• 结论CGRP激活脊髓神经元

    Conclusions: CGRP can activate spinal neuron cultured in vitro.

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  • 目的探讨培养脊髓神经元酶体影响因素。

    Objective To investigate the effects of lysosome in spinal cultured neurons.

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  • 结论H_2O_2处理导致脊髓神经元出现氧化损伤

    Conclusions H_2O_2 can cause oxidative injury in cultured spinal cord neurons.

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  • 结论H GF体外培养的脊髓神经元保护迁移作用

    Conclusion HGF have protective and migration effects on primary cultured spinal neurons.

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  • 但是并未证明包含基因脊髓神经元神经细胞专门针对瘙痒的。

    But that didn't prove that the spinal cord neurons, or nerve cells, that harbored this gene were itch-specific.

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  • 结果MAP5培养脊髓神经元中呈网状分布胞浆突起中。

    Results MAP5 was distributed in cytoplasm and processes in normal cultured neurons and in cytoplasm like a reticulum.

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  • 结果正常脊髓神经元自发单位放电一个低频单发脉冲活动。

    Results: Most autonomous discharge of the normal spinal cord neurons was regularly a single pulse with low frequency.

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  • 目的建立一种简单、易行、满足基本科研需要脊髓神经元原代细胞分散培养

    Objective To find an easy, practical and reliable method for dispersion culture of primary neurons in rat spinal cord.

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  • 目的比较皮质脊髓神经元皮质巨细胞网状神经元分布探讨是否有分支投射

    Objective To compare the distributions of the corticospinal neurons and the corticorubral neurons and study whether the corticospinal neurons project collaterals to the red nucleus exist or not.

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  • 目的研究体外培养脊髓神经元损伤前后凋亡变化进一步探讨中枢神经损伤的分子机制。

    Objective to investigate the apoptosis rate of neurons in vitro among the primary culture cells isolated from rat spinal cords before and after injury.

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  • 目的探讨初代培养脊髓神经元相关蛋白MAP5表达特征及其调节因素。

    Objective To study the expression and regulation of microtubule associated protein 5(MAP5) in primary cultured spinal neurons.

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  • 疼痛持续不消时,会造成显著的变化脊髓神经元变得极度敏感微弱刺激也产生放电反应

    When pain is unremitting, dramatic changes follow: spinal cord neurons become hypersensitive and start firing in response to weak stimuli.

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  • 运动脑干区域网状脊髓神经元所引起,而这些神经元又是被间脑中脑分离的一些运动命令神经元群所控制

    It is activated from the brainstem reticulospinal neurones, which in turn are controlled from diencephalon and mesencephalon with separate populations of locomotor command neurones.

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  • 目的观察脑源神经生长因子(BDNF)神经营养因子-3(NT-3)单独联合应用体外培养胚胎大鼠脊髓神经元存活和生长发育影响

    Objective:To study the individual and joint effects of BDNF and NT-3on the sur-vival and growth of neurons from the spinal cord of embryonic rat.

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  • Giesler提出种理论认为瘙痒STT神经元里面产生一种兴奋状态,而搔痒可以抑制这种状态——好像我们手指脊髓神经元发指令让它们冷静下来

    Giesler theorizes that the itch sensation creates an excited state in the STT neurons that scratching inhibits - as if our fingernails were sending a message to spinal-cord neurons to cool off.

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  • 目的观察脊髓神经元维生素 D 依赖性钙结合蛋白(CB小白蛋白(PV共存情况。

    The objective is to observe the co-existence of calbindin-D28k (CB) with parvalbumin (PV) in neurons of the anterior horn of the spinal cord in rats.

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  • 脊髓只有不到英尺直径只相当于食指粗细,但是在它之中有超过一百亿的神经元细胞

    The spinal cord is less then two feet in length and is the same diameter as your index finger, yet it contains over 10 billion nerve cells.

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  • 科学家们表示更好理解钙离子所扮演的角色有助于我们将来阻止患了中风多发性硬化症之类脊髓疾病的病人神经元死亡

    A better understanding of that role could someday help prevent the death of neurons behind some diseases of the brain and spinal cord, such as stroke and multiple sclerosis, the scientists say.

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  • 研究人员通过激光除去脊髓下层特殊神经元使不能进行缓慢运动

    By removing specific neurons in the lower spinal cord with laser beams, the researchers rendered the fish incapable of slow movements.

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  • 这个团队注意力集中到了脑干中的一类神经元神经元负责脊髓传送信号,引起行走其他运动

    The group focused its attention on a collection of brainstem neurons that tell the spinal cord to generate motor output that enables walking and other locomotion.

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  • ALS运动神经元变性死亡发生运动神经元可将神经冲动脊髓传达身体块肌肉

    ALS is caused by the degeneration and death of motor neurons, the nerve cells which convey nerve impulses from the spinal cord to each of the body's muscles.

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  • 脊髓背角神经元超兴奋性被认为病理性疼痛发生重要原因

    The hyperexcitability of spinal dorsal horn neurons is one of the main reasons for persistent pain.

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  • 结论周围神经损伤脊髓神经节神经元凋亡发生,鞘细胞移植神经元凋亡保护作用

    CONCLUSION: There are apoptotic neuron in the spinal cord and ganglion after peripheral nerve injury, while the OECs has protective effect on apoptotic neurons.

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  • 脊髓挤压损伤经常导致磷脂丢失破坏神经元传递信号能力

    Spinal "crush" injuries often cause a loss of myelin, and so destroy the capacity of nerves to transmit signals.

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  • 目的探讨周围神经损伤脊髓运动神经元、周围神经肌肉病理变化机制

    Objective: Research the pathologic changes and mechanisms of Spinal cord anterior horn motor neurons, peripheral nerve and target muscles after peripheral nerve injury.

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  • 结论大鼠坐骨神经损伤后,脊髓运动神经元胞体有死亡死亡具有一定的时间特征

    Conclusions: Peripheral nerve injury can induce spinal cord anterior horn motor neurons dead, and the neuron death demonstrates its own character.

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  • 目的探讨胶质细胞源神经营养因子(GDNF)脊髓损伤后运动神经元保护作用

    Objective: to investigate the protective effect of glial cell line derived neurotrophic factor (GDNF) on spinal front corner motor neurons.

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  • 运用电子显微镜观察分析原代分离培养脊髓固有神经元突触构筑

    An electron microscopic analysis of the synaptic architecture in propriospinal neurons of cultured fetal mouse spinal cord has been undertaken.

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  • 运用电子显微镜观察分析原代分离培养脊髓固有神经元突触构筑

    An electron microscopic analysis of the synaptic architecture in propriospinal neurons of cultured fetal mouse spinal cord has been undertaken.

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