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Mapping the living mouse brain neural architecture: strain-specific patterns of brain structural and functional connectivity

机译:映射生活鼠标脑神经结构:脑结构和功能连通的应变特异性模式

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Mapping brain structural and functional connectivity (FC) became an essential approach in neuroscience as network properties can underlie behavioral phenotypes. In mouse models, revealing strain-related patterns of brain wiring is crucial, since these animals are used to answer questions related to neurological or neuropsychiatric disorders. C57BL/6 and BALB/cJ strains are two of the primary "genetic backgrounds" for modeling brain disease and testing therapeutic approaches. However, extensive literature describes basal differences in the behavioral, neuroanatomical and neurochemical profiles of the two strains, which raises questions on whether the observed effects are pathology specific or depend on the genetic background of each strain. Here, we performed a systematic comparative exploration of brain structure and function of C57BL/6 and BALB/cJ mice using Magnetic Resonance Imaging (MRI). We combined deformation-based morphometry (DBM), diffusion MRI and high-resolution fiber mapping (hrFM) along with resting-state functional MRI (rs-fMRI) and demonstrated brain-wide differences in the morphology and "connectome" features of the two strains. Essential inter-strain differences were depicted regarding the size and the fiber density (FD) within frontal cortices, along cortico-striatal, thalamic and midbrain pathways as well as genu and splenium of corpus callosum. Structural dissimilarities were accompanied by specific FC patterns, emphasizing strain differences in frontal and basal forebrain functional networks as well as hubness characteristics. Rs-fMRI data further indicated differences of reward-aversion circuitry and default mode network (DMN) patterns. The inter-hemispherical FC showed flexibility and strain-specific adjustment of their patterns in agreement with the structural characteristics.
机译:映射脑结构和功能连接(FC)成为神经科学的基本方法,因为网络属性可以提出行为表型。在小鼠模型中,揭示脑布线的应变相关模式至关重要,因为这些动物用于回答与神经学或神经精神疾病有关的问题。 C57BL / 6和BALB / CJ菌株是两个主要的“遗传背景”,用于造型脑疾病和测试治疗方法。然而,广泛的文献描述了两种菌株的行为,神经化和神经化学和神经化学谱的基础差异,这提出了关于观察到的效果是否属于特异性的问题或依赖于每个菌株的遗传背景。在这里,我们使用磁共振成像(MRI)对C57BL / 6和BALB / CJ小鼠的脑结构和功能进行了系统的比较探索。我们将基于变形的形态(DBM),扩散MRI和高分辨率光纤映射(HRFM)与静态功能MRI(RS-FMRI)组合,并展示了两者形态和“连接”特征的脑宽差异菌株。关于跨越皮质,脊髓植物,丘脑和中脑途径以及胼um的扁平术中的尺寸和纤维密度(FD),以及胼callosum的正文和脾脏的尺寸和纤维密度(FD)。结构异化伴有特定的Fc模式,强调额外和基础前脑功能网络以及毂特征的应变差异。 RS-FMRI数据进一步指出了奖励厌恶电路和默认模式网络(DMN)模式的差异。与结构特征一致,半球形FC显示出灵活性和质量特异性调整它们的模式。

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