Imaging retinal microvascular manifestations of carotid artery disease in older adults:
from diagnosis of ocular complications to understanding microvascular contributions
to cognitive impairment
Az orvos-, egészségtudományi- és gyógyszerészképzés tudományos műhelyeinek fejlesztése(EFOP-3.6.3-VEKOP-16-2017-00009)
Támogató: EFOP-VEKOP
(NKFIH K 129277) Támogató: NKFIH
Szakterületek:
Orvos- és egészségtudomány
Carotid artery stenosis (CAS) is a consequence of systemic atherosclerotic disease
affecting the aging populations of the Western world. CAS is frequently associated
with cognitive impairment. However, the mechanisms contributing to the development
of vascular cognitive impairment (VCI) associated with CAS are multifaceted and not
fully understood. In addition to embolization and decreased blood flow due to the
atherosclerotic lesion in the carotid artery, microcirculatory dysfunction in the
cerebral circulation also plays a critical role in CAS-related VCI. To better understand
the microvascular contributions to cognitive decline associated with CAS and evaluate
microvascular protective effects of therapeutic interventions, it is essential to
examine the structural and functional changes of the microvessels in the central nervous
system (CNS). However, there are some limitations of in vivo brain vascular imaging
modalities. The retinal microvasculature provides a unique opportunity to study pathogenesis
of cerebral small vessel disease and VCI, because the cerebral circulation and the
retinal circulation share similar anatomy, physiology and embryology. Similar microvascular
pathologies may manifest in the brain and the retina, thus ocular examination can
be used as a noninvasive screening tool to investigate pathological changes in the
CNS associated with CAS. In this review, ocular signs of CAS and the retinal manifestations
of CAS-associated microvascular dysfunction are discussed. The advantages and limitation
of methods that are capable of imaging the ocular circulation (including funduscopy,
fluorescein angiography, Doppler sonography, optical coherence tomography [OCT] and
optical coherence tomography angiography [OCTA]) are discussed. The potential use
of dynamic retinal vessel analysis (DVA), which allows for direct visualization of
neurovascular coupling responses in the CNS, for understanding microvascular contributions
to cognitive decline in CAS patients is also considered.