首页> 美国卫生研究院文献>The Journal of Physiology >Patterns of fusimotor activity during locomotion in the decerebrate cat deduced from recordings from hindlimb muscle spindles
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Patterns of fusimotor activity during locomotion in the decerebrate cat deduced from recordings from hindlimb muscle spindles

机译:从后肢肌肉纺锤体的录音推导的去脑猫运动过程中的梭动活动模式

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摘要

class="enumerated" style="list-style-type:decimal">Recordings have been made from multiple single muscle spindle afferents from medial gastrocnemius (MG) and tibialis anterior (TA) muscles of one hindlimb in decerebrate cats, together with ankle rotation and EMG signals, during treadmill locomotion. Whilst the other three limbs walked freely, the experimental limb was denervated except for the nerves to MG and TA and secured so that it could rotate only at the ankle joint, without any external load. Each afferent was characterised by succinylcholine testing with regard to its intrafusal fibre contacts. Active movements were recorded and then replayed through a servo mechanism to reproduce the muscle length changes passively after using a barbiturate to suppress γ-motor firing.The difference in secondary afferent firing obtained by subtracting the discharge during passive movements from that during active movements was taken to represent the profile of static fusimotor activity. This indicated an increase before the onset of movement followed by a strongly modulated discharge in parallel with muscle shortening during locomotion. The pattern of static firing matched the pattern of unloaded muscle shortening very closely in the case of TA and with some phase advance in the case of MG. The same effects were observed in primary afferents.Primary afferents with bag1 (b1) contacts in addition showed higher firing frequencies during muscle lengthening in active than in passive movements. This indicated increased dynamic fusimotor firing during active locomotion. There was no evidence as to whether this fluctuated during the movement cycles.When the mean active minus passive difference profile of firing in bag2-chain (b2c) type primary afferents was subtracted from that for b1b2c afferents, the difference was dominated by a peak centred on the moment of maximum lengthening velocity (v).The component of the active minus passive difference firing due to b1 fibre contacts could be modelled by f(t) =av (where a is a constant) during lengthening and by f(t) = 0.2av during shortening. The remainder of the difference signal matched the predictions of the static fusimotor signal derived from secondary afferents.The findings are discussed in relation to the concept that the modulated static fusimotor pattern may represent a ‘temporal template’ of the expected movement, though the relationship of the results to locomotion in the intact animal will require further investigation. The analysis of the data indicates that the combined action of muscle length changes and static and dynamic fusimotor activity to determine primary afferent firing can be understood in terms of the interaction between the b1 and b2c impulse initiation sites.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在跑步机的运动过程中,记录了多只单脑脊髓传入神经,这些传入神经来自于小脑猫的一只后肢的腓肠肌内侧(MG)和胫骨前(TA)肌肉,以及踝关节旋转和EMG信号。在其他三个肢体自由行走的同时,除了对MG和TA的神经外,对实验肢进行了神经支配并固定,以使其只能在踝关节旋转,而没有任何外部负荷。通过琥珀酰胆碱的融合神经内纤维接触测试来表征每个传入神经。记录主动运动,然后通过伺服机构进行重放,以再现使用巴比妥酸盐抑制γ马达放电后的肌肉长度变化。 通过减去被动运动中的放电而获得的二次传入放电的差异主动运动期间的运动被用来代表静态融合运动的轮廓。这表明在运动开始之前增加,随后在运动期间伴随着肌肉缩短的同时强烈调节放电。在TA的情况下,静态击发的模式与空载的肌肉缩短的模式非常接近,而在MG的情况下,静态击发的模式非常提前。在初级传入者中观察到了相同的效果。 与bag1(b1)接触的初级传入者在主动伸展肌肉的过程中,发声频率高于被动运动。这表明在主动运动过程中动态融合运动射击增加。没有证据表明这在运动周期中是否波动。 当从b1b2c传入的bag2链(b2c)型初级传入的射击中减去平均平均主动减去被动差异射击后,差异主要由以最大延长速度(v)的瞬间为中心的峰值决定。 由于b1光纤接触而产生的主动减去被动差异触发的分量可以用f(t)= av(其中a为常数),而f(t)= 0.2av。差异信号的其余部分与从次要传入的静态融合运动信号的预测相匹配。 讨论了与调制后的静态融合运动模式可以代表运动的“时间模板”这一概念有关的发现。预期的运动,尽管结果与完整动物运动的关系还需要进一步研究。数据分析表明,可以通过b1和b2c脉冲起始位点之间的相互作用来理解肌肉长度变化与静态和动态融合运动确定初级传入放电的联合作用。

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