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Identifying Rodent Olfactory Bulb Structures with Micro-DTI

机译:用微型DTI鉴定啮齿动物嗅灯泡结构

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Olfactory bulb (OB) is one of the most developed systems in rodent models with complex neuronal organization and anatomical structures. MR diffusion tensor imaging (DTI) is a non-invasive technique to probe tissue microstructures by examining the diffusion characteristics of water molecules. This paper presents how different OB layers can be identified and quantitatively characterized by micro-DTI using a specially constructed micro-imaging radio frequency (RF) coil. High spatial resolution and high signal to noise ratio (SNR) DTI images of ex vivo rat OBs were obtained. Distinct contrasts were observed between various olfactory bulb layers in trace map, fractional anisotropy (FA) map and FA color map, all in consistence with the known OB neuroanatomy. These experimental results demonstrate the utility of micro-DTI in investigation of complex OB organization.
机译:嗅灯泡(OB)是具有复杂神经元组织和解剖结构的啮齿动物模型中最开发的系统之一。 MR扩散张量成像(DTI)是通过检查水分子的扩散特性来探测组织微观结构的非侵入性技术。本文介绍了如何通过专用构造的微成像射频(RF)线圈来识别和定量表征不同的OB层和定量表征。获得高空间分辨率和高信噪比(SNR)exVivo RAT OBS的DTI图像。在痕量地图中的各种嗅灯泡层之间观察到不同的对比度,分数各向异性(FA)图和FA彩色图,全部与已知的OB神经瘤构一致。这些实验结果表明了微型DTI在复杂OB组织调查中的效用。

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