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Argye E Hillis

Publications and source records attributed to Argye E Hillis.

At least 19 recordsLinked to original sources

Utility of behavioral versus cognitive measures in differentiating between subtypes of frontotemporal lobar degeneration and Alzheimer's disease.

We hypothesized that a modified version of the Frontal Behavioral Inventory (FBI-mod), along with a few cognitive tests, would be clinically useful in distinguishing between clinically defined Alzheimer's disease (AD) and subtypes of frontotemporal lobar degeneration (FTLD): frontotemporal dementia (dysexecutive type), progressive nonfluent aphasia, and semantic dementia. We studied 80 patients who were diagnosed with AD (n = 30) or FTLD (n = 50), on the basis of a comprehensive neuropsychological battery, imaging, neurological examination, and history. We found significant between-group differences on the FBI-mod, two subtests of the Rey Auditory Verbal Learning Test (verbal learning and delayed recall), and the Trail Making Test Part B (one measure of 'executive functioning'). AD was characterized by relatively severe impairment in verbal learning, delayed recall, and executive functioning, with relatively normal scores on the FBI-mod. Frontotemporal dementia was characterized by relatively severe impairment on the FBI-mod and executive functioning in the absence of severe impairment in verbal learning and recall. Progressive nonfluent aphasia was characterized by severe impairment in executive functioning with relatively normal scores on verbal learning and recall and FBI-mod. Finally, semantic dementia was characterized by relatively severe deficits in delayed recall, but relatively normal performance on new learning, executive functioning, and on FBI-mod. Discriminant function analysis confirmed that the FBI-mod, in conjunction with the Rey Auditory Verbal Learning Test, and the Trail Making Test Part B categorized the majority of patients as subtypes of FTLD or AD in the same way as a full neuropsychological battery, neurological examination, complete history, and imaging. These tests may be useful for efficient clinical diagnosis, although progressive nonfluent aphasia and semantic dementia are likely to be best distinguished by language tests not included in standard neuropsychological test batteries.

Aged↗

Right hemispatial neglect: frequency and characterization following acute left hemisphere stroke.

The frequency of various types of unilateral spatial neglect and associated areas of neural dysfunction after left hemisphere stroke are not well characterized. Unilateral spatial neglect (USN) in distinct spatial reference frames have been identified after acute right, but not left hemisphere stroke. We studied 47 consecutive right handed patients within 48h of left hemisphere stroke to determine the frequency and distribution of types of right USN using cognitive testing and MRI imaging. The distribution of USN types was different from the previously reported distribution following acute right hemisphere stroke. In this left hemisphere stroke population, allocentric neglect was more frequent than egocentric neglect.

Adult↗

Restoring cerebral blood flow reveals neural regions critical for naming.

We identified areas of the brain that are critical for naming pictures of objects, using a new methodology for testing which components of a network of brain regions are essential for that task. We identified areas of hypoperfusion and structural damage with magnetic resonance perfusion- and diffusion-weighted imaging immediately after stroke in 87 individuals with impaired picture naming. These individuals were reimaged after 3-5 d, after a subset of patients underwent intervention to restore normal blood flow, to determine areas of the brain that had reperfused. We identified brain regions in which reperfusion was associated with improvement in picture naming. Restored blood flow to left posterior middle temporal/fusiform gyrus, Broca's area, and/or Wernicke's area accounted for most acute improvement after stroke. Results show that identifying areas of reperfusion that are associated with acute improvement of a function can reveal the brain regions essential for that function.

Aphasia, Broca↗

Magnetic resonance perfusion imaging in the study of language.

This paper provides a brief review of various uses of magnetic resonance perfusion imaging in the investigation of brain/language relationships. The reviewed studies illustrate how perfusion imaging can reveal areas of brain where dysfunction due to low blood flow is associated with specific language deficits, and where restoration of blood flow to improve the tissue function results in recovery of those deficits. This sort of evidence helps to reveal areas of the brain that are essential to a particular language task. Other studies have provided clues regarding the mechanisms of early language recovery, or have shown how perfusion imaging can identify patients with chronic hypoperfusion due to cerebrovascular stenosis in whom the BOLD effect in fMRI may be absent or reduced in areas of neural activation.

