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大鼠尾壳核对同侧黑质网状部神经元电活动的影响 被引量:2

Effect of the Nucleus Caudate-putamen on Neuronal Electrical Activity of Substantia Nigra Pars Reticulate in Rats
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摘要 研究大鼠尾壳核神经元对黑质网状部神经元电活动的影响。通过在尾壳核注射谷氨酸钠,同时利用Plexon多通道数据采集处理系统进行黑质网状部神经元放电的胞外记录,然后运用NeuroExplorer软件对所记录的电信号进行直观分析,通过SPSS 16.0对所采集信号数据进行统计分析。实验成功在6只大鼠的黑质网状部记录到11个神经元的放电情况,麻醉状态下大鼠黑质网状部神经元放电频率为12.20±6.60 Hz,当向尾壳核注射谷氨酸钠后降低至1.80±1.00 Hz,P<0.01。化学刺激尾壳核后,黑质网状部神经元放电频率显著性降低,提示尾壳核对黑质网状部神经元有明显的抑制作用。 The article aimed to find out the effect of the neurons in nucleus caudate-putamen(CPu) on the electrical activity of neurons in the substantia nigra pars reticulate(SNr).We injected the L-Glutamate(L-Glu)which is an incitant neurotransmitter in the brain into the CPu and meanwhile recording the neuronal extracellular discharge of the SNr.Then the discharge signals were stored in the Plexon Multichannel Acquisition Processor and were analyzed with Neuro-Explorer software,the data were statistically analyzed by SPSS 16.0 software.We recorded the discharge of 11 neurons of SNr in 6 rats,it was found that the basal firing rates of neuronal action potentials in the SNr were 12.20±6.60 Hz,but decreased to 1.86±1.00 Hz when the L-Glu was injected into the CPu,P0.01.This result suggests that the neurons of CPu have a significant inhibitory effect on neurons in the SNr.
出处 《生物医学工程研究》 2011年第3期133-137,共5页 Journal Of Biomedical Engineering Research
基金 国际合作重大项目(60910007) 国家"973"项目(20117B302106)
关键词 黑质网状部 尾壳核 神经元放电 胞外记录 谷氨酸钠 Plexon Neuro-Explorer Substantia nigra pars reticulate Nucleus caudate-putamen Discharge Extracellular record L-glutamate Plexon Neuro-explorer
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  • 1Hallett PJ, Brotchie JM. Striatal delta opioid receptor binding in experimental models of Parkinson's disease and dyskinesia[J]. Mov Disord, 2007,22 (1): 28-40.
  • 2Emborg ME. Evaluation of animal models of Parkinson's disease for neuroprotective strategies [J]. J Neurosci Methods, 2004,139 (2):121-143.
  • 3Reksidler AB, Lima MM, Zanata SM, et al. The COX-2 inhibitor parecoxib produces neuroprotective effects in MPTP-lesioned rats[J]. Eur J Pharmacol,2007,560(2-3):163-175.
  • 4Richardson JR, Quan Y, Sherer TB,et al. Paraquat neurotoxicity is distinct from that of MPTP and rote none[J]. Toxicol Sci, 2005, 8(1) :193-201.
  • 5Li X, Matsumoto K, Murakami Y,et al. Neuroprotective effects of Polygonum muhiflorum on nigrostriatal dopaminergic degeneration induced by paraquat and maneb in mice[J]. Pharmacol Biochem Behav, 2005, 82(2):345-352.
  • 6Hunter RL, Dragicevic N, Seifert K,et al. Inflammation induces mitochondrial dysfunction and dopaminergic neurodegeneration in the nigrostriatal system[J]. J Neurochem, 2007,100(5) : 1375-1386.
  • 7Goldberg MS, Fleming SM, Palacino JJ,et al. Parkin-deficient mice exhibit nigrostriatal deficits but not loss of dopaminergic neurons[J]. J Biol Chem, 2003, 278(44) :43628-43635.
  • 8Kim RH, Smith PD, Aleyasin H,et al. Hypersensitivity of DJ-1-defieient mice to 1-methyl-4-phenyl-1,2, 3,6-tetrahydropyrindine (MPTP) and oxidative stress [J]. Proc Natl Acad Sci U S A, 2005, 102(14) :5215- 5220.
  • 9Battaglia G, Farrace MG, Mastroberardino PG,et al. Transglutaminase 2 ablation leads to defective function of mitochondrial respiratory complex Ⅰ affecting neuronal vulnerability in experimental models of extrapyramidal disorders [J]. J Neurochem, 2007, 100 (1) : 36- 49.
  • 10McNaught KS, PerI DP, Brownell AL, et al. Systemic exposure to proteasome inhibitors causes a progressive model of Parkinson's disease[J]. Ann Neurol, 2004,56(1) :149-162.

共引文献27

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  • 1徐岩,张婷,曹学兵.左旋多巴诱发异动症大鼠模型黑质网状部电活动的研究[J].脑与神经疾病杂志,2008,16(6):663-665. 被引量:2
  • 2乔德才,侯莉娟,何德富,翁恩琪.运动疲劳对大鼠新纹状体神经元电活动的影响[J].中国运动医学杂志,2005,24(6):676-680. 被引量:36
  • 3Nambu A. Seven problems on the basal ganglia[J]. Neu- robiology, 2008,18 (6) : 595-604.
  • 4Nambu A. Globulus pallidus internal segment[J]. Pro- gress in Brain Research, 2007,160 : 135-150.
  • 5Blandimi F, Nappi G, Tassorelli C, et al. Functional changes of the basal ganglia circuitry in Parkinson's disease[J]. Progress in Neurobiology, 2000, 62 ( 1 ) : 63- 88.
  • 6Smith Y, Bevan M D, Shink E, et al. Mierocircuitry of the direct and indirect pathways of the basal ganglia[J]. Neuroscience, 1998, 86(2) : 353-387.
  • 7Nambu A, Takada M, lnase M, et al. Dual somato- topical representations in the primate subthalamic nu- cleus: evidence for ordered but reversed body-map transformations from the primary motor cortex and the supplementary motor area [J]. J Neurosci, 1996, 16 (8): 2671-2683.
  • 8Belujon P, Grace A A. Reorganization of Striatal In- hibitory Microcircuits Leads to Pathological Synchrony in the Basal Ganglia [J]. Neuron, 2011, 71 (5) : 766- 768.
  • 9Smith Y, Wichmann T. Functional Anatomy and Phys- iology of the Basal Ganglia: Motor Functions [C]// Tarsy D. Current Clinical Neurology: Deep Brain Stimulation in Neurological and Psychiatric Disorders. Totowa : Humana Press, 2008 : 3-32.
  • 10Hoover J E, Strick P L. The Organization of Cerebel- lar and Basal Ganglia Outputs to Primary Motor Cor- tex as Revealed by Retrograde Transneuronal Trans-port of Herpes Simplex Virus Type 1 [J].The Journal of Neuroscience, 1999, 19(4) : 1446-1463.

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