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一项用于鸟类大脑精确定量分析的磁共振成像与计算机断层扫描联合研究。

A combined MR and CT study for precise quantitative analysis of the avian brain.

作者信息

Jirak Daniel, Janacek Jiri, Kear Benjamin P

机构信息

MR Unit, Department of Diagnostic and Interventional Radiology, Institute for Clinical and Experimental Medicine, Vídeňská 1958/9, 140 21 Prague, Czech Republic.

Institute of Biophysics and Informatics, 1st Medicine Faculty, Charles University, Prague, Czech Republic.

出版信息

Sci Rep. 2015 Oct 30;5:16002. doi: 10.1038/srep16002.

Abstract

Brain size is widely used as a measure of behavioural complexity and sensory-locomotive capacity in avians but has largely relied upon laborious dissections, endoneurocranial tissue displacement, and physical measurement to derive comparative volumes. As an alternative, we present a new precise calculation method based upon coupled magnetic resonance (MR) imaging and computed tomography (CT). Our approach utilizes a novel interactive Fakir probe cross-referenced with an automated CT protocol to efficiently generate total volumes and surface areas of the brain tissue and endoneurocranial space, as well as the discrete cephalic compartments. We also complemented our procedures by using sodium polytungstate (SPT) as a contrast agent. This greatly enhanced CT applications but did not degrade MR quality and is therefore practical for virtual brain tissue reconstructions employing multiple imaging modalities. To demonstrate our technique, we visualized sex-based brain size differentiation in a sample set of Ring-necked pheasants (Phasianus colchicus). This revealed no significant variance in relative volume or surface areas of the primary brain regions. Rather, a trend towards isometric enlargement of the total brain and endoneurocranial space was evidenced in males versus females, thus advocating a non-differential sexually dimorphic pattern of brain size increase amongst these facultatively flying birds.

摘要

脑容量被广泛用作衡量鸟类行为复杂性和感觉运动能力的指标,但在很大程度上依赖于费力的解剖、神经颅内膜组织移位和物理测量来得出比较体积。作为一种替代方法,我们提出了一种基于磁共振成像(MR)和计算机断层扫描(CT)相结合的精确计算方法。我们的方法利用一种新颖的交互式法基尔探头与自动化CT协议交叉参考,以有效地生成脑组织和神经颅内膜空间以及离散头部腔室的总体积和表面积。我们还通过使用多聚钨酸钠(SPT)作为造影剂来完善我们的程序。这极大地增强了CT的应用,但没有降低MR质量,因此对于采用多种成像方式的虚拟脑组织重建是实用的。为了展示我们的技术,我们在一组环颈雉(雉鸡)样本中可视化了基于性别的脑容量差异。这表明主要脑区的相对体积或表面积没有显著差异。相反,在雄性与雌性之间,全脑和神经颅内膜空间呈现出等比例扩大的趋势,因此表明在这些兼性飞行鸟类中,脑容量增加呈现出非差异性的性别二态模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f343/4626839/50525d4c1741/srep16002-f1.jpg

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