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首页> 外文期刊>The Journal of Comparative Neurology >Relationship of complex spike synchrony bands and climbing fiber projection determined by reference to aldolase C compartments in crus IIa of the rat cerebellar cortex.
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Relationship of complex spike synchrony bands and climbing fiber projection determined by reference to aldolase C compartments in crus IIa of the rat cerebellar cortex.

机译:复杂的尖峰同步带和攀登纤维投射之间的关系,是通过参考大鼠小脑皮质IIa中的醛缩酶C区室来确定的。

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摘要

Synchronous complex spike (CS) activity occurs most often among cerebellar Purkinje cells located in a narrow longitudinal (parasagittal) strip of cortex (synchrony band). The relationship of the anatomical organization of the olivocerebellar projection to these synchrony bands has not been investigated in detail. Thus, we studied this relationship by using the aldolase C (zebrin II) expression pattern, another landmark for the cerebellar longitudinal organization, as a reference frame in rat crus IIa. Crus IIa consists of 10 aldolase C-positive and -negative longitudinal compartments. Aldolase C labeling after multiple-electrode recording of CSs indicated that in lateral crus IIa (compartments 5+ to 7+) synchrony bands were generally constrained to single compartments. In contrast, in medial crus IIa (compartments 4a- to 5a-) the synchrony within and across the compartments was much higher than in lateral crus IIa, resulting in wide synchrony bands covering multiple compartments. Retrograde labeling of olivary neurons by injections of biotinylated dextran amine into aldolase C compartments in crus IIa showed that compartments in medial crus IIa were all innervated by the caudal part of the medial accessory olive. On the other hand, each aldolase C compartment in the lateral crus IIa was innervated by a region in a different subnucleus in the rostral inferior olive. These regions in different subnuclei were located close to each other. These results suggest that CS synchrony bands reflect the olivocerebellar compartmental projection pattern and neuronal coupling within a particular olivary subnucleus, and that medial and lateral crus IIa may be functionally distinct. J. Comp. Neurol. 501:13-29, 2007. (c) 2007 Wiley-Liss, Inc.
机译:同步复合体尖峰(CS)活性最常发生在位于皮层(共生带)的纵向(矢状)狭窄条带中的小脑Purkinje细胞中。骨小梁投影的解剖组织与这些同步带的关系尚未详细研究。因此,我们通过使用醛缩酶C(zebrin II)表达模式(小脑纵向组织的另一个标志)作为大鼠Crus IIa的参考框架来研究这种关系。 Crus IIa由10个醛缩酶C阳性和-阴性纵向区室组成。 CS的多电极记录后的醛缩酶C标记表明,在外侧杂物IIa(室5+至7+)中,同步带通常限制在单个室中。相反,在内侧杂物IIa(隔室4a-至5a-)中,隔间内和隔间的同步性远高于外侧杂物IIa,导致覆盖多个隔间的宽同步带。通过向生物体IIa中的醛缩酶C区室注射生物素化的右旋糖酐胺,对橄榄神经元进行逆行标记,显示内侧IIa中的区室均被内侧副橄榄的尾部神经支配。另一方面,外侧结节IIa中的每个醛缩酶C区室均由延髓下橄榄的不同亚核中的一个区域支配。不同亚核中的这些区域彼此靠近。这些结果表明,CS同步带反映了特定小橄榄核内的小脑小室间隔投射模式和神经元耦合,内侧和外侧结节IIa在功能上可能是不同的。 J.比较神经元。 501:13-29,2007.(c)2007 Wiley-Liss,Inc.

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