of the internal capsule (P = 0.004). CONCLUSIONS: A particularly high likelihood of poor aphasia outcomes of patients with left basal ganglia hemorrhage are predicted in those who have poor initial aphasia score and whose brain computed tomography shows the hematoma involves the posterior limb of the internal capsule.

Aged↗

The role of piracetam in the treatment of acute and chronic aphasia.

Piracetam has been shown to improve speech in aphasic patients. This paper reviews the evidence for this benefit in aphasic patients with acute stroke and, in conjunction with language treatment, in post-acute and chronic aphasia. Early double-blind, placebo-controlled trials in acute stroke showed improvement in several neurologic parameters including aphasia. Subsequently two randomized double-blind placebo-controlled studies were performed which utilised the Aachen Aphasia Test (AAT), a validated and standardized procedure, to assess language function. Patients received placebo or piracetam 4.8g daily for 12 weeks in one study and for 6 weeks in the other. In both studies patients received concomitant intensive speech therapy; one included patients 6-9 weeks after stroke while in the other the duration of aphasia varied between 4 weeks and 3 years. Compared with placebo there was improvement in both studies on piracetam in all 5 subtests of the AAT and significant overall improvement in aphasia. This indicated that, given in conjunction with language therapy, piracetam improved speech in patients with post-acute and chronic aphasia. In the Piracetam in Acute Stroke Study (PASS), of 927 patients treated within 12 hours of the onset of acute ischemic stroke, 373 were aphasic. Treatment consisted of placebo or an intravenous bolus of 12g piracetam, 12g piracetam daily for 4 weeks and 4.8 g daily for a further 8 weeks. After 12 weeks significantly more patients (approximately 10%, P=0.04) had recovered from aphasia on piracetam than placebo while in 197 patients treated within 7 hours of stroke onset, the difference in favor of piracetam was 16% (P= 0.02). These studies indicate that piracetam improves aphasia in acute stroke and, as an adjuvant to language therapy, in post-acute and chronic aphasia.

Acute Disease↗

Overprotection in couples with aphasia.

PURPOSE: The study aimed to measure the perception of overprotection in 21 couples living with aphasia, relative to controls. METHOD: The 'Questionnaire on Resources and Stress' assessed the spouses' perception and the 'Overprotection Scale for Adults' measured the perception of persons with aphasia. RESULTS: Husbands of women with aphasia did not differ from husbands of women without aphasia. Wives of men with aphasia reported more overprotection than wives of men without aphasia, even when functional impairment was controlled. The men with aphasia did not report feeling overprotected. No significant relationship was uncovered between the report of overprotection and feeling overprotected in couples with aphasia. CONCLUSIONS: Overprotection is present in some couples coping with aphasia.

Aged↗

The case of aphasia or neglect after striatocapsular infarction.

The occurrence of aphasia or neglect was related to anatomo-structural (CT/MRI), functional [regional cerebral blood flow (rCBF)] and pathogenetic features [duration of middle cerebral artery (MCA) occlusion and degree of cortical leptomeningeal anastomoses] in 57 cases (26 with and 31 without aphasia or neglect) with strictly subcortical infarcts of one defined type, i.e. striatocapsular infarcts. No distinct pattern of language disturbances was found. Aphasic syndromes did not differ in the amount of involvement of the putamen, pallidum, head of caudate nucleus and white matter. Patients with aphasia or neglect had larger infarcts than those without. However, there was no specific involvement of the basal ganglia, the internal capsule or the deep white matter in patients with aphasia or neglect. Patients with aphasia or neglect had a significantly longer duration of MCA occlusion and mostly poor leptomeningeal collaterals. The cortical rCBF was significantly decreased in the cortical MCA territory in the patients with aphasia or neglect only. The rCBF remained low at follow-up after 1 year and corresponded to focal cortical atrophy on MRI, although neglect had subsided completely in all patients and aphasia had improved considerably in almost 75% of the cases. Aphasia or neglect after striatocapsular infarcts are most likely due to selective neuronal loss of the cerebral cortex due to prolonged MCA occlusion and insufficient collateral blood flow. Individual differences in recovery from aphasia after striatocapsular infarction can be explained in terms of the number of surviving cortical neurons.

Adolescent↗

Corticobasal degeneration and progressive aphasia.

