Journal of Guangxi Normal University(Natural Science Edition) ›› 2016, Vol. 34 ›› Issue (4): 151-155.doi: 10.16088/j.issn.1001-6600.2016.04.023
Previous Articles Next Articles
LIU Jiali1, WANG Dongcui2, MO Shaofeng3, LI Hongzhou1, CHEN Zhencheng1
CLC Number:
[1] NORMILE D. Public health: a sense of crisis as China confronts ailments of affluence[J]. Science, 2010, 328(5977):422-424. [2] BRODY A L, MANDELKERN M A, JARVIK M E, et al. Differences between smokers and nonsmokers in regional gray matter volumes and densities[J]. Biological Psychiatry, 2004, 55(1):77-84. [3] ZHANG X, SALMERON B J, ROSS T J, et al. Anatomical differences and network characteristics underlying smoking cue reactivity[J]. Neuro Image, 2011, 54(1):131-141. [4] LIAO Y, TANG J, LIU T, et al. Differences between smokers and non-smokers in regional gray matter volumes: a voxel-based morphometry study[J]. Addict Biol, 2012, 17(6):977-980. [5] 廖艳辉,唐劲松,郝伟,等.基于局部一致性(ReHo)方法的慢性吸烟静息状态功能磁共振(fMRI)研究[J].中国临床心理学杂志,2011,19(4):427-429,436. [6] STEIN E A, PANKIEWICZ J, HARSCH H H, et al. Nicotine-induced limbic cortical activation in the human brain: a functional MRI study[J]. Am J Psychiatry, 1998, 155(8):1009-1015. [7] PARK S, KNOPICK C, MCGURK S, et al. Nicotine impairs spatial working memory while leaving spatial attention intact[J]. Neuropsychopharmacology, 2000, 22(2):200-209. [8] TANG J, LIAO Y, DENG Q, et al. Altered spontaneous activity in young chronic cigarette smokers revealed by regional homogeneity[J]. Behav Brain Funct, 2012,8(1):1-5. [9] YU R, ZHAO L, TIAN J, et al. Regional homogeneity changes in heavy male smokers: a resting-state functional magnetic resonance imaging study[J]. Addiction Biology, 2013, 18(4):729-731. [10] PAUL R H, BRICKMAN A M, COHEN R A, et al. Cognitive status of young and older cigarette smokers: Data from the international brain database[J]. Journal of Clinical Neuroscience, 2006, 13(4):457-465. [11] PINEDA J A, HERRERA C, KANG C, et al. Effects of cigarette smoking and 12-h abstention on working memory during a serial-probe recognition task[J]. Psychopharmacology (Berl), 1998, 139(4):311-321. [12] FROELIGER B, MODLIN L A, KOZINK R V, et al. Frontoparietal attentional network activation differs between smokers and nonsmokers during affective cognition[J]. Psychiatry Research: Neuroimaging, 2013, 211(1):57-63. [13] NEWHOUSE P A, POTTER A S, DUMAS J A, et al. Functional brain imaging of nicotinic effects on higher cognitive processes[J]. Biochem Pharmacol, 2011, 82(8):943-951. [14] LYVERS M, CARLOPIO C, BOTHMA V, et al. Mood, mood regulation expectancies and frontal systems functioning in current smokers versus never-smokers in China and Australia[J]. Addictive Behaviors, 2013, 38(11):2741-2750. [15] ERNST M, HEISHMAN S J, SPURGEON L, et al. Smoking history and nicotine effects on cognitive performance[J]. Neuropsychopharmacology, 2001, 25(3):313-319. [16] BEAVER J D, LONG C J, COLE D M, et al. The effects of nicotine replacement on cognitive brain activity during smoking withdrawal studied with simultaneous fMRI/EEG[J]. Neuropsychopharmacology, 2011,36(9):1792-1800. [17] 王超, 张敏鸣. 尼古丁依赖的脑功能MRI研究进展[J]. 磁共振成像, 2013,4(3):232-235. [18] 钱微. 吸烟者脑结构的磁共振研究[D]. 杭州:浙江大学, 2014. [19] 周旭辉, 王绪佚, 郝伟. 尼古丁依赖的功能影像学研究进展[J]. 中国临床心理学杂志, 2007,15(5):489-492. [20] ZANG Y, JIANG T, LU Y, et al. Regional homogeneity approach to fMRI data analysis[J]. Neuroimage, 2004, 22(1):394-400. [21] YAN Chaogan, ZANG Yufeng. DPARSF: a MATLAB toolbox for“pipeline”data analysis of resting-state fMRI[J]. Frontiers in Systems Neuroscience, 2010, 4(13):00013. [22] SONG X W, DONG Z Y, LONG X Y, et al. REST: a toolkit for resting-state functional magnetic resonance imaging data processing[J]. PLoS One, 2011, 6(9):e25031. [23] DONG G, HUANG J, DU X. Alterations in regional homogeneity of resting-state brain activity in internet gaming addicts[J]. Behavioral and Brain Functions: BBF, 2012, 8(1):41. [24] MILLER E K, COHEN J D. An integrative theory of prefrontal cortex function[J]. Annual Review of Neuroscience, 2001, 24:167-202. [25] HONG L E, GU H, YANG Y, et al. Association of nicotine addiction and nicotine′s actions with separate cingulate cortex functional circuits[J]. Arch Gen Psychiatry, 2009, 66(4):431-441. [26] BIGLER E D, MORTENSEN S, NEELEY E S, et al. Superior temporal gyrus, language function, and autism[J]. Developmental Neuropsychology, 2007, 31(2):217-238. [27] MARCHAND W R, LEE J N, THATCHER J W, et al. Putamen coactivation during motor task ution[J]. Neuroreport, 2008, 19(9):957-960. |
No related articles found! |
|