Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P50583 (asymmetrical)
12,197 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Cortico-basal degeneration is a rare degenerative disease connected with Tau protein pathology. Epidemiology of cortico-basal degeneration is unknown. The authors present a case of 59 years old woman with suspicion of cortico-basal degeneration. The extrapyramidal symptoms mainly on the right side with "alien limb phenomenon" and dystonia of lower limb is observed in our patient. Cortico-subcortical brain atrophy was present in MRI scans. EEG was asymmetrical. No improvement was noticed after L-Dopa. Treatment of amantidine caused the transient improvement.
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PMID:[Cortico-basal degeneration: the rare form of tau protein disease]. 1509 33

Differential diagnosis of idiopathic Parkinson's Disease is still very difficult. Even in movement disorders centers 25% of patients with clinical diagnosis of Parkinson's disease is misdiagnosed with other neurodegenerative disorders. Clinical symptoms of so called atypical parkinsonian disorders may emerge late in the course of the disease, not at the same time and good or moderate response to levodopa at early stages may be a source of misdiagnosis. Most difficult to differentiate seems to be Progressive supranuclear palsy (PSP), corticobasal degeneration (CBD) and multiple system atrophy (MSA). Authors present in selected cases usefulness of neuroimaging with rCBF SPECT and MRI in clinical diagnosis of these disorders. For PSP typical (although not pathognomonic) is decrease of metabolism and flow in frontal lobes (hypofrontalism), and in CBD asymmetrical, contralateral to the side of dominating symptoms cerebral (frontal, parietal, temporal and within striatum) atrophy. In MSA more useful (but not seen in all cases) is MRI examination with hyperintensities in putamen, pons and cerebellum or cerebellar atrophy. Due to low sensitivity of clinical criteria other tests (EMG of anal sphincter or clonidine test) with specially neuroimaging examination may be helpful in establishing of the diagnosis.
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PMID:[Regional cerebral blood flow single photon emission tomography (SPECT) and magnetic resonance imaging (MRI) may be useful in the diagnosis of patients with cortico-basal degeneration, progressive supranuclear palsy and multiple system atrophy]. 1509 54

Studies of unilateral finger movement in right-handed subjects have shown asymmetrical patterns of activation in primary motor cortex. Some studies have measured a similar asymmetry in the supplementary motor area (SMA), but others have not. To shed more light on the symmetry of function in the SMA, we used path analysis of functional MRI data to investigate effective connectivity during a unilateral finger movement task. We observed a slight asymmetry in task activation: left SMA was equally active during movement of either hand, while right SMA was more active for left-hand movement, suggesting a dominant role of left SMA. In addition, we tested for a corresponding asymmetry in the influence of SMA on sensorimotor cortex (SMC) using a path model based on the well-established principle that SMA is involved in motor control and SMC in execution. We observed that the influence of left SMA on left SMC increased during right-hand movement, and the influence of left SMA on right SMC increased during left-hand movement. However, there was no significant hand-dependent change in the influences of the right SMA. This asymmetry in connectivity implies that left SMA does play a dominant role in unilateral movements of either hand in right handers. The experiment also provides a basis for further studies of motor system connectivity in healthy or patient populations.
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PMID:Hemispheric asymmetry in supplementary motor area connectivity during unilateral finger movements. 1519 15

Delayed acquisition of developmental motor and cognitive milestones is a common clinical expression of many etiological processes. Imaging exams of developmentally delayed children often show no structural brain alterations despite suspicion of brain maturation delay. MRI studies increasingly suggest that white matter myelination finely reflects the progression in functional brain maturation. In this volumetric MRI study, we sought to evaluate whether developmental delay in children with normal conventional MRI exams is associated with reduced myelinated white matter. A total of 100 children (mean age, 4.4 years) with developmental delay and 50 normally developing age-matched control children underwent 3-D MRI to measure the volume of myelinated white matter. Patients showed a significant reduction in the relative content of myelinated white matter (accounting for 19.8% of brain volume in patients and 21.4% in control subjects, P = 0.005). The observed difference was equivalent to a 3.2-year myelination delay. Although the whole hemispheres were invariably symmetrical, the volume of myelinated white matter was asymmetrical in 30% of patients and 10% of control subjects (P = 0.006). We conclude that volumetric assessment of white matter may reveal a reduction in brain myelination beyond early childhood in developmentally delayed children showing normal brain appearance. This finding further emphasizes the view of white matter myelination as an indicator of functional brain maturation.
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PMID:Delayed myelination in children with developmental delay detected by volumetric MRI. 1519 20

