In vivo cholinergic basal forebrain atrophy predicts cognitive decline in de novo Parkinson's disease

被引:151
作者
Ray, Nicola J. [1 ]
Bradburn, Steven [2 ]
Murgatroyd, Christopher [2 ]
Toseeb, Umar [3 ]
Mir, Pablo [4 ,5 ]
Kountouriotis, George K. [1 ]
Teipel, Stefan J. [6 ,7 ]
Grothe, Michel J. [7 ]
机构
[1] Manchester Metropolitan Univ, Dept Psychol, Manchester, Lancs, England
[2] Manchester Metropolitan Univ, Sch Healthcare Sci, Manchester, Lancs, England
[3] Univ York, Dept Educ, Derwent Coll, York YO10 5DD, N Yorkshire, England
[4] Univ Seville, Serv Neurol & Neurofisiol Clin, Inst Biomed Sevilla IBiS,Csubstantia InnominataC, Unidad Trastornos Movimiento,Hosp Univ Virgen del, Seville, Spain
[5] Ctr Invest Biomed Red Enfermedades Neurodegenerat, Seville, Spain
[6] Univ Rostock, Dept Psychosomat Med, Rostock, Germany
[7] German Ctr Neurodegenerat Dis DZNE Rostock Greifs, Rostock, Germany
关键词
mild cognitive impairment; Parkinson's disease; dementia; structural MRI; GREY-MATTER CHANGES; 5-YEAR FOLLOW-UP; ALZHEIMERS-DISEASE; NUCLEUS BASALIS; BRAIN-STIMULATION; ICICLE-PD; DEMENTIA; IMPAIRMENT; MEYNERT; MAPT;
D O I
10.1093/brain/awx310
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Cognitive impairments are a prevalent and disabling non-motor complication of Parkinson's disease, but with variable expression and progression. The onset of serious cognitive decline occurs alongside substantial cholinergic denervation, but imprecision of previously available techniques for in vivo measurement of cholinergic degeneration limit their use as predictive cognitive biomarkers. However, recent developments in stereotactic mapping of the cholinergic basal forebrain have been found useful for predicting cognitive decline in prodromal stages of Alzheimer's disease. These methods have not yet been applied to longitudinal Parkinson's disease data. In a large sample of people with de novo Parkinson's disease (n = 168), retrieved from the Parkinson's Progressive Markers Initiative database, we measured cholinergic basal forebrain volumes, using morphometric analysis of T-1-weighted images in combination with a detailed stereotactic atlas of the cholinergic basal forebrain nuclei. Using a binary classification procedure, we defined patients with reduced basal forebrain volumes (relative to age) at baseline, based on volumes measured in a normative sample (n = 76). Additionally, relationships between the basal forebrain volumes at baseline, risk of later cognitive decline, and scores on up to 5 years of annual cognitive assessments were assessed with regression, survival analysis and linear mixed modelling. In patients, smaller volumes in a region corresponding to the nucleus basalis of Meynert were associated with greater change in global cognitive, but not motor scores after 2 years. Using the binary classification procedure, patients classified as having smaller than expected volumes of the nucleus basalis of Meynert had similar to 3.5-fold greater risk of being categorized as mildly cognitively impaired over a period of up to 5 years of follow-up (hazard ratio = 3.51). Finally, linear mixed modelling analysis of domain-specific cognitive scores revealed that patients classified as having smaller than expected nucleus basalis volumes showed more severe and rapid decline over up to 5 years on tests of memory and semantic fluency, but not on tests of executive function. Thus, we provide the first evidence that volumetric measurement of the nucleus basalis of Meynert can predict early cognitive decline. Our methods therefore provide the opportunity for multiple-modality biomarker models to include a cholinergic biomarker, which is currently lacking for the prediction of cognitive deterioration in Parkinson's disease. Additionally, finding dissociated relationships between nucleus basalis status and domain-specific cognitive decline has implications for understanding the neural basis of heterogeneity of Parkinson's disease-related cognitive decline.
引用
收藏
页码:165 / 176
页数:12
相关论文
共 72 条
[1]   Hippocampal and ventricular changes in Parkinson's disease mild cognitive impairment [J].
Apostolova, Liana ;
Alves, Guido ;
Hwang, Kristy S. ;
Babakchanian, Sona ;
Bronnick, Kolbjorn S. ;
Larsen, Jan Petter ;
Thompson, Paul M. ;
Chou, Yi-Yu ;
Tysnes, Ole B. ;
Vefring, Hege K. ;
Beyer, Mona K. .
NEUROBIOLOGY OF AGING, 2012, 33 (09) :2113-2124
[2]  
Ashburner J, 1999, HUM BRAIN MAPP, V7, P254, DOI 10.1002/(SICI)1097-0193(1999)7:4<254::AID-HBM4>3.0.CO
[3]  
2-G
[4]   A fast diffeomorphic image registration algorithm [J].
Ashburner, John .
NEUROIMAGE, 2007, 38 (01) :95-113
[5]   Computational anatomy with the SPM software [J].
Ashburner, John .
MAGNETIC RESONANCE IMAGING, 2009, 27 (08) :1163-1174
[6]   Resting-State Functional Brain Networks in Parkinson's Disease [J].
Baggio, Hugo C. ;
Segura, Barbara ;
Junque, Carme .
CNS NEUROSCIENCE & THERAPEUTICS, 2015, 21 (10) :793-801
[7]   Cortical cholinergic function is more severely affected in parkinsonian dementia than in Alzheimer disease - An in vivo positron emission tomographic study [J].
Bohnen, NI ;
Kaufer, DI ;
Ivanco, LS ;
Lopresti, B ;
Koeppe, RA ;
Davis, JG ;
Mathis, CA ;
Moore, RY ;
DeKosky, ST .
ARCHIVES OF NEUROLOGY, 2003, 60 (12) :1745-1748
[8]   Frequency of Cholinergic and Caudate Nucleus Dopaminergic Deficits Across the Predemented Cognitive Spectrum of Parkinson Disease and Evidence of Interaction Effects [J].
Bohnen, Nicolaas I. ;
Albin, Roger L. ;
Mueller, Martijn L. T. M. ;
Petrou, Myria ;
Kotagal, Vikas ;
Koeppe, Robert A. ;
Scott, Peter J. H. ;
Frey, Kirk A. .
JAMA NEUROLOGY, 2015, 72 (02) :194-200
[9]   Heterogeneity of cholinergic denervation in Parkinson's disease without dementia [J].
Bohnen, Nicolaas I. ;
Mueller, Martijn L. T. M. ;
Kotagal, Vikas ;
Koeppe, Robert A. ;
Kilbourn, Michael R. ;
Gilman, Sid ;
Albin, Roger L. ;
Frey, Kirk A. .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2012, 32 (08) :1609-1617
[10]   Cerebral Glucose Metabolic Features of Parkinson Disease and Incident Dementia: Longitudinal Study [J].
Bohnen, Nicolaas I. ;
Koeppe, Robert A. ;
Minoshima, Satoshi ;
Giordani, Bruno ;
Albin, Roger L. ;
Frey, Kirk A. ;
Kuhl, David E. .
JOURNAL OF NUCLEAR MEDICINE, 2011, 52 (06) :848-855