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本文引用的文献

1
Incorporating Non-rigid Registration into Expectation Maximization Algorithm to Segment MR Images.将非刚性配准纳入期望最大化算法以分割磁共振图像。
Med Image Comput Comput Assist Interv. 2002 Sep;2488:564-571. doi: 10.1007/3-540-45786-0_70. Epub 2002 Oct 10.
2
Improved Localizadon of Cortical Activity by Combining EEG and MEG with MRI Cortical Surface Reconstruction: A Linear Approach.通过将 EEG 和 MEG 与 MRI 皮质表面重建相结合来提高皮质活动的本地化:一种线性方法。
J Cogn Neurosci. 1993 Spring;5(2):162-76. doi: 10.1162/jocn.1993.5.2.162.
3
Human cerebral cortex: localization, parcellation, and morphometry with magnetic resonance imaging.人类大脑皮层:磁共振成像的定位、分割和形态测量学。
J Cogn Neurosci. 1992 Fall;4(4):352-74. doi: 10.1162/jocn.1992.4.4.352.
4
MRI-Based Topographic Parcellation of Human Neocortex: An Anatomically Specified Method with Estimate of Reliability.基于 MRI 的人类新皮质拓扑分区:一种具有可靠性估计的解剖指定方法。
J Cogn Neurosci. 1996 Nov;8(6):566-87. doi: 10.1162/jocn.1996.8.6.566.
5
An assessment of functional-anatomical variability in neuroimaging studies.神经影像学研究中功能-解剖变异性评估。
Hum Brain Mapp. 1996;4(2):122-39. doi: 10.1002/(SICI)1097-0193(1996)4:2<122::AID-HBM4>3.0.CO;2-5.
6
Stereotaxic localization, intersubject variability, and interhemispheric differences of the human auditory thalamocortical system.人类听觉丘脑皮质系统的立体定向定位、个体间变异性及半球间差异。
Neuroimage. 2002 Sep;17(1):142-60. doi: 10.1006/nimg.2002.1178.
7
Fusiform gyrus volume reduction in first-episode schizophrenia: a magnetic resonance imaging study.首发精神分裂症患者梭状回体积减小:一项磁共振成像研究
Arch Gen Psychiatry. 2002 Sep;59(9):775-81. doi: 10.1001/archpsyc.59.9.775.
8
Estimating sample size in functional MRI (fMRI) neuroimaging studies: statistical power analyses.功能磁共振成像(fMRI)神经影像学研究中的样本量估计:统计功效分析。
J Neurosci Methods. 2002 Aug 30;118(2):115-28. doi: 10.1016/s0165-0270(02)00121-8.
9
Amygdala-hippocampal shape differences in schizophrenia: the application of 3D shape models to volumetric MR data.精神分裂症患者杏仁核-海马体的形状差异:3D形状模型在容积磁共振数据中的应用
Psychiatry Res. 2002 Aug 20;115(1-2):15-35. doi: 10.1016/s0925-4927(02)00025-2.
10
The problem of functional localization in the human brain.人类大脑中的功能定位问题。
Nat Rev Neurosci. 2002 Mar;3(3):243-9. doi: 10.1038/nrn756.

首发精神分裂症与正常对照之间空间概率脑图谱差异的磁共振成像研究。

An MRI study of spatial probability brain map differences between first-episode schizophrenia and normal controls.

作者信息

Park Hae-Jeong, Levitt James, Shenton Martha E, Salisbury Dean F, Kubicki Marek, Kikinis Ron, Jolesz Ferenc A, McCarley Robert W

机构信息

Clinical Neuroscience Division, Laboratory of Neuroscience, Boston VA Health Care System-Brockton Division, Department of Psychiatry, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Neuroimage. 2004 Jul;22(3):1231-46. doi: 10.1016/j.neuroimage.2004.03.009.

DOI:10.1016/j.neuroimage.2004.03.009
PMID:15219595
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2789267/
Abstract

We created a spatial probability atlas of schizophrenia to provide information about the neuroanatomic variability of brain regions of patients with the disorder. Probability maps of 16 regions of interest (ROIs) were constructed by taking manually parcellated ROIs from subjects' magnetic resonance images (MRIs) and linearly transforming them into Talairach space using the Montreal Neurological Institute (MNI) template. ROIs included temporal, parietal, and prefrontal cortex subregions, with a principal focus on temporal lobe structures. Subject Ns ranged from 11 to 28 for the different ROIs. Our global measure of the spatial distribution of the transformed ROI was the sum of voxels with 50% overlap among subjects. The superior temporal gyrus (STG) and fusiform gyrus (FG) had lower values for schizophrenic subjects than for normal controls, suggestive of greater spatial variability for these ROIs in schizophrenic subjects. For the computation of statistical significance of group differences in portions of the ROI, we used voxel-wise comparisons and Fisher's exact test. First-episode schizophrenic patients compared with controls showed lower probability (P < 0.05) at dorso-posterior areas of planum temporale and Heschl's gyrus, lateral and anterior regions in the left hippocampus (HIPP), and dorsolateral regions of fusiform gyrus. Importantly, most ROIs of schizophrenic subjects showed a significantly lower spatial overlap than controls, even after nonlinear spatial normalization, suggesting a greater heterogeneity in the spatial distribution of ROIs. There is consequently a need for caution in neuroimaging studies where data from schizophrenic subjects are normalized to a particular stereotaxic coordinate system based on healthy controls. Apparent group differences in activation may simply reflect a greater heterogeneity of spatial distribution in schizophrenia.

摘要

我们创建了一个精神分裂症的空间概率图谱,以提供有关该疾病患者脑区神经解剖变异性的信息。通过从受试者的磁共振图像(MRI)中手动分割感兴趣区域(ROI),并使用蒙特利尔神经学研究所(MNI)模板将其线性转换到Talairach空间,构建了16个ROI的概率图谱。ROI包括颞叶、顶叶和前额叶皮质子区域,主要关注颞叶结构。不同ROI的受试者数量从11到28不等。我们对转换后ROI空间分布的总体测量是受试者之间50%重叠体素的总和。与正常对照组相比,精神分裂症患者的颞上回(STG)和梭状回(FG)的值较低,这表明这些ROI在精神分裂症患者中的空间变异性更大。为了计算ROI各部分组间差异的统计显著性,我们使用了体素水平比较和Fisher精确检验。与对照组相比,首发精神分裂症患者在颞平面和颞横回的背后部区域、左侧海马(HIPP)的外侧和前部区域以及梭状回的背外侧区域的概率较低(P < 0.05)。重要的是,即使经过非线性空间归一化,精神分裂症患者的大多数ROI显示出比对照组显著更低的空间重叠,这表明ROI空间分布存在更大的异质性。因此,在神经影像学研究中,当基于健康对照将精神分裂症患者的数据归一化到特定的立体定向坐标系时需要谨慎。激活方面明显的组间差异可能仅仅反映了精神分裂症中空间分布更大的异质性。