OBJECTIVE: To describe language impairment in the corticobasal degeneration syndrome (CBDS) presenting as either a cognitive or motor disorder, to compare the evolution of aphasia in CBDS with primary progressive aphasia (PPA), and to examine whether the side of maximal cerebral atrophy or akinesia reflects the severity of aphasia. METHODS: We divided 40 patients with CBDS according to motor or cognitive onsets and conducted detailed language assessments with the Western Aphasia Battery (WAB). We analyzed scores according to the side of atrophy and motor rigidity. Longitudinal performance over three annual assessments was compared against matched patients with PPA and Alzheimer disease. RESULTS: Language at baseline was more impaired in cognitive than motor-onset CBDS but there was no correlation between the side of atrophy or motor impairment and the WAB. Serial assessment (n = 19) showed a similar evolution of aphasia in cognitive-onset CBDS and PPA and delayed aphasia in motor-onset CBDS. CONCLUSION: Aphasia is common in the corticobasal degeneration syndrome but there is little correlation with the laterality of clinical deficits. Cognitive-onset corticobasal degeneration syndrome and primary progressive aphasia are similar such that their aphasia appears identical.

Aged↗

[Transcortical sensory aphasia due to extensive infarction of left cerebral hemisphere].

We report a case of transcortical sensory aphasia occurred after extensive infarction of left cerebral hemisphere. A 68-year-old, right-handed man with atrial fibrillation suddenly developed cerebral embolism of left middle cerebral artery. He was treated conservatively, and the right hemiplegia, aphasia, apraxia in a slight degree and right hemispatial neglect in a slight degree consequently existed. MRI showed a large cortical and subcortical infarct lesion including the left Broca's area, central region, perisylvian area with Wernicke's area and temporal lobe. In contrast, neuropsychological evaluation using the Western Aphasia Battery (WAB) demonstrated transcortical sensory aphasia, e.g., fluency 8, auditory comprehension 1. repetition 10 and object naming 2.4. In addition to preserved repetition, both linguistic prosody and affective prosody were well preserved. Most cases with transcortical sensory aphasia are known to occur with the lesion including temporo-parieto-occipital junction of dominant hemisphere. Our patient and a few other reported cases of transcortical sensory aphasia had a lesion in perisylvian area including Wernicke's area. Therefore, it is possible that their minor hemisphere worked selectively for repetition. Furthermore, we suggest that this patient presented dissociative aphasia that all the process of repetition and the function of linguistic and emotional prosody were represented in the right hemisphere and the other functions including comprehension of word meanings were existed in the left hemisphere. We believe that our case of transcortical sensory aphasia with dissociative aphasia gives a suggestion about the mechanism and localization of repetition and prosody in the whole system of language.

Aged↗

[Recovery in aphasia (Part 1)].

In order to elucidate the factors which have an influence on the prognosis of aphasia, a correlation was studied in 76 right-handed aphasic patients between recovery rates and various factors: i.e. aphasia type, age, educational level, time between onset of aphasia and institution of therapy and initial severity. Initial evaluations on Standard Language Test of Aphasia (SLTA) were obtained within 5 months after the cerebrovascular accident and reevaluations were obtained 3 months after the initial evaluation. Recovery rates were determined by comparing scores of these 2 tests in order to coincide with clinical impression. The results obtained were as follows: Aphasia type: The highest recovery rates were seen in conduction aphasics, followed by amnestic, Wernicke, and Broca aphasics. Global aphasics had significantly lower recovery rates. It was suggested that anarthria in Broca's aphasia and jargon in Wernicke's aphasia had a significant ratarding effect on recovery rates. Age: Age and recovery rates showed a significant negative correlation: younger patients recovered better, and this trend was remarkable in Wernicke aphasics but not Broca aphasics. Education: Patients with more education tended to improve more, and this trend was most remarkable in amnestic aphasics. Time between onset of aphasia and institution of therapy: Time elapsed from onset and recovery rates showed a significant negative correlation; recovery rates decreased as the time interval from onset increased. Initial severity: Correlation between the initial severity of aphasia, measured by the initial SLTA scores and recovery rates was very high; severily affected aphasics recovered to a lesser extent than mildly affected ones and this trend was remarkable in Wernicke and Broca aphasics.

Adult↗

The impact of aphasia on marital satisfaction.