Brain↗

Optimized detection of lactate at high fields using inner volume saturation.

In localized proton MR spectroscopy ((1)H-MRS) in vivo, the detection of lactate (Lac) is affected by modulation of its resonances due to homonuclear scalar couplings (J). A simple and convenient way to distinguish Lac from lipids is to set the TE to 1/J so that the Lac signal is inverted while other resonances (such as lipid) remain in-phase. However, at high field strengths, such as 3 Tesla or above, the modulation of the Lac signal is complicated by chemical shift effects that cause modulation patterns to vary within different subregions of the localized volume. Under some conditions the Lac signal may even disappear completely. In this note we introduce the concept of inner volume saturation (IVS), which makes use of high bandwidth spatial pulses to remove the signal corresponding to the regions of the localized volume that contribute unwanted modulation patterns. The method is described theoretically and demonstrated experimentally at 3 Tesla in a phantom and a patient with acute stroke. The phantom measurements indicate that virtually 100% of the Lac signal can be recovered using this method. The method should be feasible at magnetic fields above 3 Tesla, and may also be applied to other coupled spin systems in which modulation effects are important.

Aged↗

The contribution of neuroimaging to the study of language and aphasia.

New structural and functional imaging methods continue to be developed at a rapid pace. In the last 25 years, advanced imaging techniques have provided insights into how language is represented and processed in the brain and how it can be disrupted by damage to, or dysfunction of, various parts of the brain. Imaging studies have also yielded new information regarding how individuals recover language after stroke. We briefly review the strengths and weaknesses of the various radiological methods currently used to study language and aphasia.

Aphasia↗

Rehabilitation of unilateral spatial neglect: new insights from magnetic resonance perfusion imaging.

OBJECTIVE: To illustrate how magnetic resonance perfusion imaging has provided insights regarding rehabilitation of different forms of hemispatial neglect. DATA SOURCES: Recent studies of different types of neglect and their neural substrates and of rehabilitation strategies that might be differentially effective for different types of neglect. STUDY SELECTION: Author selected all articles on PubMed that were identified with the key words reference frame or perfusion-weighted imaging plus neglect plus rehabilitation and other relevant articles that were cited therein. DATA EXTRACTION: An independent reviewer determined if the data presented provided evidence relevant to planning or developing rehabilitation for stroke patients with distinct forms of neglect. DATA SYNTHESIS: Results from a number of studies converge on the hypothesis that hypoperfusion and/or infarct of right angular gyrus and intraparietal sulcus can cause viewer-centered neglect, whereas hypoperfusion and/or infarct of right superior temporal gyrus can lead to left stimulus-centered neglect. Distinct forms of rehabilitation might be differentially useful for distinct types of spatial neglect, even though an individual patient may have 2 or more types of neglect. Magnetic resonance perfusion imaging has also shown that fluctuations in neglect in the acute-subacute period after stroke are often due to changes in blood flow caused by changes in blood pressure. CONCLUSIONS: Consideration of neglect type and status of cerebral blood flow can be useful in planning strategies to ameliorate each individual's deficits.

Cerebrovascular Circulation↗

Recovery from aphasia following brain injury: the role of reorganization.

Language is predominantly a left hemisphere function, yet patients with extensive damage to known language areas often recover quite well in the days to weeks to even years following focal brain injury. This recovery period can be divided into three overlapping stages: acute, subacute, and chronic, each with different underlying neural mechanisms. Reorganization of structure and function through the expression of neural plasticity plays a crucial role in recovery of language at least during the subacute phase of weeks to months after the occurrence of an injury. In this chapter we review the evidence for reorganization of language function after injury, the role it plays in the recovery of language following brain damage, and how knowledge of the mechanisms of recovery will allow design of more effective methods of rehabilitation.

Aphasia↗

Compendium of cerebrovascular diseases.

Stroke is characterized by the sudden loss of circulation to an area of the brain, resulting in a corresponding loss of neurological function. In this article, we will discuss the epidemiology, etiopathophysiology, and symptomatology of different types of cerebrovascular diseases. Specific stroke syndromes will be reviewed to convey the myriad presentations of cerebrovascular disease.

