New MRI, 18F-DOPA and 11C-(+)-α-dihydrotetrabenazine templates for Macaca fascicularis neuroimaging: Advantages to improve PET quantification

被引:20
作者
Collantes, M. [2 ]
Prieto, E. [1 ]
Penuelas, I. [1 ,2 ]
Blesa, J. [3 ,4 ,5 ]
Juri, C. [3 ,4 ]
Marti-Climent, J. M. [1 ]
Quincoces, G. [1 ]
Arbizu, J. [1 ]
Riverol, M. [6 ]
Zubieta, J. L. [7 ]
Rodriguez-Oroz, M. C. [3 ,4 ,5 ]
Luquin, M. R. [6 ]
Richter, J. A. [1 ]
Obeso, J. A. [3 ,4 ,5 ]
机构
[1] Univ Navarra Clin, Dept Nucl Med, Pamplona 31008, Spain
[2] Ctr Appl Med Res CIMA, Small Anim Imaging Res Unit, Pamplona, Spain
[3] CIMA, Neurosci Div, Basal Ganglia & Movement Disorders Grp, Pamplona, Spain
[4] Univ Navarra Clin, Dept Neurol & Neurosurg, Pamplona 31008, Spain
[5] Ctr Invest Biomed Red Enfermedades Neurodegenerat, CIBERNED, Pamplona, Spain
[6] Ctr Appl Med Res CIMA, Lab Regenerat Therapy, Pamplona, Spain
[7] Univ Navarra Clin, Dept Radiol, Pamplona 31008, Spain
关键词
PARKINSONS-DISEASE; NONHUMAN-PRIMATES; DOPAMINE SYSTEM; ANIMAL-MODELS; HUMAN BRAIN; MONKEY; TRANSPORTER; REGISTRATION; RADIOLIGAND; RECEPTORS;
D O I
10.1016/j.neuroimage.2009.04.078
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Normalization of neuroimaging Studies to a stereotaxic space allows the utilization of standard volumes of interest (VOIs) and voxel-based analysis (SPM). Such spatial normalization of PET and MRI studies requires a high quality template image. The aim of this study was to create new MRI and PET templates of F-18-DOPA and C-11-(+)-alpha-dihydrotetrabenzine (C-11-DTBZ) of the Macaca fascicularis brain, an important animal model of Parkinson's disease. MRI template was constructed as a smoothed average of the scans of 15 healthy animals, previously transformed into the space of one representative MRI. In order to create the PET templates, F-18-DOPA and C-11-DTBZ PET of the same subjects were acquired in a dedicated small animal PET scanner and transformed to the created MRI template space. To validate these templates for PET quantification, parametric Values obtained with a standard VOI-map applied after spatial normalization to each template were statistically compared to results Computed using individual VOIs drawn for each animal. The high correlation between both procedures validated the utilization of all the templates, improving the reproducibility of PET analysis. To prove the utility of the templates for voxel-based quantification, dopamine striatal depletion in a representative monkey treated with 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) was assessed by SPM analysis of C-11-DTBZ PET. A symmetric reduction in striatal C-11-DTBZ uptake was detected in accordance with the induced lesion. In conclusion, templates of M. fuscicularis brain have been constructed and validated for reproducible and automated PET quantification. All templates are electronically available via the internet. (C) 2009 Elsevier Inc. All rights reserved.
引用
收藏
页码:533 / 539
页数:7
相关论文
共 43 条
[1]   Template images for nonhuman primate neuroimaging: 1. Baboon [J].
Black, KJ ;
Snyder, AZ ;
Koller, JM ;
Gado, MH ;
Perlmutter, JS .
NEUROIMAGE, 2001, 14 (03) :736-743
[2]   Template images for nonhuman primate neuroimaging: 2. Macaque [J].
Black, KJ ;
Koller, JM ;
Snyder, AZ ;
Perlmutter, JS .
NEUROIMAGE, 2001, 14 (03) :744-748
[3]  
BLACK KJ, 2005, 45418 SOC NEUR
[4]   ROUTES OF ADMINISTRATION AND EFFECT OF CARBIDOPA PRETREATMENT ON 6-[F-18]FLUORO-L-DOPA/PET SCANS IN NONHUMAN-PRIMATES [J].
CHAN, GLY ;
DOUDET, DJ ;
DOBKO, T ;
HEWITT, KA ;
SCHOFIELD, P ;
PATE, BD ;
RUTH, TJ .
LIFE SCIENCES, 1995, 56 (21) :1759-1766
[5]  
Collantes M, 2008, REV ESP MED NUCL, V27, P103
[6]   PET imaging of implanted human retinal pigment epithelial cells in the MPTP-induced primate model of Parkinson's disease [J].
Doudet, DJ ;
Cornfeldt, ML ;
Honey, CR ;
Schweikert, AW ;
Allen, RC .
EXPERIMENTAL NEUROLOGY, 2004, 189 (02) :361-368
[7]   Nonhuman primate models of Parkinson's disease [J].
Emborg, Marina E. .
ILAR JOURNAL, 2007, 48 (04) :339-355
[8]  
EVANS AC, 1993, NUCLEAR SCIENCE SYMPOSIUM & MEDICAL IMAGING CONFERENCE, VOLS 1-3, P1813, DOI 10.1109/NSSMIC.1993.373602
[9]  
Friston K., 1995, HUMAN BRAIN MAPPING, V2, P189, DOI DOI 10.1002/HBM.460020402
[10]  
Friston K., 1995, HUM BRAIN MAP, V2, P165