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一种用于内侧颞叶结构手动分割的综合方案。

A comprehensive protocol for manual segmentation of the medial temporal lobe structures.

作者信息

Moore Matthew, Hu Yifan, Woo Sarah, O'Hearn Dylan, Iordan Alexandru D, Dolcos Sanda, Dolcos Florin

机构信息

Psychology Department, University of Illinois Urbana-Champaign.

Neuroscience Program, University of Illinois Urbana-Champaign; Beckman Institute for Advanced Science and Technology, University of Illinois Urbana-Champaign.

出版信息

J Vis Exp. 2014 Jul 2(89):50991. doi: 10.3791/50991.

Abstract

The present paper describes a comprehensive protocol for manual tracing of the set of brain regions comprising the medial temporal lobe (MTL): amygdala, hippocampus, and the associated parahippocampal regions (perirhinal, entorhinal, and parahippocampal proper). Unlike most other tracing protocols available, typically focusing on certain MTL areas (e.g., amygdala and/or hippocampus), the integrative perspective adopted by the present tracing guidelines allows for clear localization of all MTL subregions. By integrating information from a variety of sources, including extant tracing protocols separately targeting various MTL structures, histological reports, and brain atlases, and with the complement of illustrative visual materials, the present protocol provides an accurate, intuitive, and convenient guide for understanding the MTL anatomy. The need for such tracing guidelines is also emphasized by illustrating possible differences between automatic and manual segmentation protocols. This knowledge can be applied toward research involving not only structural MRI investigations but also structural-functional colocalization and fMRI signal extraction from anatomically defined ROIs, in healthy and clinical groups alike.

摘要

本文描述了一种用于手动追踪构成内侧颞叶(MTL)的一组脑区的综合方案:杏仁核、海马体以及相关的海马旁区域(嗅周、内嗅和海马旁本身)。与大多数其他可用的追踪方案不同,这些方案通常聚焦于某些MTL区域(如杏仁核和/或海马体),本追踪指南采用的综合视角能够清晰地定位所有MTL亚区域。通过整合来自各种来源的信息,包括分别针对各种MTL结构的现有追踪方案、组织学报告和脑图谱,并辅以说明性视觉材料,本方案为理解MTL解剖结构提供了准确、直观且便捷的指南。通过说明自动和手动分割方案之间可能存在的差异,也强调了此类追踪指南的必要性。这些知识不仅可应用于涉及结构MRI研究的领域,还可应用于涉及结构 - 功能共定位以及从健康和临床组中解剖学定义的感兴趣区域提取fMRI信号的研究。

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