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The amplitude and phase responses of the firing rates of some motoneuron models

机译:某些运动神经元模型激发速率的幅度和相位响应

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摘要

A vertebrate motoneuron receives an enormous amount of synaptic activity from descending pathways, from spinal cord interneurons and directly from mechanoreceptor afferents. The intrinsic characteristics of the motoneuron will determine how its output spike train will encode the activities of all its inputs. Therefore, the essence of the intrinsic motoneuron characteristics should be well studied and modelled if the roles of the motoneuron as a processing or encoding element are to be well understood. Mathematical models of motoneurons have been described in the literature and tested mostly under static conditions. To increase the reality of the validation of such models, the objective of the present work is to test a few selected models described in the literature using sinusoidal injected current of different frequencies. The resulting frequency responses are compared with data available in the literature from cat type F motoneurons. Discrepancies between some of the models' responses and real motoneuron data suggest that improvements are needed in the modelling of the afterhyperpolarization mechanism. (C) 2000 Elsevier Science Ireland Ltd. All rights reserved. [References: 9]
机译:脊椎动物运动神经元从下行途径,脊髓中神经元和直接从机械感受器传入途径接受大量的突触活动。运动神经元的固有特性将决定其输出峰值序列将如何编码其所有输入的活动。因此,如果要很好地理解运动神经元作为处理或编码元件的作用,就应该很好地研究和建模固有运动神经元特性的本质。运动神经元的数学模型已经在文献中进行了描述,并且大多在静态条件下进行了测试。为了增加这种模型验证的真实性,本工作的目的是使用不同频率的正弦注入电流来测试文献中描述的一些选定模型。将所得的频率响应与猫F型运动神经元的文献数据进行比较。一些模型的响应与真实的运动神经元数据之间的差异表明,超极化后机制的建模需要改进。 (C)2000 Elsevier Science Ireland Ltd.保留所有权利。 [参考:9]

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