Xu Q, Grant G
Department of Anatomy, Karolinska Institute, Stockholm, Sweden.
Arch Ital Biol. 1990 Jul;128(2-4):209-28.
The projection from the sacro-coccygeal region of the spinal cord to the cerebellum was studied by two different techniques in the cat. In five cats wheat germ agglutinin-horseradish peroxidase conjugate (WGA-HRP) was injected caudal to a preceding unilateral cordotomy at the sacral level, aimed at interrupting the spinocerebellar tracts on one side completely, and the distribution of WGA-HRP labeled mossy fibers and mossy fiber terminals was studied in the cerebellum. In three additional cats, degenerating fibers were examined in Fink-Heimer stained sections following unilateral transection of the lateral and ventral funiculi at L7 or S3 level. In the WGA-HRP experiments the labeled mossy fiber terminals were located bilaterally in lobules I-V. Most of them were found in the anterior part of lobule II. In addition, labeled terminals were observed in sublobule VIIIB and in pars copularis of the paramedian lobule, contralateral to the cordotomy. The terminals in the anterior lobe were concentrated in longitudinal zones parallel to the mid sagittal plane. In lobule II, the terminals were most abundant in the superficial, apical parts of the folia. Some presumed terminals were also seen in the cerebellar nuclei. Labeled fibers were found contralateral, but not ipsilateral to the cordotomy in the superior and inferior cerebellar peduncles, as well as in the spinal cord rostral to the cordotomy. The results of the degeneration experiments were the same as those of the WGA-HRP experiments with regard to the detailed projections in the cerebellar cortex. This is strong support against the possibility that WGA-HRP labeled cerebellar mossy fiber terminals, following WGA-HRP injections in the spinal cord, would represent terminals of collaterals of retrogradely labeled neurons. It also lends strong support in favour of WGA-HRP as a reliable anterograde tracer for studying cerebellar cortical projections of spinocerebellar neurons in the cat.
采用两种不同技术对猫脊髓骶尾区至小脑的投射进行了研究。在5只猫中,将小麦胚凝集素-辣根过氧化物酶复合物(WGA-HRP)注射到骶段先前单侧脊髓切开术的尾侧,目的是完全切断一侧的脊髓小脑束,并研究小脑内WGA-HRP标记的苔藓纤维和苔藓纤维终末的分布。在另外3只猫中,在L7或S3水平单侧横断外侧索和腹侧索后,在芬克-海默染色切片中检查变性纤维。在WGA-HRP实验中,标记的苔藓纤维终末双侧位于小叶I-V。其中大部分位于小叶II的前部。此外,在小脑扁桃体小叶VIIIB和旁正中小叶的连接部观察到标记的终末,位于脊髓切开术的对侧。前叶的终末集中在与矢状中平面平行的纵向区域。在小叶II中,终末在小叶的浅表、顶端部分最为丰富。在小脑核中也可见一些推测的终末。在小脑上脚和下脚以及脊髓切开术头侧的脊髓中发现标记纤维位于脊髓切开术的对侧,而非同侧。变性实验的结果在小脑皮质的详细投射方面与WGA-HRP实验相同。这有力地支持了以下观点,即脊髓注射WGA-HRP后,WGA-HRP标记的小脑苔藓纤维终末不会代表逆行标记神经元的侧支终末。这也有力地支持了WGA-HRP作为一种可靠的顺行示踪剂用于研究猫脊髓小脑神经元的小脑皮质投射。