AI Article Synopsis

  • Multiple studies indicate that cardiovascular issues can speed up the onset and progression of Alzheimer's disease (AD).
  • Transcranial Doppler (TCD) ultrasound was used to measure cerebral blood flow and vascular resistance to evaluate their potential as indicators of AD.
  • Findings suggested that lower blood flow and higher pulsatility are linked to AD, highlighting that TCD could noninvasively assess brain circulation and identify patients who may benefit from treatments aimed at improving blood flow.

Article Abstract

Background: Multiple lines of evidence suggest that cardiovascular co-morbidities hasten the onset of Alzheimer's disease (AD) or accelerate its course.

Methods: To evaluate the utility of cerebral vascular physical function and/or condition parameters as potential systemic indicators of AD, transcranial Doppler (TCD) ultrasound was used to assess cerebral blood flow and vascular resistance of the 16 arterial segments comprising the circle of Willis and its major tributaries.

Results: Our study showed that decreased arterial mean flow velocity and increased pulsatility index are associated with a clinical diagnosis of presumptive AD. Cerebral blood flow impairment shown by these parameters reflects the global hemodynamic and structural consequences of a multifaceted disease process yielding diffuse congestive microvascular pathology, increased arterial rigidity, and decreased arterial compliance, combined with putative age-associated cardiovascular output declines.

Conclusions: TCD evaluation offers direct physical confirmation of brain perfusion impairment and might ultimately provide a convenient and a noninvasive means to assess the efficacy of medical interventions on cerebral blood flow or reveal incipient AD. In the near term, TCD-based direct assessments of brain perfusion might offer the prospect of preventing or mitigating AD simply by revealing patients who would benefit from interventions to improve circulatory system function.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3117072PMC
http://dx.doi.org/10.1016/j.jalz.2010.09.002DOI Listing

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