Cherry SR, Gambhir SS (2001) Use of Positron Emission Tomography in Animal Research. ILAR J 42:219–232
Article CAS PubMed Google Scholar
Saraceno C, Musardo S, Marcello E, Pelucchi S, Di Luca M (2013) Modeling Alzheimer’s disease: from past to future. Front Pharmacol 4:77
Article CAS PubMed PubMed Central Google Scholar
Chatziioannou AF (2002) Molecular imaging of small animals with dedicated PET tomographs. Eur J Nucl Med 29:98–114
JACOBS AH, LI H, MONFARED P et al (2003) PET-based molecular imaging in neuroscience. Eur J Nucl Med Mol Imaging 30:1051–1065
Article CAS PubMed Google Scholar
Herschman HR (2003) Micro-PET imaging and small animal models of disease. Curr Opin Immunol 15:378
Article CAS PubMed Google Scholar
Masdeu JC (2011) Neuroimaging in Psychiatric disorders. Neurotherapeutics 8:93–102
Article PubMed PubMed Central Google Scholar
Barré-Sinoussi F, Montagutelli X (2015) Animal models are essential to Biological Research: issues and perspectives. Future Sci OA 1:FSO63
Article PubMed PubMed Central Google Scholar
Jupp B, O’Brien TJ (2007) Application of coregistration for imaging of animal models of epilepsy. Epilepsia (Copenhagen) 48:82–9
Casteels C, Vunckx K, Aelvoet S et al (2013) Construction and evaluation of quantitative small-animal PET probabilistic atlases for [(18)F]FDG and [(18)F]FECT functional mapping of the mouse brain. PLoS ONE 8(6)
Müller Herde A, Benke D, Ralvenius WT et al (2017) GABAA receptor subtypes in the mouse brain: Regional mapping and diazepam receptor occupancy by in vivo [18F]flumazenil PET. Neuroimage 150:279–291
Overhoff F, Brendel M, Jaworska A et al (2016) Automated spatial brain normalization and Hindbrain White Matter Reference tissue give improved [18F]-Florbetaben PET quantitation in Alzheimer’s Model mice. Front NeuroSci 10:45
Article PubMed PubMed Central Google Scholar
Rubins DJ, Melega WP, Lacan G et al (2003) Development and evaluation of an automated atlas-based image analysis method for microPET studies of the rat brain. NeuroImage (Orlando Fla) 20:2100–2118
Casteels C, Vunckx K, Aelvoet S-A, Baekelandt V, Bormans G, Van Laere K et al (2013) Construction and evaluation of quantitative small-animal PET probabilistic atlases for [18F]FDG and [18F]FECT Functional Mapping of the mouse brain. PLoS ONE 8(6):e65286. https://doi.org/10.1371/journal.pone.0065286
Article CAS PubMed PubMed Central Google Scholar
Deleye S, Waldron A, Verhaeghe J et al (2017) Evaluation of small-animal PET outcome measures to detect disease modification induced by BACE inhibition in a transgenic mouse model of Alzheimer disease. J Nucl Med 58(12):1977–1983
Article CAS PubMed Google Scholar
Dorr A, Sled JG, Kabani N (2007) Three-dimensional cerebral vasculature of the CBA mouse brain: a magnetic resonance imaging and micro computed tomography study. NeuroImage (Orlando Fla) 35:1409–1423
Presotto L, Bettinardi V, Mercatelli D et al (2022) Development of a new toolbox for mouse PET–CT brain image analysis fully based on CT images and validation in a PD mouse model. Sci Rep 12:15822
Article CAS PubMed PubMed Central Google Scholar
Cho H, Kim JS, Choi JY, Ryu YH, Lyoo CH (2014) A computed tomography-based spatial normalization for the analysis of [18F] fluorodeoxyglucose positron emission tomography of the brain. Korean J Radiol 15:862–870
Article PubMed PubMed Central Google Scholar
Presotto L, Bettinardi V, Mercatelli D et al (2022) Development of a new toolbox for mouse PET–CT brain image analysis fully based on CT images and validation in a PD mouse model. Sci Rep 12
