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Evaluation of the Cognitive Performance of Hypertensive Patients with Silent Cerebrovascular Lesions
Published on: April 23, 2021
Cognitive function and cholinergic transmission in patients with subcortical vascular dementia and microbleeds: a TMS
Raffaele Nardone1, Pierpaolo De Blasi, Martin Seidl
1Department of Neurology, Christian Doppler Clinic, Paracelsus Medical University, Salzburg, Austria. raffaele.nardone@asbmeran-o.it
Abstract:
There has been little investigation on the association between cognitive impairment and the microbleeds (MBs) frequently seen in subcortical vascular dementia (SVaD). One possible mechanism of cognitive decline in individuals with SVaD could be disruption of cholinergic fibers by vascular lesions. Central cholinergic circuits in human brain can be tested non-invasively by means of a transcranial magnetic stimulation (TMS) protocol named short latency afferent inhibition (SAI) of motor cortex. In the present study, we used this test in SvaD patients with and without MBs. SAI was evaluated in 13 SVaD patients with MBs (MB-positive group) and the data were compared with those from a group of 15 SVaD patients without MBs (MB-negative group) and with those from 20 healthy subjects. Moreover, we studied covariation of individual SAI values with the Mini-Mental State Examination (MMSE) total score and subscores. SAI was significantly reduced in the MB-positive group when compared with the MB-negative group and the control subjects. Total MMSE score, "attention and calculation" and "orientation" subscores were significantly lower in the MB-positive group than in the MB-negative group; SAI showed a positive correlation with total MMSE score. Adjustment for age, gender, education, presence of lacunae, severe white matter hyperintensities or severe periventricular hyperintensities did not affect these findings. This study provides novel physiological evidence that MBs have an impact on central cholinergic function that is independent of the extent of associated white matter changes and ischaemic stroke. This finding shows that TMS have potential diagnostic and therapeutic implications. TMS studies may help in evaluating the causes of cognitive impairment in cerebrovascular diseases.
Insights
Microbleeds (MBs) in subcortical vascular dementia (SVaD) significantly impair cholinergic function, impacting cognitive scores. Transcranial magnetic stimulation (TMS) reveals this link, suggesting potential diagnostic tools for cognitive decline.
Area of Science:
- Neuroscience
- Neurology
- Cognitive Science
Background:
- Subcortical vascular dementia (SVaD) is associated with cognitive impairment.
- Microbleeds (MBs) are common in SVaD, but their impact on cognitive decline is understudied.
- Cholinergic pathways are crucial for cognition and may be disrupted by vascular lesions.
Purpose of the Study:
- To investigate the association between MBs and cognitive impairment in SVaD.
- To assess central cholinergic function using transcranial magnetic stimulation (TMS) in SVaD patients with and without MBs.
- To explore the relationship between microbleeds, cholinergic function, and cognitive performance.
Main Methods:
- Evaluated short latency afferent inhibition (SAI) of the motor cortex using TMS in three groups: SVaD patients with MBs (MB-positive), SVaD patients without MBs (MB-negative), and healthy controls.
- Compared SAI values across groups.
- Correlated SAI values with Mini-Mental State Examination (MMSE) scores.
Main Results:
- SAI was significantly reduced in the MB-positive group compared to both MB-negative and control groups.
- MB-positive patients exhibited lower total MMSE scores and deficits in "attention and calculation" and "orientation" subscores.
- SAI positively correlated with total MMSE scores, independent of other vascular factors.
Conclusions:
- Microbleeds in SVaD are associated with impaired central cholinergic function.
- This cholinergic deficit is independent of white matter changes and ischemic stroke extent.
- TMS, specifically SAI, shows potential for diagnosing and understanding cognitive impairment in cerebrovascular diseases.
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