Multiple studies have explored the relationship between MRI-based volumetric measurements of the hippocampus and amygdala, the degree of volumetric asymmetry of these structures, and symptom manifestation. However, considerable variability exists with regard to the reported volumetric values of these structures. The present study employed meta-analytic procedures to provide a systematic analysis of the normal population parameters of hippocampal and amygdala volumetric asymmetry as well as the absolute intrahemispheric volumes of these structures in normal adults. A literature review of studies published between 1990 and 2002 resulted in a representative sample of 82 studies (N = 3,564 participants) providing volumetric information of the hippocampus and 51 studies (N = 2,000 participants) providing volumetric information of the amygdala. Results revealed that both the hippocampus and the amygdala are reliably asymmetrical structures in normal adults, with larger right hippocampal (D = 0.21, p.001) and right amygdala (D = 0.09, p.01) volumes. Additional analyses indicated that differences in MRI magnet field strength and slice thickness values might differentially contribute to volumetric asymmetry estimates. These results expand on previous volumetric normative studies and may be relevant to investigators studying the clinical correlates of hippocampal and amygdala volumes.
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PMID:Asymmetry of the hippocampus and amygdala in MRI volumetric measurements of normal adults. 1532 14

We report a whole-brain MRI morphometric survey of asymmetry in children with high-functioning autism and with developmental language disorder (DLD). Subjects included 46 boys of normal intelligence aged 5.7-11.3 years (16 autistic, 15 DLD, 15 controls). Imaging analysis included grey-white segmentation and cortical parcellation. Asymmetry was assessed at a series of nested levels. We found that asymmetries were masked with larger units of analysis but progressively more apparent with smaller units, and that within the cerebral cortex the differences were greatest in higher-order association cortex. The larger units of analysis, including the cerebral hemispheres, the major grey and white matter structures and the cortical lobes, showed no asymmetries in autism or DLD and few asymmetries in controls. However, at the level of cortical parcellation units, autism and DLD showed more asymmetry than controls. They had a greater aggregate volume of significantly asymmetrical cortical parcellation units (leftward plus rightward), as well as a substantially larger aggregate volume of right-asymmetrical cortex in DLD and autism than in controls; this rightward bias was more pronounced in autism than in DLD. DLD, but not autism, showed a small but significant loss of leftward asymmetry compared with controls. Right : left ratios were reversed, autism and DLD having twice as much right- as left-asymmetrical cortex, while the reverse was found in the control sample. Asymmetry differences between groups were most significant in the higher-order association areas. Autism and DLD were much more similar to each other in patterns of asymmetry throughout the cerebral cortex than either was to controls; this similarity suggests systematic and related alterations rather than random neural systems alterations. We review these findings in relation to previously reported volumetric features in these two samples of brains, including increased total brain and white matter volumes and lack of increase in the size of the corpus callosum. Larger brain volume has previously been associated with increased lateralization. The sizeable right-asymmetry increase reported here may be a consequence of early abnormal brain growth trajectories in these disorders, while higher-order association areas may be most vulnerable to connectivity abnormalities associated with white matter increases.
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PMID:Brain asymmetries in autism and developmental language disorder: a nested whole-brain analysis. 1556 15

