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猫在跑步机上运动时攀爬纤维传入调制

Climbing fiber afferent modulation during treadmill locomotion in the cat.

作者信息

Kim J H, Wang J J, Ebner T J

出版信息

J Neurophysiol. 1987 Mar;57(3):787-802. doi: 10.1152/jn.1987.57.3.787.

Abstract

The relationship of the climbing fiber afferent discharge to the unperturbed and perturbed step cycle was evaluated in the cat. Following a precollicular-premamillary decerebration, cats walked spontaneously on a motorized treadmill. Purkinje cells were recorded extracellularly and simple and complex spikes were discriminated. Right forelimb displacement, biceps and triceps EMG activity, as well as treadmill velocity, were also monitored. In some animals pressure measurements of the contact of the footpad with the treadmill were obtained. Cells were studied during both "normal" and perturbed locomotion. The perturbation consisted of a braking of the treadmill at different phases in the step cycle. Histograms of the simple and complex spike activity, and averages of the right forelimb displacement, biceps, and triceps EMG activity and treadmill velocity were constructed. The complex spike activity of 163 Purkinje cells was averaged through a minimum of 50 sweeps in either normal and/or perturbed locomotion. Statistical analysis revealed that the probability of the climbing fiber afferent discharge in 54% of the cells (36/67) studied during normal locomotion was significantly modulated with the step cycle. For most Purkinje cells the onset of the increase in climbing fiber afferent discharge was coupled to triceps activity and the onset of stance phase. A group of cells exhibited complex spike discharge in association with biceps onset and swing. These observations suggest that complex spike discharge occurs preferentially at the phase transition periods in the step cycle when the trajectory of the forelimb changes from swing to stance or stance to swing. During treadmill braking 51% of the cells exhibited complex spike modulation (70/137). A number of different patterns of climbing fiber afferent modulation occurred. The most common pattern was an increase in complex spike discharge with the resumption of the treadmill movement and locomotion. Analysis of the time of these periods of increased climbing fiber activity suggests that, although in some cells the response is coupled to the treadmill onset, in other cells the modulation occurs at longer latencies. Subsequent analysis aligning the EMG, displacement, and treadmill velocity signals with the times of the climbing fiber afferent discharge suggested some responses were coupled to the reinitiation of the locomotor cycle. The second most common pattern was an increase in climbing fiber afferent discharge at the onset of the perturbation. Also, in some cells, complex spike discharge decreased during the period in which the step cycle was arrested.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在猫身上评估了攀爬纤维传入放电与未受干扰和受干扰的步周期之间的关系。在进行前丘-乳头前脑桥离断术后,猫在电动跑步机上自主行走。细胞外记录浦肯野细胞,并区分简单和复合动作电位。同时监测右前肢位移、肱二头肌和肱三头肌的肌电图活动以及跑步机速度。在一些动物中,还获得了脚垫与跑步机接触时的压力测量值。在“正常”和受干扰的运动过程中对细胞进行研究。干扰包括在步周期的不同阶段对跑步机进行制动。构建了简单和复合动作电位活动的直方图,以及右前肢位移、肱二头肌和肱三头肌肌电图活动及跑步机速度的平均值。在正常运动和/或受干扰运动中,对163个浦肯野细胞的复合动作电位活动进行了至少50次扫描的平均。统计分析表明,在正常运动期间研究的54%的细胞(36/67)中,攀爬纤维传入放电的概率随步周期有显著调节。对于大多数浦肯野细胞,攀爬纤维传入放电增加的起始与肱三头肌活动和站立期的起始相关。一组细胞在肱二头肌起始和摆动时表现出复合动作电位放电。这些观察结果表明,复合动作电位放电优先发生在步周期的相变期,即前肢轨迹从摆动变为站立或从站立变为摆动时。在跑步机制动期间,51%的细胞表现出复合动作电位调制(70/137)。出现了许多不同的攀爬纤维传入调制模式。最常见的模式是随着跑步机运动和行走的恢复,复合动作电位放电增加。对这些攀爬纤维活动增加时期的时间分析表明,虽然在一些细胞中反应与跑步机启动相关,但在其他细胞中调制发生在更长的潜伏期。随后将肌电图、位移和跑步机速度信号与攀爬纤维传入放电时间对齐的分析表明,一些反应与运动周期的重新启动相关。第二常见的模式是在干扰开始时攀爬纤维传入放电增加。此外,在一些细胞中,在步周期停止期间复合动作电位放电减少。(摘要截断于400字)

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