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Sex-specific deficits in neurite density and white matter integrity are associated with targeted disruption of exon 2 of the Disc1 gene in the rat

机译:神经特异性密度和白质完整性的性别特异性缺陷与大鼠Disc1基因第2外显子的靶向破坏有关

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Diffusion tensor imaging (DTI) has provided remarkable insight into our understanding of white matter microstructure and brain connectivity across a broad spectrum of psychiatric disease. While DTI and other diffusion weighted magnetic resonance imaging (MRI) methods have clarified the axonal contribution to the disconnectivity seen in numerous psychiatric diseases, absent from these studies are quantitative indices of neurite density and orientation that are especially important features in regions of high synaptic density that would capture the synaptic contribution to the psychiatric disease state. Here we report the application of neurite orientation dispersion and density imaging (NODDI), an emerging microstructure imaging technique, to a novel Disc1 svΔ2 rat model of psychiatric illness and demonstrate the complementary and more specific indices of tissue microstructure found in NODDI than those reported by DTI. Our results demonstrate global and sex-specific changes in white matter microstructural integrity and deficits in neurite density as a consequence of the Disc1 svΔ2 genetic variation and highlight the application of NODDI and quantitative measures of neurite density and neurite dispersion in psychiatric disease.
机译:扩散张量成像(DTI)为我们对广泛的精神疾病中白质微观结构和大脑连接性的理解提供了出色的见识。虽然DTI和其他弥散加权磁共振成像(MRI)方法已经阐明了轴突对许多精神疾病中不连通性的影响,但这些研究中缺少神经突密度和取向的定量指标,这些指标在高突触密度区域特别重要。这将捕获对精神疾病状态的突触贡献。在这里,我们报告神经突取向弥散和密度成像(NODDI)(一种新兴的微结构成像技术)在精神疾病的新型Disc1svΔ2大鼠模型中的应用,并证明了NODDI中发现的组织微结构指标比那些报道的指标更互补,更具体。 DTI。我们的研究结果表明,由于Disc1svΔ2遗传变异,白质微结构完整性和神经突密度不足出现了全球性和性别特异性变化,并突显了NODDI的应用以及神经疾病密度和神经突弥散的定量测量方法在精神疾病中的应用。

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