Anatomical analysis of an aye-aye brain (Daubentonia madagascariensis, primates: Prosimii) combining histology, structural magnetic resonance imaging, and diffusion-tensor imaging.

Jason A Kaufman, Eric T Ahrens, David H Laidlaw, Song Zhang, John M Allman
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引用次数: 59

Abstract

This report presents initial results of a multimodal analysis of tissue volume and microstructure in the brain of an aye-aye (Daubentonia madagascariensis). The left hemisphere of an aye-aye brain was scanned using T2-weighted structural magnetic resonance imaging (MRI) and diffusion-tensor imaging (DTI) prior to histological processing and staining for Nissl substance and myelinated fibers. The objectives of the experiment were to estimate the volume of gross brain regions for comparison with published data on other prosimians and to validate DTI data on fiber anisotropy with histological measurements of fiber spread. Measurements of brain structure volumes in the specimen are consistent with those reported in the literature: the aye-aye has a very large brain for its body size, a reduced volume of visual structures (V1 and LGN), and an increased volume of the olfactory lobe. This trade-off between visual and olfactory reliance is likely a reflection of the nocturnal extractive foraging behavior practiced by Daubentonia. Additionally, frontal cortex volume is large in the aye-aye, a feature that may also be related to its complex foraging behavior and sensorimotor demands. Analysis of DTI data in the anterior cingulum bundle demonstrates a strong correlation between fiber spread as measured from histological sections and fiber spread as measured from DTI. These results represent the first quantitative comparison of DTI data and fiber-stained histology in the brain.

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结合组织学、结构磁共振成像和弥散张量成像对一只猕猴脑的解剖分析(Daubentonia madagascar,灵长类:Prosimii)。
本报告介绍了一种猕猴桃(Daubentonia madagascar)大脑组织体积和微观结构的多模态分析的初步结果。采用t2加权结构磁共振成像(MRI)和弥散张量成像(DTI)扫描左脑,然后进行组织学处理和尼氏物质和髓鞘纤维染色。该实验的目的是估计脑总区域的体积,以便与其他原脑动物的已发表数据进行比较,并通过纤维扩散的组织学测量来验证DTI关于纤维各向异性的数据。样本中大脑结构体积的测量结果与文献报道的一致:眼猴的大脑体积相对于其体型来说非常大,视觉结构(V1和LGN)的体积减少,而嗅叶的体积增加。这种视觉和嗅觉依赖之间的权衡很可能是Daubentonia夜间采掘觅食行为的反映。此外,在aye-aye时,额叶皮质体积很大,这一特征也可能与其复杂的觅食行为和感觉运动需求有关。对前扣带束DTI数据的分析表明,从组织学切片测量的纤维扩散与从DTI测量的纤维扩散之间存在很强的相关性。这些结果代表了DTI数据和大脑纤维染色组织学的首次定量比较。
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