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A `late supernormal period in the recovery of excitability following an action potential in muscle spindle and tendon organ receptors

机译:肌肉梭动和肌腱器官受体的动作电位后兴奋性恢复的晚期超正常时期

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摘要

1. Discharge patterns have been recorded from five types of stretch receptor; frog muscle spindles, lizard tendon organs, cat soleus tendon organs and primary and secondary endings of cat soleus muscle spindles.2. The fully adapted discharge of each type of receptor is irregular, especially for frog spindles and primary endings of cat spindles as compared with the other three types (the `regularly firing' receptors). Frog spindles and some cat spindle primary endings would maintain a discharge at very low mean rates (1/sec or less) while the remaining receptors would stop suddenly, as soon as their rate of discharge fell below a critical value characteristic for each individual ending.3. This pattern of discharge suggests that there is a peak in the excitability of `regularly firing' receptors at a time following a preceding impulse, which corresponds to the intervals between impulses at each particular receptor's slowest rate of maintained firing, and that the excitability subsequently falls again. Primary endings of cat muscle spindles also showed some evidence of such a `late supernormal period', but frog spindles did not.4. Direct evidence for the `late supernormal period' was obtained from experiments in which a maintained discharge was restarted by an antidromic action potential in a receptor which had stopped firing, and to which had been applied a stretch just too small to restart the discharge.5. It is shown in an Appendix that a model receptor in which the recovery of excitability following an impulse has a hyperbolic time course, and in which Gaussian distributed noise is superimposed on the generator potential, can have a discharge pattern very closely resembling that of a frog spindle (cf. Buller, 1965).6. After addition of a late supernormal period to the model, its discharge pattern could mimic closely that of a lizard or cat tendon organ, or of a secondary ending of a cat spindle.
机译:1.记录了五种类型的拉伸感受器的放电模式;青蛙肌肉纺锤体,蜥蜴肌腱器官,猫比目鱼肌腱器官以及猫比目鱼肌纺锤体的初级和次级末端2。每种受体的完全适应性放电是不规则的,特别是对于青蛙纺锤体和猫纺锤体的初级末端而言,与其他三种类型的受体(“正常发射”受体)相比。青蛙纺锤和某些猫纺锤的初级末端将以极低的平均速率(1 /秒或更短)维持放电,而其余的受体一旦其放电速率降至每个个体末端的临界值特征以下,就会突然停止。 3。这种放电模式表明,在之前的脉冲之后的某个时间,“正常发射”受体的兴奋性达到峰值,这对应于每个特定受体维持放电速度最慢的脉冲之间的间隔,并且兴奋性随后下降再次。猫的肌肉纺锤体的主要结局也显示出这种“后期超正常时期”的一些证据,但青蛙纺锤体却没有。4。 “晚期超正常时期”的直接证据是从实验中获得的,在该实验中,已停止发射的受体中的抗皮肤动作电位使维持的放电重新开始,并且对其施加的拉伸太小而无法重新开始放电。5 。附录中显示,模型接收器的放电模式与青蛙类似,在模型接收器中,脉冲后的兴奋性恢复具有双曲线时间过程,并且高斯分布噪声叠加在发生器电势上。主轴(参见Buller,1965)6。在模型中添加了后期的超常态之后,其放电模式可以非常类似于蜥蜴或猫的肌腱器官的放电模式,或猫纺锤的次级末端的放电模式。

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