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Motor unit firing and its relation to tremor in the tonic vibration reflex of the decerebrate cat.

机译:大脑无声猫的强直振动反射中的运动单位射击及其与震颤的关系。

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摘要

1. The discharge of single motor units has been recorded from the soleus muscle of the decerebrate cat during the tonic vibration reflex elicited isometrically, to further understanding of the tremor that is seen in the reflex contraction. The reflex was elicited by pulses of vibration of 50 micrometers amplitude at 150 Hz, and up to four units were studied concurrently. 2. Individual units fired rather regularly and at a low frequency (range 4-14 Hz). The rate of firing of any unit normally fell within the frequency band of the tremor recorded at the same time. On comparing different preparations a higher frequency of tremor was associated with a higher frequency of motor firing. 3. The responses of pairs of motor units recorded concurrently during repeated production of the reflex were compared by cross-correlation analysis; over 1000 spikes from each train were normally used for this. The major of the cross-correlograms were flat with no overt sign of any synchronization between the units other than that due to the vibration. 4. Clear indications of correlated motor unit firing could be produced deliberately by modulating the amplitude of vibration at a frequency comparable to that of the normal tremor and thereby introducing a rhythmic component into the tonic vibration reflex. 5. About 20% of the cross-correlograms obtained during normal tremor showed varying amounts of an irregular 'waviness' suggesting a possible correlation between the times of firing of a pair of units. But such waves never developed steadily throughout the period of analysis, in contrast to the comparable waves produced on modulating the vibration. Similar waves were seen on cross-correlating a motor unit with an electronic oscillator, confirming that their occurrence does not necessarily demonstrate the existence of active neural interactions. 6. It is concluded that there is no strong and widespread neural synchronizing mechanism active during the tonic vibration reflex, although the possibility of some weak neural interactions has not been excluded. The findings favour the idea that the tremor in this preparation is simply the inevitable result of motor units discharging asynchronously, but at closely similar subtetanic frequencies.
机译:1.在等轴测的强直振动反射过程中,已记录了大脑小脑的比目鱼肌从单个比目鱼肌的放电情况,以进一步了解反射收缩中的震颤。反射是由150 Hz下50微米振幅的振动脉冲引起的,并且同时研究了多达四个单位。 2.个别设备以较低的频率(4-14 Hz范围)相当规则地发射。任何单位的发射速率通常都落在同时记录的震颤频带内。在比较不同的准备工作时,较高的震颤频率与较高的电机点火频率相关。 3.通过互相关分析比较了重复产生反射时同时记录的成对运动单元对的响应。通常每列火车使用1000多个峰值。交叉相关图的主要部分是平坦的,除了振动之外,没有明显的单位之间任何同步的迹象。 4.可以通过在与正常震颤相当的频率上调制振动幅度,从而将有节奏的成分引入到强音振动反射中,来有意识地产生与相关的电机单元点火相关的明确指示。 5.在正常震颤过程中获得的约20%的互相关图显示出不同数量的不规则“波纹”,表明一对单元的发射时间之间可能存在相关性。但是,与在调制振动时产生的可比波相反,此类波在整个分析期间从未稳定地增长。在将电机与电子振荡器进行互相关时,看到了相似的波,证实了它们的发生并不一定表明存在主动神经相互作用。 6.结论是,尽管没有排除某些弱的神经相互作用的可能性,但在强直振动反射期间没有强大而广泛的神经同步机制起作用。这些发现支持这样一种想法,即震颤只是电动机单元异步放电的必然结果,但电机的亚群频率非常相似。

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