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首页> 外文期刊>IEEE transactions on rehabilitation engineering >Nerve cuff recordings of muscle afferent activity from tibial and peroneal nerves in rabbit during passive ankle motion
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Nerve cuff recordings of muscle afferent activity from tibial and peroneal nerves in rabbit during passive ankle motion

机译:被动踝关节运动期间兔胫骨和腓神经神经传入肌肉的神经袖套记录

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Activity from muscle afferents regarding ankle kinesthesia was recorded using cuff electrodes in a rabbit preparation in which tactile input from the foot was eliminated. The purpose was to determine if such activity can provide information useful in controlling functional electrical stimulation (FES) systems that restore mobility in spinal injured man. The rabbit's ankle was passively flexed and extended while the activity of the tibial and peroneal nerves was recorded. Responses to trapezoidal stimulus profiles were investigated for excursions from 100 to 600 using velocities from 50/s to 300/s and different initial ankle positions. The recorded signals mainly reflect activity from primary and secondary muscle afferents. Dorsiflexion stretched the ankle extensors and produced velocity dependent activity in the tibial nerve, and this diminished to a tonic level during the stimulus plateau. The peroneal nerve was silent during dorsiflexion, but was activated by stretch of the peroneal muscles during ankle extension. The responses of the two nerves behaved in a reciprocal manner, hut exhibited considerable hysteresis, since motion that relaxed the stretch to the driving muscle produced an immediate cessation of the prior stretch induced activity. A noted difference between the tibial and peroneal nerve responses is that the range of joint position change that activated the flexor afferents was greater then for the extensor afferents. Ankle rotation at higher velocities increased the dynamic stretch evoked responses during the stimulus ramp but showed no effect on the tonic activity during the stimulus plateau. Prestretching the muscles by altering the initial position increased the response to the ramp movement, however, for the peroneal nerve, when the prestretch brought the flexor muscles near to their maximal lengths, the response to additional stretch provided by the ramp movement was diminished. The results indicate that the whole nerve recorded muscle afferent activity may be useful for control of FES assisted standing, because it can indicate the direction of rotation of the passively moved ankle joint, along with coarse information regarding the rate of movement and static joint position.
机译:使用袖带电极在兔子制备物中记录了来自肌肉传入者的关于脚踝运动感觉的活动,其中消除了来自脚的触觉输入。目的是确定这种活动是否可以提供有用的信息,以控制功能性电刺激(FES)系统,以恢复脊髓受伤男子的活动能力。兔子的踝关节被动屈伸,同时记录胫骨和腓神经的活动。使用50 / s至300 / s的速度和不同的初始脚踝位置,研究了100-600的偏移对梯形刺激曲线的响应。记录的信号主要反映来自初级和次级肌肉传入神经的活动。背屈拉伸踝关节伸肌,并在胫神经中产生速度依赖性活动,在刺激平稳期,这种活动减少至强直水平。腓背神经在背屈期间保持沉默,但在踝关节伸展过程中被腓骨肌肉拉伸而激活。两条神经的反应以相互的方式表现,但小屋表现出相当大的滞后性,因为放松拉伸至驱动肌肉的运动会立即停止先前的拉伸诱导活动。胫骨和腓骨神经反应之间的明显区别是,激活屈肌传入的关节位置变化范围比伸肌传入的更大。较高速度下的脚踝旋转会增加刺激斜坡期间的动态拉伸诱发反应,但对刺激平稳期的紧张活动没有影响。通过更改初始位置来预拉伸肌肉会增加对坡道运动的响应,但是,对于腓神经,当预拉伸使屈肌接近其最大长度时,对坡道运动提供的额外拉伸的响应就会减弱。结果表明,整个神经记录的肌肉传入活动可能对控制FES辅助站立有用,因为它可以指示被动移动的踝关节的旋转方向,以及有关运动速率和静态关节位置的粗略信息。

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