Stroke Clinical Trial
Official title:
White Matter Connections and Memory: the STRATEGIC Study
In patients who have had a stroke, memory problems are common. Some patients with memory problems improve over the first year after stroke, but recovery is unpredictable. The STRATEGIC study assesses patients with recent stroke and follows them up after one year. The study uses cognitive testing and advanced MRI to understand the brain's mechanism for recovery from memory problems and to identify factors that may predict later recovery.
Memory breakdown in older age is a major challenge for medical research, with an increasing
burden in personal, societal and fiscal terms. Stroke is an important cause. Memory depends
on widespread networks in the brain which are bound together by white matter connections,
which essentially act as the wiring of brain networks. This project uses a technique called
diffusion tensor MRI to investigate these connections and their relationship to brain
function and patterns of memory impairment after stroke.
Previous research showed that a tract called the fornix was most important in the healthy
brain and in ageing. However, in individuals at an early stage of memory decline alternative
pathways became disproportionately more important. This led to the idea that individuals with
early memory decline might be especially vulnerable to injury to these alternative tracts
from stroke. The purpose of this project is to test this idea.
The project focuses on patients with recent stroke. Participants undergo MRI, including
diffusion tensor MRI, and in-depth testing of memory and other cognitive functions. The
pattern of damage to temporal lobe connections in the brain will be assessed and related to
the impact of brain infarction on memory. Analysis will determine how undamaged tracts
contribute to recovery over one year. Finally, cutting edge computational image analysis
techniques will be applied to try and predict memory profile in more detail and extract
maximum information about prognosis from brain images.
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