[1]刘东明 胡新华 刘 永 陈 玖 刘宏毅.脑胶质瘤病人静息态默认模式网络研究进展[J].中国临床神经外科杂志,2018,(12):821-823.[doi:10.13798/j.issn.1009-153X.2018.12.022]
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脑胶质瘤病人静息态默认模式网络研究进展()
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《中国临床神经外科杂志》[ISSN:1009-153X/CN:42-1603/TN]

卷:
期数:
2018年12期
页码:
821-823
栏目:
论著
出版日期:
2018-12-25

文章信息/Info

文章编号:
1009-153X(2018)12-0821-03
作者:
刘东明 胡新华 刘 永 陈 玖 刘宏毅
210029 南京,南京医科大学附属脑科医院神经外科(刘东明、胡新华、刘 永、刘宏毅),神经精神病研究所(陈 玖),脑功能影像 研究所(陈 玖、刘宏毅)
关键词:
脑胶质瘤默认模式网络认知功能
分类号:
R739.41
DOI:
10.13798/j.issn.1009-153X.2018.12.022
文献标志码:
A

参考文献/References:

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[2] Zhang H, Shi Y, Yao C, et al. Alteration of the intra- and cross-hemisphere posterior default mode network in frontal lobe glioma patients [J]. Sci Rep, 2016, 6: 26972.
[3] Bartolomei F, Bosma I, Klein M, et al. How do brain tumors alter functional connectivity? A magnetoencephalography study [J]. Ann Neurol, 2006, 59(1): 128-138.
[4] Maesawa S, Bagarinao E, Fujii M, et al. Evaluation of restingstate networks in patients with gliomas: connectivity changes in the unaffected side and its relation to cognitive function [J]. PloS One, 2015, 10(2): 1-13.
[5] Buckner RL, Andrews-Hanna JR, Schacter DL. The brain's default network: anatomy, function, and relevance to disease[J]. Ann NY Aca Sci, 2008, 1124: 1-38.
[6] Raichle ME, MacLeod AM, Snyder AZ, et al. A default mode of brain function [J]. Proc Natl Acad Sci USA, 2001, 98(2): 676-682.
[7] Greicius MD, Krasnow B, Reiss AL, et al. Functional con-nectivity in the resting brain: a network analysis of the default mode hypothesis [J]. Proc Natl Acad Sci USA, 2003, 100(1): 253-258.
[8] Ghumman S, Fortin D, Noel-Lamy M, et al. Exploratory study of the effect of brain tumors on the default mode network [J]. J Neuro-Oncol, 2016, 128(3): 437-444.
[9] Greicius MD, Supekar K, Menon V, et al. Resting-state functional connectivity reflects structural connectivity in the default mode network [J]. Cereb cort, 2009, 19: 72-78.
[10] Hagmann P, Cammoun L, Gigandet X, et al. Mapping the structural core of human cerebral cortex [J]. PLoS biol, 2008, 6(7): 1479-1493.
[11] Fox MD, Snyder AZ, Vincent JL, et al. The human brain is intrinsically organized into dynamic, anticorrelated func- tional networks [J]. Proc Natl Acad Sci USA, 2005, 102(27):9673-9678.
[12] Raichle ME. The brain's default mode network [J]. Ann RevNeurosci, 2015, 38: 413-427.
[13] Mason MF, Norton MI, van Horn JD, et al. Wandering minds: the default network and stimulus-independent thought [J]. Science, 2007, 315(5810): 393-395.
[14] Gusnard DA, Raichle ME. Searching for a baseline: func-tional imaging and the resting human brain [J]. Nat RevNeurosci, 2001, 2(10): 685-694.
[15] Esposito R, Mattei PA, Briganti C, et al. Modifications of de-fault-mode network connectivity in patients with cerebral glioma [J]. PloS One, 2012, 7(7): 1-9.
[16] Harris RJ, Bookheimer SY, Cloughesy TF, et al. Altered functional connectivity of the default mode network in diffuse gliomas measured with pseudo-resting state fMRI [J]. J Neuro-oncolo, 2014, 116(2): 373-379.
[17] Ghinda DC, Wu JS, Duncan NW, et al. How much is enough-Can resting state fMRI provide a demarcation for neurosurgical resection in glioma [J]? Neurosci Biobehav Revi, 2018, 84: 245-261.
[18] Tuovinen N, De Pasquale F, Caulo M, et al. Transient effectsof tumor location on the functional architecture at rest in glioblastoma patients: three longitudinal case studies [J]. Rad Oncology, 2016, 11(1): 1-18.
[19] 胡新华,刘宏毅. 脑胶质瘤与认知功能障碍[J]. 中国微侵袭神经外科杂志,2014,(9):430-432.
[20] Van Dellen E, De Witt Hamer PC, Douw L, et al. Connecti-vity in MEG resting-state networks increases after resective surgery for low-grade glioma and correlates with improved cognitive performance [J]. NeuroImage Clin, 2012, 2: 1-7.
[21] Burks JD, Bonney PA, Conner AK, et al. A method for safelyresecting anterior butterfly gliomas: the surgical anatomy of the default mode network and the relevance of its preserva-tion [J]. J Neurosurg, 2017, 126(6): 1795-1811.
[22] Duffau H. Surgical neurooncology is a brain networks sur-gery: a "connectomic" perspective [J]. World Neurosurg, 2014, 82(3-4): e405-407.

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备注/Memo

备注/Memo:
doi:10.13798/j.issn.1009-153X.2018.12.022 基金项目:江苏省卫计委十三五“科教强卫工程”创新团队项目(CXTDA2017050);国家自然科学基金(81701675);南京市医学科技发展项目 (ZKX14044);南京市卫计委项目(H201540) 作者单位:210029 南京,南京医科大学附属脑科医院神经外科(刘东明、胡新华、刘 永、刘宏毅),神经精神病研究所(陈 玖),脑功能影像 研究所(陈 玖、刘宏毅) 通讯作者:刘宏毅,E-mail:hyliu18@12
更新日期/Last Update: 2018-12-26