Bertoglio D, Verhaeghe J, Kosten L et al (2018) MR-based spatial normalization improves [18F]MNI-659 PET regional quantification and detectability of disease effect in the Q175 mouse model of Huntington’s disease. PLoS ONE 13:e0206613
Article PubMed PubMed Central Google Scholar
Coda AR, Anzilotti S, Boscia F et al (2021) In vivo imaging of CNS microglial activation/macrophage infiltration with combined [18F]DPA-714-PET and SPIO-MRI in a mouse model of relapsing remitting experimental autoimmune encephalomyelitis. Eur J Nucl Med Mol Imaging 48:40–52
Article CAS PubMed Google Scholar
Frost GR, Longo V, Li T et al (2020) Hybrid PET/MRI enables high-spatial resolution, quantitative imaging of amyloid plaques in an Alzheimer’s disease mouse model. Sci Rep 10
Stenzel J, Rühlmann C, Lindner T et al (2019) [18F]-florbetaben PET/CT Imaging in the Alzheimer’s Disease Mouse Model APPswe/PS1dE9. CAR 16:49
Verhaeghe J, Wyffels L, Wyckhuys T, Stroobants S, Staelens S (2015) Rat brain normalization templates for Robust Regional Analysis of [11 C]ABP688 Positron Emission Tomography/Computed Tomography. Mol Imaging 14:7290
Lancelot S, Roche R, Slimen A et al (2014) A multi-atlas-based method for automated anatomical rat brain MRI segmentation and extraction of PET activity. PLoS ONE 9:e109113
Article PubMed PubMed Central Google Scholar
Vállez Garcia D, Casteels C, Schwarz AJ, Dierckx RAJO, Koole M, Doorduin J (2015) A standardized method for the construction of tracer specific PET and SPECT rat brain templates: validation and implementation of a toolbox. PLoS ONE 10:e0122363
Article PubMed PubMed Central Google Scholar
Mannheim JG, Mamach M, Reder S et al (2019) Reproducibility and comparability of preclinical PET Imaging Data: a Multicenter Small-Animal PET Study. J Nucl Med 60:1483–1491
Article CAS PubMed Google Scholar
Herzog H (2012) PET/MRI: challenges, solutions, and perspectives. Z Med Phys 22:281–298
Wagenknecht G, Kaiser H, Mottaghy FM, Herzog H (2013) MRI for attenuation correction in PET: methods and challenges. MAGMA 26:99–113
Wang H, Fei B (2012) An MR image-guided, Voxel-based partial volume correction method for PET images. Med Phys 39:179–195
Cheng TE, Yoder KK, Normandin MD et al (2009) A rat head holder for simultaneous scanning of two rats in small animal PET scanners: design, construction, feasibility testing and kinetic validation. J Neurosci Methods 176(1):24–33
Kuwabara H, Jung H, Nandi A, Kumar A, Wong D (2012) Evaluation of a supervised, interpolation method for volumes of interest definition for PET neuroimaging studies. J Nucl Med 53:2296
Nandi A, Valentine H, McCaul M, Wong D (2016) Glutamatergic Abnormalities in a Rodent Model of Alcohol abuse. J Nucl Med 57:1866a
Fueger B, Czernin J, Hildebrandt I, Tran C et al (2006) Impact of animal handling on the results of 18F-FDG PET studies in mice. J Nucl Med 47(6):999–1006
Wong DF, Waterhouse R, Kuwabara H et al (2013) 18F-FPEB, a PET radiopharmaceutical for quantifying metabotropic glutamate 5 receptors: a first-in-human study of radiochemical safety, biokinetics, and radiation dosimetry. J Nucl Med 54:388–396
Article CAS PubMed Google Scholar
Van ESSENDC (2002) Surface-based atlases of cerebellar cortex in the Human, Macaque, and Mouse. Ann N Y Acad Sci 978:468–479
Mirrione MM, Schiffer WK, Fowler JS, Alexoff DL, Dewey SL, Tsirka SE (2007) A novel approach for imaging brain–behavior relationships in mice reveals unexpected metabolic patterns during seizures in the absence of tissue plasminogen activator. NeuroImage (Orlando Fla) 38:34–42
Lein ES, Hawrylycz MJ, Ao N et al (2007) Genome-wide atlas of gene expression in the adult mouse brain. Nature 445:168–176
留言 (0)