Using multimodal MRI to investigate alterations in brainstructure and function in the BBZDR/Wor rat model of type 2 diabetes
Christopher M.Lawson
Kilian F.G.Rentrup
Xuezhu Cai
Praveen P.Kulkarni
Craig F.Ferris
1.Center for Translational Neuro Imaging ,Northeastern University,Boston,MA ,USA2.Center for Translational Neuro Imaging ,Northeastern University,Boston,MA ,USA3.Center for Translational Neuro Imaging ,Northeastern University,Boston,MA ,USA4.Center for Translational Neuro Imaging ,Northeastern University,Boston,MA ,USA5.Center for Translational Neuro Imaging ,Northeastern University,Boston,MA ,USA
摘要:Background:This is an exploratory study using multimodal magnetic resonance im-aging (MRI) to interrogate the brain of rats with type 2 diabetes (T2DM) as compared to controls. It was hypothesized there would be changes in brain structure and func-tion that reflected the human disorder, thus providing a model system by which to follow disease progression with noninvasive MRI.Methods:The transgenic BBZDR/Wor rat, an animal model of T2MD, and age-matched controls were studied for changes in brain structure using voxel-based morphometry, alteration in white and gray matter microarchitecture using diffusion weighted imaging with indices of anisotropy, and functional coupling using resting-state BOLD functional connectivity. Images from each modality were registered to, and analyzed, using a 3D MRI rat atlas providing site-specific data on over 168 dif-ferent brain areas. Results:There was an overall reduction in brain volume focused primarily on the somatosensory cortex, cerebellum, and white matter tracts. The putative changes in white and gray matter microarchitecture were pervasive affecting much of the brain and not localized to any region. There was a general increase in connectivity in T2DM rats as compared to controls. The cerebellum presented with strong functional cou-pling to pons and brainstem in T2DM rats but negative connectivity to hippocampus. Conclusion:The neuroradiological measures collected in BBBKZ/Wor rats using multimodal imaging methods did not reflect those reported for T2DB patients in the clinic. The data would suggest the BBBKZ/Wor rat is not an appropriate imaging model for T2DM.
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论文发表日期:2020-12-25
在线出版日期:2025-08-15(本平台首次上网日期,不代表文献的发表时间)
页数:10( 285-294 )
英文信息展开
动物模型与实验医学(英文)

动物模型与实验医学(英文)

ISSN:2096-5451
年,卷(期):2020,3(4)
所属栏目:Original Articles