Covariance PET patterns in early Alzheimer's disease and subjects with cognitive impairment but no dementia: utility in group discrimination and correlations with functional performance

被引:84
作者
Scarmeas, N
Habeck, CG
Zarahn, E
Anderson, KE
Park, A
Hilton, J
Pelton, GH
Tabert, MH
Honig, LS
Moeller, JR
Devanand, DP
Stern, Y
机构
[1] Columbia Univ Coll Phys & Surg, Taub Inst Res Alzheimers Dis Aging Brain, Cognit Neurosci Div, New York, NY 10032 USA
[2] Columbia Univ Coll Phys & Surg, Dept Neurol, New York, NY 10032 USA
[3] Univ Maryland, Dept Psychiat, Baltimore, MD 21201 USA
[4] Columbia Univ Coll Phys & Surg, Dept Psychiat, New York, NY 10032 USA
关键词
cognitive; Alzheimer's disease; covariance; MCI; PET; CBF; diagnosis;
D O I
10.1016/j.neuroimage.2004.04.032
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Although multivariate analytic techniques might identify diagnostic patterns that are not captured by univariate methods, they have rarely been used to study the neural correlates of Alzheimer's disease (AD) or cognitive impairment. Nonquantitative (H2O)-O-15 PET scans were acquired during rest in 17 probable AD subjects selected for mild severity [mean-modified Mini Mental Status Examination (mMMS) 46/57; SD 5.1], 16 control subjects (mMMS 54; SD 2.5) and 23 subjects with minimal to mild cognitive impairment but no dementia (mMMS 53; SD 2.8). Expert clinical reading had low success in discriminating AD and controls. There were no significant mean flow differences among groups in traditional univariate SPM Voxel-wise analyses or region of interest (ROI) analyses. A covariance pattern was identified whose mean expression was significantly higher in the AD as compared to controls (P = 0.03; sensitivity 76-94%; specificity 63-81%). Sites of increased concomitant flow included insula, cuneus, pulvinar, lingual, fusiform, superior occipital and parahippocampal gyri, whereas decreased concomitant flow was found in cingulate, inferior parietal lobule, middle and inferior frontal, supramarginal and precentral gyri. The covariance analysis-derived pattern was then prospectively applied to the cognitively impaired subjects: as compared to subjects with Clinical Dementia Rating (CDR) = 0, subjects with CDR = 0.5 had significantly higher mean covariance pattern expression (P = 0.009). Expression of this pattern correlated inversely with Selective Reminding Test total recall (r = -0.401, P = 0.002), delayed recall (r = -0.351, P= 0.008) and mMMS scores (r = -0.401, P = 0.002) in all three groups combined. We conclude that patients with AD may differentially express resting cerebral blood flow covariance patterns even at very early disease stages. Significant alterations in expression of resting flow covariance patterns occur even for subjects with cognitive impairment. Expression of covariance patterns correlates with cognitive and functional performance measures, holding promise for meaningful associations with underlying biopathological processes. (C) 2004 Elsevier Inc. All rights reserved.
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页码:35 / 45
页数:11
相关论文
共 90 条
[1]  
ALEXANDER GE, 1994, NEUROBIOL AGING, V15, pS36
[2]  
Alexander GE., 1994, HUM BRAIN MAPP, V2, P79, DOI DOI 10.1002/hbm.460020108
[3]  
[Anonymous], 1981, WECHLER ADULT INTELL
[4]   Impaired cerebral glucose metabolism and cognitive functioning predict deterioration in mild cognitive impairment [J].
Arnáiz, E ;
Jelic, V ;
Almkvist, O ;
Wahlund, LO ;
Winblad, B ;
Valind, S ;
Nordberg, A .
NEUROREPORT, 2001, 12 (04) :851-855
[5]   Normalizing counts and cerebral blood flow intensity in functional imaging studies of the human brain [J].
Arndt, S ;
Cizadlo, T ;
OLeary, D ;
Gold, S ;
Andreasen, NC .
NEUROIMAGE, 1996, 3 (03) :175-184
[6]   The Topographical and Neuroanatomical Distribution of Neurofibrillary Tangles and Neuritic Plaques in the Cerebral Cortex of Patients with Alzheimer's Disease [J].
Arnold, Steven E. ;
Hyman, Bradley T. ;
Flory, Jill ;
Damasio, Antonio R. ;
Van Hoesen, Gary W. .
CEREBRAL CORTEX, 1991, 1 (01) :103-116
[7]   Voxel-based mapping of brain hypometabolism in permanent amnesia with PET [J].
Aupée, AM ;
Desgranges, B ;
Eustache, F ;
Lalevée, C ;
de la Sayette, V ;
Viader, F ;
Baron, JC .
NEUROIMAGE, 2001, 13 (06) :1164-1173
[8]  
Benton A., 1955, VISUAL RETENTION TES
[9]  
BENTON AL, 1976, MULTILIGUAL APHASIA
[10]  
Berent S, 1999, J PSYCHIAT RES, V33, P7