49 results on '"Fazekas F."'
Search Results
2. Normal-Appearing White Matter Changes in Multiple Sclerosis: Magnetization Transfer
3. Risk factors and progression of small vessel disease-related cerebral abnormalities
4. Microangiopathy-related cerebral damage and angiotensinogen gene: from epidemiology to biology
5. Can small-vessel disease-related cerebral abnormalities be used as a surrogate marker for vascular dementia trials?
6. CT and MRI rating of white matter changes
7. Future Aspects of the Presurgical Evaluation in Epilepsy
8. Genetic aspects of microangiopathy-related cerebral damage
9. Longitudinal change of white matter abnormalities
10. Results of EEG brain mapping and neuroimaging methods in Senile Dementia of Alzheimer’s Typ (SDAT) and Vascular Dementia (VD)
11. Assessment of Iron Concentration by Direct Saturation Imaging (DSI) in a Two- Pool Model of Brain Tissue
12. Ein erhöhtes vaskulär-hämodynamisches Risiko als Komplikationsfaktor im Verlauf und in der Behandlung des Parkinson
13. CBF Measurements in Parkinson’s Disease
14. Alterations of Cerebral Blood Flow in Slight Head Injury
15. Rheological Determinants of Cerebral Blood Flow
16. Measurements of CBF in Patients with Epilepsy
17. Difficulties in the clinical diagnosis of vascular dementia and dementia of the Alzheimer type — comparison of clinical classifications
18. Problems of differential diagnosis between depressive pseudodementia and Alzheimer’s disease
19. The neuropathological diagnosis of Alzheimer disease
20. Cognitive correlates of cerebral white matter changes
21. Apolipoprotein E genotype, atherosclerosis, and cognitive decline: the Rotterdam study
22. Concepts on the prognostic significance of white matter changes
23. Dose-dependent effects of Cerebrolysin® on EEG and short term memory of healthy volunteers during control and hyperventilation induced cerebral ischemia
24. Influence of BDNF and FCS on viability and programmed cell death (PCD) of developing cortical chicken neurons in vitro
25. Brain abnormalities in the elderly: frequency and predictors in the United States (the Cardiovascular Health Study)
26. Further evidence that Cerebrolysin® protects cortical neurons from neurodegeneration in vitro
27. Cerebrolysin® protects isolated cortical neurons from neurodegeneration after brief histotoxic hypoxia
28. The influence of Cerebrolysin® and E021 on spatial navigation of 24-month-old rats
29. Can Cerebrolysin® influence chronic deterioration of spatial learning and memory?
30. Molecular regulation of the blood-brain barrier GLUT1 glucose transporter by brain-derived factors
31. Antioxidant systemic effect of short-term Cerebrolysin® administration
32. Brain-derived peptides reduce the size of cerebral infarction and loss of MAP2 immunoreactivity after focal ischemia in rats
33. Neurotrophic activities and therapeutic experience with a brain derived peptide preparation
34. Perspectives in clinical Alzheimer’s disease research and the development of antidementia drugs
35. The role of glutamate in dementia
36. Combination of the different biological markers for increasing specificity of in vivo Alzheimer’s testing
37. Current diagnostic methods and outcome variables for clinical investigation of Alzheimer’s disease
38. Positron emission tomography for diagnosis of Alzheimer’s disease and vascular dementia
39. Anti-oxidants and cognitive function: a review of clinical and epidemiologic studies
40. Cerebrospinal fluid levels of Aβ42 and tau: potential markers of Alzheimer’s disease
41. Presenilins and Alzheimer’s disease: the role of Aβ42
42. Apolipoprotein E4, cholinergic integrity and the pharmacogenetics of Alzheimer’s disease
43. Biological markers for the diagnosis of Alzheimer’s disease
44. Mechanisms of neurofibrillary degeneration and the formation of neurofibrillary tangles
45. Evolution of neuronal changes in the course of Alzheimer’s disease
46. Mechanisms of synaptic pathology in Alzheimer’s disease
47. Proteolytic processing of Alzheimer’s disease associated proteins
48. The cytoskeleton in Alzheimer disease
49. The progression of the lesions in Alzheimer disease: insights from a prospective clinicopathological study
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