Peyronnard J M, Charron L, Lavoie J, Messier J P, Dubreuil M
Centre de recherche en sciences neurologiques, Université de Montréal, Quebec, Canada.
Anat Embryol (Berl). 1988;177(4):353-9. doi: 10.1007/BF00315844.
Dorsal root ganglion neurons supplying peroneus longus, soleus and gastrocnemius medius muscles and the sural nerve of the rat were labelled with horseradish peroxidase and analysed for their carbonic anhydrase content. Staining of the sections was done either on the same or on alternate slides. Both methods led to the same results, despite a slight fading of the carbonic anhydrase reaction in double-stained sections. The data indicated that the muscles under study were supplied by approximately the same number of horseradish peroxidase-labelled cells, irrespective of their differences in size. 74.9% of these labelled neurons had diameters exceeding 30 microns and 52.4% of them also stained for carbonic anhydrase. The double-labelled cells represented 66.9% of the population of large neurons (greater than 30 microns) and comprised most of those measuring over 47.5 microns. Richness in carbonic anhydrase of the large muscle afferent neurons may be linked to their innervation of the stretch receptors, as components of an active apparatus which includes the gamma motor axons which also stain positively for carbonic anhydrase. In contrast, the ganglion cells supplying the sural nerve were almost totally devoid of carbonic anhydrase, as only 6.4% showed double labelling. This contingent possibly represents the muscle afferents of the small motoneural population which supplies, through this nerve, part of the foot musculature of the rat.
用辣根过氧化物酶标记大鼠供应腓骨长肌、比目鱼肌和腓肠肌内侧头肌肉以及腓肠神经的背根神经节神经元,并分析其碳酸酐酶含量。切片染色在同一张或交替的载玻片上进行。尽管双重染色切片中的碳酸酐酶反应略有褪色,但两种方法得到的结果相同。数据表明,无论所研究肌肉大小差异如何,它们由大致相同数量的辣根过氧化物酶标记细胞供应。这些标记神经元中74.9%的直径超过30微米,其中52.4%也对碳酸酐酶染色。双重标记细胞占大神经元(大于30微米)群体的66.9%,并且包括大多数直径超过47.5微米的神经元。大的肌肉传入神经元中丰富的碳酸酐酶可能与其对牵张感受器的支配有关,作为一个活性装置的组成部分,该装置包括也对碳酸酐酶呈阳性染色的γ运动轴突。相反,供应腓肠神经的神经节细胞几乎完全缺乏碳酸酐酶,因为只有6.4%显示双重标记。这一组可能代表小运动神经元群体的肌肉传入纤维,它们通过该神经供应大鼠足部肌肉的一部分。