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1 ximal contrast-to-noise ratios (CNRs) in the circle of Willis.
2 light (TOF) acquisition was performed in the circle of Willis.
3 teral proximal middle cerebral artery of the circle of Willis.
4 er characterized by occlusive lesions of the circle of Willis.
5 aving or not having occlusive disease at the circle of Willis.
6 icating artery (PcomA) hypoplasticity in the circle of Willis.
7 e measure was the frequency of an incomplete circle of Willis.
8 sonance angiography was performed to examine circle of Willis anatomy and arterial spin labeled perfu
9 ble, segmental, cerebral vasoconstriction of circle of Willis arteries and normal or near-normal resu
10         The association between age-adjusted circle of Willis atherosclerosis and Alzheimer's disease
11 ith Alzheimer's disease had grossly apparent circle of Willis atherosclerosis, a percentage that was
12 hology and lacunar infarcts, large infarcts, Circle of Willis atherosclerosis, or cerebral amyloid an
13 n revealed dolichoectasia of arteries of the circle of Willis coexisting with a fusiform aneurysm of
14 ng that all ChAT-I fibers in the MCA and the circle of Willis contain NOS, and that these fibers orig
15                                          The circle of Willis (cW) is a major arterial collateral str
16 l cerebral collateral circulation within the circle of Willis (CW) predisposes to ischemia and stroke
17         We conclude that the pathobiology of circle of Willis disease in the child with sickle cell a
18 d severity of atherosclerotic plaques in the circle of Willis in Alzheimer's disease and multiple oth
19 the lower prevalence of abnormalities of the circle of Willis in MF1 mice.
20                                An incomplete circle of Willis is more common in migraine with aura su
21           MF1 mice had significantly greater circle of Willis plasticity (more PcomAs) than C57Bl/6J
22 hat the middle cerebral artery (MCA) and the circle of Willis received dense ChAT-immunoreactive (I)
23 he middle cerebral artery from distal to the circle of Willis to deep regions of the midbrain.
24 he brainstem and cerebellum but can, via the Circle of Willis upon stenosis of the internal carotid a
25  Using a quantitative score of the burden of circle of Willis variants, migraine with aura subjects h
26 emplate rating system was used to categorize circle of Willis variants.
27                      The association between circle of Willis variations and cerebral blood flow was
28                         The integrity of the circle of Willis was examined by carbon black perfusion
29                                   A complete circle of Willis was present in only one of 10 mice.
30                        The plasticity of the circle of Willis was recorded using carbon black perfusi
31                                An incomplete circle of Willis was significantly more common in the mi
32 ansfer through jugular venous return and the circle of Willis was simulated.
33 all 102 participants, atherosclerosis of the circle of Willis was strongly associated with lacunar an
34 tery hypoplasia, and an incomplete posterior circle of Willis, which were coupled with increased cere

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