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Huntington’s Disease Mouse Models Online: High-Resolution MRI Images with Stereotaxic Templates for Computational Neuroanatomy

机译:亨廷顿舞蹈症小鼠模型在线:具有立体定位模板的高分辨率MRI图像,可用于计算神经解剖学

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摘要

Magnetic resonance imaging (MRI) has proved to be an ideal modality for non-destructive and highly detailed assessment of structural morphology in biological tissues. Here we used MRI to make a dataset of ex vivo brains from two different rodent models of Huntington’s disease (HD), the R6/2 line and the YAC 128 mouse. We are making the whole dataset (399 transgenic HD and wildtype (WT) brains, from mice aged 9–80 weeks) publicly available. These data will be useful, not only to investigators interested in the study of HD, but also to researchers of computational neuroanatomy who may not have access to such large datasets from mouse models. Here we demonstrate a number of uses of such data, for example to produce maps of grey and white matter and cortical thickness. As an example of how the library might provide insights in mouse models of HD, we calculated whole brain grey matter volumes across different age groups with different numbers of cytosine-adenine-guanine (CAG) repeats in a fragment of the gene responsible for HD in humans. (The R6/2 dataset was obtained from an allelic series of R6/2 mice carrying a range of CAG repeat lengths between 109 and 464.) This analysis revealed different trajectories for each fragment length. In particular there was a gradient of decreasing pathology with longer CAG repeat lengths, reflecting our previous findings with behavioural and histological studies. There will be no constraints placed on the use of the datasets included here. The original data will be easily and permanently accessible via the University of Cambridge data repository ().
机译:磁共振成像(MRI)已被证明是对生物组织中的结构形态进行非破坏性和高度详细评估的理想方式。在这里,我们使用MRI来制作来自两种不同的亨廷顿舞蹈病(HD)啮齿动物模型(R6 / 2线和YAC 128小鼠)的离体大脑数据集。我们正在公开提供整个数据集(来自9–80周龄小鼠的399个转基因HD和野生型(WT)脑)。这些数据不仅对对HD研究感兴趣的研究人员,而且对于可能无法从小鼠模型访问如此大的数据集的计算机神经解剖学研究人员来说都是有用的。在这里,我们演示了此类数据的多种用途,例如用于生成灰色和白色物质以及皮质厚度的图。作为该文库如何提供对HD小鼠模型的见解的一个示例,我们计算了不同年龄组中负责HD的基因片段中不同数量的胞嘧啶-腺嘌呤-鸟嘌呤(CAG)重复序列的全脑灰质体积。人类。 (R6 / 2数据集是从一系列等位基因R6 / 2小鼠中获得的,这些等位基因系列的CAG重复长度介于109和464之间。)该分析揭示了每个片段长度的轨迹不同。特别是,随着CAG重复长度的增加,病理学的梯度逐渐降低,这反映了我们先前在行为和组织学研究中的发现。此处包含的数据集的使用将不受任何限制。原始数据将可以通过剑桥大学数据存储库()轻松永久地访问。

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