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Exposure to enriched environment restores the mRNA expression of mineralocorticoid and glucocorticoid receptors in the hippocampus and ameliorates depressive-like symptoms in chronically stressed rats.暴露于丰富环境中可恢复海马体中盐皮质激素和糖皮质激素受体的 mRNA 表达,并改善慢性应激大鼠的抑郁样症状。
Curr Neurovasc Res. 2011 Nov;8(4):286-93. doi: 10.2174/156720211798121025.
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Structural brain abnormalities in first-episode psychosis: differences between affective psychoses and schizophrenia and relationship to clinical outcome.首发精神病的结构性脑异常:情感性精神病与精神分裂症的差异及其与临床结局的关系。
Bipolar Disord. 2011 Aug-Sep;13(5-6):545-55. doi: 10.1111/j.1399-5618.2011.00953.x.
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Longitudinal imaging studies in schizophrenia: the relationship between brain morphology and outcome measures.精神分裂症的纵向影像学研究:脑形态与预后指标之间的关系。
Epidemiol Psichiatr Soc. 2010 Jul-Sep;19(3):207-10.
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The effects of physical activity, education, and body mass index on the aging brain.体育活动、教育和体重指数对大脑衰老的影响。
Hum Brain Mapp. 2011 Sep;32(9):1371-82. doi: 10.1002/hbm.21113. Epub 2010 Aug 16.
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Enriched environment increases spinophilin mRNA expression and spinophilin immunoreactive dendritic spines in hippocampus and cortex.丰富的环境会增加海马体和皮质中的突触后密度蛋白 mRNA 表达和突触后密度蛋白免疫反应性树突棘。
Neurosci Lett. 2010 May 31;476(2):79-83. doi: 10.1016/j.neulet.2010.04.007. Epub 2010 Apr 10.
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The functional neuroanatomy of symptom dimensions in schizophrenia: a qualitative and quantitative review of a persistent question.精神分裂症症状维度的功能神经解剖学:一个持续存在问题的定性和定量综述。
Neurosci Biobehav Rev. 2010 Mar;34(3):468-86. doi: 10.1016/j.neubiorev.2009.09.004. Epub 2009 Sep 20.
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A longitudinal study of the corpus callosum in chronic schizophrenia.慢性精神分裂症患者胼胝体的纵向研究。
Schizophr Res. 2009 Oct;114(1-3):144-53. doi: 10.1016/j.schres.2009.07.021. Epub 2009 Aug 26.
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Poor outcome in chronic schizophrenia is associated with progressive loss of volume of the putamen.慢性精神分裂症的不良预后与壳核体积的逐渐丧失有关。
Schizophr Res. 2009 Sep;113(2-3):241-5. doi: 10.1016/j.schres.2009.06.022. Epub 2009 Jul 18.
9
Prenatal stress alters spine density and dendritic length of nucleus accumbens and hippocampus neurons in rat offspring.产前应激会改变大鼠后代伏隔核和海马体神经元的脊柱密度和树突长度。
Synapse. 2009 Sep;63(9):794-804. doi: 10.1002/syn.20664.
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Progressive deformation of deep brain nuclei and hippocampal-amygdala formation in schizophrenia.精神分裂症中深部脑核团及海马-杏仁核结构的进行性变形。
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精神分裂症严重程度、社会功能与海马神经解剖结构:三维定位研究。

Schizophrenia severity, social functioning and hippocampal neuroanatomy: three-dimensional mapping study.

机构信息

Department of Experimental and Clinical Medical Sciences (DISM), InterUniversity Centre for Behavioural Neurosciences, University of Udine, Udine, Italy.

出版信息

Br J Psychiatry. 2013 Jan;202(1):50-5. doi: 10.1192/bjp.bp.111.105700.

DOI:10.1192/bjp.bp.111.105700
PMID:23284150
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4113031/
Abstract

BACKGROUND

Hippocampal shrinkage is commonly reported in schizophrenia, but its role in the illness is still poorly understood. In particular, it is unclear how clinical and psychosocial variables relate to hippocampal volumes.

AIMS

To investigate neuroanatomic differences in the hippocampus using three-dimensional (3D) computational image analysis.

METHOD

We used high-resolution magnetic resonance imaging and surface-based modelling to map the 3D profile of hippocampal differences in adults with schizophrenia (n = 67) and a healthy control group (n = 72). Manual tracings were used to create 3D parametric mesh models of the hippocampus. Regression models were used to relate diagnostic measures to maps of radial distance, and colour-coded maps were generated to show the profile of associations.

RESULTS

There was no detectable difference between the schizophrenia and control groups in hippocampal radial distance. In the schizophrenia group, however, bilateral shape deflation was associated with greater illness severity (length of illness, positive and negative symptoms) and with poorer social functioning (educational level, quality of life and health status), which survived Bonferroni correction.

CONCLUSIONS

Illness severity and poor social functioning may be associated with hippocampal deflation in schizophrenia. As a structural sign of poor outcome, imaging measures might help to identify a subgroup of patients who may need specific treatment to resist hippocampal shrinkage, such as cognitive rehabilitation or physical exercise.

摘要

背景

精神分裂症中常报道海马体萎缩,但它在疾病中的作用仍知之甚少。特别是,目前尚不清楚临床和社会心理变量与海马体体积有何关系。

目的

使用三维(3D)计算图像分析方法研究海马体的神经解剖差异。

方法

我们使用高分辨率磁共振成像和基于表面的建模来绘制精神分裂症患者(n=67)和健康对照组(n=72)的海马体 3D 差异图谱。手动追踪用于创建海马体的 3D 参数网格模型。回归模型用于将诊断测量值与放射状距离图谱相关联,并生成彩色图谱以显示关联的分布。

结果

精神分裂症组和对照组之间的海马体放射状距离没有可检测到的差异。然而,在精神分裂症组中,双侧形状瘪陷与疾病严重程度(病程、阳性和阴性症状)以及社会功能较差(教育程度、生活质量和健康状况)相关,且经 Bonferroni 校正后仍然存在。

结论

疾病严重程度和较差的社会功能可能与精神分裂症中的海马体瘪陷有关。作为预后不良的结构标志,影像学测量可能有助于识别可能需要特定治疗以抵抗海马体萎缩的患者亚组,例如认知康复或体育锻炼。