• 令人惊喜的是,针对Lupsik家族生理学研究表明,如果携带有一个突变基因的话,或许可以避开CMT然而他们也同样神经问题

    Surprisingly, electrophysiology studies of the family members found that people who carry only one copy of either defective gene may not develop CMT, but they are not free from nerve problems.

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  • 摘要目的探讨运动神经元病表现副肿瘤综合征临床生理学病理学特点

    Objective to investigate the clinic electrophysiological pathological characters of paraneoplastic syndrome which manifested with motor neurone disease-like.

    youdao

  • 目的了解髂腰肌神经支配及生理学特征。

    Objective: to study the electrophysiology of iliopsoas and the microsurgical anatomy of its nerve supply.

    youdao

  • 家兔作为实验动物,针对其颈部交感神经双束性构筑的情况进行组织解剖组织切片等方面的论证,神经生理学的研究可提供一定解剖学依据

    As an animal for experiment, the proof of the double-beamed sympathetic nerve of the rabbit in tissue dissection and section can provide some certain anatomical basis for neuroelectric physiology.

    youdao

  • 目的探讨运动神经元病表现副肿瘤综合征临床生理学病理学特点。

    Objective to investigate the clinic, electrophysiological, pathological characters of paraneoplastic syndrome which manifested with motor neurone disease-like.

    youdao

  • 神经生理学检查手段可了解神经功能状态,弥补了影像学的不足。

    The electric neurophysiology can provide reliable information about nerve root function that would supplement the structural information provided by the imaging study.

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  • 在术后行坐骨神经功能指数(SFI),生理学小腿三头湿检测

    Sciatic function index (SFI), electrophysiology and wet weight of muscles triceps surae were detected after surgery.

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  • 目的研究肯尼迪(KD)患者神经特征加强对此病生理学改变认识

    Objective to understand the electromyogram and electroneurogram features of the patients with Kennedy disease (KD), to further understand the electrophysiology change of KD.

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  • 目的研究刺激鼠脚桥PPN)对丘脑底核STN神经元放影响,探索高频刺激STN改善运动不能的机制,为临床高频刺激PPN治疗帕金森氏病提供生理学依据。

    Objective The purpose of this study was to research the effect of the electrical stimulation of the pedunculopontine nucleus(PPN) on the neuronal activities of the subthalamic nucleus(STN) in rats.

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  • 已有的生理学实验已经表明褪黑素可以调节海马神经兴奋性突触可塑性

    Previous electrophysiological experiments have revealed that melatonin modulates hippocampal neuronal excitability and plasticity.

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  • 已有的生理学实验已经表明褪黑素可以调节海马神经兴奋性突触可塑性

    Previous electrophysiological experiments have revealed that melatonin modulates hippocampal neuronal excitability and plasticity.

    youdao

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