Carotid Artery Diseases↗

Demographic factors influence cognitive recovery after shunt for normal-pressure hydrocephalus.

BACKGROUND: Several studies have reported that ventriculoperitoneal shunt insertion for treatment of normal-pressure hydrocephalus results in improvement of gait and, less frequently, improvement of cognition. We sought to identify the demographic factors associated with cognitive improvement after shunt insertion to improve assessment of prognosis for cognitive gains with treatment. REVIEW SUMMARY: We report cognitive testing before and after ventriculoperitoneal shunt insertion in 36 patients with normal pressure hydrocephalus, who previously had improvement of any clinical symptom--gait, urinary incontinence, cognition--after a diagnostic trial of continuous cerebrospinal fluid drainage. CONCLUSIONS: One third of patients met our definition of good cognitive improvement: improvement by at least 25% on at least half of the cognitive tests administered. There was a significant negative linear relationship between age and probability of good cognitive improvement. Additionally, the degree of cognitive improvement was found to be greater in women than men (P = 0.002). Age was found to be a better predictor of improvement on memory tests, while sex was a better predictor of improvement on non-memory tests after shunt insertion.

Age Factors↗

Disorders of speech and language: aphasia, apraxia and dysarthria.

PURPOSE OF REVIEW: We review recent important papers pertaining to acquired aphasia, apraxia of speech and dysarthria with special attention to clinically significant work published in the last 12 months. RECENT FINDINGS: The role of the contralateral inferior frontal gyrus in language recovery after stroke is controversial, but is an area of active research, particularly in functional imaging studies. Recent treatment studies in poststroke aphasia have shown that intensity of language therapy may be more important than the method of therapy. Some studies have indicated that amphetamines, piracetam and repetitive transcortical magnetic stimulation may be effective adjuncts to speech and language therapy. Treatment studies for poststroke dysarthria indicate that speech supplementation strategies may be effective and deserve further study. SUMMARY: Recent studies of aphasia provide clues regarding language recovery poststroke, but further studies of the role of the ipsi and contralateral inferior frontal gyrus are necessary, and should be longitudinal. There are relatively few recent studies on the treatment of acquired disorders of speech and language, other than poststroke aphasia.

Aphasia↗

Neural correlates of modality-specific spatial extinction.

Sites of lesions responsible for visual, tactile, and/or motor extinction have not been clearly identified. We sought to determine the frequency of extinction in various modalities immediately after acute ischemic stroke, the rate of co-occurrence of extinction across modalities, and areas of infarct and/or hypoperfusion associated with each modality of extinction. A total of 148 patients with right supratentorial stroke were studied. In Study 1, 88 patients without hemiplegia, hemianesthesia, or visual field cuts were tested within 24 hours of onset for visual, tactile, and motor extinction, and underwent magnetic resonance diffusion and perfusion imaging. Associations between modality of extinction and areas of neural dysfunction (hypoperfusion/infarct) were identified. Of the 88 patients, 19 had only tactile extinction, 8 had only visual extinction, 12 had only motor extinction, 14 had extinction in two or more modalities, and 35 had no extinction. Tactile extinction was associated with neural dysfunction in the inferior parietal lobule; visual extinction was associated with dysfunction in the visual association cortex; and motor extinction was associated with neural dysfunction in the superior temporal gyrus. In Study 2, data from 60 patients who were excluded from Study 1 because of motor deficits were analyzed in the same way to determine whether frontal lesions contributed to visual or tactile extinction. Results again demonstrated that tactile extinction is associated with inferior parietal dysfunction, and visual extinction is associated with dysfunction of the visual association cortex. Potential accounts of the results, based on the "hemisphere rivalry" model of extinction and the limited attentional capacity model, are considered.

Aged↗

Cognitive rehabilitation interventions for neglect and related disorders: moving from bench to bedside in stroke patients.

