• 那些被鉴定多巴胺能神经元确实被刺激抑制

    The identified dopamine neurons were inhibited by the aversive stimulus.

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  • 结论移植神经干细胞PD模型小鼠纹状体存活,并可分化出特定的多巴胺能神经元

    ConclusionsThe transplanted multipotent NSCs could survive, differentiate into functional dopamine neurons in the brains of PD model mice.

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  • 结论同型半胱氨酸加重离体帕金森模型动物多巴神经元损伤,其机制氧化应激反应有关

    CONCLUSION: Homocysteine can aggravate the injury of dopaminergic neurons in animal models of Parkinson disease, and the mechanism may be associated with the anti-oxidative stress.

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  • 在浦肯野众多发现中,其中一个多巴胺能中脑神经元(现在我们知道帕金森氏病中,此种神经元退化)够合成黑色素

    One of Purkinje's many observations was that dopaminergic midbrain neurons (which we now know degenerate in Parkinson's Disease) synthesize melanin.

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  • 最近日本报道,茶叶中特有氨基酸氨酸通过活化多巴胺能神经元,起到抑制血压升高作用。

    Recently, it is reported in Japan that theanine, a type of amino acid that is contained in tea can restrain the rise of blood pressure through activating dopaminergic neuron.

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  • 结论大鼠第三脑室、中脑水管中缝背核内存在多巴胺能触液神经元,其-脑脊液之间信息传递中有着重要作用

    Conclusion the dopaminergic CSF-CNs located in the third ventricle and mesencephalic aqueduct might play an important role in transmitting information between brain and cerebrospinal fluid of the rat.

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  • 观察大鼠第三脑室中脑水管及中缝背核内多巴胺能触液神经元分布情况

    Objective To observe the distribution of dopaminergic cerebrospinal fluid-contacting neurons (CSF-CNs) in the third ventricle and the mesencephalic aqueduct of rat.

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  • 小鼠中,肌酸可阻止多巴胺能神经元缺失

    In mice, creatine was shown to prevent the loss of dopamine-producing brain cells.

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  • HNG - E则为发生转化神经干细胞系,RA诱导下多巴胺能神经元分化

    HNG-E cells were characterized as transformed neural stem cells, and can be differentiated into dopaminergic neurons by ra induction.

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  • 观察痴呆模型对照组老年组大鼠中脑腹侧被盖区(VTA)及黑质(sn)多巴胺能神经元形态学变化定量分析

    To study the morphologic changes of dopaminergic neurons in VTA and SN in the dementia model group, control group and the old group, and to analyse the result concluded by image analysing system.

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  • 采用线切断大鼠内侧前脑造成多巴胺能神经元慢性退行性改变。

    The medial forebrain bundle of rats was transected with a wire knife to set up a model of chronic degeneration of dopaminergic neurons.

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  • 观察不同浓度抗坏血神经干细胞多巴胺神经元分化影响

    OBJECTIVE: to investigate the effects of ascorbic acid on the differentiation of neural stem cells into DA neurons in vitro.

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  • 寻求血清、无饲养细胞存在情况下,胚胎干细胞多巴胺能神经元定向诱导分化最佳条件。

    Objective to explore the optimal condition of direct differentiation into dopaminergic neurons of embryonic stem cells in serum-free and feeder layer cell free medium.

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  • 建立一种简单高效中脑多巴神经元细胞培养方法观察胰酶消化对中脑多巴胺能神经元突起生长损伤作用。

    Objective: To establish an easy and high-yield method of rat dopaminergic neuron primary culture, and to observe the damage to the neurites by the trypsogen.

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  • 尽管目前存在药物治疗缺陷,但是多巴胺能神经元替代治疗呈现出广阔前景

    At present, pharmaceutical therapy has various shortcomings, while the replacement therapy of dopaminergic neurons shows competitive prospect.

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  • 矛盾被推测为多巴胺能神经元3 - 49%会这些刺激激活。

    Paradoxically, between 3 and 49% of presumed dopamine neurons are excited by aversive stimuli.

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  • 这些发现暗示多巴胺能神经元奖赏机制特异地激活群非多巴胺能神经元会被令人厌恶刺激激活。

    These findings suggest that dopamine neurons are specifically excited by reward and that a population of nondopamine neurons is excited by aversive stimuli.

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  • 探讨状体组织胚胎干细胞多巴胺能神经元分化定向诱导作用,及其细胞来源诱导方式

    Objective To explore the inductive effect of striatal tissue on mouse embryonic stem cells and further analyse the cell source and inductive pattern of this inductive effect.

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  • 转运失调学说好地解释多巴胺能神经元选择性缺失机制

    The hypothesis about maladjustment of transporters can explain preferably the mechanism of selective loss of the dopaminergic cells.

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  • 帕金森中枢神经系统常见种神经退行疾病,是由于中脑多巴胺能神经元丢失,导致纹状体多巴分泌减少造成一种老年人易患疾病。

    Parkinson's disease (PD) is a progressive neurodegenerative disease characterized by the loss of dopaminergic neurons in the midbrain and, consequently, depletion of dopamine in the striatum.

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  • 帕金森中枢神经系统常见种神经退行疾病,是由于中脑多巴胺能神经元丢失,导致纹状体多巴分泌减少造成一种老年人易患疾病。

    Parkinson's disease (PD) is a progressive neurodegenerative disease characterized by the loss of dopaminergic neurons in the midbrain and, consequently, depletion of dopamine in the striatum.

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