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丘脑病变与认知障碍研究方法进展

陈志伟 李月春

陈志伟, 李月春. 丘脑病变与认知障碍研究方法进展[J]. 分子影像学杂志, 2015, 38(4): 400-402. doi: 10.3969/j.issn.1674-4500.2015.04.29
引用本文: 陈志伟, 李月春. 丘脑病变与认知障碍研究方法进展[J]. 分子影像学杂志, 2015, 38(4): 400-402. doi: 10.3969/j.issn.1674-4500.2015.04.29
Zhiwei CHEN, Yuechun LI. The review about the research methods of thalamic lesions and cognitive impairment[J]. Journal of Molecular Imaging, 2015, 38(4): 400-402. doi: 10.3969/j.issn.1674-4500.2015.04.29
Citation: Zhiwei CHEN, Yuechun LI. The review about the research methods of thalamic lesions and cognitive impairment[J]. Journal of Molecular Imaging, 2015, 38(4): 400-402. doi: 10.3969/j.issn.1674-4500.2015.04.29

丘脑病变与认知障碍研究方法进展

doi: 10.3969/j.issn.1674-4500.2015.04.29
详细信息
    作者简介:

    陈志伟:李月春,E-mail: yuechunli@vip.163.com

The review about the research methods of thalamic lesions and cognitive impairment

  • 摘要: 丘脑病变后认知障碍为当前临床神经心理学研究热点,不同部位丘脑病变引起的认知改变模式仍在不断探索和争议中。本文对丘脑病变后认知障碍的研究方法进行综述,试图归纳国内外已有研究结果存在分歧之部分原因。

     

  • [1] Prevosto V, Sommer MA. Cognitive control of movement via the cerebellar-recipient thalamus[J]. Front Syst Neurosci, 2013, 7(7): 56.
    [2] Bočková M, Chládek J, Jurák P, et al. Complex motor-cognitive factors processed in the anterior nucleus of the thalamus: an intracerebral recording study[J]. Brain Topogr, 2015, 28(2): 269-78. doi: 10.1007/s10548-014-0373-7
    [3] Jakab A, Blanc R, Berényi EL. Mapping changes of in vivo connectivity patterns in the human mediodorsal thalamus: correlations with higher cognitive and executive functions[J]. Brain Imaging Behav, 2012, 6(3): 472-83. doi: 10.1007/s11682-012-9172-5
    [4] Copeland CS, Neale SA, Salt TE. Neuronal activity patterns in the mediodorsal thalamus and related cognitive circuits are modulated by metabotropic glutamate receptors[J]. Neuropharmacology, 2015, 92(7): 16-24.
    [5] Baxter MG. Mediodorsal thalamus and cognition in non-human primates[J]. Front Syst Neurosci, 2013, 7(8): 38.
    [6] Alkonyi B, Chugani HT, Behen M, et al. The role of the thalamus in neuro-cognitive dysfunction in early unilateral hemispheric injury: a multimodality imaging study of children with Sturge-Weber syndrome[J]. Eur J Paediatr Neurol, 2010, 14(5): 425-33. doi: 10.1016/j.ejpn.2010.03.012
    [7] Hauser T, Gerigk L, Giesel F, et al. Mr spectroscopy in dementia[J]. Radiologe, 2010, 50(9): 791-8. doi: 10.1007/s00117-009-1947-3
    [8] Serra L, Cercignani M, Carlesimo GA, et al. Connectivity-based parcellation of the thalamus explains specific cognitive and behavioural symptoms in patients with bilateral thalamic infarct[J]. PLoS One, 2014, 8(6): e64578.
    [9] Liu Y, Yu C, Zhang X, et al. Impaired long distance functional connectivity and weighted network architecture in Alzheimer's disease[J]. Cereb Cortex, 2014, 24(6): 1422-35. doi: 10.1093/cercor/bhs410
    [10] Zhang D, Snyder AZ, Shimony JS, et al. Noninvasive functional and structural connectivity mapping of the human thalamocortical system[J]. Cereb Cortex, 2010, 20(5): 1187-94. doi: 10.1093/cercor/bhp182
    [11] Zhou B, Liu Y, Zhang Z, et al. Impaired functional connectivity of the thalamus in Alzheimer's disease and mild cognitive impairment: a resting-state fMRI study[J]. Curr Alzheimer Res, 2013, 10(7): 754-66. doi: 10.2174/15672050113109990146
    [12] Brownsett SL, Wise RJ. The contribution of the parietal lobes to speaking and writing[J]. Cereb Cortex, 2010, 20(3): 517-23. doi: 10.1093/cercor/bhp120
    [13] Hutchinson JB, Uncapher MR, Weiner KS, et al. Functional heterogeneity in posterior parietal cortex across attention and episodic memory retrieval [J]. Cereb Cortex, 2014, 24(1): 49-66. doi: 10.1093/cercor/bhs278
    [14] Cash DM, Ridgway GR, Liang Y, et al. The pattern of atrophy in familial Alzheimer disease: volumetric MRI results from the DIAN study[J]. Neurology, 2013, 81(16): 1425-33. doi: 10.1212/WNL.0b013e3182a841c6
    [15] Han Y, Wang J, Zhao Z, et al. Frequency-dependent changes in the amplitude of low-frequency fluctuations in amnestic mild cognitive impairment: a resting-state fMRI study[J]. Neuroimage, 2011, 55 (1): 287-95. doi: 10.1016/j.neuroimage.2010.11.059
    [16] Han SD, Arfanakis K, Fleischman DA, et al. Functional connectivity variations in mild cognitive impairment: associations with cognitive function[J]. J Int Neuropsychol Soc, 2012, 18(1): 39-48. doi: 10.1017/S1355617711001299
    [17] Buckner RL. The cerebellum and cognitive function: 25 years of insight from anatomy and neuroimaging[J]. Neuron, 2013, 80(3): 807-15. doi: 10.1016/j.neuron.2013.10.044
    [18] Wang Z, Jia X, Liang P, et al. Changes in thalamus connectivity in mild cognitive impairment: evidence from resting state fMRI[J]. Eur J Radiol, 2012, 81(2): 277-85. doi: 10.1016/j.ejrad.2010.12.044
    [19] Chen N, Dong S, Yan T, et al. High-frequency stimulation of anterior nucleus thalamus improves impaired cognitive function induced by intra-hippocampal injection of Aβ1-40 in rats[J]. Chin Med J (Engl), 2014, 127(1): 125-9.
    [20] 何绘敏. 大鼠丘脑前核参与学习记忆的分子生物学研究[D]. 大连: 大连医科大学, 2010. http://cdmd.cnki.com.cn/Article/CDMD-10161-2010151666.htm
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出版历程
  • 收稿日期:  2015-06-18
  • 刊出日期:  2015-12-01

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