Alzheimer's Disease Progressively Reduces Visual Functional Network Connectivity

被引:20
作者
Huang, Jie [1 ]
Beach, Paul [2 ]
Bozoki, Andrea [1 ,3 ,4 ]
Zhu, David C. [1 ,5 ]
机构
[1] Michigan State Univ, Dept Radiol, 846 Serv Rd, E Lansing, MI 48824 USA
[2] Emory Univ, Sch Med, Dept Neurol, Atlanta, GA 30322 USA
[3] Michigan State Univ, Dept Neurol, E Lansing, MI 48824 USA
[4] Univ N Carolina, Dept Neurol, Chapel Hill, NC 27515 USA
[5] Michigan State Univ, Cognit Imaging Res Ctr, E Lansing, MI 48824 USA
关键词
Alzheimer's disease; face-evoked visual-processing network; FAUPA; functional areas of unitary pooled activity; resting-state visual functional connectivity network; NEUROFIBRILLARY TANGLES; AMYLOID-BETA; NEURITIC PLAQUES; CEREBRAL-CORTEX; PATHOLOGY; STATE; TAU; COGNITION;
D O I
10.3233/ADR-210017
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: Postmortem studies of brains with Alzheimer's disease (AD) not only find amyloid-beta (A beta) and neurofibrillary tangles (NFT) in the visual cortex, but also reveal temporally sequential changes in AD pathology from higher-order association areas to lower-order areas and then primary visual area (V1) with disease progression. Objective: This study investigated the effect of AD severity on visual functional network. Methods: Eight severe AD (SAD) patients, 11 mild/moderate AD (MAD), and 26 healthy senior (HS) controls undertook a resting-state fMRI (rs-fMRI) and a task fMRI of viewing face photos. A resting-state visual functional connectivity (FC) network and a face-evoked visual-processing network were identified for each group. Results: For the HS, the identified group-mean face-evoked visual-processing network in the ventral pathway started from V1 and ended within the fusiform gyrus. In contrast, the resting-state visual FC network was mainly confined within the visual cortex. AD disrupted these two functional networks in a similar severity dependent manner: the more severe the cognitive impairment, the greater reduction in network connectivity. For the face-evoked visual-processing network, MAD disrupted and reduced activation mainly in the higher-order visual association areas, with SAD further disrupting and reducing activation in the lower-order areas. Conclusion: These findings provide a functional corollary to the canonical view of the temporally sequential advancement of AD pathology through visual cortical areas. The association of the disruption of functional networks, especially the face-evoked visual-processing network, with AD severity suggests a potential predictor or biomarker of AD progression.
引用
收藏
页码:549 / 562
页数:14
相关论文
共 56 条
[1]   Visual processing in Alzheimer's disease: Surface detail and colour fail to aid object identification [J].
Adlington, Rebecca L. ;
Laws, Keith R. ;
Gale, Tim M. .
NEUROPSYCHOLOGIA, 2009, 47 (12) :2574-2583
[2]   Staging of neurofibrillary pathology in Alzheimer's disease:: A study of the BrainNet Europe consortium [J].
Alafuzoff, Irina ;
Arzberger, Thomas ;
Al-Sarraj, Safa ;
Bodi, Istvan ;
Bogdanovic, Nenad ;
Braak, Heiko ;
Bugiani, Orso ;
Del-Tredici, Kelly ;
Ferrer, Isidro ;
Gelpi, Ellen ;
Giaccone, Giorgio ;
Graeber, Manuel B. ;
Ince, Paul ;
Kamphorst, Wouter ;
King, Andrew ;
Korkolopoulou, Penelope ;
Kovacs, Gabor G. ;
Larionov, Sergey ;
Meyronet, David ;
Monoranu, Camelia ;
Parchi, Piero ;
Patsouris, Efstratios ;
Roggendorf, Wolfgang ;
Seilhean, Danielle ;
Tagliavini, Fabrizio ;
Stadelmann, Christine ;
Streichenberger, Nathalie ;
Thal, Dietmar R. ;
Wharton, Stephen B. ;
Kretzschmar, Hans .
BRAIN PATHOLOGY, 2008, 18 (04) :484-496
[3]   At the interface of sensory and motor dysfunctions and Alzheimer's disease [J].
Albers, Mark W. ;
Gilmore, Grover C. ;
Kaye, Jeffrey ;
Murphy, Claire ;
Wingfield, Arthur ;
Bennett, David A. ;
Boxer, Adam L. ;
Buchman, Aron S. ;
Cruickshanks, Karen J. ;
Devanand, Davangere P. ;
Duffy, Charles J. ;
Gall, Christine M. ;
Gates, George A. ;
Granholm, Ann-Charlotte ;
Hensch, Takao ;
Holtzer, Roee ;
Hyman, Bradley T. ;
Lin, Frank R. ;
Mc Kee, Ann C. ;
Morris, John C. ;
Petersen, Ronald C. ;
Silbert, Lisa C. ;
Stuble, Robert G. ;
Trojanowski, John Q. ;
Verghese, Joe ;
Wilson, Donald A. ;
Xu, Shunbin ;
Zhang, Li I. .
ALZHEIMERS & DEMENTIA, 2015, 11 (01) :70-98
[4]   Visual Features in Alzheimer's Disease: From Basic Mechanisms to Clinical Overview [J].
Alejandra Cerquera-Jaramillo, Maria ;
Nava-Mesa, Mauricio O. ;
Gonzalez-Reyes, Rodrigo E. ;
Tellez-Conti, Carlos ;
de-la-Torre, Alejandra .
NEURAL PLASTICITY, 2018, 2018
[5]   CORNELL SCALE FOR DEPRESSION IN DEMENTIA [J].
ALEXOPOULOS, GS ;
ABRAMS, RC ;
YOUNG, RC ;
SHAMOIAN, CA .
BIOLOGICAL PSYCHIATRY, 1988, 23 (03) :271-284
[6]  
American Psychiatric Association, 2022, Diagnostic and statistical manual of mental disorders, DOI DOI 10.1176/APPI.BOOKS.9780890425596
[7]   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
[8]   Altered Behavioral and Autonomic Pain Responses in Alzheimer's Disease Are Associated with Dysfunctional Affective, Self-Reflective and Salience Network Resting-State Connectivity [J].
Beach, Paul A. ;
Huck, Jonathan T. ;
Zhu, David C. ;
Bozoki, Andrea C. .
FRONTIERS IN AGING NEUROSCIENCE, 2017, 9
[9]   Effects of Alzheimer Disease on the Facial Expression of Pain [J].
Beach, Paul A. ;
Huck, Jonathan T. ;
Miranda, Melodie M. ;
Foley, Kevin T. ;
Bozoki, Andrea C. .
CLINICAL JOURNAL OF PAIN, 2016, 32 (06) :478-487
[10]   Autonomic, Behavioral, and Subjective Pain Responses in Alzheimer's Disease [J].
Beach, Paul A. ;
Huck, Jonathan T. ;
Miranda, Melodie M. ;
Bozoki, Andrea C. .
PAIN MEDICINE, 2015, 16 (10) :1930-1942