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Binswanger in 1894 was the first to claim that white matter atrophy caused by 'vascular insufficiency' can result in dementia. He described a patient who had slow progression of dementia as well as subcortical white matter atrophy, ventricle enlargement, aphasia, hemianopsia, and hemiparesis. [9]
Dementia may occur when neurodegenerative and cerebrovascular pathologies are mixed, as in susceptible elderly people (75 years and older). [2] [5] Cognitive decline can be traced back to occurrence of successive strokes. [4] ICD-11 lists vascular dementia as dementia due to cerebrovascular disease. [1] DSM-5 lists vascular dementia as either ...
The prevention of dementia involves reducing the number of risk factors for the development of dementia, and is a global health priority needing a global response. [1] [2] Initiatives include the establishment of the International Research Network on Dementia Prevention (IRNDP) [3] which aims to link researchers in this field globally, and the establishment of the Global Dementia Observatory ...
One study found that there are 14 modifiable risk factors for dementia. Here are things you can do right now to lower your risk, according to doctors.
Previous studies have shown that exercise could help lower a person’s dementia risk by as much as 20%. A new study now suggests that people with high cardiorespiratory fitness may have a lower ...
Atrophy of any tissue means a decrement in the size of the cell, which can be due to progressive loss of cytoplasmic proteins. In brain tissue, atrophy describes a loss of neurons and the connections between them. Brain atrophy can be classified into two main categories: generalized and focal atrophy. [2]
How to Lower Dementia Risk by up to 33%, According to Research You might think of exercise as something that can benefit your heart, lungs and muscles—and it can. However, it's also great for ...
It can describe an increase in the number of red blood cells [1] ("absolute polycythemia") or to a decrease in the volume of plasma ("relative polycythemia"). [2] Absolute polycythemia can be due to genetic mutations in the bone marrow ("primary polycythemia"), physiologic adaptations to one's environment, medications, and/or other health ...