The authors report 6 children with the diagnosis of acute disseminated encephalomyelitis. Diagnosis was based on clinical and radiological findings. The most common presenting symptoms were fever and disturbed consciousness, followed by cranial nerve abnormalities and pyramidal signs. Brain MRI showed hyperintense signals on T2-weighted images, most commonly in the subcortical and periventricular white matter, brainstem, basal ganglia and thalamus. The lesions were bilateral, asymmetrical and highly variable in size and number. A preceding infection was present in 3 of 6 children. Early high-dose corticosteroids were given to all the patients. All patients recovered clinically. Follow-up ranged from 10 months to 2 years. No relapses were observed during this period. Early high-dose steroid therapy seems to be an effective treatment in acute disseminated encephalomyelitis.
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PMID:Acute disseminated encephalomyelitis. 1557 27

This article reviews abnormal mammographic findings that do not meet the BIRADS description of masses or clusters of microcalcifications: abnormalities visible on a single view, asymmetrical densities and unusual patterns (transparent appearances, ductal patterns and diffuse abnormalities). It is important for radiologists to become familiar with unusual mammographic manifestations of malignant lesions to avoid misdiagnosis. Correlation with clinical abnormalities, optimal mammographic technique and comparison with previous films are useful and important for accurate interpretation of these difficult and/or unusual cases. Ultrasound, MRI and percutaneous biopsy are also useful in selected cases.
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PMID:[Breast cancers: abnormalities visible on a single view]. 1569 24

Brain aging affects an increasing segment of the population and the role of chronic cerebrovascular disease is considered to be one of the main parameters involved. For this purpose we compared retrospectively MRI data with digitized subtraction angiography (DSA) data in a group of 50 patients focusing onto the watershed area of the carotid artery vascular territories. In order to evaluate the presence of white matter lesions (WML) in the hemispheric watershed areas, coronal fluid-attenuated inversion-recovery or axial T2 weighted MRI images of patients with symptomatic cerebrovascular insufficiency areas were compared with the capillary phase of DSA studies in anterior-posterior projection. Presence of cerebrovascular occlusive disease was evaluated on DSA using North American symptomatic carotid endarterectomy trial criteria and including evaluation of collateral vascular supply. Pathological MRI findings in the region of the watershed territories correlated overall in 66% of cases with a defect or delayed filling on DSA. In the case of asymmetrical MRI findings, there was a pathological finding of the capillary phase in the watershed area in 92% of DSA studies. Hypoperfusion in the capillary phase of the watershed area as seen on DSA correlated with the stenosis degree of the concerned carotid artery. Our findings suggest that asymmetrical findings of WML in the watershed areas as seen on MRI are caused by hemodynamic effect and a differentiation between small vessel disease and a consequence of distant stenosis may be possible under such conditions.
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PMID:White matter lesions in watershed territories studied with MRI and parenchymography: a comparative study. 1589 19

Looking at a moving pattern induces optokinetic nystagmus (OKN) and activates an assembly of cortical areas in the visual cortex, including lateral occipitotemporal (motion-sensitive area MT/V5) and adjacent occipitoparietal areas as well as ocular motor areas such as the prefrontal cortex, frontal, supplementary, and parietal eye fields. The aim of this functional MRI (fMRI) study was to investigate (1) whether stimulus direction-dependent effects can be found, especially in the cortical eye fields, and (2) whether there is a hemispheric dominance of ocular motor areas. In a group of 15 healthy subjects, OKN in rightward and leftward directions was visually elicited and statistically compared with the control condition (stationary target) and with each other. Direction-dependent differences were not found in the cortical eye fields, but an asymmetry of activation occurred in paramedian visual cortex areas, and there were stronger activations in the hemisphere contralateral to the slow OKN phase (pursuit). This can be explained by a shift of the mean eye position of gaze (beating field) in the direction of the fast nystagmus phases of approximately 2.6 degrees, causing asymmetrical visual cortex stimulation. The absence of a significant difference in the activation pattern of the cortical eye fields supports the view that the processing of eye movements in both horizontal directions is mediated in the same cortical ocular motor areas. Furthermore, no hemispheric dominance for OKN processing was found in right-handed volunteers.
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PMID:Direction-dependent visual cortex activation during horizontal optokinetic stimulation (fMRI study). 1608 Jan 62


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