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猫小脑皮质C2区脊髓-橄榄-小脑通路兴奋性与运动相关的变化。

Locomotion-related variations in excitability of spino-olivocerebellar paths to cat cerebellar cortical c2 zone.

作者信息

Apps R, Lidierth M, Armstrong D M

机构信息

Department of Physiology, School of Medical Sciences, University of Bristol.

出版信息

J Physiol. 1990 May;424:487-512. doi: 10.1113/jphysiol.1990.sp018079.

Abstract
  1. Cutaneous nerve stimulation was used to study the excitability of the spino-olivocerebellar pathways (SOCPs) to the c2 zone of the paravermal cerebellar cortex in the cat. Non-noxious single-shock stimulation of the right and left superficial radial (SR) nerves via implanted cuff electrodes was used to evoke field potentials in the cerebellar cortex via the SOCPs. 2. The evoked potentials were recorded extracellularly either in lobule V of the anterior lobe (three cats) or within the paramedian lobule of the posterior lobe (one cat) with glass-coated tungsten microelectrodes. Measurement of the amplitudes of the responses was used to monitor transmission in the SOCPs in cats at rest and during walking. 3. A total of eleven c2 recording sites were investigated in detail. At seven of these sites, responses were recorded both during locomotion and at rest. For all seven sites responses during locomotion were smaller, more variable in amplitude and less securely evoked (average reduction 59%). 4. At five out of the eleven recording sites (45%) the mean amplitude of responses elicited during different tenths of the step cycle fluctuated sufficiently that the largest response was more than twice the smallest. In the majority of these cases (4/5) the responses were largest in either mid-stance or late swing. These fluctuations in response size occurred without parallel fluctuation in the amplitude of the peripheral nerve volley. At the remaining sites fluctuation of the cerebellar field size was less and in some cases practically absent. 5. At six recording sites it was possible to record the climbing fibre potentials evoked by stimulation of both the ipsilateral and contralateral superficial radial nerves. In all six cases the fluctuations in size of the response during locomotion occurred in phase, despite the fact that the two limbs move out of phase. 6. The probability that an individual stimulus would evoke any cerebellar response also varied between the different tenths of the step cycle and such variations occurred in parallel with the fluctuations in response size. This shows that the SOCP regulatory mechanism(s) must, at least in part, operate at a precerebellar level.
摘要
  1. 采用皮肤神经刺激法研究猫的脊髓-橄榄-小脑通路(SOCPs)对小脑蚓旁皮质c2区的兴奋性。通过植入的袖带电极对左右桡浅(SR)神经进行非伤害性单脉冲刺激,以通过SOCPs在小脑皮质诱发场电位。2. 用玻璃涂层钨微电极在额叶小叶V(三只猫)或后叶旁正中小叶内(一只猫)细胞外记录诱发电位。测量反应幅度用于监测猫在静息和行走时SOCPs中的传导情况。3. 总共详细研究了11个c2记录位点。其中7个位点在运动和静息时均记录到反应。对于所有这7个位点,运动时的反应较小,幅度变化更大,诱发也不太稳定(平均降低59%)。4. 在11个记录位点中的5个(45%),在步周期的不同十分之一期间诱发的反应平均幅度波动足够大,以至于最大反应超过最小反应的两倍。在大多数这些情况下(4/5),反应在站立中期或摆动后期最大。反应大小的这些波动在周围神经冲动幅度上没有平行波动。在其余位点,小脑场大小的波动较小,在某些情况下几乎不存在。5. 在6个记录位点能够记录到同侧和对侧桡浅神经刺激诱发的攀缘纤维电位。在所有6个病例中,尽管两肢运动不同步,但运动期间反应大小的波动是同步发生的。6. 单个刺激诱发任何小脑反应的概率在步周期的不同十分之一之间也有所不同,并且这种变化与反应大小的波动平行发生。这表明SOCP调节机制至少部分地必须在小脑前水平起作用。

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The cerebellum of the cat and the monkey.猫和猴子的小脑。
J Comp Neurol. 1953 Aug;99(1):135-99. doi: 10.1002/cne.900990110.
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Olivocerebellar projection: a review.橄榄小脑投射:综述
Adv Anat Embryol Cell Biol. 1980;64:IVIII, 1-140.

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