[1] Mavridis I, Boviatsis E, Anagnostopoulou S. Stereotactic anatomy of the human nucleus accumbens: from applied mathematics to microsurgical accuracy[J]. Surg Radiol Anat, 2011,33(7):583-594.
[2] Meidahl AC, Orlowski D, Sørensen JC, et al. The retrograde connections and anatomical segregation of the göttingen minipig nucleus accumbens[J]. Front Neuroanat, 2016,10:117. eCollection 2016.
[3] Floresco SB. The nucleus accumbens: an interface between cognition, emotion, and action[J]. Annu Rev Psychol, 2015, 66:25-52.
[4] Xia X, Fan L, Cheng C, et al. Multimodal connectivity-based parcellation reveals a shell-core dichotomy of the human nucleus accumbens[J]. Hum Brain Mapp, 2017,38(8):3878-3898.
[5] Basar K, Sesia T, Groenewegen H, et al. Nucleus accumbens and impulsivity[J]. Prog Neurobiol, 2010, 92(4):533-557.
[6] Groenewegen HJ, Wright CI, Beijer AV, et al. Convergence and segregation of ventral striatal inputs and outputs [J]. Ann N Y Acad Sci, 1999, 877:49-63.
[7] Tong J, Hornykiewicz O, Kish SJ. Identification of a noradrenaline-rich subdivision of the human nucleus accumbens[J]. J Neurochem, 2006, 96(2):349-354.
[8] Meredith GE. The synaptic framework for chemical signaling in nucleus accumbens[J]. Ann N Y Acad Sci, 1999, 877:140-156.
[9] Voorn P, Brady LS, Berendse HW, et al. Densitometrical analysis of opioid receptor ligand binding in the human striatum--I. Distribution of mu opioid receptor defines shell and core of the ventral striatum. [J] Neuroscience, 1996,75(3):777-792.
[10]Renteria R, Buske TR, Morrisett RA. Long-term subregion-specific encoding of enhanced ethanol intake by D1DR medium spiny neurons of the nucleus accumbens[J]. Addict Biol, 2018 ,23(2):689-698.
[11]Drakenberg K, Nikoshkov A, Horváth MC, et al. Opioid receptor A118G polymorphism in association with striatal opioid neuropeptide gene expression in heroin abusers[J]. Proc Natl Acad Sci U S A, 2006,103(20):7883-7888.
[12]McCollum LA, Walker CK, Roche JK, et al. Elevated Excitatory Input to the Nucleus Accumbens in Schizophrenia: A Postmortem Ultrastructural Study[J]. Schizophr Bull, 2015,41(5):1123-1132.
[13]Dubertret C, Bardel C, Ramoz N, et al. A genetic schizophrenia-susceptibility region located between the ANKK1 and DRD2 genes[J]. Prog Neuropsychopharmacol Biol Psychiatry, 2010,34(3):492-499.
[14]Surmeier DJ, Ding J, Day M, et al. D1 and D2 dopamine-receptor modulation of striatal glutamatergic signaling in striatal medium spiny neurons[J]. Trends Neurosci, 2007,30(5):228-235.
[15]Volkow ND, Wang GJ, Baler RD. Reward, dopamine and the control of food intake: implications for obesity[J]. Trends Cogn Sci, 2011,15(1):37-46.
[16]Di Chiara G. Nucleus accumbens shell and core dopamine: differential role in behavior and addiction[J]. Behav Brain Res, 2002,137(1-2):75-114.
[17]Melchior JR, Jones SR. Chronic ethanol exposure increases inhibition of optically targeted phasic dopamine release in the nucleus accumbens core and medial shell ex vivo[J]. Mol Cell Neurosci, 2017, 85:93-104.
[18]McCollum LA, McCullumsmith RE, Roberts RC. Tyrosine hydroxylase localization in the nucleus accumbens in schizophrenia[J]. Brain Struct Funct, 2016, 221(9):4451-4458.
[19]Müller UJ, Truebner K, Schiltz K, et al. Postmortem volumetric analysis of the nucleus accumbens in male heroin addicts: implications for deep brain stimulation[J]. Eur Arch Psychiatry Clin Neurosci, 2015, 265(8):647-653.
[20]Storvik M, Häkkinen M, Tupala E, et al. Whole-hemisphere autoradiography of 5-HT1B receptor densities in postmortem alcoholic brains[J]. Psychiatry Res, 2012, 202(3):264-270.
[21]Tupala E, Hall H, Bergström K, et al. Different effect of age on dopamine transporters in the dorsal and ventral striatum of controls and alcoholics[J]. Synapse, 2003,48(4):205-211.
[22]Ellison DW, Beal MF, Mazurek MF, et al. Ellison Amino acid neurotransmitter abnormalities in huntington's disease and the quinolinic acid animal model of huntington's disease[J]. Brain, 1987,110 ( Pt 6):1657-1673.
[23]Mavridis IN. Nucleus Accumbens stereotaxy for deep brain stimulation: anatomical focus[J]. Acta Neurochir (Wien), 2014,156(3):589-591.
[24]Müller UJ, Voges J, Steiner J, et al. Deep brain stimulation of the nucleus accumbens for the treatment of addiction[J]. Ann N Y Acad Sci, 2013,1282:119-128.
[25]Harat M, Ruda? M, Zieliński P, et al. Nucleus accumbens stimulation in pathological obesity[J]. Neurol Neurochir Pol, 2016, 50(3):207-210.
[26]Corbit LH, Fischbach SC, Janak PH. Nucleus accumbens core and shell are differentially involved in general and outcome-specific forms of Pavlovian-instrumental transfer with alcohol and sucrose rewards[J]. Eur J Neurosci, 2016,43(9):1229-1236.
[27]Wei N, Wang Y, Wang X, et al. The different effects of high-frequency stimulation of the nucleus accumbens shell and core on food consumption are possibly associated with different neural responses in the lateral hypothalamic area[J]. Neuroscience, 2015, 301:312-322.
[28]Sesia T, Temel Y, Lim LW, et al. Deep brain stimulation of the nucleus accumbens core and shell: opposite effects on impulsive action[J]. Exp Neurol, 2008, 214(1):135-139.
[29]Guercio LA, Schmidt HD, Pierce RC. Deep brain stimulation of the nucleus accumbens shell attenuates cue-induced reinstatement of both cocaine and sucrose seeking in rats[J]. Behav Brain Res, 2015, 281:125-130.
[30]Schippers MC, Bruinsma B, Gaastra M, et al. Deep brain stimulation of the nucleus accumbens core affects trait impulsivity in a baseline-dependent manner[J]. Front Behav Neurosci, 2017,11:52. |