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基于功能磁共振成像(fMRI)血氧水平依赖(BOLD)信号强度的大脑偏侧化指数。

Cerebral lateralization index based on intensity of bold signal of FMRI.

作者信息

Lim Dae-Woon, Min Byung-Chan, Kim Hyun-Jun, Choi Mi-Hyun, Lee Soo-Jeong, Jun Jae-Hoon, Lee Bongsoo, Chung Soon-Cheol

机构信息

Department of Information & Communication Engineering, Dongguk University, Seoul, South Korea.

出版信息

Int J Neurosci. 2008 Nov;118(11):1628-42. doi: 10.1080/00207450802330777.

Abstract

This study proposes a new cerebral lateralization index (LI) on the basis of neural activation intensity. Eight right-handed male college students (mean age 23.5 years) and 10 right-handed male college students (the mean age 25.1 years) participated in this study of visuospatial and verbal tasks, respectively. Functional brain images were taken from 3T MRI using the single-shot EPI method. A cerebral LI based on neural activation area (i.e., number of activated voxels) and another based on neural activation intensity (i.e., intensity of BOLD (blood oxygen level dependent)) were calculated for both cognition tasks. The result of calculating a cerebral LI based on neural activation area suggested that the right hemisphere is dominant during visuospatial tasks and the left hemisphere is dominant during verbal tasks. When a cerebral LI was computed on the basis of the neural activation intensity, it was shown that the area of cerebral lateralization closely related to visuospatial tasks is the superior parietal lobe, and the area of cerebral lateralization closely related to verbal tasks is the inferior and middle frontal lobe. Since the proposed method can determine the dominance of the cerebrum by each area, it can be helpful to determine cerebral lateralization accurately and easily.

摘要

本研究基于神经激活强度提出了一种新的大脑偏侧化指数(LI)。分别有8名右利手男性大学生(平均年龄23.5岁)和10名右利手男性大学生(平均年龄25.1岁)参与了这项视觉空间和语言任务的研究。使用单次激发回波平面成像(EPI)方法从3T磁共振成像(MRI)获取功能性脑图像。针对这两项认知任务,分别计算了基于神经激活区域(即激活体素数量)的大脑LI和基于神经激活强度(即血氧水平依赖(BOLD)强度)的大脑LI。基于神经激活区域计算大脑LI的结果表明,在视觉空间任务中右半球占主导,在语言任务中左半球占主导。当基于神经激活强度计算大脑LI时,结果显示与视觉空间任务密切相关的大脑偏侧化区域是顶上叶,与语言任务密切相关的大脑偏侧化区域是额下回和额中回。由于所提出的方法可以按各个区域确定大脑的优势,因此有助于准确且轻松地确定大脑偏侧化。

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