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Postnatal Guinea Pig Brain Development as Revealed by Magnetic Resonance and Diffusion Kurtosis Imaging

机译:磁共振和扩散峰度成像显示的产后豚鼠脑发育

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摘要

This study used magnetic resonance imaging (MRI) to identify age dependent brain structural characteristics in Dunkin Hartley guinea pigs. Anatomical T -weighted images, diffusion kurtosis (DKI) imaging, and T relaxometry measures were acquired from a cohort of male guinea pigs from postnatal day (PND) 18–25 (juvenile) to PND 46–51 (adolescent) and PND 118–123 (young adult). Whole-brain diffusion measures revealed the distinct effects of maturation on the microstructural complexity of the male guinea pig brain. Specifically, fractional anisotropy (FA), as well as mean, axial, and radial kurtosis in the corpus callosum, amygdala, dorsal-ventral striatum, and thalamus significantly increased from PND 18–25 to PND 118–123. Age-related alterations in DKI measures within these brain regions paralleled the overall alterations observed in the whole brain. Age-related changes in FA and kurtosis in the gray matter-dominant parietal cerebral cortex and dorsal hippocampus were less pronounced than in the other brain regions. The regional data analysis revealed that between-age changes of diffusion kurtosis metrics were more pronounced than those observed in diffusion tensor metrics. The age-related anatomical differences reported here may be important determinants of the age-dependent neurobehavior of guinea pigs in different tasks.
机译:这项研究使用磁共振成像(MRI)来识别Dunkin Hartley豚鼠的年龄依赖性大脑结构特征。解剖T加权图像,扩散峰度(DKI)成像和T松弛法测量值来自一组成年豚鼠,出生后(PND)18-25(少年)至PND 46-51(青少年)和PND 118- 123(年轻人)。全脑扩散措施揭示了成熟对雄性豚鼠脑微结构复杂性的明显影响。具体来说,call体,杏仁核,背腹纹状体和丘脑的分数各向异性(FA)以及平均,轴向和径向峰度均从PND 18–25显着增加到PND 118–123。在这些大脑区域内,与年龄相关的DKI量度变化与在全脑中观察到的总体变化相似。在灰质占优势的顶叶大脑皮层和背侧海马中,FA和峰度与年龄相关的变化不如其他大脑区域明显。区域数据分析显示,扩散峰度指标的年龄间变化比在扩散张量指标中观察到的变化更为明显。此处报道的与年龄相关的解剖差异可能是豚鼠在不同任务中与年龄相关的神经行为的重要决定因素。

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