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相位编码功能磁共振成像设计的开发与应用。

The development and use of phase-encoded functional MRI designs.

机构信息

Department of Psychology, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Neuroimage. 2012 Aug 15;62(2):1195-200. doi: 10.1016/j.neuroimage.2011.09.059. Epub 2011 Oct 1.

Abstract

Phase-encoded designs advanced the early development of functional MRI, enabling the "killer app" of retinotopic mapping, which helped demonstrate fMRI's value to a skeptical scientific public. The design, also called "the traveling wave", remains in wide use today, due to its ability to easily measure neural activity in a parameterized set of experimental conditions. In phase-encoded designs, stimuli defined by a numerical parameter, for example visual eccentricity, are presented continuously in the order specified by the parameter. The stimulus parameter that produces maximum response can be recovered from the timing of neural activity, i.e. its phase. From the outset, phase-encoded designs were used for two related, but complementary purposes: 1) to measure aggregate response properties of neurons in a voxel, for example the average visual field location of receptive fields, and 2) to segregate the set of voxels that corresponds to an organized cortical region, for example a retinotopically mapped visual area. This short review will cover the history and current uses of phase-encoded fMRI, while noting the ongoing tension in the field between the brain mapping and computational neuroimaging approaches.

摘要

相位编码设计推动了功能磁共振成像的早期发展,实现了“视网膜映射的杀手级应用”,这有助于向持怀疑态度的科学界证明 fMRI 的价值。这种设计也被称为“行波”,由于它能够在一组参数化的实验条件下轻松测量神经活动,因此至今仍在广泛使用。在相位编码设计中,由数字参数定义的刺激,例如视觉偏心,按照参数指定的顺序连续呈现。可以从神经活动的时间(即相位)中恢复产生最大响应的刺激参数。从一开始,相位编码设计就被用于两个相关但互补的目的:1)测量体素中神经元的总体反应特性,例如感受野的平均视野位置,2)分离与组织皮层区域相对应的体素集合,例如视网膜映射的视觉区域。这篇简短的综述将涵盖相位编码 fMRI 的历史和当前用途,同时注意到该领域在脑映射和计算神经影像学方法之间的持续紧张关系。

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