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Hippocampal volume and shape in pure subcortical vascular dementia

Authors
 Geon Ha Kim  ;  Jae Hong Lee  ;  Sang Won Seo  ;  Jeong Hun Kim  ;  Joon-Kyung Seong  ;  Byoung Seok Ye  ;  Hanna Cho  ;  Young Noh  ;  Hee Jin Kim  ;  Cindy W. Yoon  ;  Seung Jun Oh  ;  Jae Seung Kim  ;  Yearn Seong Choe  ;  Kyung Han Lee  ;  Sung Tae Kim  ;  Jung Won Hwang  ;  Jee Hyang Jeong  ;  Duk L. Na 
Citation
 NEUROBIOLOGY OF AGING, Vol.36(1) : 485-491, 2015 
Journal Title
NEUROBIOLOGY OF AGING
ISSN
 0197-4580 
Issue Date
2015
MeSH
Aged ; Aged, 80 and over ; Alzheimer Disease/diagnostic imaging ; Alzheimer Disease/pathology ; Aniline Compounds ; Atrophy ; Carbon Radioisotopes ; Cognition ; Dementia, Vascular/diagnostic imaging ; Dementia, Vascular/pathology* ; Dementia, Vascular/psychology ; Female ; Hippocampus/diagnostic imaging ; Hippocampus/pathology* ; Humans ; Magnetic Resonance Imaging ; Male ; Middle Aged ; Positron-Emission Tomography ; Radiopharmaceuticals ; Thiazoles
Keywords
Alzheimer's disease ; Hippocampus ; PiB-PET ; Vascular dementia
Abstract
The purposes of the present study were to explore whether hippocampal atrophy exists in pure subcortical vascular dementia (SVaD) as defined by negative (11)C-Pittsburg compound-B (PiB(-)) positron emission tomography and to compare hippocampal volume and shape between PiB(-) SVaD and PiB positive (PiB(+)) Alzheimer's disease (AD) dementia. Hippocampal volume and shape were compared among 40 patients with PiB(-) SVaD, 34 with PiB(+) AD, and 21 elderly with normal cognitive function (NC). The normalized hippocampal volume of PiB(-) SVaD was significantly smaller than NC but larger than that of PiB(+) AD (NC > PiB(-) SVaD > PiB(+) AD). Both PiB(-) SVaD and PiB(+) AD patients had deflated shape changes in the cornus ammonis (CA) 1 and subiculum compared with NC. However, direct comparison between PiB(-) SVaD and PiB(+) AD demonstrated more inward deformity in the subiculum of the left hippocampus in PiB(+) AD. PiB(-) SVaD patients did have smaller hippocampal volumes and inward shape change on CA 1 and subiculum compared with NC, suggesting that cumulative ischemia without amyloid pathology could lead to hippocampal atrophy and shape changes.
Full Text
http://www.sciencedirect.com/science/article/pii/S0197458014005223
DOI
10.1016/j.neurobiolaging.2014.08.009
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Neurology (신경과학교실) > 1. Journal Papers
Yonsei Authors
Ye, Byoung Seok(예병석) ORCID logo https://orcid.org/0000-0003-0187-8440
Cho, Hanna(조한나) ORCID logo https://orcid.org/0000-0001-5936-1546
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/157289
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