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虚幻反射:肌肉以输入刺激中实际不存在的频率进行收缩。

Phantom reflexes: muscle contractions at a frequency not physically present in the input stimuli.

作者信息

Manjarrez E, Balenzuela P, García-Ojalvo J, Vásquez E E, Martínez L, Flores A, Mirasso C R

机构信息

Instituto de Fisiología, Benemérita Universidad Autónoma de Puebla, 14 Sur 6301, Col. San Manuel, A.P. 406, Puebla, Pue., CP 72570, Mexico.

出版信息

Biosystems. 2007 Sep-Oct;90(2):379-88. doi: 10.1016/j.biosystems.2006.10.002. Epub 2006 Oct 10.

Abstract

In the motor system, the periodic stimulation of one Ia-afferent input produces reflex muscle contractions at the input frequency. However, we observed that when two Ia monosynaptic reflex-afferent inputs are involved the periodic muscle contractions may occur at a frequency physically not present in the afferent inputs even when these inputs are sub-threshold. How can the muscles respond with such phantom reflex contractions at a frequency physically absent in the sub-threshold Ia-afferent input stimuli? Here we provide an explanation for this phenomenon in the cat spinal cord, that we termed "ghost motor response". We recorded monosynaptic reflexes in the L7 ventral root, intracellular potentials in the motoneurons, and the associated muscular contractions elicited by stimulation of the lateral and medial gastrocnemius nerves. By stimulating with periodic pulses of sub-threshold intensities and distinct frequencies of 2 and 3 Hz the lateral and medial gastrocnemius nerves, respectively, we observed monosynaptic responses and phantom reflex muscle contractions occurring at the fundamental frequency (1 Hz), which was absent in the input stimuli. Thus we observed a reflex ghost motor response at a frequency not physically present in the inputs. We additionally studied the inharmonic case for sub-threshold stimuli and observed muscular contractions occurring at much lower frequencies, which were also conspicuously absent in the inputs. This is the first experimental evidence of a phantom reflex response in the nervous system. The observed behavior was modeled by numerical simulations of a pool of neurons subjected to two different input pulses.

摘要

在运动系统中,对一条Ia传入神经输入进行周期性刺激会使肌肉以输入频率产生反射性收缩。然而,我们观察到,当涉及两条Ia单突触反射传入神经输入时,即使这些输入处于阈下水平,周期性肌肉收缩也可能以传入神经输入中实际不存在的频率发生。在阈下Ia传入神经输入刺激中实际不存在的频率下,肌肉如何产生这种虚幻的反射性收缩呢?在此,我们对猫脊髓中的这一现象给出一种解释,我们将其称为“虚幻运动反应”。我们记录了L7腹根中的单突触反射、运动神经元的细胞内电位以及刺激外侧和内侧腓肠神经引发的相关肌肉收缩。通过分别以阈下强度的周期性脉冲以及2 Hz和3 Hz的不同频率刺激外侧和内侧腓肠神经,我们观察到单突触反应以及以输入刺激中不存在的基频(1 Hz)出现的虚幻反射性肌肉收缩。因此,我们观察到了一种在输入中实际不存在的频率下的反射性虚幻运动反应。我们还研究了阈下刺激的非谐波情况,并观察到肌肉以低得多的频率收缩,而这些频率在输入中同样明显不存在。这是神经系统中虚幻反射反应的首个实验证据。通过对接受两种不同输入脉冲的神经元池进行数值模拟,对观察到的行为进行了建模。

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