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白化大鼠小脑半球颗粒细胞层和浦肯野细胞层触觉投射的空间组织一致性:小脑皮质的垂直组织

Congruence of spatial organization of tactile projections to granule cell and Purkinje cell layers of cerebellar hemispheres of the albino rat: vertical organization of cerebellar cortex.

作者信息

Bower J M, Woolston D C

出版信息

J Neurophysiol. 1983 Mar;49(3):745-66. doi: 10.1152/jn.1983.49.3.745.

Abstract
  1. We compared the spatial pattern of shortest latency somatosensory (tactile) projections to the Purkinje cell (PC) layer and to the underlying granule cell (GC) layer in tactile areas of rat cerebellar cortex. Micro-mapping methods were used to sample single units in the PC layer and multiple units in the GC layer of both anesthetized and unanesthetized rats. Mechanical and electrical stimulation of the body surface were employed. Responsiveness of PCs to cutaneous stimulation was assessed by constructing histograms of simple spike activity and statistically comparing poststimulus activity to nonstimulated base-line PC activity. 2. We found that PCs respond to tactile stimulation with increases (7-10 ms) followed by decreases (8-15 ms) in simple spike activity. Increases in simple spike activity followed activation of the underlying GC layer by 1-4 ms, while decreases in simple spike activity were found 2-5 ms after GC layer activation. 3. PCs were found to have both excitatory and inhibitory receptive fields (RFs). Excitatory RFs were restricted to small areas of a single body part and for each PC were very similar or identical to the RFs of neurons in the immediately subjacent GC layer. Inhibitory PC RFs were larger, often containing more than one body part and for each PC, were only partially similar to the RFs of subjacent GCs. PC inhibitory RFs also often included body surfaces projecting to the nearby but not to the underlying GC layer. 4. Stimulation of a single peripheral locus resulted in small, distinct regions of PC layer excitation and inhibition. Areas of PC excitation overlie activated regions of the GC layer, while inhibited PCs overlie both activated and nonactivated GC regions. 5. We found PCs to be organized in groups or patches with respect to the specific body region that was capable of activating them (upper lip, lower lip, etc.). Adjacent patches of PCs often represented widely separated body parts. This pattern of PC layer activating RF projections was congruent with the pattern of excitatory RF projections to the underlying GC layer. 6. These results indicate that there is a vertical organization in GC-PC excitatory relations, while GC-induced PC inhibition is slightly more widely distributed. 7. Our finding that the patchlike activation of PCs is congruent with that of the underlying GC layer contrasts with the classical concept that PCs are activated by parallel fibers in a "beamlike" fashion from a patch of GCs. Thus, a reevaluation of the role of parallel fibers seems to us to be in order. 8. In conclusion, our results support the view that short-latency afferent tactile projections to both the GC and PC layers of cerebellar cortex are highly organized spatially. This specificity of body surface projections must be incorporated into modern views of the functional organization of cerebellar cortex.
摘要
  1. 我们比较了大鼠小脑皮质触觉区域中,最短潜伏期体感(触觉)投射至浦肯野细胞(PC)层和深层颗粒细胞(GC)层的空间模式。采用微映射方法,对麻醉和未麻醉大鼠的PC层单个神经元以及GC层多个神经元进行采样。使用体表的机械和电刺激。通过构建简单锋电位活动直方图,并将刺激后活动与未刺激的基线PC活动进行统计学比较,来评估PC对皮肤刺激的反应性。2. 我们发现,PC对触觉刺激的反应是简单锋电位活动先增加(7 - 10毫秒),随后减少(8 - 15毫秒)。简单锋电位活动的增加在深层GC层激活后1 - 4毫秒出现,而简单锋电位活动的减少则在GC层激活后2 - 5毫秒出现。3. 发现PC具有兴奋性和抑制性感受野(RFs)。兴奋性RFs局限于单个身体部位的小区域,并且对于每个PC来说,与紧邻其下方GC层中神经元的RFs非常相似或相同。抑制性PC RFs更大,通常包含不止一个身体部位,并且对于每个PC来说,仅部分类似于下方GCs的RFs。PC抑制性RFs还常常包括投射至附近但不投射至下方GC层的体表区域。4. 刺激单个外周位点会导致PC层出现小的、明显的兴奋和抑制区域。PC兴奋区域覆盖GC层的激活区域,而被抑制的PC则覆盖激活和未激活的GC区域。5. 我们发现,PC根据能够激活它们的特定身体区域(上唇、下唇等),以组或斑块的形式组织起来。相邻的PC斑块通常代表广泛分离的身体部位。这种PC层激活RF投射的模式与向下方GC层的兴奋性RF投射模式一致。6. 这些结果表明,在GC - PC兴奋性关系中存在垂直组织,而GC诱导的PC抑制分布略广。7. 我们发现PC的斑块状激活与下方GC层的激活一致,这与经典概念不同,经典概念认为PC由来自一片GCs的平行纤维以“束状”方式激活。因此,在我们看来,对平行纤维的作用需要重新评估。8. 总之,我们的结果支持这样一种观点,即小脑皮质GC层和PC层的短潜伏期传入触觉投射在空间上高度有序。体表投射的这种特异性必须纳入小脑皮质功能组织的现代观点中。

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