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大脑不对称性的自动分析:脑扭矩与颞平面不对称性之间关系的探索性研究。

Automatic analysis of cerebral asymmetry: an exploratory study of the relationship between brain torque and planum temporale asymmetry.

作者信息

Barrick Thomas R, Mackay Clare E, Prima Sylvain, Maes Frederik, Vandermeulen Dirk, Crow Timothy J, Roberts Neil

机构信息

Magnetic Resonance and Image Analysis Research Centre (MARIARC), Pembroke Place, University of Liverpool, Liverpool L69 3BX, UK.

出版信息

Neuroimage. 2005 Feb 1;24(3):678-91. doi: 10.1016/j.neuroimage.2004.09.003.

Abstract

Leftward occipital and rightward frontal lobe asymmetry (brain torque) and leftward planum temporale asymmetry have been consistently reported in postmortem and in vivo neuroimaging studies of the human brain. Here automatic image analysis techniques are applied to quantify global and local asymmetries, and investigate the relationship between brain torque and planum temporale asymmetries on T1-weighted magnetic resonance (MR) images of 30 right-handed young healthy subjects (15 male, 15 female). Previously described automatic cerebral hemisphere extraction and 3D interhemispheric reflection-based methods for studying brain asymmetry are applied with a new technique, LowD (Low Dimension), which enables automatic quantification of brain torque. LowD integrates extracted left and right cerebral hemispheres in columns orthogonal to the midsagittal plane (2D column maps), and subsequently integrates slices along the brain's anterior-posterior axis (1D slice profiles). A torque index defined as the magnitude of occipital and frontal lobe asymmetry is computed allowing exploratory investigation of relationships between this global asymmetry and local asymmetries found in the planum temporale. LowD detected significant torque in the 30 subjects with occipital and frontal components found to be highly correlated (P<0.02). Significant leftward planum temporale asymmetry was detected (P<0.05), and the torque index correlated with planum temporale asymmetry (P<0.001). However, torque and total brain volume were not correlated. Therefore, although components of cerebral asymmetry may be related, their magnitude is not influenced by total hemisphere volume. LowD provides increased sensitivity for detection and quantification of brain torque on an individual subject basis, and future studies will apply these techniques to investigate the relationship between cerebral asymmetry and functional laterality.

摘要

在人脑的尸检和活体神经成像研究中,一直有关于枕叶向左和额叶向右不对称(脑扭矩)以及颞平面向左不对称的报道。在此,自动图像分析技术被用于量化整体和局部不对称性,并在30名右利手年轻健康受试者(15名男性,15名女性)的T1加权磁共振(MR)图像上研究脑扭矩与颞平面不对称性之间的关系。先前描述的用于研究脑不对称性的自动脑半球提取和基于三维半球间反射的方法与一种新技术LowD(低维度)一起应用,该技术能够自动量化脑扭矩。LowD将提取的左右脑半球整合到与正中矢状面正交的列中(二维列图),随后沿脑的前后轴整合切片(一维切片轮廓)。计算一个定义为枕叶和额叶不对称程度的扭矩指数,以便对这种整体不对称性与颞平面中发现的局部不对称性之间的关系进行探索性研究。LowD在30名受试者中检测到显著的扭矩,发现枕叶和额叶成分高度相关(P<0.02)。检测到显著的颞平面向左不对称(P<0.05),并且扭矩指数与颞平面不对称相关(P<0.001)。然而,扭矩与全脑体积不相关。因此,尽管脑不对称的成分可能相关,但其程度不受半球总体积的影响。LowD在个体受试者基础上为脑扭矩的检测和量化提供了更高的灵敏度,未来的研究将应用这些技术来研究脑不对称与功能偏侧性之间的关系。

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