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投射至猫小脑C3区的苔藓纤维和攀缘纤维的皮肤感受野及拓扑结构。

Cutaneous receptive fields and topography of mossy fibres and climbing fibres projecting to cat cerebellar C3 zone.

作者信息

Garwicz M, Jorntell H, Ekerot C F

机构信息

Department of Physiology and Neuroscience, Lund University, Solvegatan 19, S-223 62 Lund, Sweden.

出版信息

J Physiol. 1998 Oct 1;512 ( Pt 1)(Pt 1):277-93. doi: 10.1111/j.1469-7793.1998.277bf.x.

Abstract
  1. The topographical organization of mossy fibre input to the forelimb area of the paravermal C3 zone in cerebellar lobules IV and V was investigated in barbiturate-anaesthetized cats and compared with the previously described microzonal organization of climbing fibre input to the same part of the cortex. Recordings were made in the Purkinje cell and granule cell layers from single climbing fibre and mossy fibre units, respectively, and the organization of cutaneous receptive fields was assessed for both types of afferents. 2. Based on spatial characteristics, receptive fields of single mossy fibres could be systematized into ten classes and a total of thirty-two subclasses, mainly in accordance with a scheme previously used for classification of climbing fibres. Different mossy fibres displayed a substantial range of sensitivity to natural peripheral stimulation, responded preferentially to phasic or tonic stimuli and were activated by brushing of hairs or light tapping of the skin. 3. Overall, mossy fibres to any given microzone had receptive fields resembling the climbing fibre receptive field defining that microzone. However, compared with the climbing fibre input, the mossy fibre input had a more intricate topographical organization. Mossy fibres with very similar receptive fields projected to circumscribed cortical regions, with a specific termination not only in the mediolateral, but also in some cases in the rostrocaudal and dorsoventral, dimensions of the zone. On the other hand, mossy fibre units with non-identical, albeit usually similar, receptive fields were frequently found in the same microelectrode track.
摘要
  1. 在巴比妥麻醉的猫中,研究了小脑小叶IV和V中苔藓纤维输入到蚓旁C3区前肢区域的拓扑组织,并将其与先前描述的攀爬纤维输入到同一皮质区域的微区组织进行比较。分别在浦肯野细胞层和颗粒细胞层记录单个攀爬纤维和苔藓纤维单位的活动,并评估两种传入纤维的皮肤感受野组织。2. 根据空间特征,单个苔藓纤维的感受野可分为十类和总共三十二个子类,主要依据先前用于攀爬纤维分类的方案。不同的苔藓纤维对自然外周刺激表现出相当大的敏感性范围,优先对相位或紧张性刺激作出反应,并通过刷毛或轻敲皮肤而被激活。3. 总体而言,投射到任何给定微区的苔藓纤维具有类似于定义该微区的攀爬纤维感受野的感受野。然而,与攀爬纤维输入相比,苔藓纤维输入具有更复杂的拓扑组织。具有非常相似感受野的苔藓纤维投射到限定的皮质区域,不仅在该区域的内外侧有特定的终止,而且在某些情况下在前后和背腹维度上也有特定的终止。另一方面,具有不相同但通常相似感受野的苔藓纤维单位经常出现在同一微电极轨迹中。

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本文引用的文献

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Functional organization of the cuneocrebellar tract in the cat.猫楔小脑束的功能组织
Acta Physiol Scand. 1963 Jun-Jul;58:216-35. doi: 10.1111/j.1748-1716.1963.tb02643.x.
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