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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Microgravity dependence of excitable biological and physicochemical media
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Microgravity dependence of excitable biological and physicochemical media

机译:可激发的生物和物理化学介质的微重力依赖性

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Neuronal tissue and especially the central nervous system (CNS) is an excitable medium. Self-organisation, pattern formation, and propagating excitation waves as typical characteristics in excitable media consequently have been found in neuronal tissue. The properties of such phenomena in excitable media do critically depend on the parameters (i.e., electromagnetic fields, temperature, chemical drugs) of the system and on small external forces to which gravity belongs. The spreading depression, a propagating excitation depression wave of neuronal activity, is one of the best described of the those wave phenomena in the CNS. Especially in the retina as a true part of the CNS it can be easily observed with optical techniques due to the high intrinsic optical signal of this tissue. Another of such waves in neuronal tissue is the propagating action potential in nerve fibres. In this paper, data from our laboratories concerning the influence of gravity on the velocity of propagating waves in excitable media are summarized mainly in terms of the retina] spreading depression and propagating action potentials. Additionally, we have used waves in gels of the Belousov-Zhabotinsky reaction as the physicochemical model system of biological activity as the properties of these waves follow the same theories as the spreading depression and action potentials and they have some striking similarities in wave behavior. Thus propagating Belousov-Zhabotinsky waves are described by their gravity dependence.
机译:神经元组织,尤其是中枢神经系统(CNS)是一种可兴奋的介质。因此,在神经元组织中发现了自组织,模式形成和激发波作为可激发介质中的典型特征。这种现象在可激发介质中的性质严重取决于系统的参数(即电磁场,温度,化学药物)以及重力所属的较小外力。扩散性抑郁症是神经活动的传播性兴奋性抑郁症波,是中枢神经系统中这些波现象中描述得最好的一种。尤其是在视网膜中,作为中枢神经系统的真正组成部分,由于该组织固有的高光信号,可以很容易地用光学技术对其进行观察。神经元组织中的另一种此类波是神经纤维中的传播动作电位。在本文中,我们从实验室得出的有关重力对可激发介质中传播波速度的影响的数据主要从视网膜扩散凹陷和传播动作电位方面进行了总结。此外,我们已将Belousov-Zhabotinsky反应凝胶中的波用作生物活性的物理化学模型系统,因为这些波的性质遵循与散布的抑郁和动作电位相同的理论,并且在波行为方面具有惊人的相似性。因此,传播的Belousov-Zhabotinsky波由其重力依赖性来描述。

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