The spatial neglect syndrome, defined by asymmetric attention and action not attributed to primary motor or sensory dysfunction and accompanied by functional disability, is a major cause of post-stroke morbidity. In this review, we consider the challenges and obstacles facing scientific researches wishing to evaluate the mechanisms and effectiveness of rehabilitation interventions. Spatial neglect is a heterogeneous disorder, for which consensus research definitions are not currently available, and it is unclear which of the deficits associated with the syndrome causes subsequent disability. We review current opinion about methods of assessment, suggest a rational approach to selecting therapies which requires further study, and make systems-level and theoretical recommendations for building theory. We lastly review some creative questions for consideration in future research.

Animals↗

Neurobiology of unilateral spatial neglect.

Hemispatial neglect is a common and disabling consequence of stroke. Earlier studies aimed to identify a single area of the brain where damage caused neglect and sought a single disrupted process that could account for the symptoms. Recent studies have shifted toward identifying component processes and representations underlying spatial attention required for various tasks and identifying areas of the brain responsible for each component that together constitute the network of regions responsible for neglect. This review focuses on recent insights into the mechanisms of neglect, regions of neural dysfunction that cause disruption of particular components or forms of neglect, and potential means of ameliorating neglect. Converging evidence supporting these insights comes from new imaging modalities in acute stroke, functional imaging, transcranial magnetic stimulation, electrophysiological studies in humans, and single-cell recording studies in nonhuman primates.

Animals↗

Statistical atlas of acute stroke from magnetic resonance diffusion-weighted-images of the brain.

This study presents a method for computing a probabilistic atlas that describes the spatial distributions of acute infarcts of the brain. The data consisted of diffusion-weighted-images (DWI) and high-resolution T1-weighted MR images representing 22 studies from 22 subjects. All DWI data sets contained high-intensity lesions on B-1000 maps, known from clinical history to be related to acute stroke. To compute the atlas, manually segmented infarcts on original DWI were spatially transformed and registered to a common coordinate system. This coordinate system allowed combining all lesions into a statistical atlas in the model space. As a result, the computed probabilistic map showed mild left-sided predominance of brain infarcts, which likely represents asymmetry in eloquence of brain regions. In our opinion, the statistical atlas of acute brain infarcts can facilitate computer-based detection of stroke in large image data sets.

Brain↗

Baseline neuropsychological profile and cognitive response to cerebrospinal fluid shunting for idiopathic normal pressure hydrocephalus.

OBJECTIVE: To evaluate neurocognitive changes and predict neurocognitive outcome after ventriculoperitoneal shunting for idiopathic normal pressure hydrocephalus (INPH). BACKGROUND: Reports of neurocognitive response to shunting have been variable and studies that predict cognitive outcomes after shunting are limited. We reviewed our experience with cognitive outcomes for INPH patients who were selected for shunting based on abnormal cerebrospinal fluid (CSF) pressure monitoring and positive response in any of the NPH symptoms following large volume CSF drainage. METHODS: Forty-two INPH patients underwent neurocognitive testing and Folstein Mini-Mental State Examination (MMSE) prior to shunting. Neurocognitive testing or MMSEwere performed at least 3 months after shunt insertion. Significant improvement in a neurocognitive subtest was defined as improvement by one standard deviation (1 SD) for the patient's age, sex and education level. Significant improvement in overall neurocognitive outcome was defined as a 4-point improvement in MMSE or improvement by 1 SD in 50% of the administered neurocognitive subtests. Nonparametric tests were used to assess changes. Predictors of outcome were assessed via logistic regression analysis. RESULTS: Twenty-two patients (52.3%) showed overall neurocognitive improvement, and significant improvement was seen in tests of verbal memory and psychomotor speed. Predictive analysis showed that patients scoring more than 1 SD below mean at baseline on verbal memory immediate recall were fourfold less likely to show overall cognitive improvement, and sixfold less likely if also associated with visuoconstructional deficit or executive dysfunction. Verbal memory scores at baseline were higher in patients who showed overall cognitive improvement. CONCLUSIONS: Shunting INPH patients on the basis of CSF pressure monitoring and drainage response shows a significant rate of cognitive improvement, and baseline neurocognitive test scores may distinguish patients likely to respond to shunt surgery from those who will not.

Aged↗