This investigation retrospectively examined changes in marital satisfaction following stroke. The relationship between such changes and other pertinent factors were also examined, including severity of aphasia, knowledge of aphasia, number of months after stroke, and length of the marriage. The subjects were 40 spouses of patients with aphasia grouped according to severity of the aphasia (mild, moderate, severe). Spouses completed two different measures of marital satisfaction--the Marital Satisfaction Scale (MSS) and the Marital Comparison Level Index (MCLI). These measures were completed in both a prestroke (retrospective reporting) and a poststroke format to allow for change to be assessed. In addition, a Knowledge of Aphasia questionnaire was completed by the normal spouses to evaluate their understanding of the disorder of aphasia. There was a significant difference between prestroke and poststroke scores on both the MSS and the MCLI, indicating a lower level of satisfaction following the stroke. The amount of change between prestroke and poststroke MSS and MCLI scores was not related to either number of months poststroke or number of years married. Although there was no relationship between changes in prestroke and poststroke scores on the MCLI and Knowledge of Aphasia scores, there was a significant correlation between changes in these scores on the MSS and Knowledge of Aphasia scores. Hence, the more knowledge spouses had regarding aphasia, the less the negative impact the stroke had on marital satisfaction, as measured by the MSS. Results are discussed in terms of the interdisciplinary treatment needs of aphasic patients and the implications for future investigations.

Aged↗

Clinical forms of aphasia.

A survey is given on the history of knowledge of aphasia and on the necessity and possibilities of classification of aphasic disability. Also the association of clinical syndromes of aphasia with particular damage to the brain is outlined. For Wernicke's aphasia (fluent aphasia with comprehension deficit) a superior posterior temporal lesion is obligatory. The persistent jargon aphasia is associated with a lesion of the supramarginal gyrus. Broca's aphasia is seen with posterior inferior frontal lesions, but additional central and subcortical components are involved in persisting deficit. The lesions producing transcortical motor aphasia involve the supplementary speech area of Penfield. Transcortical sensory aphasia is related to lesions that overlap the watershed area between the middle cerebral and the posterior cerebral arteries.

Aphasia↗

Localisation of lesions in aphasia: clinical-CT scan correlations in stroke patients.

Ninety right-handed patients with present or past evidence of aphasia following a stroke were given a standard language battery and a CT scan examination. Presence and type of aphasia were correlated with the location and extent of the CT scan lesion. Most of the findings were compatible with the traditional views about the localisation of lesions in aphasia (e.g., anterior lesions in nonfluent aphasias with good comprehension, posterior lesions in fluent aphasia, etc.). The possible explanations for some unexpected findings (e.g., purely anterior lesions in global aphasia, or purely deep lesions in Broca's aphasia) are discussed. It is stressed that in establishing clinico-CT scan correlation, careful consideration must be given to the fact that both aphasia and the underlying lesion evolve with time.

Acute Disease↗

Crossed aphasia in multilinguals.

Reports of crossed aphasia in single case studies of bilinguals have led to incidence studies of crossed aphasia among larger groups of stroke patients. Among a few others, studies carried out in India (K. R. Nair & Virmani, 1973 Indian Journal of Medical Research, 61, 9; P. Chary, 1986, In Language processing in bilinguals: Psycholinguistic and neuropsychological perspectives) have lent support to the notion of a higher incidence of crossed aphasia among bi- and multilinguals and form major citations in support of the hypothesis that bilingualism could lead to a greater bilateral cerebral representation of languages. This paper reports on the incidence of crossed aphasia in a large unselected population of stroke patients in monolingual and multilingual speakers of South India, which is in agreement with the previous reports of a higher incidence of crossed aphasia in multilinguals. However, along with this high incidence of crossed aphasia a low incidence of sinistrality was also seen. In order to confirm these findings and their significance two further studies were carried out-an incidence study of crossed aphasia in a population of mono- and multilingual aphasics and an incidence study of hand dominance in a normal population. The results and their significance to the issue of crossed aphasia in multilinguals are presented.

Adolescent↗

Situational therapy for Wernicke's aphasia.

Patients with Wernicke's or expressive aphasia are able to produce fluent speech, however, this speech may be complete gibberish sounds and totally incomprehensible, or even when comprehensible to a degree is often laced with severe errors and abnormalities such as verbal and phonemic paraphasias and neologisms. Furthermore, patient's with Wernicke's aphasia have poor to no understanding of speech or language. There is no proven method for rehabilitation of Wernicke's aphasia, or even much guidance for physicians or speech therapists to treat Wernicke's aphasia patients. In contrast to their poor to non-existent communication skills using speech or other forms of language, it has long been appreciated informally and formally that Wernicke's aphasia patients are able to communicate well, even normally, using non-verbal means such as actions, movements, props, gestures, facials expressions, and affect. Furthermore, in non-language domains Wernicke's aphasia patients can show normal memory and learning abilities. Thus, we here suggest that the non-language communication channels of Wernicke's aphasia patients be channeled and utilized in their functional rehabilitation: Specifically, we suggest that therapy for Wernicke's aphasia patients should consist of placing patients in real or simulated important functional situations--e.g., buying food, taking transport--and let the patients train and learn to use and hone their non-language communication means and skills for improved practical functioning.

Aphasia, Wernicke↗